Attachment_1_-_Statement_of_Work_(Amended).pdf

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Attached to
RAF Lakenheath Hospital BMS Federal contract opportunity
Solicitation number
FA5587-17-Q-0073
Issued by
Department of the Air Force United States Air Forces in Europe - Air Forces Africa

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Statement of Work (Amended)

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Statement of Work (SOW)

RAF Lakenheath Hospital

BMS Version 2017

GENERAL INFORMATION

1.0 Description of Services: The contractor shall provide/furnish all management, tools, supplies, equipment, labor and transportation necessary to accomplish work required to replace the BMS head end equipment to include the PC and Server components, reload all controller software, replace failed controllers and configure/balance the system so air is supplied individually to each Operating

Room.

2.0 General Location: This project will be completed in building 916 and 932 the

BMS hub and main Hospital facility located on Royal Air Force (RAF) Station

Lakenheath, Suffolk, United Kingdom, located 70 miles northeast of London and

25 miles from Cambridge. The contractor shall coordinates with the authorized government representative for access to the facility.

Work Hours: The contractor will be provided access 24hrs a day, Monday through

Sunday to perform services.

CONTRACTOR REQUIREMENTS

3.0 Technical Requirements/Tasks: Survey the 4 OR’s and the facilities identified in the attached document to provide a cost to undertake the following works:

Immediate focus will be to rebuild the database in the first instance to get all 4 OR rooms back to operational temperature and humidity parameters.

Upgrade the two existing workstation dongles keys from version 1.93 to 2.02

(14-7-2017) and re-license

Supply and install two new MS Win 10 workstation computers to the correct specification to operate V2.2 Continuum Cyber station operating system (Base unit and monitors).

Supply and install one new Microsoft SQL 2014 SP1 Standard Edition server software and hardware computer to the correct specification for the above upgrade (with monitor). Provide the server with additional backup/mirrored hard drive and configure.

Provide a UPS for each of the two workstations and the server.

Write BMS sequence of operations to prevent rapid cooling in ORs that can trigger condensation events. The contractor shall ensure that the BMS sequence allows for gradual temperature control to prevent condensation and is fully operational.

Provide all components necessary to allow proper backup and protection from power interruptions.

Provisionally setup the equipment at bldg. 916 and attend site to install.

Reload all controllers and check network software paths are correct and fully operational.

Relink historical links, alarm messages and graphics.

Check and validate the BMS system alarms, users, logging, times & date schedules and graphical links where necessary.

Verify all end devices such as actuators and sensors are operating within specification tolerances.

Ensure all Proportional Integral Derivatives (P.I.D) loops are tuned.

Replace any failed or faulty controllers.

Reconfigure and balance system so air is delivered independently to each of the

4 operating rooms to prevent cross, contamination or shared air scenarios.

Using the supplied points list (attachment 4), replace all relative humidity sensors that are over 12 months old and calibrate accordingly.

Install new pressure monitors for 4 OR’s.

AHU11 has not got its own master controller. The controller for AHU11 was installed by a previous contractor the Family Practice area in building 932 and was linked into the master controller for the operating rooms. During BMS server upgrade AHU11 will need to be included under a separate BMS controller on the server so it operates independent and is not tied to the OR’s master controller.

Insure pressurization is correct for OR’s and provide new test, adjust, and balance (TAB) and TAB report. TAB report shall show full water and balance tests/checks to prove that the OR suites are within temperature range, as identified in appendix B, page 340 identifying temperature levels. TAB Report shall be electronic and sent to 48 CES. Point of contact will be provided after contract award. Additional information regarding Temperature Control, OR Air

Systems and Humidity Control can be found on pages 106, 113 and 114 of the

UFC (appendix B)

Post the program printout in each control enclosure with a copy of the program.

Test and demonstrate to the end user and provide all manuals, certifications and warranties.

Contractor/Engineer(s) shall be licensed and accredited to the Automation and

Control Excellence (ACE) standard or equal.

The BMS shall be compliant with Unified Facilities Criteria (UFC), 4-510-01

(Appendix B). Please refer to Chapter 10 of the UFC identifies the Heating and

Ventilation, and Air Conditioning (HVAC) design requirements for further information. Please refer to Appendix B, page 321-349 of the UFC for Design

Requirements.

Provide at least 16 hours of training to the end user on how to use and troubleshoot the BMS system once installed. The training shall be for five (5) personnel.

BMS VLAN IP Address Install & Setup:

Attend each buildings BMS master and change the existing IP address to the new

VLAN issued addresses and configure each. Please see attachment 4 for IP addresses.

Hardware Specifications: Workstations

PC Components:

1 HP Workstation Z840 - Xeon E5-2620V4 2.1 GHz - 16 GB - 1 TB

1 Operating System: Windows 10 Pro 64

1 x Intel Xeon E5-2620V4 / 2.1 GHz (3 GHz) (8-core)

1 RAM 16 GB (installed) / 256 GB (max) - DDR4 SDRAM - ECC - PC4-

17000

1 hard drive SAS-2 (SAS 6Gb/s);RAID (SATA 6Gb/s)

Server Components:

1 PowerEdge T130/T330 Motherboard MLK

1 Intel Xeon E3-1220 v5 3.0GHz, 8M cache, 4C/4T, turbo (80W)

1 Chassis with up to 8, 3.5" Hot Plug Hard Drives

1 Security Bezel

1 Performance Optimized

1 2400MT/s UDIMMs

2 8GB UDIMM, 2400MT/s, Single Rank, x8 Data Width

1 IDRAC8, Express

2 1TB 7.2K RPM NLSAS 512n 3.5in Hot-Plug Hard Drive

1 PERC H730 Controller, 1GB NV Cache

1 Power Interface Board, T330

1 Standard Heatsink for PE T330

1 DVD+/RW, SATA, Internal

1 Dual, Hot-Plug, Redundant Power Supply (1+1), 495W

1 No Trusted Platform Module

1 On-Board LOM 1gbe Dual Port (BCM5120 GbE LOM)

1 No Raid, H330/H730 for SAS/SATA

Software

1 Performance BIOS Settings

1 No Media Required

1 Windows Server 2012R2 Standard Edition, Factory Installed, No Media, 2

Socket, 2 VMs, NO CALS

1 Microsoft SQL Server 2014 Standard OEM, Includes 5 USER CALs, NFI, With 2012 Media, ENG

1 5-pack of Windows Server 2016, 2012 USER CALs (Standard or

Datacenter)

1 No Systems Documentation, No Open Manage DVD Kit

Additional Information: The process for an upgrade of the Hospital BMS

System front-end may involve the following steps. The contractor is the technical expert, therefore the following steps have been identified, but are not limited to:

Work will be delivered in 2 phases:

o Phase 1: Immediate Priority: rebuild and recommission the BMS data base for the 4 OR rooms.

o Phase 2: Data capture from field controllers to re-build the BMS database for the remaining Medical Group Facilities.

