EXHIBIT_6_-_Utility_Standards.pdf

PDF 34 MB Posted

Attached to
Design Services for Northeast Service Area Utility Infrastructure Improvements State and local contract opportunity
Solicitation number
25-8615
Issued by
Collier County, Florida

About this file

This document is a comprehensive Utilities Standards Manual from the Collier County Water-Sewer District in Florida, detailing technical specifications, design criteria, and standards for water, wastewater, and utility infrastructure projects. The manual provides extensive technical guidance for utility system design, construction, and materials, covering topics such as pipeline installation, testing procedures, pipe materials, pump stations, electrical systems, and detailed drawing requirements. It serves as a comprehensive reference for engineers, contractors, and developers working on utility projects within Collier County.

The manual includes rigorous technical standards for water and wastewater systems, specifying requirements for pipe materials, installation methods, testing protocols, and quality control. It mandates specific design parameters including minimum pipe depths, separation requirements between different utility lines, testing procedures for leakage and bacteriological compliance, and detailed specifications for components like valves, meters, and pump stations. The document also provides extensive appendices and references, including approved product lists, deviation request forms, and technical drawings that outline precise installation and construction methods for utility infrastructure within the county's jurisdiction.

View the file

Other files for this state and local contract opportunity

Other files attached to Design Services for Northeast Service Area Utility Infrastructure Improvements, newest first.
File Type Posted
25-8615_Sign-in_Sheets.pdf PDF
25-8615_Sign-in_Sheets.pdf PDF
25-8615_Solicitiation.pdf PDF
25-8615_Solicitiation.pdf PDF
Request_for_Professional_Services_Instructions_Version_1.pdf PDF
Request_for_Professional_Services_Instructions_Version_1.pdf PDF
Request_for_Professional_Services_Instructions_Version_1.pdf PDF
25-8615_Solicitiation.pdf PDF
A-_Checklist_-_Vendor_Checklist.pdf PDF
B-_Form_1_Vendor_Declaration_Statement.pdf PDF
C-_Form_2_Conflict_of_Interest_Certification.pdf PDF
G-_PSA_CCNA_Single_Project_Agreement_[2025_ver.1]_(3).pdf PDF
D-_Form_3_Immigration_Certification.pdf PDF
G-_PSA_CCNA_Single_Project_Agreement_[2025_ver.1]_(3).pdf PDF
B-_Form_1_Vendor_Declaration_Statement.pdf PDF
C-_Form_2_Conflict_of_Interest_Certification.pdf PDF
D-_Form_3_Immigration_Certification.pdf PDF
E-_Form_4_Reference_Questionnaire.pdf PDF
G-_PSA_CCNA_Single_Project_Agreement_[2025_ver.1]_(3).pdf PDF
H-_PO_Terms_and_Conditions_Rev.3.pdf PDF
E-_Form_4_Reference_Questionnaire.pdf PDF
F-_25-8615_Insurance_Requirements_Version_2.pdf PDF
D-_Form_3_Immigration_Certification.pdf PDF
E-_Form_4_Reference_Questionnaire.pdf PDF
F-_25-8615_Insurance_Requirements_Version_2.pdf PDF
A-_Checklist_-_Vendor_Checklist.pdf PDF
B-_Form_1_Vendor_Declaration_Statement.pdf PDF
H-_PO_Terms_and_Conditions_Rev.3.pdf PDF
H-_PO_Terms_and_Conditions_Rev.3.pdf PDF
A-_Checklist_-_Vendor_Checklist.pdf PDF
F-_25-8615_Insurance_Requirements_Version_2.pdf PDF
C-_Form_2_Conflict_of_Interest_Certification.pdf PDF
EXHIBIT_4_-_Northeast_Projects_Utility_Sites.pdf PDF
EXHIBIT_3_-_SFWMD_CUP_11-00052-W_Mod_6-3-2025.pdf PDF
EXHIBIT_1_-_TOBC_Agreement_well_site_Locations.pdf PDF
EXHIBIT_6_-_Utility_Standards.pdf PDF
EXHIBIT_1_-_TOBC_Agreement_well_site_Locations.pdf PDF
EXHIBIT_2_-_Map_Future_IQ_Wells_(1-5)_and_IQ_Main.pdf PDF
EXHIBIT_3_-_SFWMD_CUP_11-00052-W_Mod_6-3-2025.pdf PDF
EXHIBIT_1_-_TOBC_Agreement_well_site_Locations.pdf PDF
EXHIBIT_2_-_Map_Future_IQ_Wells_(1-5)_and_IQ_Main.pdf PDF
EXHIBIT_6_-_Utility_Standards.pdf PDF
EXHIBIT_4_-_Northeast_Projects_Utility_Sites.pdf PDF
EXHIBIT_5_-_2nd_Looping.pdf PDF
EXHIBIT_4_-_Northeast_Projects_Utility_Sites.pdf PDF
EXHIBIT_5_-_2nd_Looping.pdf PDF
EXHIBIT_2_-_Map_Future_IQ_Wells_(1-5)_and_IQ_Main.pdf PDF
EXHIBIT_5_-_2nd_Looping.pdf PDF
EXHIBIT_3_-_SFWMD_CUP_11-00052-W_Mod_6-3-2025.pdf PDF
Show all 49

On GovTribe

Work with this file on GovTribe

  • Download the original file
  • Contacts named in this file
  • Similar government files
  • Ask GovTribe AI about this file

Text version

RESOLUTION NO. 2025- 0 6 7

A RESOLUTION OF THE BOARD OF COUNTY COMMISSIONERS OF

COLLIER COUNTY, FLORIDA, AS THE GOVERNING BODY OF

COLLIER COUNTY, FLORIDA AND EX-OFFICIO GOVERNING

BOARD OF THE COLLIER COUNTY WATER- SEWER DISTRICT,

APPROVING AMENDMENTS TO THE COLLIER COUNTY WATER-

SEWER DISTRICT' S UTILITIES STANDARDS MANUAL, WHICH IS

AN INTEGRAL PART OF COLLIER COUNTY ORDINANCE NO. 2004-

31, AS AMENDED, KNOWN AS THE COLLIER COUNTY UTILITIES

STANDARDS AND PROCEDURES ORDINANCE, WHICH IS CODIFIED

IN CHAPTER 134, ARTICLE III OF THE CODE OF LAWS AND

ORDINANCES; AND PROVIDING FOR AN EFFECTIVE DATE.

