TE 5a IGIS Stormwater Utility Node QAP Version 4.0.pdf

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(Solicitation) JBLM Stormwater Pipe Inspection Federal contract opportunity
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W911S823R0007
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Department of the Army Materiel Command Mission and Installation Contracting Command Joint Base Lewis-McChord

About this file

This document is a Quality Assurance Plan (QAP) that provides guidance for the collection and standardization of Army Installation, Energy and Environment (IE&E) geospatial data for StormwaterUtilityNode features as defined in the Spatial Data Standards for Facilities, Infrastructure, and Environment Vector (SDSFIE-V) 4.0 Army Adaptation standard. It outlines the scope, feature type description, attribute requirements, data collection requirements based on ISO 19157 data quality elements, and applicable DoD and Army guidance and policy. The StormwaterUtilityNode features are reported as Real Property Assets (RPA) and must include a Real Property Site Unique Identifier (RPSUID) and Real Property Asset Unique Identifier (RPUID). Attribute requirements are specified in a detailed table, and data must meet minimum positional accuracy and other quality standards.

The related federal contract opportunity is a solicitation (W911S823R0007) for JBLM Stormwater Pipe Inspection services, to be conducted using FAR Part 12 and FAR Subpart 13.5 procedures. The Government intends to award a contract without discussions, so offerors should submit their best terms initially. All referenced documents are available on the SAM website, and the Government point of contact is Mr. Terrance Bond.

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Army Geospatial Data Layer Quality Assurance Plan (QAP)

Stormwater Utility Node

SDSFIE 4.0 Gold: StormwaterUtilityNode

SDSFIE 4.0 Army Adaptation: StormwaterUtilityNode

Document Version 4.0

Prepared by:

Office of the Assistant Chief of Staff for Installation Management (OACSIM)

Installation Geospatial Information and Services (IGI&S) Program October 19, 2018

TABLE OF CONTENTS

Document Change History

Summary of Changes

1.0 Introduction

1.1 Scope

1.2 Feature Type Description

1.3 SDSFIE-V 4.0 Army Adaptation Attributes Table

1.4 Policy

2.0 Data Collection Requirements

2.1 ISO 19157 Data Quality Element Categories

2.2 Completeness

2.3 Logical Consistency

2.4 Topological Consistency

2.5 Positional Accuracy

2.6 Horizontal Accuracy

2.7 Vertical Accuracy

2.8 Thematic Accuracy

2.9 Temporal Accuracy

2.10 Usability

2.11 Spatial Reference

Appendix A – SDSFIE 4.0 Army Adaptation Acceptable Values

DOCUMENT CHANGE HISTORY

Development Step

Description Date Completed

0.1 OACSIM IGI&S & Proponent Draft May 4, 2015

0.2 Proponent Initial Review May 29, 2015

0.3 Community Review Period June 30, 2015

0.4 OACSIM IGI&S & Proponent Final Review July 31, 2015

1.0 N/A1 N/A

2.0 N/A1 N/A

3.0 N/A1 N/A

3.1 Published August 3, 2015

3.2 Published (Update) January 4, 2016

3.3 Published (Update) January 10, 2017

3.3.1 Published (Update) July 3, 2017

4.0 Published (Update) October 19, 2018

SUMMARY OF CHANGES

Version 3.1 updated to Version 3.2 Annual Review Conducted

1. Updated minor spelling and formatting errors. No content changes were made.

Version 3.2 updated to Version 3.3 Annual Review Conducted

1. Updated to improve standardization with other QAPs.

2. Updated to remove references to the SDSFIE 2.6 Gold model to reflect full migration to SDSFIE 3.1

Version 3.3 updated to Version 3.3.1 Mid-Year Review Conducted

1. Updated facilityNumber definition in Table 4 – Required Populated Attributes.

2. Updated acceptable values for facilityNumber attribute.

3. Removed “rpnid” attribute from Table 4 – Required Populated Attributes.

Version 3.3.1 updated to Version 4.0 Annual Review Conducted

1. Updated QAP format to align with DISDI Digital Content Specification (DCS) requirements.

2. Updated to reflect migration to SDSFIE 4.0 Army Adaptation.

3. Incorporated all SDSFIE 4.0 Army Adaptation Working Group and Subgroup decisions.

1 No versions 1.0, 2.0, or 3.0 exist as in August 2014 all QAPs were standardized at version 3.1.

1.0 INTRODUCTION

1.1 Scope

This Quality Assurance Plan (QAP) provides Office of the Assistant Chief of Staff for Installation Management (OACSIM), Installation Geospatial Information and Services (IG&S) Program and U.S. Army Sustainable Range Program (SRP) guidance to aid in the collection and standardization of Army Installation, Energy and Environment (IE&E) geospatial data for StormwaterUtilityNode features.