Make a copy of the existing Server database convert data to make it compatible with the latest version of the Continuum Software. The number of steps will be determined by how old the current Continuum is. The converted database will be loaded onto the new server as a foundation of the new

Continuum.

Point data and graphic data is available (Please see Attachments 4 and attachment 5).

Company executing work should be licensed distributor approved by

Schneider-electric

Once the new Server and Workstation are on the hospital network the functionality to all the BMS controllers will need to be checked.

Some of the BMS controllers may need a firmware flash upgrade to operate with the newer Continuum software all software must be compatible.

All of the graphics screens will have to be checked and the links to all the

BMS points will have to be confirmed, and remapped if they have been lost.

A check will have to be made that all the sensors are reading correctly and all controlled devices (pumps, fans, valves, etc.) are operating.

The deliverable will be to provide a 100% accurate BMS database with 100% functionality of the BMS with the OR suites certified to meet operational temperature and humidity standards for hospital operating rooms.

4.0 Period of Performance: Contractor shall complete the work within 14 calendar days for OR’s after approved survey and submittals are received.

Key Deliverables:

Item No.

Deliverable Objective Due

1 Survey Fault Analysis – OR’s and encompassing facilities

Within 7 Calendar

Days

2 Solicitation Submittals Risk Assessment

Method Statement

Safety Plan

Submitted with solicitations, see

RFQ FA5587-17-Q-

0073 for additional information

3 Submittals for proposed equipment Contractor shall submit the cut sheets for the proposed equipment/material

Within 3 work days of the survey

4 Skilled Person

Appointment

For servicing and installation requirements; to maintain compliance with JSP375 vol 3 chap 3 & 4 any task that involves isolation of energized

Provide proof of skilled person appointment prior to electrical or mechanical systems can only be completed by an Appointed

Skilled Person. Contractor should have at least 1 mechanical and 1 electrical skilled person to either complete or supervise works.

any physical work at the site.

5 Completion of physical work Phase 1

(OR Suites)

Replace the BMS head end equipment to include the PC and

Server components, reload all controller software, replace failed controllers and configure/balance the system so air is supplied individually to each Operating

Room.

Completion within

14 calendar days after approved submittals for proposed equipment

6 Completion of physical work Phase 2

(additional buildings – appendix A MDG

Facility List)

Re-build data with BMS controller information for remaining facilities replace failed controllers and configure/balance the system

Within 21 calendar days of completing

OR room requirements

5.0 Security Requirements: The contractor will require access to the installation and government facilities and will be met at gate 8 where picture ID such as a passport or driving license will be required for base entry. Upon entry to the installation the vehicle will be searched which could delay entry up to 1 hour. While on the installation the contractor will be escorted at all times by a member of 48CES/CEO.

Statutory Compliance: The Contractor shall carry out the Works in accordance with Joint Service Publication (JSP 375) volume 3, chapters 2, 3 & 4. The

Contractor shall carry out a Health and Safety Risk Assessment in respect of all tasks and activities that will be carried out under this Contract and shall develop and incorporate all possible risk mitigation measures.

The Contractor shall provide sufficient competent and experienced staff at all times in connection with this Contract. The work shall be executed in a workmanlike manner and to the satisfaction in all respects of the Authority. Unsatisfactory workmanship shall be rectified or replaced as instructed by the Authority at the

Contractor's expense. The Contractor shall, if required by the Authority, provide evidence of a workman's competence and experience.

To be eligible to carry out work activities in connection with JSP 375 Volume 3, all

Skilled Persons and Persons in Charge must be appointed by an appropriate

Authorized Person. To be suitable for appointment Skilled Persons and Persons in

Charge must meet the suitability criteria as described in JSP 375 Volume 3 Chapter

2 (section 7.9.3.1) and any additional requirements identified within the individual

Safe Systems of Work. All Skilled Persons shall have an adequate knowledge of, and within the preceding three years, have received formal training in Emergency

First Aid at Work (EFAW).

Electrical Systems: The Contractor shall familiarize himself with and comply with the MoD JSP 375 Volume 3, Chapter 3 (Electricity) and shall take all other measures necessary for the safe execution of the work. The Contractor shall provide specific details and confirmation of competence of all persons that are proposed to work on electrical installations and equipment within this Contract by completing

DE USF Form DE Ops Int USF 0121. These details will be passed to the

Coordinating Authorized Person (AP) for. The AP Electrical will interview all prospective Skilled Persons and on satisfactory completion of an interview, they will be issued with an Electricity Safety Rule Book and be designated Skilled

Persons (Electrical) for the purpose of this Contract.

Mechanical Systems: The Contractor shall familiarize himself with and comply with JSP 375 Volume 3, Chapter 4 (Mechanical) and shall take all other measures necessary for the safe execution of the work. JSP 375 Volume 3, Chapter 4

(Mechanical Systems). Skilled Persons (Mechanical Systems) must only work on

Mechanical Systems for which they have been appointed. Additional/different training requirements exist for work on Boilers and Pressure Systems, Gas Systems, Medical Gas Pipeline Systems and Dental Air and Vacuum Systems (See Section 6 of JSP 375 Volume 3, Chapter 4 for further guidance). To be eligible for appointment, prospective Skilled Persons (Mechanical Systems) are to meet the requirements of JSP 375 Volume 3 and are to have an appropriate qualification in a relevant discipline. The AP Mechanical will interview all prospective Skilled

Persons and on satisfactory completion of the interview, they will be issued with a

Safety Rule Book and be designated Skilled Persons Mechanical for the purpose of this Contract.

Confined Spaces: No confined space entry is anticipated but is required then compliance with JSP 375 volume 3 chapter 4 will apply.

Working at Height: No working at height is anticipated then compliance with JSP

375 volume 3 chapter 4 will apply.