WHEREAS, on May ll, 2004, as Agenda Item No. 8. D, the Board of County Commissioners as the Ex Officio Governing Board of the Water- Sewer District (" Board") concurrently adopted Collier County Ordinance No. 2004- 31, entitled the Collier County Utilities Standards and Procedures Ordinance ( the " Ordinance"), and the Collier County Water- Sewer District Utilities Standards Manual (" Manual"), including all of the Manual' s exhibits, and

WHEREAS Ordinance No. 2004- 31 is codified in Chapter 134, Article III of the Collier

County Code of Laws and Ordinances; and

WHEREAS, since the 2004 adoption of the Manual it has become necessary to make updates that reflect current standards in design and preparation of plans and specifications for all utilities construction projects; and

WHEREAS, after input from stakeholders, staff has recommended that the Board adopt this Resolution to approve amendments to the Manual as identified in the attached Exhibit " A";

and

WHEREAS, Section 134- 61 of the Code of Laws and Ordinances requires the Manual to be amended by Resolution of the Board under the scheduled public hearings or the summary agenda section; and

WHEREAS, it is in the interest of the health, safety, and welfare that this Resolution be adopted.

Space Intentionally Left Blank]

24- PUE-00727/ I 897089/ 2] Page 1 of 2 d.

Exhibit 6

NOW, THEREFORE, BE IT RESOLVED BY THE BOARD OF COUNTY

COMMISSIONERS OF COLLIER COUNTY, FLORIDA, AS THE GOVERNING BODY

OF COLLIER COUNTY, FLORIDA AND EX- OFFICIO GOVERNING BOARD OF

THE COLLIER COUNTY WATER- SEWER DISTRICT, that:

The amendment of' the Collier County Water- Sewer District Utilities Standards Manual as provided in attached Exhibit" A" is hereby approved and shall immediately take effect.

This Resolution adopted after motion, second and majority vote, this

2S+k day of 14rcI 2025.

BOARD OF COUNTY COMMISSIONERS

COLLIER COUNTY, FLORIDA, AS THE

GOVERNING BODY OF COLLIER

COUNTY, FLORIDA AND EX- OFFICIO

ATTEST: GOVERNING BOARD OF THE COLLIER

CRYSTAL K. KINZEL, CLERK COUNTY WATER- SEWER DISTRICT

By U By: CLC0 +--

Attest as to NaPflitakierk Burt L. Saunders, Chairman lgnature only

Appro ed as to Form and Legality:

shkar tisistant County Attorney

24- PUE- 00727/ 1897089/ 2] Page 2 of 2

Qq l, COLLIER COUNTY

INTRODUCTION

Words stricken are deletions; words underlined are additions.

INTRODUCTION

This Manual has been established by action of the Board of County Commissioners and is authorized by County Ordinance 2004-31, as amended.

This Utilities Standards Manual has been prepared to guide the design, construction, and asset management of potable water, non-potable irrigation water, and wastewater system extensions to Collier County Water-Sewer District (COUNTY) utilities; the Manual applies to utilities in new developments in the County, as well as County Projects involving utilities.

The following standards shall be included in the design and preparation of plans and specifications for all utilities construction projects for Collier County, including utilities and services connected to the COUNTY’s utilities systems or constructed for future transfer of ownership to the COUNTY.

These standards are provided for uniformity in utilities construction within Collier County, and represent MINIMUM standards acceptable to the COUNTY. The Engineer of Record shall review these MINIMUM standards for applicability and acceptance for the proposed construction project.

Where necessary, additional design features may be required to meet specific project requirements. The Engineer of Record shall be responsible for the specific project under their control.

Not all specification details may apply to an individual project; however, approval of utilities construction within Collier County will require conformance to applicable requirements of these specifications. Approval of any deviation from the specifications must be obtained utilizing the appropriate form included in Appendix A, Utility Deviation Form.

NOTE: Go to Collier County Public Utilities Engineering and Project Management Resources Webpage https://www.colliercountyfl.gov/your-government/divisions-f-r/public- utilities-planning-and-project-management/utilities-standards-manual for the latest revisions to the Utilities Standards Manual.

https://www.colliercountyfl.gov/your-government/divisions-f-r/public-utilities-planning-and-project-management/utilities-standards-manual https://www.colliercountyfl.gov/your-government/divisions-f-r/public-utilities-planning-and-project-management/utilities-standards-manual https://www.colliercountyfl.gov/your-government/divisions-f-r/public-utilities-planning-and-project-management/utilities-standards-manual

INTRODUCTION

Words stricken are deletions; words underlined are additions.

THIS PAGE INTENTIONALLY LEFT BLANK

TABLE OF CONTENTS Page 1 of 6

Words stricken are deletions; words underlined are additions

TABLE OF CONTENTS

SECTION 1 DESIGN CRITERIA

PART 1 GENERAL

1.1 Pipeline Separation Requirements

1.2 Horizontal Directional Drilling

PART 2 POTABLE WATER AND NON-POTABLE IRRIGATION WATER

SYSTEMS

2.1 Pipe and Fitting Material

2.2 Design of Pipeline Size and Location

2.2.1 Water Pipeline Sizing Criteria

2.2.2 Distribution System Layout

2.2.3 Valve Locations

2.3 Conflict Crossings

2.3.1 Subaqueous Canal Crossings

2.4 Fire Service Systems

2.4.1 Fire Service Meters for Residential Systems

2.4.2 Fire Service Meters for Commercial and Other Non-residential Systems

2.5 Connections to Collier County Facilities

2.6 Water Services

2.6.1 Service Pipelines

2.6.2 Water Meters

2.7 Air Release Assemblies

2.8 Concrete Collars

2.9 Testing and Clearance Procedures

2.9.1 Pigging

2.9.2 Flushing

2.9.3 Line Filling

2.9.4 Chlorination

2.9.5 Post Chlorination Flushes

2.9.6 Bacteriological Samples

2.10 Laboratory Testing and Sample Collection

PART 3 WASTEWATER COLLECTION AND TRANSMISSION SYSTEMS

3.1 Gravity Sewer Systems

3.1.1 Pipe and Fitting Materials

3.1.2 Design of Pipeline Size, Depth and Location

3.1.3 Gravity Sewer Main Extension Stubs

3.1.4 Gravity Sewer Laterals

3.1.5 Manholes

3.2 Force Mains

3.2.1 Pipe and Fitting Materials

3.2.2 Design of Pipeline Size and Location

3.2.3 Valves

TABLE OF CONTENTS Page 2 of 6

3.2.4 Force Main Extension Stubs

3.2.5 Air Release Assemblies

3.3 Wastewater Pump Stations

3.3.1 Private Pump Stations

3.4 Connections to Collier County Facilities

3.5 Tests and Inspections

3.6 Wastewater Pump Station Asset Management

PART 4 ELECTRICAL AND CONTROL SYSTEMS

4.1 Electrical and Control System Material

SECTION 2 TECHNICAL SPECIFICATIONS

DIVISION 1 - GENERAL REQUIREMENTS

011000 Summary of Work 014127 NPDES Requirements for Construction Activities Impacting More Than

One Acre 014200 References 014500 Quality Control 015000 Construction Facilities and Temporary Controls 015526 Traffic Regulation and Public Safety 015713 Temporary Erosion and Sedimentation Control for Construction Activities