1.2 Feature Type Description

This section and those following provides a detailed description of collection requirements and metadata creation for the StormwaterUtilityNode feature type, as defined in the Spatial Data Standards for Facilities, Infrastructure, and Environment Vector (SDSFIE-V) 4.0 Army Adaptation standard.

Table 1: StormwaterUtilityNode SDSFIE-V 4.0 Army Adaptation IGI&S Proponent: OACSIM Operations Directorate (DAIM-OD) Installation Functional SME / Data Steward

DPW or equivalent

Prioritization: Army CIP Feature Type: StormwaterUtilityNode Definition: The subdivision of a stormwater utility network, particularly an asset that participates in the handling of stormwater, but that is not a pipeline or ditch.

Description: For example, a pump, valve, or fitting.

Note: This entity is used to model subdivisions of the stormwater system. For entities involving the conveyance of sewage, use the wastewater utility node feature type.

Functional Theme: Public Works - Stormwater Default Geometry: Point (StormwaterUtilityNode_P) Other Permissible Geometries:

Area (StormwaterUtilityNode_A)

Subclasses Allowed: Yes (Subclasses must be created following the Army IGI&S Program SDSFIE Implementation Guidance.)

Table 1 includes the definition, description, default and permissible geometry, and other information established in SDSFIE-V 4.0 Army Adaptation for StormwaterUtilityNode.

The features collected for the StormwaterUtilityNode layer are reported as Real Property Assets (RPA) in the accountable property system of record (APSR): General Fund Enterprise Business System (GFEBS), Planning Resource Infrastructure Development and Evaluation (PRIDE), Rental Facilities Management Information System (RFMIS), or Enterprise Business System (EBS); and shall include a Real Property Site Unique Identifier (RPSUID) and Real Property Asset Unique Identifier (RPUID).

The Headquarters Installation Information System (HQIIS) is the Army’s authoritative reporting source for real property information. HQIIS is not an APSR, but currently functions as the consolidated repository of all Army real property and related data, as well as the Army’s official registry of Installations, Sites, Bases and Enclaves/Complexes. HQIIS serves as the Army’s single interfacing system for satisfying statutory and regulatory real property reporting requirements and complies with Office of the Secretary of Defense (OSD) reporting requirements, Business Enterprise Integration (BEI), and the Real Property Information Model (RPIM), which are updated annually. HQIIS has a real-time interface with the Department of Defense (DoD) Registry which assigns unique identifiers (UIDs) to all DoD sites and assets.

1.3 SDSFIE-V 4.0 Army Adaptation Attributes Table

Table 2 describes all SDSFIE-V 4.0 Army Adaptation attributes for StormwaterUtilityNode and whether they are required to be populated. All StormwaterUtilityNode data shall include in their schema the mandatory SDSFIE-V 4.0 Army Adaptation foundational attributes listed in the Army QAP General Guidance and in Table 2. All SDSFIE-V 4.0 Army Adaptation foundational attributes are required to be present in the schema but not all are required to be populated.

The SDSFIE-V 4.0 Army Adaptation Attribute column indicates the model name of all attributes present in the SDSFIE-V 4.0 Army Adaptation. Additional attribute information such as data type and length may be accessed on SDSFIE Online.

The Definition column includes each attribute’s approved definition for the SDSFIE-V 4.0 Army Adaptation.

The Constraining Enumeration column indicates whether the attribute is constrained by a set list of values (enumeration). If yes, the name of the enumeration is shown and the entire set of enumerants is listed in Appendix A.

The Nullable Attributes column indicates whether the attribute can contain null values according to the approved SDSFIE-V 4.0 Army Adaptation’s “Is Nullable” property. If yes, the attribute may contain null values. If no, the attribute must be populated with a valid entry.

Table 2: StormwaterUtilityNode SDSFIE-V 4.0 Army Adaptation Attributes

SDSFIE-V 4.0 Army

Adaptation Attribute Definition

Constraining

Enumeration

Nullable

Attribute stormwaterUtilityNodeIdpk Primary Key. A unique, user-defined identifier for each record or instance of an entity. n/a No coordinateX The x component of a point or the geometric centroid of the polygon or polyline. n/a Yes coordinateY The y component of a point or the geometric centroid of the polygon or polyline. n/a Yes coordinateZ The z component of a point or the geometric centroid of the polygon or polyline. n/a No equipDatePutInService Date the non-real property item was put in service (DD/MM/YYYY). n/a No facilityNumber The DoD Component developed asset identification that is normally visible, either painted or by signage on the exterior of a real property facility, used for visual identification of the facility n/a No featureArea The size of the polygon. n/a Yes featureAreaUom The unit of measure for area. GsipAreaUom Yes featureDepth The depth of the feature. n/a Yes featureDepthUom The unit of measure for depth. GsipLengthUom Yes featureDescription The narrative describing the feature. n/a Yes featureHeight The overall height of the feature measured from the surface of the earth Above Ground Level