Statutory Requirements: In executing the Contract, the Contractor will comply with all relevant statutory regulations, including but not limited to the following:

Unified Facilities Criteria (UFC) 4-510-01, 1 May 2016

The Health and Safety at Work Act 1974

The Management of Health and Safety Regulations 1992

The Construction (Design and Management) Regulations 2007 (CDM)

The Electricity at Work Regulations 1989

The Hazardous Waste Regulations 2005

Workplace (Health, Safety and Welfare) Regulations1992

Working at Height Regulations 2005

The Gas Act 1986

Building Regulations 2006

The Electricity Safety, Quality and Continuity Regulations 2002

The Provision and Use of Work Equipment Regulations 1998

The Lifting Operations and Lifting Equipment Regulations 1998

The Pressure Systems Safety Regulations 2000

Control of Substances Hazardous to Health Regulations 2002

6.0 Information: The contractor will provide a full contact list detailing land line, mobile telephone numbers and e-mail addresses, Also to be provided will be:

The contractor’s management hierarchy list and details of escalation procedures should challenges arise.

Risk Assessment

Method Statement

Safety Plan

Proof of licensed distributor of Schneider-Electric

Appendix A

1291589851U Typewritten Text

1291589851U Typewritten Text

1291589851U Typewritten Text

1291589851U Typewritten Text

1291589851U Typewritten Text

1291589851U Typewritten Text

LIST OF FACILITIES THAT REQUIRE BMS SUPPORT

1291589851U Typewritten Text

RAF LAKENHEATH/ FLETWELL

1291589851U Typewritten Text

RAF MILDENHALL

1291589851U Typewritten Text

1291589851U Typewritten Text Bldg 446 Dental Clinic Bldg 830 Flight Medicine

UFC 4-510-01

1 May 2016

Change 1, May 2016

UNIFIED FACILITIES CRITERIA (UFC)

DESIGN: MILITARY MEDICAL

FACILITIES

APPROVED FOR PUBLIC RELEASE; DISTRIBUTION UNLIMITED

Appendix B

Change 1, May 2016

UNIFIED FACILITIES CRITERIA (UFC)

DESIGN: MILITARY MEDICAL FACILITIES

Any copyrighted material included in this UFC is identified at its point-of-use.

Use of the copyrighted material apart from this UFC must have the permission of the copyright holder.

DEFENSE HEALTH AGENCY / PORTFOLIO PLANNING AND MANAGEMENT

DIVISION

U.S. ARMY CORPS OF ENGINEERS

NAVAL FACILITIES ENGINEERING COMMAND (Preparing Activity)

AIR FORCE CIVIL ENGINEER CENTER

Record of Changes (changes are indicated by \1\ ... /1/)

Change No. Date Location

1 May 2016 Miscellaneous errata and clerical corrections

This UFC supersedes UFC 4-510-01, dated 1 November 2012 with Change 1.

FOREWORD

The Unified Facilities Criteria (UFC) system is prescribed by MIL-STD 3007 and provides planning, design, construction, sustainment, restoration, and modernization criteria, and applies to the Military Departments, the Defense Agencies, and the DoD Field Activities in accordance with USD (AT&L) Memorandum dated 29 May 2002. UFC will be used for all DoD projects and work for other customers where appropriate. All construction outside of the United States is also governed by Status of Forces Agreements (SOFA), Host Nation Funded Construction Agreements (HNFA), and in some instances, Bilateral Infrastructure Agreements (BIA.)

Therefore, the acquisition team must ensure compliance with the most stringent of the UFC, the SOFA, the HNFA, and the BIA, as applicable.

UFC are living documents and will be periodically reviewed, updated, and made available to users as part of the Services’ responsibility for providing technical criteria for military construction. Headquarters, U.S. Army Corps of Engineers (HQUSACE), Naval Facilities Engineering Command (NAVFAC), and Air Force Civil Engineer Center (AFCEC) are responsible for administration of the UFC system. Defense agencies should contact the preparing service for document interpretation and improvements. Technical content of UFC is the responsibility of the cognizant DoD working group. Recommended changes with supporting rationale should be sent to the respective service proponent office by the following electronic form: Criteria Change Request. The form is also accessible from the Internet sites listed below.

UFC are effective upon issuance and are distributed only in electronic media from the following source:

• Whole Building Design Guide web site http://dod.wbdg.org/.

Hard copies of UFC printed from electronic media should be checked against the current electronic version prior to use to ensure that they are current.

AUTHORIZED BY:

JAMES C. DALTON, P.E. JOSEPH E. GOTT, P.E.

Chief, Engineering and Construction Chief Engineer

U.S. Army Corps of Engineers Naval Facilities Engineering Command

EDWIN H. OSHIBA, SES, DAF MICHAEL McANDREW

Deputy Director of Civil Engineers Director, Facilities Investment and Management

DCS/Logistics, Engineering & Force Protection Office of the Deputy Under Secretary of Defense (Installations and Environment) http://www.wbdg.org/pdfs/ufc_implementation.pdf http://www.wbdg.org/ccb/browse_cat.php?o=29&c=4 http://dod.wbdg.org/

UNIFIED FACILITIES CRITERIA (UFC)

REVISION SUMMARY SHEET

Document: UFC 4-510-01, DESIGN: MILITARY MEDICAL FACILITIES

Superseding: UFC 4-510-01 Design: Military Medical Facilities, 1 November 2012;

with Change 1, May 2014

Description: This UFC 4-510-01 provides mandatory policies and procedures for programming, planning, design, and construction throughout the lifecycle of Military Medical Facilities, also referenced as Medical Treatment Facilities.

Reasons for Document: The existing guidance has been updated to current practices and standards. This revision of UFC 4-510-01 contains modifications in the following areas:

• Updated with major code revisions (NFPA 70, 99,101, NEC, etc.)

• Edited for spelling , grammar, updated references, redundancies

• Removed reference to LogCat E&F

• Combined Wayfinding Chapter with Architecture

• Coordinated Risk Categories with UFC 3-301-01

• Added Bio Safety Lab criteria

• Clarified Conditioning Requirements for "Sensitive Equipment Areas"

• Incorporated VoIP as the Voice Communications system

• Combined Physical Security and AT/FP chapters

• Moved electronic security system into new Antiterrorism (AT) and Physical Security chapter

• Added a Behavioral Health Appendix

Impact:

The impact of these revisions to include close coordination with other mandatory criteria and codes, allows for more standardization thus minimizing errors in our criteria from programming to construction. The information herein, prescribes the most efficient and effective means to lower design costs, improve energy savings, and thus attaining the most cost effective life cycle costs.

Unification Issues None.