Impacting Less Than One Acre, including Construction Requiring Dewatering 016100 Material and Equipment 017300 Miscellaneous Work and Cleanup 017416 Site Clearing 017423 Cleaning 017823 Operation and Maintenance Manuals 017839 Project Record Documents

DIVISION 2 – EXISTING CONDITIONS

020500 Connections to Existing Systems 022100 Lines and Grades 022200 Pre-Construction Audio-Video Recording 022501 Leakage Tests 024100 Demolition 025400 Disinfection

DIVISION 3 – CONCRETE

031100 Concrete Formwork 032000 Concrete Reinforcement 033100 Concrete, Masonry Mortar and Grout 034100 Precast Concrete Structures

TABLE OF CONTENTS Page 3 of 6

DIVISION 5 – METALS

055600 Metal Castings

DIVISION 9 – FINISHES

099723 Concrete Coatings

DIVISION 22 - PLUMBING

221336 Diesel Backup Pump

DIVISION 26 - ELECTRICAL

263213.13 Standby Diesel Generators

DIVISION 31 – EARTHWORK

312316 Excavation – Earth and Rock 312319 Groundwater Control for Open Cut Excavation 312323 Backfilling 314000 Shoring, Sheeting and Bracing

DIVISION 32 – EXTERIOR IMPROVEMENT

320117 Pavement Repair and Restoration 321300 Sidewalks, Driveways and Curbs 323113 Chain Link Fencing and Gates 329200 Restoration by Sodding or Seeding

DIVISION 33 – UTILITIES

330130.16 Televising and Inspection of Gravity Sewer Systems

330201 Roadway Crossings by Open Cut 330502 High Density Polyethylene (HDPE) Pipe and Fittings 330503 Polyvinyl Chloride (PVC) Pipe and Fittings 330504 Ductile Iron Pipe (DIP) and Fittings 330518 Laying and Jointing Buried Pipelines 330520 Pipe Removal and Abandonment

330523.13 Horizontal Directional Drilling

330523.16 Jacking, Augering and Mining

331200 Water Valves and Appurtenances 331619 Hydrants 333200 Pump Stations 333313 Wastewater Valves and Appurtenances 333913 Sewer Manholes 334713 HDPE Irrigation Pond Liner

DIVISION 40 – PROCESS INTERCONNECTIONS

409500 Fiber Optic Communication Standards

TABLE OF CONTENTS Page 4 of 6

SECTION 3 UTILITIES DETAIL DRAWINGS

Drawing Revision No. Title Date

General Details

G-1 Unpaved Area Trench Backfill Detail 04/2006

G-2 G-2A

Paved Area Trench Restoration Detail for Private Roads

State Road, Major County Road, and Numbered County Road Flowable Fill Road/Trench Restoration

07/2018

G-2B Road and Trench Restoration for Local Roads 07/2018 G-3 Pipe Separation Detail 07/2018 G-4 Pipe Conflict Detail 04/2006 G-5 Jack and Bore Detail 08/2008 G-6 Thrust Block Detail for Existing A / C Pipe 04/2006 G-7 Typical Valve Setting Detail 07/2018 G-8 Typical Horizontal Directional Drill (HDD) Under a Roadway 07/2018 G-9 Typical Subaqueous Horizontal Directional Drill (HDD) 07/2018 G-9A Subaqueous Water Main Valve Detail 07/2018 G-10 Pipe Restraint Schedule 01/2025 G-11 Vehicular Guard Post Detail 07/2018

G-12 IT Fiber-Optic Telecommunications Detail 01/2025

Drawing No.

Title

Revision Date

Non-Potable Irrigation Water Details

NP-1

NP-2

Standard Non-Potable Irrigation Water Non-Telemetry Meter Assembly Service Connection 3” and Larger Typical Irrigation Service Meter Setting Detail for Connection

To Irrigation Main 05/2009 NP-3 Not Used

NP-4 Reuse, Raw, and Supplemental Water Air Release Valve Detail 05/2009 NP-E1 Reuse System Standard Service Connections Open/Close

Valve Single Control Panel Site General Note and Keynotes 04/2006 NP-E2 Standard Irrigation Water Meter Assembly 3” and Larger - Telemetry 07/2018 NP-E3 Reuse System Standard Service Connections Open/Close

Valve Single Control Panel Site Layout & Elementary 08/2008 NP-E4 Reuse System Standard Service Connections Open/Close

Valve Single Control Panel Site Open/Closed MOV

Control Diagram 04/2006 NP-E5 Reuse System Standard Service Connections Open/Close

Valve Single Control Panel Site Electrical Equipment Elevations 08/2008 NP-E6 Reuse System Standard Service Connections Open/Close Valve

Single Control Panel Site Level Transducer Mounting Details 08/2008 NP-E7 Reuse System Standard Service Connections Open/Close

Valve Single Control Panel Site Electrical Details 08/2008 NP-E8 Reuse System Standard Service Connections Open/Close

Valve Single Control Panel Site Electrical Details 04/2006 NP-E9 Reuse System Standard Service Connections Open/Close

04/2006

TABLE OF CONTENTS Page 5 of 6

Valve Single Control Panel Site Typical RTU Antenna Tower Details

08/2008

Water Details

W-1 Temporary Blowoff Assembly with Bacterial Sample Point Detail 01/2014 W-2 Automatic Water Main Flushing Device Detail 01/2014 W-3 Fire Hydrant Detail 01/2025 W-4 Connection to Existing Water Main Detail (Gap Configuration) 07/2018 W-5 Potable Water Air Release Valve Detail 08/2008

W-6 W-7 W-8

Permanent Bacterial Sample Point Detail Not Used 2-1/2” and Smaller Fire System Detector Check Assembly Detail

01/2025

07/2018

W-9

W-9A

W-10

Temporary Backflow Preventer and Fire Protection Meter Tie-In Assembly Alternate Temporary Backflow Preventer and Fire Protection Meter Tie-in Assembly Not Used

01/2009

01/2009

W-10A W-11

Not Used 3” and Larger Fire System Detector Check Assembly Detail

W-11A

W-12

4” Through 10” Only Compact Fire System Detector Check Assembly Detail Typical Short and Long Side Water Service Meter Setting Detail for Connection to Water Main