(AGL). Height of the overall feature is measured, not elevation at the base of the feature. n/a Yes featureHeightUom The unit of measure for height. GsipLengthUom Yes featureName The common name of the feature. n/a Yes featurePerimeter The distance around the boundary of the area, zone, or subject item in linear units. n/a Yes featurePerimeterUom The unit of measure for perimeter. GsipLengthUom Yes flowRate The manufacturer's pump capacity (e.g., gpm) rating at a specific design total dynamic head

(TDH), usually depicted by a pump curve. n/a Yes installationId The official code assigned by the Military Service (includes Washington Headquarters Services) to identify the site or group of sites that make up an installation. n/a No mediaId Used to link the record to associated multimedia records that reference data. n/a Yes metadataId Used to represent or link to feature level metadata. n/a Yes nominalValveSize The manufacturer's designated size, or nominal (i.e., rounded to the nearest unit) diameter for the subject item (e.g., 1in gas hydrant, 2in meter, 6in pipe). NominalValveSize Yes operationalStatus The state of usability of the feature. OperationalStatus Yes ownerName The name of the item owner. n/a No pressureUom The unit of measure for head. PressureUom Yes projectId Project identifier. n/a No

1 Each Real Property Network Identifier is system dependent (likely system generated) at the site/installation level. For combined data from multiple databases and upward reporting, the Real Property Network

Identifier can be concatenated with the Real Property Site Unique Identifier (RPSUID) to identify the specific network. Each real property network shall have an installation unique Real Property Network Identifier in the base/installation RPI database. A site/installation may have multiple real property networks of the same type; each independent network must have its own Real Property Network Identifier. There must be at least one linear structure assigned to each Real Property Network Identifier. Source: RPIM Version 10.0. September 29, 2017.

Table 2: StormwaterUtilityNode SDSFIE-V 4.0 Army Adaptation Attributes

SDSFIE-V 4.0 Army

Adaptation Attribute Definition

Constraining

Enumeration

Nullable

Attribute pumpHead The normal operating head for the subject item. n/a Yes pumpType The type of pump. PwPumpType Yes rpaPredomCurrentUseCatCode The real property category code (CATCODE) that classifies the current use of the asset and corresponds to the largest quantity of the asset that is utilized for a single purpose.

n/a No rpInterest The designator used to identify the type of legal interest that DoD holds in a real property asset. RpaInterestType Yes rpnid The designator that distinguishes one real property network (RPN) from another within a RPI database.1 n/a No rpsuid A non-intelligent code used to permanently and uniquely identify a DoD real property site. n/a No rpuid A non-intelligent code used to permanently and uniquely identify a DoD real property asset based on its current use. If a feature does not have a rpuid, use the code “111.” If a feature has a pending rpuid, use the code “999.” n/a No sdsId A unique identifier for all entities in the SDSFIE. n/a No stormwaterNodeType The type of stormwater network node that this feature represents. StormwaterNodeType No valveType The type of valve. ValveType Yes valveUse The valve use. ValveUse Yes zone The management zone. n/a No

1.4 Policy

Requirements and justification for the StormwaterUtilityNode feature are established in the following DoD and Army guidance and policy documents:

AR 115-13, Installation Geospatial Information and Services: AR 115-13 establishes the requirement for installation IGI&S personnel to collect StormwaterUtilityNode geospatial data for all installations and sites and submit quarterly to the Headquarters Department of Army (HQDA) geospatial data repository.

EM 1110-3-136, Drainage and Erosion Control Mobilization Construction: EM 1110-3-136 provides guidance for standards to be used for drainage and erosion control for U.S. Army mobilization construction.

Descriptions for the following DoD and Army guidance and policy documents may be found in the QAP General Guidance:

DoDI 4165.14, Real Property Inventory and Forecasting AR 405-45, Real Property Inventory Management AR 210-20, Real Property Master Planning for Army Installations UFC 2-100-01, Installation Master Planning

The most recent version of the DoD and Army documents listed above can be obtained from the Army Publishing Directorate website, http://www.apd.army.mil/. The most recent version of the United Facilities Criteria (UFC) documents listed above can be obtained from the National Institute of Building Sciences (NIBS) website, http://www.wbdg.org/ccb/browse_cat.php?o=29&c=4.

2.0 DATA COLLECTION REQUIREMENTS

2.1 ISO 19157 Data Quality Element Categories

The following section contains guidance and rules for collecting and attributing StormwaterUtilityNode features based on the ISO 19157 element categories for data quality.

2.2 Completeness

StormwaterUtilityNode features should include all instances of stormwater nodes associated with stormwater utilities that are within the boundary of land owned, leased, or held by the installation. StormwaterUtilityNode features may be associated with many different stormwater utility category codes. Review the StormwaterUtilitySegment and other stormwater utility QAPs for information on how to properly capture all stormwater utility features. The Real Property Asset Unique Identifier (rpuid) attribute must be populated in order to link StormwaterUtilityNode features to the APSR. Discrepancies between the StormwaterUtilityNode layer and the APSR should be coordinated with the installation Real Property Accountable Officer (RPAO) for reconciliation. There should be a many-to-one match between StormwaterUtilityNode features and the APSR. The StormwaterUtilityNode layer must contain attribute fields as indicated in Table 2. Attribute fields that are not nullable (Nullable = No) must be populated. Attribute fields that are nullable (Nullable = Yes) are not required to be populated.