Change 1, May 2016 i

CONTENTS

CHAPTER 1 INTRODUCTION

1-1 PURPOSE AND SCOPE

1-2 APPLICABILITY

1-3 POLICY

1-3.1 World-Class 1-3.2 Concept of Operations (CONOPS): Evolution Through the Facility Life-

Cycle 1-3.3 Sustainable Design 1-3.4 Life-Cycle Facility Management 1-3.5 Total Building Commissioning (TBCx) 1-3.6 Flexibility

1-4 RESPONSIBILITIES

1-4.1 Health Facilities Executive Council (HFEC), and the Health Facility

Coordination Council (HFCC)

1-4.2 DHA/FD

1-4.3 Using Military Departments 1-4.4 Design and Construction Agents 1-4.5 Health Facilities Steering Committee (HFSC)

1-5 WAIVERS OR EXEMPTIONS TO THIS DOCUMENT

CHAPTER 2 PLANNING

2-1 GENERAL

2-2 PRE-PLANNING ACTIVITIES

2-2.1 Existing Facility Assessment 2-2.2 Consideration of MHS Guiding Principles 2-2.3 Strategic Healthcare Requirements Planning 2-2.4 Local Market Solution Planning 2-2.5 Multi-Service Market Planning Coordination 2-2.6 Planning Procedures for the National Capital Region (NCR)

2-3 PROJECT PLANNING PROCESS AND DOCUMENTS

2-3.1 General 2-3.2 Requirements Analysis (RA) 2-3.3 Alternatives Analysis 2-3.4 Project Proposal Development 2-3.5 Capital Investment Selection and Prioritization 2-3.6 DHA/FD Project Tool 2-3.7 Post-CIDM Program (Project) Validation 2-3.8 Post-CIDM Project Documentation

Change 1, May 2016 ii

2-4 SCOPE AND COST CONSIDERATIONS

2-4.1 Improvement/Alteration/Additions 2-4.2 Site Investigation 2-4.3 Interstitial Building System (IBS) 2-4.4 Parking Facilities 2-4.5 Future Expansion 2-4.6 Special Environmental Conditions 2-4.7 Emergency Electrical Supply 2-4.8 Antiterrorism/Force Protection (AT/FP) 2-4.9 Demolition of Vacated Facilities 2-4.10 Sustainability Considerations 2-4.11 Special Studies

2-5 MEDICAL MILCON PROGRAM AND BUDGET

2-5.1 DoDM Facilities MILCON Program

CHAPTER 3 DESIGN

3-1 GENERAL

3-2 DESIGN CODES AND CRITERIA

3-3 DESIGN PARAMETERS

3-3.1 Scope and Cost 3-3.2 Gross Building Area Calculation 3-3.3 Departmental Building Area Calculation 3-3.4 Design to Cost

3-4 DESIGN SEQUENCE AND RESPONSIBILITIES

3-4.1 Title 10 U.S.C. Section 2807 Action 3-4.2 Design Authorization (DA) 3-4.3 A/E Selection Authorization 3-4.4 A/E Contract Award and Design Initiation 3-4.5 Design-Bid-Build (DBB) Design Changes 3-4.6 Design-Build (DB) Design Changes 3-4.7 Authorization to Advertise Construction 3-4.8 Authorization to Award Construction

3-5 REPORTING REQUIREMENTS

3-6 DESIGN CONSIDERATIONS

3-6.1 General 3-6.2 World-Class Checklist 3-6.3 Concepts of Operation (CONOPS) 3-6.4 Parking 3-6.5 Future Expansion 3-6.6 Life-Cycle Costing 3-6.7 Alterations and Additions to Existing Facilities

Change 1, May 2016 iii

3-7 DESIGN SUBMITTALS AND DOCUMENTATION REQUIREMENTS

3-7.1 Economic, Architectural, Engineering, and Environmental Studies 3-7.2 Value Engineering (VE) Study 3-7.3 Design Documentation 3-7.4 Medical Space Template Guidance and Utilization

3-8 DESIGN QUALITY CONTROL (QC) AND QUALITY ASSURANCE (QA)

3-8.1 Design and Construction Agent QA Responsibility 3-8.2 Using Military Department Responsibility

3-9 PROJECT COST ESTIMATES

The Design and Construction Agent shall

3-10 LOGISTICAL RESPONSIBILITY FOR BUILDING SYSTEMS

3-11 FUNDS MANAGEMENT POLICY

3-11.1 Title 10 U.S.C. Section 2853 Action 3-11.2 Return of Excess Funds

3-12 HISTORICAL ANALYSIS GENERATOR (HAG) DATA

CHAPTER 4 ARCHITECTURAL

4-1 GENERAL

4-2 EXTERNAL DESIGN

4-3 EXTERIOR WALL DESIGN

4-3.1 Energy Performance

4-4 FENESTRATION AND WINDOWS

4-4.1 Required Locations

4-5 INTERIOR CONSTRUCTION

4-5.1 Aseptic Environments 4-5.2 Interior Design

4-6 FRONT DESK LOCATION

4-7 FLOORS

4-8 WALL AND PARTITION SYSTEMS

4-8.1 Use of Full Height Partitions 4-8.2 Barriers 4-8.3 Protection and Safety Features 4-8.4 Toilet Facilities 4-8.5 Toilet Partitions

4-9 CEILINGS

Change 1, May 2016 iv

4-9.1 Support 4-9.2 Utility Access

4-10 VESTIBULES

4-11 DOORS

4-11.1 Automatic Doors 4-11.2 Doors, Frames, and Hardware

4-12 SUSTAINABLE DESIGN

4-13 WAYFINDING PLAN

4-14 WAYFINDING TOOLS

CHAPTER 5 STRUCTURAL

5-1 GENERAL

5-2 DESIGN CRITERIA

5-3 DESIGN LOADINGS

5-3.1 Floor Live Loads 5-3.2 Seismic Loads

5-4 ADDITIONAL DESIGN CONSIDERATIONS

5-4.1 Noise and Vibration 5-4.2 Designated Seismic Systems

CHAPTER 6 SEISMIC

6-1 GENERAL

6-2 HEALTHCARE AND DESIGN REQUIREMENTS

6-3 SEISMIC PERFORMANCE OBJECTIVES

6-4 POST-EARTHQUAKE AND OTHER EMERGENCY STATUS

6-5 CONCEPT DESIGN DEVELOPMENT

6-6 EVALUATION OF EXISTING FACILITIES

6-6.1 Seismic Hazards Evaluation Considerations 6-6.2 Final Evaluation

6-7 DESIGN OF NON-STRUCTURAL SYSTEMS

6-7.1 Nonstructural Systems and System Components 6-7.2 Hazardous Materials 6-7.3 Electrical Systems

Change 1, May 2016 v

6-7.4 Mechanical Systems 6-7.5 Medical Systems and Equipment 6-7.6 \1\Reserved./1/

CHAPTER 7 SUSTAINABLE DESIGN PRINCIPLES

7-1 GENERAL

7-1.1 Planning/Programming Process 7-1.2 Design Process 7-1.3 Supporting Documents

7-2 SUSTAINABLE BUILDING RATING SYSTEMS

CHAPTER 8 FIRE PROTECTION

8-1 GENERAL

8-2 CRITERIA

8-2.1 Codes and Standards 8-2.2 Criteria Deviation

8-3 SERVICES AND QUALIFICATIONS OF FIRE PROTECTION ENGINEERS.