07/2011

01/2025 W-12A Service Connection Sizing Chart and Notes 01/2025

W-13 W-14

3” and Over Potable Water Meter Assembly Detail 4” and Over Potable Water Fire and Domestic Meter Assembly Detail

01/2025

01/2025

W-14A W-15 W-16

Maintenance Driveway for Water Meters 3” and Larger Not Used Fire Service Dual Detector Check Assembly Over 10” Fire Main Detail (Dual 8” Assemblies)

07/2011

Wastewater Details

WW-1 Force Main Connection to Gravity Sanitary Sewer Detail 04/2006 WW-2 Private Force Main Connection to County Force Main Detail 07/2018 WW-3 Precast Reinforced Concrete Manhole Detail 01/2025 WW-4 Shallow Manhole Detail 01/2025 WW-5 Drop Manhole Detail 01/2025 WW-6 Manhole Ring and Cover Detail 01/2025 WW-7 Pump Station Detail – Profile 01/2025 WW-7A Pump Station and Wastewater Details 01/2015 WW-7B Pump Station Concrete Details 01/2015 WW-7C Pump Station and Wastewater Details 07/2018 WW-7D Private Grinder Pump Station Detail 01/2025

07/2018 07/2018 07/2018

07/2018

07/2018 08/2008 08/2008 08/2008 07/2018

08/2008

TABLE OF CONTENTS Page 6 of 6

WW-8 Pump Station Detail – Plan 01/2025 WW-8A Community Pump Station with Generator Detail – Plan 01/2025 WW-8B Community Pump Station with Diesel Pump Detail – Plan 01/2025 WW-9 Pump Station Control Panel Detail 01/2025 WW-9A Community Pump Station Control Panel Detail –

VFD Station with Generator 01/2025 WW-9B Community Pump Station Control Panel Detail –

Non-VFD Station with Generator 01/2025 WW-9C Pump Station Lightning Protection Details 01/2015 WW-9D Community Pump Station – Riser Diagram with Generator Backup 01/2015 WW-9E Community Pump Station – Riser Diagram with Diesel Backup Pump 01/2015 WW-10 Sewer Connection Details – Property, ROW or Easement Line 05/2009 WW-11 Sewer Clean-out Detail - Paved Areas 07/2018 WW-12 Sewer Clean-out Detail - Non Paved Areas 01/2014 WW-13 Force Main Air Release Valve Detail 01/2015 WW-14 Not Used

WW-15 Typical Flow Line Channels Detail 04/2006 WW-16 Double Sewer Clean-out Detail 05/2009 WW-17 Telemetry Antenna Mount Detail 08/2008 WW-18 Grease Interceptor 08/2008 WW-18A Grease Interceptor Tables 04/2006

SECTION 4 APPENDICES

Appendix A Utility Deviation Form

Appendix B Water Meter Sizing Form

Appendix C Final Waiver of Liens - Conveyance of Utilities Facilities to County

Appendix D Utilities Conveyance Checklist

Appendix E Vendor and Manufacturer Approval Application Form

Appendix F County Approved Product List

Appendix G Approved Backflow Devices

Appendix H Basic User Application & Agreement for Delivery and Reuse of IQ Water

07/2018 07/2018 07/2018 07/2018

01/2015

01/2015

SECTION 1

DESIGN CRITERIA

For the latest revisions to the Design Criteria, please visit:

https://www.colliercountyfl.gov/your-government/divisions-f-r/public-utilities-planning-and-project-management/utilities-standards-manual

Collier County Public Utilities Engineering and Project Management Resources Webpage.

https://www.colliercountyfl.gov/your-government/divisions-f-r/public-utilities-planning-and-project-management/utilities-standards-manual https://www.colliercountyfl.gov/your-government/divisions-f-r/public-utilities-planning-and-project-management/utilities-standards-manual

TABLE OF CONTENTS

COLLIER COUNTY WATER-SEWER DISTRICT

UTILITIES STANDARDS MANUAL

SECTION 1

Table of Contents

SECTION 1 DESIGN CRITERIA

1.1 Pipeline Separation Requirements

1.2 Horizontal Directional Drilling

PART 2 POTABLE WATER AND NON-POTABLE IRRIGATION WATER

SYSTEMS

2.1 Pipe and Fitting Material

2.2 Design of Pipeline Size and Location

2.2.1 Water Pipeline Sizing Criteria

2.2.2 Distribution System Layout

2.2.3 Valve Locations

2.3 Conflict Crossings

2.3.1 Subaqueous Canal Crossings

2.4 Fire Service Systems

2.4.1 Fire Service Meters for Residential Systems

2.4.2 Fire Service Meters for Commercial and Other Non-residential Systems

2.5 Connections to Collier County Facilities

2.6 Water Services

2.6.1 Service Pipelines

2.6.2 Water Meters

2.7 Air Release Assemblies

2.8 Concrete Collars

2.9 Testing and Clearance Procedures

2.9.1 Pigging

2.9.2 Flushing

2.9.3 Line Filling

2.9.4 Chlorination

2.9.5 Post Chlorination Flushes

2.9.6 Bacteriological Samples

3.1.2 Design of Pipeline Size, Depth and Location

TABLE OF CONTENTS

3.1.3 Gravity Sewer Main Extension Stubs

3.1.4 Gravity Sewer Laterals

3.1.5 Manholes

3.2 Force Mains

3.2.1 Pipe and Fitting Materials

3.2.2 Design of Pipeline Size and Location

3.2.3 Valves

3.2.4 Force Main Extension Stubs

3.2.5 Air Release Assemblies

3.3 Wastewater Pump Stations

3.3.1 Private Pump Stations

3.4 Connections to Collier County Facilities

3.5 Tests and Inspections

3.6 Wastewater Pump Station Asset Management

DESIGN CRITERIA Page 1 of 21

1.1. Pipeline Separation Requirements

Potable water pipelines shall be separated from wastewater lines and /or stormwater lines by a minimum clear vertical distance of 18 inches and a horizontal distance of 10 feet. The 18 inches minimum vertical separation distance does not apply to separations of sewer laterals and potable water pipeline installations. 57 stone shall be utilized for separation between wastewater lines and stormwater lines if separation is less than 18 inches.

Non-potable irrigation water pipelines two inches and larger shall be separated from potable water

2 mains, wastewater lines and/or stormwater lines by a minimum clear vertical distance of 18 inches and a horizontal distance of five feet as shown in the Utilities Detail Drawings.

Wastewater lines shall be separated from stormwater lines by a minimum clear vertical distance of 18 inches and a horizontal distance of five feet. All pipeline crossings with vertical clearance less than 18 inches shall be made using a full 20 foot length of thickness Class 200 AWWA C900 PVC pipe or Class 235 AWWA C905 PVC pipe, centered on the crossing. The sewer pipe in these locations shall be back-filled with bedding stone or sand to a height six inches above the crown of the pipe.