In order for the StormwaterUtilityNode layer to be considered complete, all Non-Nullable attributes must be populated.

2.3 Logical Consistency

The StormwaterUtilityNode layer should adhere to the data structure, attribution, and relationship rules established in SDSFIE-V 4.0 Army Adaptation and the SDSFIE-V 4.0 Army Adaptation Implementation Guidance.

Where applicable, a unique Facility Number must be assigned to each StormwaterUtilityNode feature and be captured in the “facilityNumber” attribute.

2.4 Topological Consistency

As stated above, StormwaterUtilityNode features should include all stormwater utility nodes associated with stormwater real property assets that are within the boundary of land owned, leased, or held by the installation, as reported in the APSR. See other stormwater utility QAPs for specific applicable category codes.

When implementing the area geometry, each StormwaterUtilityNode feature must be represented by a separate polygon. All StormwaterUtilityNode features shall have topologically correct polygons and shall be corrected to avoid polygons with invalid geometry, polygons with negative area values, polygons with two or fewer vertices, and slivers.

When implementing the line geometry, each StormwaterUtilityNode feature must be represented by a series of line segments. Line segments must not overlap, self-intersect, have dangling arcs, or node mismatches.

When implementing the point geometry, each StormwaterUtilityNode feature must be represented by a single point. All StormwaterUtilityNode point features should be discrete locations where no two points have identical coordinate values.

StormwaterUtilityNode features must be snapped to their associated StormwaterUtilitySegment or other real property feature.

2.5 Positional Accuracy

StormwaterUtilityNode features must meet a minimal level of positional accuracy for depiction on a 1:1,200 map scale cartographic product.

2.6 Horizontal Accuracy

StormwaterUtilityNode features shall have a minimum absolute horizontal accuracy of 1.0 foot.

The horizontal accuracy will be compiled, tested and reported in accordance with Part 3 of the Federal Geographic Data Committee’s Geospatial Positioning Accuracy Standards: the National Standard for Spatial Data Accuracy (NSSDA). Spatial accuracy will be reported at the 95% confidence level. More information about the spatial accuracy standard is available at the following URL: http://www.fgdc.gov/standards/standards_publications/index_html.

StormwaterUtilityNode data is intended for use at a minimum mapping scale of 1:1,200.

2.7 Vertical Accuracy

At this time, there is no requirement for vertical accuracy for StormwaterUtilityNode features.

2.8 Thematic Accuracy

Only features that fit the SDSFIE-V 4.0 Army Adaptation StormwaterUtilityNode layer definition should be captured in this layer. Stormwater node features where the stormwaterNodeType attribute value is equal to “swDischarge,” “swDownspout,” “swFitting,” or “swInlet,” should not be captured in the StormwaterUtilityNode feature type but should instead be captured in their appropriate subclass. See the stormwater utility node subclass QAPs for additional information. Stormwater junction features will be captured in the UtilityFeature_SWJunction feature type. See the UtilityFeature_SWJunction QAP for additional information. Stormwater area features should be captured in the StormwaterUtilityNode_Area subclass.

Correctness of attributes for StormwaterUtilityNode features should be compared against the APSR, where applicable.

2.9 Temporal Accuracy

StormwaterUtilityNode features should reflect what is reported in the APSR.

The StormwaterUtilityNode layer should be updated annually, at a minimum, to account for new, modified, or disposed stormwater utility nodes.

2.10 Usability

The StormwaterUtilityNode layer should conform to IGI&S Program Data Validation rules.

2.11 Spatial Reference

The bounding coordinates to capture the north, south, east, and west-most spatial extents of the StormwaterUtilityNode layer will be based on one of the following: a) Universal Transverse Mercator (UTM) Zone, meters, or b) local State Plane Coordinate System, feet. The horizontal datum to be utilized for UTM is either World Geodetic System 1984 (WGS84) or North American Datum 1983 (NAD83), and only NAD83 for the State Plane Coordinate System. The vertical datum shall be Mean Sea Level (MSL) as determined by the Earth Gravitational Model 2008 (EGM2008) Geoid.

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N no m on ve nt io na l u ni t o f m ea su re m en t o f l en gt h eq ua l t o 0.

m et re s.

N ut ic al on ve nt io na l u ni t o f m ea su re m en t o f l en gt h eq ua l t o

1, 2.

m et re s.

N pi m on ve nt io na l u ni t o f m ea su re m en t o f l en gt h eq ua l t o 0.

m et re s.