8-4 INTERSTITIAL BUILDING SYSTEM (IBS)

8-5 OCCUPANCY CLASSIFICATION

8-6 FACILITY REHABILITATION

8-6.1 Life Safety Assessment (LSA) 8-6.2 Physical Limitations of Work

8-7 CONSTRUCTION OPERATIONS

8-7.1 Phasing 8-7.2 Impairment of Existing Fire Protection Systems and Features

8-8 MEANS OF EGRESS

8-8.1 Total Evacuation 8-8.2 Horizontal Relocation (Defend-in-Place)

8-9 FIRE ALARM, FIRE DETECTION, AND MASS NOTIFICATION

8-9.1 Pathway Class Designation and Pathway Survivability 8-9.2 Equipment 8-9.3 Occupant Notification 8-9.4 Fire Department Notification 8-9.5 Electrical Power Supply

8-10 MANAGEMENT OF SMOKE

8-10.1 New Smoke Control Systems

Change 1, May 2016 vi

8-10.2 Existing Smoke Control Systems 8-10.3 Smoke-Proof Enclosures

8-11 AUTOMATIC SPRINKLER PROTECTION

8-11.1 Sprinklers 8-11.2 Sprinkler Supervision

8-12 STANDPIPE PROTECTION

8-13 LABORATORIES

8-13.1 Hazard Assessment 8-13.2 Bio-Safety Level (BSL) Laboratories 8-13.3 Access-Egress Control

8-14 VETERINARY CARE FACILITIES

8-15 HELIPADS

8-16 PHARMACY STORAGE

CHAPTER 9 PLUMBING AND MEDICAL GASES

9-1 GENERAL

9-1.1 Supplemental Criteria and Standards 9-1.2 Plumbing Systems 9-1.3 Medical Gas Systems 9-1.4 Seismic Requirements 9-1.5 Corrosion Protection

9-2 POTABLE WATER SUPPLY SYSTEM

9-2.1 Quality 9-2.2 Continuity of Service for Hospitals or Ambulatory Healthcare Care

Facilities 9-2.3 Backflow Prevention, General 9-2.4 Water Treatment 9-2.5 Waterborne Pathogens 9-2.6 Domestic Hot Water Systems 9-2.7 Plumbing Fixtures and Other Equipment

9-3 SANITARY DRAINAGE SYSTEM

9-3.1 Protection of Special Fixtures and Equipment 9-3.2 Special Drainage Equipment 9-3.3 Special Purpose Waste Lines 9-3.4 General-Purpose Floor Drains 9-3.5 Trap Priming 9-3.6 Retrofit or Alteration Considerations 9-3.7 Elevator Pit Sumps 9-3.8 Mercury Control

Change 1, May 2016 vii

9-4 FUEL GAS SERVICE

9-5 MEDICAL GAS SYSTEMS

9-5.1 Systems for Medical Clinics 9-5.2 Dental Clinics 9-5.3 Criteria for Medical Gas Design in the Federal Republic of Germany

(FRG)

9-5.4 Medical Gas System Testing 9-5.5 System Control Valves 9-5.6 Alarm Systems 9-5.7 Gas System Sources (Storage) 9-5.8 Color Coding and Labeling 9-5.9 Medical Gas Systems Outlets 9-5.10 Emergency Power Source 9-5.11 Medical Compressed Air (MA) 9-5.12 Dental Compressed Air (DA) 9-5.13 Laboratory Air (LA) 9-5.14 Instrument Air (IA) 9-5.15 Process Air (PA) 9-5.16 Medical Surgical Vacuum (MV) System 9-5.17 Dental Surgical Vacuum (DSV) 9-5.18 Oral Evacuation (OE) 9-5.19 High-Volume Laboratory Dust Evacuation (LDE) 9-5.20 Waste Anesthesia Gas Disposal (WAGD) 9-5.21 Oxygen (O) 9-5.22 Nitrous Oxide (NO) 9-5.23 Nitrogen (N) 9-5.24 Carbon Dioxide (CO2) 9-5.25 Process Gas

CHAPTER 10 HEATING, VENTILATION, AND AIR CONDITIONING (HVAC)

10-1 GENERAL

10-1.1 Applicability 10-1.2 Supporting Documents

10-2 DESIGN CONDITIONS

10-2.1 Weather Data 10-2.2 Interior Design Conditions 10-2.3 Space Ventilation 10-2.4 Ambient Design Dry and Wet Bulb 10-2.5 Critical Care Areas 10-2.6 Laboratories 10-2.7 Temperature During Smoke Control Operation 10-2.8 Mechanical Equipment Rooms 10-2.9 Humid Climate Definition

10-3 REFRIGERANTS

Change 1, May 2016 viii

10-4 LIFE-CYCLE COST AND ENERGY ANALYSIS

10-5 ELIGIBILITY FOR AIR CONDITIONING

10-5.1 Total Air Conditioning 10-5.2 Food Service Area 10-5.3 Not Authorized Air Conditioning 10-5.4 Medical Warehouses

10-6 MECHANICAL EQUIPMENT SPACE

10-6.1 Mechanical Room 10-6.2 Energy Plant

10-7 HVAC SYSTEM DESIGN FOR FUNCTIONAL AREAS

10-7.1 Critical Care Areas 10-7.2 Sensitive Equipment Areas 10-7.3 Patient Bedrooms 10-7.4 Temporary and Deployable Facilities 10-7.5 Rooms with Critical Pressurization Requirements

10-8 GENERAL DESIGN CONSIDERATIONS

10-8.1 Plant Sizing and Optimization 10-8.2 Contaminant Removal 10-8.3 Interdepartmental Air System Restriction 10-8.4 Air Filtration 10-8.5 Balancing Ports and Features 10-8.6 Additions and Alterations to Existing Facilities 10-8.7 Cooling and Heating Load Calculations 10-8.8 Piping Systems 10-8.9 Insulation for Mechanical Systems