Potable water, non-potable irrigation water, and wastewater pipelines shall be separated from

4 telephone, power, cable and gas sleeves/lines and any other underground utilities by a minimum clear vertical distance of 18 inches and horizontal distance of five feet.

Potable water, non-potable irrigation water, and wastewater lines shall be separated from raw

5 water mains by a clear vertical distance of 18 inches and a horizontal distance of 10 feet.

Stormwater lines shall be separated from raw water mains by a clear vertical distance of 18 inches and a horizontal distance of five feet.

Wastewater lines shall be separated from public drinking water supply wells by a horizontal 6 distance of 100 feet. Wastewater lines shall be separated from private drinking water supply wells by a horizontal distance of 75 feet.

7 Also see separation requirements in Section 020500, 1.3.F.

8 Potable water mains, non-potable irrigation water mains, and wastewater force mains shall have a minimum setback of five feet from the centerline of the pipe to residential roadways, curb and gutters, structures, fence posts, walls, or plantings not specifically allowed by ordinance. Also, potable water mains, non-potable irrigation water mains, and wastewater force mains shall have a minimum setback of 10 feet from the centerline of the pipe to a building and shall not be placed beneath any existing or proposed building or structure. Additionally, potable water mains, non-potable irrigation water mains, and wastewater force mains shall have a five-foot minimum setback from the center line of pipe to the edge of a right of way (ROW) or County utility easement (CUE), unless there is an adjacent CUE.

1.2. Horizontal Directional Drilling

When horizontal directional drilling is used on any capital improvement project for the Public Utilities Department, detailed construction drawings shall be prepared by a Licensed

DESIGN CRITERIA Page 2 of 21

Professional Engineer registered in the State of Florida which, at a minimum, show the following information:

1. The proposed entry and exit point of the drill

2. The overall geometry of the drill include entry and exit angles, minimum and maximum bending radii, and the horizontal and vertical path of the drill

3. The minimum and maximum depth of the drill

4. Minimum separation distances between adjacent pipes, structures, watercourses, etc.

5. The estimated pull back force required for the drill

The design Engineer shall calculate the estimated pull back force required for the directional drill and ensure that it does not exceed the maximum allowable safe pull back forces as defined by the Plastic Pipe Institute’s (PPI) Handbook for Polyethylene Pipe, Chapter 12 – Horizontal Directional Drilling.

Safe Pull Back Force, lbs.

Size Nom. OD DR 9 DR 11

4 4.800 8,217 6,876

6 6.900 16,980 14,208

8 9.050 29,210 24,442

10 11.100 43,942 36,770

12 13.200 62,141 51,998

14 15.300 83,486 69,859

16 17.400 107,977 90,353

18 19.500 135,613 113,478

20 21.600 166,395 139,235

24 25.800 237,395 198,647

30 32.000 365,201 305,592

36 38.300 N.A. 437,764

Source: Table 6, “PE4xxx 12 hour Pull DIPS Size”, Handbook for Polyethylene Pipe, Second Edition, Plastic Pipe Institute

DESIGN CRITERIA Page 3 of 21

PART 2 POTABLE WATER AND NON-POTABLE IRRIGATION WATER SYSTEMS

All potable water, non-potable irrigation (including reclaimed or reuse) water and raw water pipe, material, equipment and appurtenances shall be new, and shall conform to Section 2, Technical Specifications and Section 3, Utilities Detail Drawings.

All material and equipment designed or used in connection with a potable (drinking) water system shall conform to the requirements of the National Sanitation Foundation (NSF) Standard 61, “Drinking Water System Components – Health Effects” and the Reduction of Lead in Drinking Water Act amending the Safe Drinking Water Act.

2.1 Pipe and Fitting Material

All potable water or non-potable irrigation water pipelines shall be constructed of ductile iron, HDPE, or PVC pipe, and shall utilize pipe meeting the requirements of the Technical Specifications. HDPE shall not be used for pipelines with service connections.

All pipe and pipe fittings shall contain no lead pursuant to the Reduction in Lead in Drinking Water Act. All pipe and pipe fittings installed shall be color coded or marked in accordance with F.A.C.

62-555.320(21)(b)3.

Potable water pipelines shall be blue in color. Raw water pipelines shall be white in color. Non-potable irrigation, reclaimed, and reuse water pipelines shall be pantone purple in color.

All Ductile Iron buried water main pipelines shall have blue stripes applied to the pipe wall. If tape or paint is used to stripe pipe during installation, the tape or paint shall be applied in a continuous line that runs parallel to the axis of the pipe and that is located along the top of the pipe.

All buried water pipelines and mains, except those installed by horizontal directional drilling or jack-and-bore methods, shall be marked using metalized warning tape for HDPE and PVC pipe and non-magnetic for ductile iron pipe. The locator tape shall be placed in the pipe trench two feet below grade or one-half the pipe’s bury, whichever is less, and labeled “potable water” or “non-potable water” as applicable. Horizontal directional drilling shall include installation of at least two locating tone wires as described in the Technical Specifications.

All water main aerial crossings shall be Pressure Class 350 flanged ductile iron pipe and shall be coated on the exterior using a suitable grade of appropriately colored, field applied (or factory applied with field touch-up as required) epoxy coating. Potable water mains shall be painted Federal Safety Blue. Raw water mains shall be painted white. Non-potable irrigation, reclaimed, and reuse water mains shall be painted Pantone Purple 522C. Specific colors shall be subject to approval of the County Manager or designee. All nuts and bolts used in aerial crossings shall be stainless steel. All canal, river, or creek crossings shall be aerial, unless otherwise approved by the County Manager or designee. Aerial crossings shall be designed to incorporate valves or other flow regulation devices in accordance with F.A.C. 62-555.320(21)(b). Aerial crossings shall be designed to maintain existing or required navigational capabilities within the waterway and to reserve riparian rights of adjacent property Owners. Submit aerial pipe and flange computations, including support and anchor design, for review. The submittal must be signed and sealed by a Florida registered Licensed Professional Engineer.

DESIGN CRITERIA Page 4 of 21

Words stricken are deletions; words underlined are additions.

2.2 Design of Pipeline Size and Location

2.2.1 Water Pipeline Sizing Criteria

All potable water mains to be maintained by the COUNTY shall be a minimum of six inches in diameter. Hydraulic calculations shall show the capability of maintaining required fire flow (according to NFPA 1) plus potable demand as required below.