N ut eM on ve nt io na l u ni t o f m ea su re m en t o f l en gt h eq ua l t o 5, fe et

(1 ,6

.3 m et re s)

N

H as n ot b ee n de te rm in ed a t d at e of re co rd p op ul at io n an d sh ou ld b e re vi si te d at a la te r d us Su rv ey

Fo on ve nt io na l u ni t o f m ea su re m en t o f l en gt h eq ua l t o

0.

m et er s.

Se t b y th e

U .S

. C oa st an d G eo de tic S ur ve y as e xa ly

/3 m et er s.

N us Su rv ey on ve nt io na l u ni t o f m ea su re m en t o f l en gt h eq ua l t o

5, U

.S . S ur ve y Fe et (1

,6

.3 m et re s)

N ya on ve nt io na l u ni t o f m ea su re m en t o f l en gt h eq ua l t o

0.

m et re s.

N m er at io n:

N om in al V al ve

Si ze m er in iti on

D es cr ip

0.

1/ in ch

(0 .2 in ch

N

1/ in ch

(0 .5 in ch

N

3/ in ch

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1i nc h

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1.

1/ in ch (1

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0.

in ch es

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in ch es

N ch (1

4.

in ch es

N ch (1

5.

in ch es

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in ch es

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in ch es

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in ch es

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in ch es

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in ch es

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in ch es

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6.

in ch es

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2.

in ch es

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8.

in ch es

N

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0.

in ch es

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in ch es

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in ch es

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6.

in ch es

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in ch es

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2.

in ch es

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4.

in ch es

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4.

in ch es

N dn in al d ia m et er

0m m

N

N om in al d ia m et er m m

N in al d ia m et er

0m m

N

N om in al d ia m et er m m

N in al d ia m et er

0m m

N in al d ia m et er

0m m

N

N om in al d ia m et er m m

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0m m

N in al d ia m et er

5m m

N

N om in al d ia m et er m m

N in al d ia m et er

0m m

N

N om in al d ia m et er m m

N in al d ia m et er

0m m

N in al d ia m et er

0m m

N in al d ia m et er

0m m

N

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0m m

N in al d ia m et er

0m m

N in al d ia m et er

5m m

N

N om in al d ia m et er m m

N in al d ia m et er

0m m

N

N om in al d ia m et er m m

N

N om in al d ia m et er m m

N in al d ia m et er

2m m

N

N om in al d ia m et er m m

N in al d ia m et er

0m m

N

N om in al d ia m et er m m

N

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0m m

N

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N

N om in al d ia m et er m m

N

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N

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N

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N in al d ia m et er

5m m

N

N om in al d ia m et er m m

N

N om in al d ia m et er m m

N in al d ia m et er

0m m

N

N om in al d ia m et er m m

N

N om in al d ia m et er m m

N r H as b ee n de te rm in ed to b e a sp ec ifi c va lu e th at is n pr es en t i n th e cu rre nt c on str ai ni ng e nu m er at io n.

H as n ot b ee n de te rm in ed a t d at e of re co rd p op ul at io n, a sh ou ld b e re vi si te d at a la te r d un kn ow n

U nk no w m er at io n:

O pe ra tio na lS ta tu s

E nu m er in iti on

D es cr ip do ne d Th e fe at ur e is a ba nd on ed b ut re m ai ns in p la ce a nd is op at io na l.

N cl os ed fe at ur e is o ffi ci al ly c lo se d, b ut n ot y et tr an sf er re d ou t of D oD o w ne rs hi p.

Po nt ia lly d ue to th e

Ba se

R ea lig nm en t a nd C lo su

C m is sio n

(B R

A C

N

Se rv ic e Th e fe at ur e is a bl e to fu nc tio n or b e us ed ; i t i s o pe ra tio na l.

N tIn

Se rv ic e

Th e fe at ur e is o pe ra tio na l, bu t n ot c ur re nt ly b ei ng u se or t p la nn ed to b e us ed

N r H as b ee n de te rm in ed to b e a sp ec ifi c va lu e th at is en t i n th e cu rre nt c on str ai ni ng e nu m er at og ra m fe at ur e is p ro gr am m ed to b ec om e op er at io na l, bu t n ye t o pe ra tio na l.

N os fe at ur e ha s b ee n pr op os ed to b e pr og ra m m ed

, b is t y et p ro gr am m ed

N ov fe at ur e pr ev io us ly e xi st ed a t t he lo ca tio n, b ut h as b ee n re m ov ed

; i t i s t he h is to ric lo ca

H as n ot b ee n de te rm in ed a t d at e of re co rd p op ul at io n, ld b e re vi si te d at a la te r d po ra ry fe at ur e is in te nd ed to b e us ed fo r a li m ite d am ou nt o f tim e;

n ot p er m an en t.