10-9 HVAC SYSTEM CONTROLS

10-9.1 Energy Conservation 10-9.2 Temperature Control 10-9.3 Control Precision 10-9.4 Humidity Control 10-9.5 Direct Digital Controls (DDC) 10-9.6 Air Handling Equipment Control

10-10 STEAM SYSTEMS

10-10.1 Humidification Steam Source 10-10.2 Sterilizer Steam Source

10-11 AIR HANDLING AND DISTRIBUTION

10-11.1 AHU Requirements 10-11.2 System Shutdown Capability 10-11.3 Outdoor Air Intakes 10-11.4 Noise Control 10-11.5 Duct Design 10-11.6 Cleanliness of Air Handling and Distribution Equipment

Change 1, May 2016 ix

10-12 MAINTENANCE PROVISIONS

10-12.1 General Personnel Access 10-12.2 Equipment Clearances 10-12.3 Suspended and Mounted Mechanical Equipment 10-12.4 Air Distribution System Components 10-12.5 HVAC System Balancing Provisions

10-13 VIBRATION CONTROL

10-14 INTERDISCIPLINARY COORDINATION

10-14.1 Fire Protection Features 10-14.2 Emergency Electrical Service 10-14.3 Seismic Design Requirements 10-14.4 Design Coordination

10-15 FUEL STORAGE REQUIREMENTS

10-16 VENTILATION DESIGN

10-16.1 Ventilation Air Changes 10-16.2 Architectural Coordination for Rooms with Critical Pressurization

Requirements 10-16.3 General Exhaust Provisions 10-16.4 Space Pressurization 10-16.5 Laboratory Ventilation 10-16.6 Exhaust Canopies 10-16.7 Laminar Flow Clean Benches 10-16.8 Bench-Back Slot Hoods 10-16.9 Portable Bench-Top Hoods 10-16.10 Waste Anesthesia Gas Exhaust (WAGE) 10-16.11 Medical Equipment 10-16.12 Kitchen Hoods 10-16.13 Pharmaceutical Admixture Rooms

10-17 PATIENT ISOLATION ROOM DESIGN

10-17.1 Airborne Infection Isolation Bedrooms 10-17.2 Protective Environment Bedrooms 10-17.3 Airborne Infection Isolation Exam or Waiting Rooms

CHAPTER 11 ELECTRICAL

11-1 GENERAL

11-1.1 Scope 11-1.2 Power Supply Criteria Factors 11-1.3 Criteria for Design in the Federal Republic of Germany (FRG)

11-2 DEFINITIONS

11-2.1 NFPA 70 and NFPA 99 11-2.2 Wet Locations

Change 1, May 2016 x

11-3 EXTERIOR ELECTRICAL

11-3.1 Common Voltage 11-3.2 Normal Source Site Investigation 11-3.3 Hospital Normal Source 11-3.4 Outpatient Clinics Normal Source 11-3.5 Ambulatory Healthcare Centers Normal Source 11-3.6 Grounding

11-4 ALTERNATE POWER SOURCE

11-4.1 Alternate Electrical Source 11-4.2 Ambulatory Healthcare Centers 11-4.3 Medical and Dental Clinic 11-4.4 Hospitals 11-4.5 Medical Research Facilities and Laboratories 11-4.6 Engine Generator Sets 11-4.7 Location of Engine-Generator Sets 11-4.8 Engine Starting 11-4.9 Manual Test Switches 11-4.10 Generator Set Operation 11-4.11 Return to Normal Power Source 11-4.12 Automatic Transfer Switch (ATS) 11-4.13 Ground Fault Protection Equipment 11-4.14 Remote Alarm Annunciator 11-4.15 Fuel Storage Tanks 11-4.16 Loads on the Alternate Source 11-4.17 Essential Loads 11-4.18 Alternate Source Testing

11-5 INTERIOR ELECTRICAL SYSTEMS

11-5.1 Utilization Voltage 11-5.2 Interior Distribution 11-5.3 Selective Coordination and Short-Circuit System Analysis 11-5.4 Location and Space 11-5.5 Electrical Rooms 11-5.6 Isolation Power Panel 11-5.7 Conduit, Cable Tray, and Wire 11-5.8 Branch Circuits 11-5.9 Radiology Provisions 11-5.10 Receptacles 11-5.11 Receptacle Identification 11-5.12 Patient Care Grounding 11-5.13 Inhalation Anesthetizing Location 11-5.14 Electromagnetic Shielding for Medical Instrumentation

11-6 LIGHTING

11-6.1 Design 11-6.2 Battery-Operated Lighting 11-6.3 Patient Bedrooms

Change 1, May 2016 xi

11-6.4 Other Rooms 11-6.5 Dental Clinic 11-6.6 Eye LASIK/PRK Rooms 11-6.7 Exterior Signage 11-6.8 Parking Areas and Walks 11-6.9 Dimming 11-6.10 Ultraviolet (UV) Filters 11-6.11 Maintenance Area Lighting 11-6.12 Auditorium 11-6.13 Helipad Lighting, Marking, and Controls

11-7 LIGHTNING PROTECTION

CHAPTER 12 COMMUNICATIONS

12-1 GENERAL

12-1.1 Design Criteria 12-1.2 Approved Product Lists (APLs)

12-2 COMMUNICATIONS SPACES

12-2.1 Telecommunication Rooms (TRs) 12-2.2 Penthouse Equipment Room 12-2.3 Communications Headend Equipment Room 12-2.4 Central Communication Room 12-2.5 Server Room

12-3 OUTSIDE PLANT INFRASTRUCTURE AND CABLING

12-3.1 Outside Plant Purpose 12-3.2 Outside Plant Duct Work 12-3.3 Outside Plant FO Cable 12-3.4 Outside Plant Twisted Pair Copper Cable 12-3.5 Outside Plant CATV Cable

12-4 DOD NETWORK ASSESSMENT AND AUTHORIZATION PROCESS

REQUIREMENTS

12-4.1 IP Addressable Systems 12-4.2 Existing Systems

12-5 NETWORK TIME SYNCHRONIZATION (NTS) SYSTEM

12-5.1 Purpose 12-5.2 Date and Time Properties 12-5.3 Electrical Power

12-6 TELEPHONE SYSTEM CRITERIA

12-6.1 Type of Service 12-6.2 Central Telephone Equipment 12-6.3 Integrated Intercommunication (Intercom) System 12-6.4 Patient Bedside Telephones

Change 1, May 2016 xii

12-7 TELECOMMUNICATIONS INFRASTRUCTURE SYSTEM (TIS)