Water systems shall be designed to maintain adequate flows and pressures and water quality standards as established by Florida Department of Environmental Protection (FDEP). The following criteria shall be used to design water systems and analyze model chloramine dissipation:

A. Minimum residual node pressure within a proposed project system shall be 20 psi under peak hour with fire flow conditions, assuming a source pressure verified by the results of a fire flow test not older than six months. The design source pressure shall be calculated as follows: Pd = Ps - (Ps - Pr) (D / Q)1.85, where Pd is the design source pressure (i.e. theoretical residual pressure for the design demand), Ps is the static pressure from the fire flow test, Pr is the residual pressure from the fire flow test, D is the design demand (i.e. peak hour demand plus required fire flow), and Q is the flow rate from the fire flow test.

B. The design Engineer shall model the proposed system, including all dead ends, for chloramine dissipation and assume a chloramine residual of 2.0 ppm at the entrance point to the project.

C. When estimating potable water demands multiply the estimated wastewater flows from Part 3 Wastewater Collection and Transmission Systems by 1.4.

D. The standard chloramine decay rate is - 0.012 ppm per hour. Using the decay rate and solving for the elapsed time from the initial chloramine level to the minimum chloramine level residual of 0.6 ppm in the following: 0.6 ppm = 2.0 ppm x e^(-0.012 ppm x #hours) => time = 100.33 hours.

The Project Engineer shall submit an analysis to the Growth Management Department as part of the review package, certifying that all points within the proposed system shall maintain a minimum level of 0.6 ppm chloramine residual under the conditions listed above.

Systems unable to meet minimum design requirements or maintain minimum chloramine residual levels shall not be eligible for ownership and maintenance by the COUNTY.

Water mains not designed to carry fire flows shall not have fire hydrants connected to them.

2.2.2 Distribution System Layout

Potable and non-potable irrigation water pipelines and fittings, except for service piping, shall have a minimum depth of 30 inches and a maximum depth of 48 inches below finished grade.

Water distribution systems shall be designed so that all systems are located adjacent to, and are accessible from, paved or unpaved roadways so as to allow access for short and long term maintenance, repair, and/or replacement of such system.

DESIGN CRITERIA Page 5 of 21

New potable water distribution systems shall be designed as “looped” systems to avoid dead ends. A “looped” system should have two independent connections off the source main (unless served by a master meter). If two independent connections aren’t possible, a stub out for future development in a location agreed to by the County shall be provided in an easement or ROW to the limits of the project. In cases where no nearby water main is available for looping, a County approved automatic flushing device (AFD) shall be provided at each dead end of a water main.

An AFD shall also be provided near the mid-point of a looped water main unless the design engineer can provide information to confirm that the minimum residual chlorine will be maintained based on the predicted water consumption at the time of County acceptance of the water main.

At no time shall a dead end serve more than 149 residential units. On dead end water mains that do not have service connections, no automatic flushing devices are required.

Installation of the automatic flushing devices shall be designed so as to prevent erosion of nearby areas as well as prevent silt and sediment transport.

All commercial facilities must be metered separately from residential facilities with the exception of those commercial facilities that are within a master metered residential development and designed for the exclusive use of the residents within such development. Master meters and backflow assemblies shall be located within a County Utility Easement (CUE), which shall be located outside of, but contiguous to, the road Right-Of-Way (ROW).

Deviations from these design parameters shall only be approved in cases where such installations can be shown to be necessary in order to comply with minimum chlorine residuals or other FDEP quality parameters, unless otherwise approved by the County Manager or designee. In such cases, the water main shall be located within a separate tract of land or CUE dedicated to the Water-Sewer District. Such tracts shall be delineated with fencing, landscaping, signage, pavement, or other methods determined to be acceptable to the Water-Sewer District. All such installations shall require approval from the Water-Sewer District. In addition, an agreement shall be provided authorizing the COUNTY to traverse all private property outside of the CUE for the purpose of access, maintenance, repair, and/or replacement of such main. The agreement shall also hold the COUNTY harmless for any damage to the private property resulting from the COUNTY’s maintenance, repair and/or replacement activities within or outside of the CUE.

The encasement of potable water mains in concrete shall only be made after review and approval by the County Manager or designee.

2.2.3 Valve Locations

Valves shall be provided at all intersections and branches in sufficient numbers as to allow for zone isolation of distribution areas in order to limit impacts of line breaks and service disruptions to customers. In-line gate valves shall be provided in accordance with AWWA requirements and at no greater than 1,000 foot intervals when no other valves exist within internal distribution systems. All gate valves 20 inches and smaller shall be of the resilient-seated wedge type, conforming to AWWA C509 or C515, or latest revisions thereof. All gate valves or plug valves 30 inches or larger shall have a concrete slab placed under the valve to help distribute the total weight of the valve and reduce line sagging. See Technical Specifications 331200 2.3.A.2.All valves shall be furnished with valve boxes extending to finished grade as shown in the Utilities Detail Drawings (G-7).

DESIGN CRITERIA Page 6 of 21

2.3 Conflict Crossings

All storm sewer, non-potable irrigation water mains, and wastewater transmission system conflicts with water systems or portion(s) thereof that must be crossed shall be performed using AWWA C900 Class 200 or C905 Class 235 PVC with ductile iron fittings. All fittings shall be adequately restrained using retainer glands, stainless steel rods, or see County Approved Product List, Appendix F. Transitional fittings, when approved by the County Manager or designee, shall be located as close to the point of conflict as possible. Air release assemblies shall be provided as specified in Subsection 2.7 herein, below. Gradual deflection of the water line in lieu of using fittings to clear the conflict shall not be permitted if cover exceeds five feet. A minimum vertical clearance of 18 inches shall be provided between the water main and bottom of conflict. A deviation form will not be required for separation of sewer laterals and potable water pipeline.

Maximum depth of 48 inches below final grade is exempt when dipping under conflicts in which case the water main shall be returned to normal depth within 10 feet on either side of the conflict or as soon as possible using a fitting of 45 degrees or less.

2.3.1 Subaqueous Canal Crossings

Potable and non-potable subaqueous crossings shall be designed to a minimum depth of 36 inches below the design or actual bottom, whichever is deeper, of a canal and other dredged waterway or the natural bottom of streams, rivers, estuaries, bays, and other natural water bodies.

If not practical to design the project with a minimum 36 inch cover, alternative construction features must be installed to ensure adequate protection of the pipeline.

All subaqueous crossings must be introduced/discussed at a plan Pre-Submittal Conference. It is important that representatives from the Water Department or Wastewater Department and GMD be present for approval at the plan Pre-Submittal Conference.

A permanent easement is needed when there is no room available in the ROW.