N rC on str uc tio n

Th e fe at ur e is in th e pr oc es s o f b ei ng b ui lt.

ow n

H as b ee n fo un d to b e no t k no w ab le a t t he d at e of re po pu la m er at io n:

P re ss ur eU m er in iti on

D es cr ip tm os ph er e (1 kg p er m *s ec 2(

PA

N ba r B ar (1

.0 E+ kg p er m *s ec 2(

PA

eA

B ar ye dy ne s/ cm

(a bs ol ut e)

N eG ye dy ne s/ cm

(g au ge

N cm

H g

C en tim et er m er cu ry (a tm os ph er e/

N dp

A u ni t o f p re ss ur e eq ua l t o on e te nt h of a P as ca l.

N

2o u ni t o r d eg re e of a tm os ph er ic p re ss ur e m ea su re d by ro m et er o r m an om et er e qu al to th e pr es su re b al an ce in c ol um n of w at er

N es o f w at er a t 4

°C ab so lu te

N

G es o f w at er a t 4 °C ga ug e)

N g A u ni t o r d eg re e of a tm os ph er ic p re ss ur e m ea su re d m et er o r m an om et er e qu al to th e pr es su re b al an ce in c ol um n of m er cu ry

N gA es o f m er cu ry a t 0

°C ab so lu te

N gG es o f m er cu ry a t 0 °C ga ug e)

N lb fIn

Th e am ou nt o f a bs ol ut e pr es su re g en er at ed b y a w ei gh t o f a on e-po un d m as s a pp lie d ov er a su rfa ce a re a of re in ch

N lb fIn

2F t

Th e am ou nt o f a bs ol ut e pr es su re g en er at ed b y a w ei gh t o f a on e-po un d m as s a pp lie d ov er a su rfa ce a re a of re in ch p er fo ot

N eg aB ar ye eg ab ar ye

(g au ge

N ni t o r d eg re e of a tm os ph er ic p re ss ur e m ea su re d m et er o r m an om et er e qu al to th e pr es su re b al an ce m m c ol um n of w at er

N

H g

M ill im et er s o f H g

(to rr)

N gA im et er s o f H g at

°C ab so lu te

N gG im et er s o f H g at

°C ga ug e)

N pa ni t o f p re ss ur e eq ua l t o on e th ou sa nd th o f a p as ca l.

N

S A u ni t o f v is co sit y eq ua l t o on e th ou sa nd th o f a p as ca l se co nd o r o ne c en tip oi se

N ni t o f p re ss ur e eq ua l t o on e ne w to n pe r s qu ar e m et er

N s

A c en tim et er

-g ra m -s ec on d un it of d yn am ic v is co sit y eq ua l to o ne d yn e-se co nd p er sq ua re c en tim et er

N pS Ft ds

/ft 2.

ps i Po un ds p er sq ua re in ch

N iA ds

/in

(a bs ol ut e)

N iG ds

/in

(g au ge

N m er at io n:

R pa In te re st T yp e

E nu m er in iti on

D es cr ip ea in te re st th at g ra nt s o r r es tri ct s a ri gh t t o a re al p ro pe rty t f or a sp ec ifi c pu rp os e( s)

D ef in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on

.1 r U se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or tin g”

(R

PI

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o f t

R l P ro pe rty

In fo rm at io n

M od el (V er si

8.

1) is ''E

A

SE

fe e

R ea l p ro pe rty a ss et w he re a fe e si m pl e ow ne rs hi p in te h el d by th e

U ni te d

St at es g ov er nm en t a nd a M ili ep ar tm en t o r W H

S ex er ci se s a cc ou nt ab ili ty

D ef in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''F

EE

Th is v al ue is fo r f ee ti tle to er ty , a nd th us n ot a v al id e nu m er an t fo r t he in te re st

Ty pe a ttr ib ut e in th e

N on

D od

Pr op er ty

O fC on ce rn fe at ur e ty pe gv pv ut ua lly b en ef ic ia l p ar tn er sh ip b et w ee n a

M ili ar tm en t o r W

H S an d a pr iv at e en tit y, w he re e qu ity re st in a p ro je ct is sh ar ed fo r a sp ec ifi c bu sin es s pu rp os e.

O w ne rs hi p, o pe ra tio ns

, a nd m an ag em en t r ig ht s

Ex am pl es in cl ud e su ch th in gs a s j oi nt v en tu re , p ub lic pr iv at e pa rtn er sh ip

, u til iti es p riv at iz at io n, e tc . T hi s a lso ud es p ar tn er sh ip s w he re th er e is a re ve rs io au se

. D ef in iti on so ur ce

: O ffi ce o f t he

A ss is

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''G

V

PV

of e re al p ro pe rty a ss et a re ty pi ca lly h el d by th e pr iv at e en tit y w ho g ua ra nt ee s c er ta in u se ri gh ts to th e

M ili ar tm en t o f W

S.

Se cr et ar y of

D ef en se fo r E ne rg y, In st al la tio ns , a vi ro nm en t.