12-7.1 UTP Copper Backbone Cable 12-7.2 FO Backbone Cable 12-7.3 Horizontal Copper Cable 12-7.4 Horizontal FO Cable 12-7.5 TIS Outlets 12-7.6 Wireless Access Points (WAPs) 12-7.7 Cable Tray 12-7.8 Grounding

12-8 DEDICATED INTERCOM SYSTEM

12-9 NURSE CALL (NC) SYSTEMS

12-9.1 Purpose 12-9.2 Categories and Typical Locations 12-9.3 Procurement

12-9.4 UL 1069

12-9.5 Common Criteria 12-9.6 Networked NCAV Systems 12-9.7 NCTV Systems 12-9.8 Enhanced Supplemental Operations

12-10 INTRAFACILITY RADIO REINFORCEMENT SYSTEM (IRES)

12-11 RADIO PAGING SYSTEMS

12-11.1 Radio Paging (RP) 12-11.2 Page System Interfaces 12-11.3 System Function 12-11.4 Emergency Response Team Pagers 12-11.5 Antennae Type and Mounting 12-11.6 Power Requirements 12-11.7 Transmitter and Encoder

12-12 INTERACTIVE TELEVISION (ITV) SYSTEM

12-12.1 Purpose 12-12.2 Procurement 12-12.3 Prime System Functional Capability 12-12.4 System Configuration and Major Functional Components 12-12.5 Electrical Power 12-12.6 Assessment and Authorization Requirements

12-13 TV BROADBAND DISTRIBUTION NETWORK

12-13.1 Purpose 12-13.2 Procurement 12-13.3 Commercial TV Service 12-13.4 Broadband Distribution Network 12-13.5 TV Outlets and Signal Level 12-13.6 Flat-Panel HDTVs and Connecting and Mounting Items Configuration. 208 12-13.7 Electrical Power

Change 1, May 2016 xiii

12-14 ELECTRONIC SECURITY SYSTEM (ESS)

12-15 PUBLIC ADDRESS (PA) SYSTEM

12-15.1 System Purpose 12-15.2 System Components 12-15.3 System Configuration 12-15.4 System Performance 12-15.5 Electrical Power 12-15.6 DoD Assessment and Authorization

12-16 SOUND REINFORCEMENT SYSTEMS

12-16.1 Purpose 12-16.2 Inputs 12-16.3 Headroom

12-17 AUDITORIUM AUDIO VISUAL (AV) SYSTEMS

12-18 PHYSIOLOGICAL MONITORING

12-18.1 Cardio-Pulmonary Respiratory Monitoring 12-18.2 Fetal Monitoring 12-18.3 Neonatal Monitoring 12-18.4 Anesthesia and Respiratory Gas Analysis System

12-19 EMERGENCY MEDICAL SERVICE (EMS) COMMUNICATIONS

12-19.1 Electrical Power 12-19.2 Empty Conduit and Boxes 12-19.3 Structural Support

12-20 EMS RECORDER SYSTEM

12-20.1 EMS Recorder Function and Features 12-20.2 System Inputs and Mounting 12-20.3 DoD Assessment and Authorization

CHAPTER 13 ACCESSIBILITY PROVISIONS FOR THE DISABLED

13-1 GENERAL

13-2 GENERAL EXCEPTIONS

13-3 DOD EXCEPTIONS/EXCLUSIONS

13-4 DHA/FD ADDITIONAL REQUIREMENTS

13-4.1 Patient Bedrooms and Bedroom Toilet Rooms 13-4.2 Patient Dressing Rooms

13-5 SPECIFIC MILITARY MEDICAL FACILITY REQUIREMENTS

13-5.1 Parking 13-5.2 Patient Sleeping Rooms 13-5.3 Telephones

Change 1, May 2016 xiv

13-6 WAIVERS

CHAPTER 14 ANTITERRORISM (AT) AND PHYSICAL SECURITY

14-1 GENERAL

14-2 ADDITIONAL CRITERIA

14-3 DESIGN CRITERIA PLANNING TEAM

14-4 ELECTRONIC SECURITY SYSTEMS (ESS)

14-4.1 Purpose 14-4.2 Systems Considerations 14-4.3 ESS Funding Categories 14-4.4 System Configuration and Major Functional Components 14-4.5 ESS Integrator Network 14-4.6 Intrusion Detection and Duress Alarm 14-4.7 Door Access Control 14-4.8 Video Surveillance 14-4.9 Infant Protection Alarm 14-4.10 Behavioral Health Staff Assist Alarm 14-4.11 Basic Design Requirements

14-5 SPECIAL CONSIDERATIONS FOR SECURITY SENSITIVE AREAS AND

ROOMS. 228

14-5.1 Safes. 228 14-5.2 Vaults 14-5.3 Pharmacies 14-5.4 Medical Supply Storage Areas or Facilities 14-5.5 Other Security Sensitive Areas and Rooms

CHAPTER 15 RESERVED FOR FUTURE USE

15-1 RESERVED

CHAPTER 16 EQUIPMENT

16-1 GENERAL

16-1.1 Identification of Equipment 16-1.2 Approval of Substitutions

16-2 PROCUREMENT

16-3 LOGISTICAL RESPONSIBILITY

16-4 DESIGN

16-4.1 Casework 16-4.2 Technically Complex Equipment and Medical System

Change 1, May 2016 xv

16-4.3 Hyperbaric Medicine

CHAPTER 17 TRANSPORTATION AND LOGISTICS

17-1 GENERAL

17-1.1 Scope 17-1.2 Transportation Systems Evaluation 17-1.3 Medical Transportation and Logistics Consultant (MTLC)

17-2 TRANSPORTATION AND LOGISTIC ANALYSIS REQUIREMENTS

17-2.1 Transportation Logistic Analysis (TLA) 17-2.2 Elevator Traffic Study and Analysis (ETSA) 17-2.3 Material Management Analysis (MMA) 17-2.4 Waste Management Analysis (WMA)

17-3 FACILITY DESIGN

17-3.1 Traffic Separation 17-3.2 Transportation Systems 17-3.3 Vertical Automation 17-3.4 Equipment/Materials Separation 17-3.5 Clean and Soiled Material Separation 17-3.6 Escalators

17-4 ELEVATOR DESIGN

17-4.1 Codes 17-4.2 Elevator Selection 17-4.3 Elevator Location and Travel Distances 17-4.4 Elevator Location, Lobbies, and Groupings 17-4.5 Passenger and Service Elevator Features