When crossing watercourses, the following shall be provided:

A. The pipe shall be of special construction (HDPE), having welded (butt fusion) watertight joints;

B. Valves shall be provided at both ends of the subaqueous crossing for isolation, testing, or repair of the line. The valves shall be easily accessible and not subject to flooding. The valve closest to the supply source shall be in a below grade vault as per FDEP requirements and constructed to meet FDOT standards. All welding shall be done above ground. Water, reclaimed water, and wastewater lines shall have two air release valves between the two valves;

C. Permanent taps shall be made on each side of the valve within the manhole to allow insertion of a small meter to determine leakage and for sampling purposes.

The taps will allow for a three quarter inch meter to be attached;

D. The HPDE pipe shall be encased in HDPE DR11 casing;

E. Pressure test according to Section 022501;

F. Conform to HDPE Specifications, Section 330502.

DESIGN CRITERIA Page 7 of 21

Warning signs shall be placed along the banks of canals, streams, and rivers clearly identifying the nature and location of subaqueous crossings. The signs shall state the type of pipeline and the depth of pipeline below design or natural bottom of the water body. Warning sign shall be aluminum and have minimum dimensions of four feet wide by two feet high with a minimum of two inch lettering.

2.4 Fire Service Systems

All private fire service systems for sprinkler systems, wet standpipe systems, and privately-owned or controlled distribution systems shall be installed with an appropriate back flow prevention device with a leak detection meter. The backflow device shall be sized by the Developer’s Engineer and shall be purchased, owned and maintained by the private service owner. The COUNTY requires all privately-owned backflow devices to be certified at the time of installation and on an annual basis by a Certified Backflow Tester (University of Florida, TREEO Center, or equivalent certification program). The results shall be submitted to the County Manager or designee. The County Manager or designee will require all privately owned metering devices to be certified for accuracy at the time of installation. Fire meter devices using a three quarter to two inch metering device shall be re-calibrated to manufacturer’s specifications every five years, replaced every 10 years, or replaced immediately upon meter failure. Fire meter devices greater than two inches shall be re-calibrated to manufacturer’s specifications every five years and replaced immediately upon meter failure. The County Manager or designee will inform the owner by mail prior to the due date. Private owner(s) shall submit certification results to the County Manager or designee within 60 days of the due date.

2.4.1 Fire Service Meters for Residential Systems

Residential projects such as, but not limited to, single family, multi-family condominiums, trailer parks, mobile home parks, etc. utilizing a master meter shall pass all fire flow through such meter.

The meter shall be sized to pass the domestic coincident draft plus rated fire flow at the AWWA pressure loss specifications.

2.4.2 Fire Service Meters for Commercial and Other Non-residential Systems

Commercial projects such as, but not limited to, shopping centers, malls, retail, and industrial buildings shall pass all fire flow through a potable master meter or have a separate fire service connection to the water distribution main. The Fire Service meter and isolation valves shall be extended above final grade as shown in the Utilities Detail Drawings. For meter reading purposes, metering devices shall lie within a County Utility Easement (CUE) that shall be dedicated separately to the Board for the appropriate Water-Sewer District or in conjunction with the easements for any on-site utility system(s).

The Owner shall purchase and install an approved backflow device with a leak detection meter at no expense to the Water-Sewer District.

2.5 Connections to Collier County Facilities

Connections to existing COUNTY water mains shall be constructed as described in Section 2, Technical Specifications and shown in Section 3, Utilities Detail Drawings. These details shall apply to all connections to existing systems including, but not limited to, hot taps and extensions from existing dead end systems. A section of pipe shall be inserted into the gap to connect the

DESIGN CRITERIA Page 8 of 21

Words stricken are deletions; words underlined are additions.

new construction to the existing systems for the purpose of accomplishing line flushing.

Immediately upon completion of the flush, the connection shall be removed. A jumper shall be installed (see detail W-4) until final connection is authorized by the County Manager or designee and approved by the FDEP at the completion of construction and after satisfactory completion of all test procedures and bacterial clearance of the new water system or portion(s) thereof.

Steam condensate, cooling water from engine jackets, or water used in conjunction with heat exchangers shall not be returned to potable water mains.

2.6 Water Services

2.6.1 Service Pipelines

All building lots and parcels of land within a development shall be provided with a means for potable water service and non-potable irrigation water service by the developer. Accessibility to lands on the opposite side of a roadway shall be provided by the installation of water service conduits. Conduits shall be a minimum of four inch diameter PVC, with a minimum cover of 24 inches. Such pipelines shall extend at least five feet past the edge-of-pavement or back of curb where provided and shall run from lot corners on one side of the street to a lot corner on the opposite side and shall be capped and marked with an electronic marker (see County Approved Product List, Appendix F). Service pipelines shall be polyethylene of a minimum of one-and-one-half inches in diameter. Service pipelines under pavement shall be in conduits in all scenarios for County owned services.

2.6.2 Water Meters

Water meters shall be properly sized, based on the total calculated service demand for water, according to the Collier County Water Meter Sizing Form (Appendix B). The properly sized water meter shall be installed according to specifications and standards. Any deviation from the determined meter size shall require an approved Deviation Request.

All water meters larger than two inches shall be installed above ground. These meters shall be equipped with a backflow preventer and installed by the Contractor at his expense. The type of backflow device utilized shall be on the Water Department’s list of Approved Backflow Devices (Appendix G).

All large potable meters shall be purchased by the owner and installed by the Developer's Contractor. The systems’ master meter assemblies shall be built in accordance with the current design details shown in the Utilities Detail Drawings. Alternate designs may be permitted upon submission of design details for review and approval. The location of all meters (potable and non-potable) shall be clearly shown on the construction plans.

All potable water and/or non-potable irrigation water meters shall be equipped to accept the COUNTY’s Automatic Meter Reading (AMR) units shown on the Utilities Detail Drawings. Two inch and smaller meter units will be installed by the COUNTY. On meters three inches and larger, contact the Water Distribution office to determine the necessary AMR equipment for the meters.

All meters shall be turned over to the technician performing the full bore flush prior to the acceptance of the meter.

Temporary meters may be applied for by phoning the Water Distribution office between 7:30 a.m.

and 4:00 p.m., Monday through Friday, under the conditions provided by the ordinance.

DESIGN CRITERIA Page 9 of 21

Temporary meters shall be installed for the purpose of supplying construction water to meet the COUNTY requirement for new water line construction as listed below and require a minimum of 48 hours advance notice. All backflow devices shall be reduced pressure type and shall be certified as required by the ordinance, provided by the Contractor, and be of an approved type.

Temporary meters shall be installed as shown in the Utilities Detail Drawings.

2.7 Air Release Assemblies

Air release assemblies shall be installed at all high points on all County owned mains where air will not be released through service lines, and on both sides of conflict crossings (unless it can be demonstrated by hydraulic analysis that air pockets will not accumulate at individual high points).