R ea l P ro pe rty In fo rm at io n M od el

V si on

.1 fo r U se in D oD R ea l P ro pe rty S ys te m s a or tin g” (R

PI

M

V er si on

.1

M ar ch

1, 5) rit te n ag re em en t t ha t c on ve ys a p os se ss or y in te re al p ro pe rty , w he re a M ili ta ry D ep ar tm en t o r W

H S ex er ci se s a cc ou nt ab ili ty fo r t ha t a gr ee m en t.

D ef in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''L

EA

S' ss ss th an a fe e in te re st in re al p ro pe rty th at d oe s n ot fa ll in to a ny o th er c at eg or y.

T he sp ec ifi c in te re st g ra nt ile d in th e go ve rn in g in st ru m en t.

D ef in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''L

ES

S' m hp i

A n ag re em en t o r c on tra ct w ith a n el ig ib le e nt ity to a cq ui on st ru ct m ili ta ry h ou sin g

(fa m ily o r u na cc om pa ni ed pu rs ua nt to T itl e

U ni te d St at es

C od e, S ec tio ns

D ef in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''M

H

PI

um er at io n

(a nd p op ul at io n of a ttr ib ut e) is n ot a pp lic r t he p ar tic ul ar fe at ur e (re co rd

N l p ro pe rty a ss et w he re a fe e si m pl e ow ne rs hi p in te h el d by th e

U ni te d

St at es g ov er nm en t b ut a cc ou nt ab ili ty xe rc is ed b y a no n- D oD F ed er al A ge nc y.

N ot to b e us ed w ith

P ub lic D om ai n La nd

D ef in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''O

N

FA

fg re ig n go ve rn m en t h ol ds ti tle to th e re al p ro pe rty a ss ha s g ra nt ed th e

U ni te d

St at es g ov er nm en t c er rig ht s f or u se b y a

D oD

C om po ne nt

D ef in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''O

N

FG

on st

A st at e or o ne o f i ts p ol iti ca l s ub di vi sio ns h ol ds ti tle to th e re al p ro pe rty a ss et a nd h as g ra nt ed th e U ni te d St er nm en t c er ta in ri gh ts fo r u se b y a M ili ar tm en t o r W

S.

in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''O

N

ST

pd

Pu bl ic L an ds a re a ny la nd o r i nt er es t i n la nd o w ne d by th e

U ni te d

St at es w ith in th e se ve ra l S ta te s a cc ou nt ab le to ad in is te re d by th e

Se cr et ar y of th e

In te rio r t hr ou gh th e B ur ea u of

L an d M an ag em en t, w ith ou t r eg ar d to h ow th e U ni te d St at es a cq ui re d ow ne rs hi p.

D oD u se is g en er ly id ed th ro ug h Pu bl ic

L an d O rd er s o r E xe cu tiv e

O rd er s.

D ef in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''P

D O

M iv ci lit y ow ne d an d co nt ro lle d by a p riv at e en tit y an d op er at in g w ith p er m is si on o n

Fe de ra lly o w ne d la nd s.

Ex am pl es o f p riv at e ow ne rs in cl ud e a fra nc hi se o r b k.

in iti on so ur ce

: O ffi ce o f t he

A ss is ta nt S ec re ta ry o f

D ef en se fo r E ne rg y, In st al la tio ns , a nd E nv iro nm en t.

R ea l P ro pe rty

In fo rm at io n

M od el V er si on se in

D oD

R ea l P ro pe rty

S ys te m s a nd

R ep or

M V er si on

.1 M ar ch

1, 5)

Th e

R

PA

In te re st

T yp e C od e fo r t hi s en um er an t, as li ste d in

A pp en di x A o l P ro pe rty

In fo rm at io n

M od el (V er is ''P

R

IV

tb d

H as n ot b ee n de te rm in ed a t d at e of re co rd p op ul at io n, ld b e re vi si te d at a la te r d m er at io n:

S to rm w at er N od eT yp e

E nu m er in iti on

D es cr ip sw at ch

B lo ca tio n of a re ce pt ac le , l oc at ed w he re a st re et g ut te r or o pe n dr ai n op en s i nt o a se w er

, d es ig ne d to re ta in m at te r th at w ou ld n ot re ad ily p as s t hr ou gh th e se w er

N is ch ge lo ca tio n w he re st or m w at er is d isc ha rg ed to th e gr ou nd

, s ur fa ce w at er o r n on

-D oD in fra st ru ct ur e, i.

bi ne d Se w er

O ve rf lo w (C

SO

N ow ns lo ca tio n of a p ip e no rm al ly a tta ch ed to th e sid e bu ild in g or st ru ct ur e w hi ch c on ve ys ra in fa ll ru no ff fro ro of a re a to th e gr ou nd su rfa ce o r t he st or m se em

N

Fi tti ng lo ca tio n of a d ev ic e fo un d at th e jo in t b et w ee n tw o lin es w he re a tr an sit io n of so m e so rt m us t o cc ur

N fa ll

A lo ca tio n w he re st or m w at er e nt er s f ro m n on

-D O er ty in to th e

D O

D st or m w at er sy st em

N le t

A lo ca tio n w he re st or m w at er is c ol le ct ed a nd re ce iv th e ut ili ty sy st em

N llu tio nC on tro l

A c on tro l d ev ic e th at is u se d to p re ve nt p ol lu tio m w at er ru no ff an d/ or m an ag e th e qu an tit y an im ov e th e qu al ity o f s to rm w at er ru no ff in th e m os t c os t-ef fe ct iv e m an ne r.