17-5 MATERIAL MANAGEMENT DESIGN

17-5.1 AGV Systems 17-5.2 Pneumatic Tubes 17-5.3 Mobile Robots 17-5.4 Dumbwaiters and Cart Lifts

17-6 WASTE MANAGEMENT DESIGN

17-6.1 Waste Categories 17-6.2 Waste Collection and Transport 17-6.3 Regulations, Codes, and Standards 17-6.4 Gravity Chutes 17-6.5 Pneumatic Trash/Linen

CHAPTER 18 \1\RESERVED FOR FUTURE USE

18-1 RESERVED

CHAPTER 19 CONSTRUCTION

Change 1, May 2016 xvi

19-1 CONTRACT AWARD

19-2 COMMISSIONING DURING CONSTRUCTION

19-3 CONSTRUCTION CONTRACT CHANGES

19-3.1 Process for Reporting Changes 19-3.2 Process for Approving Funds

19-4 CONSTRUCTION FUNDS

19-4.1 Funds Management 19-4.2 Funds Availability

19-5 CONTRACTOR CLAIMS

19-5.1 DHA/FD Notification 19-5.2 Using Military Department Notification

19-6 LIFE SAFETY CERTIFICATION

19-6.1 Life Safety Assessment Survey (LSA)

19-7 DEMOLITION OF VACATED FACILITIES

CHAPTER 20 BUILDING INFORMATION MODELING (BIM)

20-1 GENERAL

20-1.1 BIM Objectives 20-1.2 Minimum BIM Standards

CHAPTER 21 COMMISSIONING

21-1 GENERAL

21-2 CRITERIA

21-3 TOTAL BUILDING COMMISSIONING (TBCX)

21-3.1 Process Overview 21-3.2 Commissioning Leadership Structure 21-3.3 Commissioning During Design 21-3.4 Commissioning During Construction

21-4 SPECIFIC SYSTEM REQUIREMENTS

21-4.1 Interoperability 21-4.2 Addition and Alteration Considerations

GLOSSARY 263

TERMS 275

APPENDIX A REFERENCES

Change 1, May 2016 xvii

APPENDIX B ARCHITECTURAL AND ENGINEERING DESIGN REQUIREMENTS . 313

B-1 SYNOPSIS

B-2 LEGEND & NOTES

B-3 ARCHITECTURAL

B-3.1 Materials and Finishes

B-3.2 CLG HT

B-3.3 DOOR SIZE

B-3.4 NOISE

B-4 ARCHITECTURAL NOTES

B-5 STRUCTURAL

B-6 ELECTRICAL

B-6.1 LIGHT

B-6.2 ES PWR

B-7 MEDICAL GASES

B-7.1 MEDICAL GAS NOTES

B-8 HVAC

B-8.1 HVAC Notes

APPENDIX C DESIGN SUBMITTALS AND DOCUMENTATION

C-1 GENERAL

C-2 APPLICATION

C-3 GENERAL REQUIREMENTS

C-3.1 Narratives and Format C-3.2 Drawings and Format C-3.3 Building Systems Risk Assessment

C-4 5 PERCENT SUBMITTAL

C-4.1 5 Percent Submittal Narratives C-4.2 5 Percent Submittal Drawings C-4.3 5 Percent Submittal Cost Estimates

C-5 20 PERCENT SUBMITTAL

C-5.1 Scope Changes C-5.2 Record Copy C-5.3 20 Percent Design Narratives C-5.4 20 Percent Submittal Design Drawings C-5.5 20 Percent Submittal Calculations C-5.6 20 Percent Submittal Cost Estimates

Change 1, May 2016 xviii

C-6 35 PERCENT SUBMITTAL

C-6.1 35 Percent Submittal Design Narratives C-6.2 35 Percent Submittal Design Drawings C-6.3 35 Percent Submittal Calculations C-6.4 35 Percent Submittal Cost Estimates

C-7 65 PERCENT DESIGN SUBMITTAL

C-8 100 PERCENT AND FINAL DESIGN SUBMITTAL

C-9 STATEMENT OF CONDITIONS (SOC)

C-10 REQUEST FOR PROPOSAL (RFP) FOR DESIGN-BUILD (DB) PROJECTS.

C-11 RFP DEVELOPMENT SUBMITTALS

C-12 AFTER CONTRACT AWARD

APPENDIX D UNIVERSAL X-RAY ROOM

D-1 DEFINITION

D-1.1 Applications

D-2 CRITERIA

D-2.1 Electrical Raceway System D-2.2 Electrical Service Requirements D-2.3 Warning Lights D-2.4 D-2.4 Structural Requirements D-2.5 Radiology Shielding D-2.6 Fire Protection

APPENDIX E INTERSTITIAL BUILDING SYSTEM (IBS)

E-1 GENERAL

E-2 IBS DESIGN CONCEPT

E-2.1 DoD Systems Module Concept E-2.2 Alternate Non-Modular Concept E-2.3 IBS Design Concept Approval

E-3 IBS DESIGN

E-3.1 DoD Systems Module Design E-3.2 Alternate (Non-DoD) IBS Design E-3.3 General IBS Design Requirements E-3.4 General IBS Mechanical and Plumbing Requirements E-3.5 General IBS Electrical and Communications Equipment E-3.6 General IBS Fire Protection Design E-3.7 Documentation and Construction Considerations

Change 1, May 2016 xix

APPENDIX F FOOD SERVICE

F-1 GENERAL

F-2 CONSULTING SERVICES

F-3 FOOD SERVICE DESIGN OBJECTIVES

F-3.1 Environment F-3.2 Design Elements F-3.3 Design Flexibility F-3.4 Equipment F-3.5 Energy Efficiency and Sustainability F-3.6 Food Service Systems

F-4 DESIGN CRITERIA

F-4.1 Design F-4.2 Configuration F-4.3 Staging F-4.4 Refrigerator and Freezer F-4.5 Patient Tray Assembly F-4.6 Dishwashing and Ware Washing F-4.7 Communications F-4.8 Waste Handling F-4.9 Emergency Power F-4.10 Steam F-4.11 Shelving F-4.12 Hand Washing F-4.13 Compliance Standards F-4.14 A La Carte System F-4.15 Exhaust Hoods F-4.16 Interior Finishes F-4.17 Data Processing Equipment and Security F-4.18 Grease Traps F-4.19 Sealants F-4.20 Franchised/Leased Food Services

F-5 SEISMIC CRITERIA

F-6 FOOD SERVICE EQUIPMENT SPECIFICATIONS

APPENDIX G PARKING REQUIREMENTS

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