In cases where reversal of flow is not expected, the air release assembly shall be provided at high points and on the upstream side of conflict crossings. A high point is defined by the hydraulic gradient and is considered the upper end of any pipe segment that slopes up to the hydraulic gradient or runs parallel to it. The design engineer shall review and apply the pertinent provisions of AWWA-C512 and AWWA Manual of Water Supply Practices M51, “Air-Release, Air Vacuum, and Combination Air Valves”. Air valves shall be suitable for use with potable water or non-potable irrigation water. For all water or non-potable irrigation water mains 14 inches and smaller, see the County Approved Product List, Appendix F. For potable water or non-potable irrigation water mains 16 inches and greater, the design engineer shall be responsible for air valve selection and sizing. An isolating valve shall be provided below the air valve to allow removal of the valve assembly. All air release assemblies shall be installed as shown in the Utilities Detail Drawings.

2.8 Concrete Collars

All gate valve boxes, air release assemblies, and permanent sample points outside paved surfaces shall be provided with a concrete collar set to finish grade. Such collar(s) shall have a minimum thickness of six inches and the outside dimension of the pad shall be as shown in the Utilities Detail Drawings. Concrete shall have minimum compression strength of 3000 psi at 28 days.

2.9 Testing and Clearance Procedures

All water systems or portion(s) thereof shall be subjected to pressure testing and disinfection conforming to the AWWA Standards C600, C602, C605, and C606, or latest revision(s) thereof.

Under no circumstances shall any person other than an authorized COUNTY Water Department employee operate valves, make service taps or otherwise tamper with COUNTY Distribution system or portion(s) thereof. Failure to comply with these requirements will place such individual in jeopardy of legal action by the COUNTY pursuant to US Code, COUNTY Ordinances and/or Resolutions in effect at the time of the violation.

2.9.1 Pigging

All lines larger than 12 inches in diameter shall be pigged with a new pig to clear debris prior to flushing. Refer to specifications section 025400, 3.1.

DESIGN CRITERIA Page 10 of 21

2.9.2 Flushing

Full-bore flushing shall be coordinated with COUNTY Water Distribution personnel and shall require 48-hour notice to Water Distribution prior to performance. During flushing the Contractor will be permitted to install a spool piece to close the gap as shown in the Utilities Detail Drawings.

Upon completion of such flushing, connection to the COUNTY’s systems or portion(s) thereof shall be returned to the configuration shown in the Utilities Detail Drawings. Refer to specifications section 025400, 3.1.

2.9.3 Line Filling

Lines under construction shall be filled utilizing water supplied by the temporary meter and such filling shall be performed by the Contractor in accordance with required procedures including those outlined herein below.

2.9.4 Chlorination

Line chlorination shall be performed utilizing water supplied by the temporary meter for the purpose of chlorinating newly constructed potable water lines. Such procedure shall be performed by the Contractor, and shall require 48-hour notice to Water Distribution prior to performance.

2.9.5 Post-Chlorination Flushes

The Contractor using the temporary construction meter shall perform Post Chlorination Flushes.

All chlorine injected into the system for disinfection shall be flushed from the system at least 24 hours prior to collection of Bacteriological Samples.

The initial flush volume equal to the volume of water main being flushed shall be captured and properly disposed of, such that no chlorinated water enters into a storm water system and/or is discharged to the ground; all regulatory requirements for the protection of the environment shall be met.

2.9.6 Bacteriological Samples

Bacteriological sample collection shall be performed utilizing water supplied by the temporary meter in order to supply pressure during sample collection of newly constructed potable water lines. Such procedure shall require 48-hour notice to Water Distribution prior to performance.

These procedures shall be performed on Monday through Thursday, excluding holidays, unless otherwise directed by the County Manager or designee.

All new potable and raw water systems shall be subject to bacteriological sample collection and testing. Sample collection and laboratory analyses shall be performed by COUNTY certified laboratory technicians only. The Contractor or his agent shall provide the equipment required in Section 2, Technical Specifications, to supply a continuous sample at the points indicated on the engineer’s construction drawings. Sample points having a one day total of 200 non-coliform bacteria or greater shall be considered as failed samples. Samples containing one coliform bacteria or greater shall be considered as a failed sample. All potable water piping up to and including 8-inches in diameter shall pass bacteriological tests within sixty (60) days of being

DESIGN CRITERIA Page 11 of 21

Words stricken are deletions; words underlined are additions.

placed in service. All potable water piping greater than 8-inches shall pass bacteriological tests within forty-five (45) days of being placed in service.

Sample collection and sample laboratory analyses costs shall be borne by the developer. For Utilities Capital Projects that are run by the COUNTY for the COUNTY, one set of tests (including water costs) are provided by the COUNTY free of charge and the contractor shall pay for any additional tests.

DESIGN CRITERIA Page 12 of 21

All wastewater pipe, material, equipment and appurtenances shall be new, and shall conform to Section 2, Technical Specifications and Section 3, Utilities Detail Drawings.

Wastewater systems shall be designed to maintain adequate flows and standards as established by Florida Department of Environmental Protection (FDEP), using the equivalent residential connection (ERC) value of 250 gallons per day per residential unit (broken down to 100 gallons per day per person and 2.5 people per household) and F.A.C. 64E-6.008 for non-residential. The peak hour factor shall be determined using the equation:

(18+√population in thousands) (4+√population in thousands)

Populations for non-residential units shall be derived using the estimated average daily flows calculated using Table 1 in Rule 64E-6.008 of the Florida Administrative Code, divided by the average daily flow per capita of 100 gallons.

All wastewater projects shall be designed to preclude the deliberate introduction of storm water, surface water, groundwater, roof runoff, subsurface drainage, swimming pool drainage, air conditioning system condensate water, non-contact cooling water, and sources of uncontaminated wastewater as specified in F.A.C. Chapter 62-610 and comply with Ordinance 2012-13 “Collier County Industrial Pretreatment Ordinance.”

Gravity sewer pipe and materials shall conform to Technical Specifications for polyvinyl chloride (PVC) pipe and fittings. All pipelines shall be green in color.

3.1.2 Design of Pipeline Size, Depth and Location

All gravity sewer mains constructed shall be a minimum of eight inches in diameter. The minimum depth of cover over all gravity sewers shall be 36 inches. All gravity sewer designs shall consider buoyancy of sewers, and appropriate construction techniques to prevent floatation of the pipe where high groundwater conditions are anticipated.

All gravity mains eight inches or larger are allowed to be core bored into existing manholes. The manhole must be restored as per Section 333913.

This is the start of the file's text. The full file is on GovTribe.

File details come from the government source that posted it. Updated .