Th is in cl ud es e qu ip m en t o r s tru ct ur al B es t M an ag em en t Pr ac tic es (B

M P) in th ei r a pp lic at io n to th e st or m w ro l d ev ic es

N m p

A m ec ha ni ca l d ev ic e th at e ith er li fts a nd /o r m m w at er th ro ug h th e sy st em

N m pS ta tio n Th e lo ca tio n of a st ru ct ur e in w hi ch o ne o r m or e pu at e to m ai nt ai n flo w a t a de qu at e pr es su re w ith er d is tri bu tio n sy st em

N

Sy st em

V ve lo ca tio n of a d ev ic e th at is fi tte d to a p ip el in ifi ce in w hi ch th e cl os ur e m em be r i s e ith er ro ta te ed tr an sv er se ly o r l on gi tu di na lly in th e st or m w em so a s t o co nt ro l o r s to p th e flo w

Sy st em v al ve s a re u se d to re gu la te p re ss ur e, is ol e, ttl e flo w

, p re ve nt b ac kf lo w , a nd re lie ve p re ss ur lo ca tio n of a fi tti ng o r d ev ic e us ed to a ffe ct fl ow d/ or p re ss ur e in a st or m se w er li ne

V al ve s a re u se d to re gu la te p re ss ur e, p ur ge a ir, is ol at e or th ro ttl e flo w

, o r p re ve nt b ac kf lo w in a st or m se lin

H as n ot b ee n de te rm in ed a t d at e of re co rd p op ul at io n, ld b e re vi si te d at a la te r d m er at io n:

S w Pu m pT yp e

E nu m er in iti on

D es cr ip r H as b ee n de te rm in ed to b e a sp ec ifi c va lu e th at is en t i n th e cu rre nt c on str ai ni ng e nu m er at bm ur tfg er si bl e/ ce nt rif ug ur Tr bn er si bl e/ tu rb in e

N

H as n ot b ee n de te rm in ed a t d at e of re co rd p op ul at io n, ld b e re vi si te d at a la te r d ow n

St at us is u nk no rtL ftC tfg rti ca l l ift

/c en tri fu ga l

N ftD pl ca l l ift /d isp la ce m en t

N ftM ag ca l l ift

/m ag tic ftT rb n ve rti ca l l ift /tu rb in e N m er at io n:

V al ve

T yp e E nu m er in iti on

D es cr ip ai r A ir va lv gl e

A ng le v al ve

N au m at ic

R ec irc ul at io n A ut om at ic re ci rc ul at io n va ll B al l v al ve

N be llo w

Se el lo w se al ed v al ve

N bu tte rfl y B ut te rfl y va ec k C he ck v al ve

N pr es so rA nt iS ur ge pr es so r a nt i-s ur ge v al ve

N ro lIs ol at io n C on tro l/i so la tio n va ap hr ag ia ph ra gm v al ve

N dr yP ip e

D ry p ip e va flo

Fl oa t v al ve

N ga e va gl ob e G lo be v al ve

N ife

G at e K ni fe g at e va ee dl e va r

O th er v al ve

N t

Pi lo t v al ve

N nc h Pi nc h va

Pl v al ve

N

In di ca to r

Po st in di ca to r v al ve

N su re

R ed uc in g Pr es su re re du ci ng v al ve

N su re R eg ul at in g Pr es su re re gu la tin g va su re

R el ie f

Pr es su re re lie f v al ve

N qu ad

Q d va so id

So no id v al ve

N

A nd W

St a nd w as te v al ve

N

H as n ot b ee n de te rm in ed a t d at e of re co rd p op ul at io n, ld b e re vi si te d at a la te r d eW ay e-w ay v al ve

N tri eD ut y Tr ip le d ut y va ow n U nk no m er at io n:

V al ve

U m er in iti on

D es cr ip ck flo ac kf lo w

N bl ow of f

B lo w O ff

N ec k C he ck

N ro l C on tro l.

N n

M r H as b ee n de te rm in ed to b e a sp ec ifi c va lu e th at is en t i n th e cu rre nt c on str ai ni ng e nu m er at rv ic e

Se rv ic e

N

H as n ot b ee n de te rm in ed a t d at e of re co rd p op ul at io n, ld b e re vi si te d at a la te r d va eK ey ve k ey

N en t.

N

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IGIS Stormwater Utility Node QAP Version 4.0 TABLE
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