UFC 3-230-04A-2004 WATER DISTRIBUTION [Superseded ARMY ARMY TI 814-03]《水分布[代替 ARMY ARMY TI 814-03]》.pdf
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1、UFC 3-230-04A 16 January 2004 UNIFIED FACILITIES CRITERIA (UFC) WATER DISTRIBUTION APPROVED FOR PUBLIC RELEASE; DISTRIBUTION UNLIMITED Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-UFC 3-230-04A 16 January 2004 1UNIFIED FACILITIES CRITERIA (UFC) WA
2、TER DISTRIBUTION 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. U.S. ARMY CORPS OF ENGINEERS (Preparing Activity)NAVAL FACILITIES ENGINEERING COMMAND AIR FORCE CIVI
3、L ENGINEER SUPPORT AGENCY Record of Changes (changes are indicated by 1 . /1/) Change No. Date Location This UFC supersedes TI 814-03, dated 3 August 98. The format of this UFC does not conform to UFC 1-300-01; however, the format will be adjusted to conform at the next revision. The body of this UF
4、C is the previous TI 814-03, dated 3 August 98. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-UFC 3-230-04A 16 January 2004 2FOREWORD 1 The Unified Facilities Criteria (UFC) system is prescribed by MIL-STD 3007 and provides planning, design, constr
5、uction, sustainment, restoration, and modernization criteria, and applies to the Military Departments, the Defense Agencies, and the DoD Field Activities in accordance with USD(AT distribution is unlimited.Record of Changes (changes indicated by 1/1/)No. Date LocationThis Technical Instruction super
6、sedes EI 11C103, dated 1 March 1997.(EI 11C103 text is included in this Technical Instruction and may carry EI 11C103 identification.)Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-CEMP-E TI 814-033 August 1998FOREWORDThese technical instructions (T
7、I) provide design and construction criteria and apply toall U.S. Army Corps of Engineers (USACE) commands having military constructionresponsibilities. TI will be used for all Army projects and for projects executed for othermilitary services or work for other customers where appropriate.TI are livi
8、ng documents and will be periodically reviewed, updated, and made availableto users as part of the HQUSACE responsibility for technical criteria and policy for newmilitary construction. CEMP-ET is responsible for administration of the TI system;technical content of TI is the responsibility of the HQ
9、USACE element of the disciplineinvolved. Recommended changes to TI, with rationale for the changes, should be sentto HQUSACE, ATTN: CEMP-ET, 20 Massachusetts Ave., NW, Washington, DC20314-1000.TI are effective upon issuance. TI are distributed only in electronic media through theTECHINFO Internet si
10、te http:/www.hnd.usace.army.mil/techinfo/index.htm and theConstruction Criteria Base (CCB) system maintained by the National Institute ofBuilding Sciences at Internet site http:/www.nibs.org/ccb/. Hard copies of theseinstructions produced by the user from the electronic media should be checked again
11、stthe current electronic version prior to use to assure that the latest instructions are used.FOR THE DIRECTOR OF MILITARY PROGRAMS:KISUK CHEUNG, P.E.Chief, Engineering and Construction DivisionDirectorate of Military ProgramsProvided by IHSNot for ResaleNo reproduction or networking permitted witho
12、ut license from IHS-,-,-iDEPARTMENT OF THE ARMY EI 11C103U.S. Army Corps of Engineers CEMP-E Washington, DC 20314-1000Engineering InstructionsNo. 11C103 1 March 1997WATER SUPPLY, WATER STORAGETable of ContentsPageCHAPTER 1. INTRODUCTIONParagraph 1. PURPOSE AND SCOPE 1-12. APPLICABILITY 1-13. REFEREN
13、CES 1-14. OBJECTIVES OF STORAGE . 1-1CHAPTER 2. REQUIREMENTSParagraph 1. GENERAL 2-12. GROUND STORAGE . 2-13. ELEVATED STORAGE . 2-1CHAPTER 3. DETERMINATION OF CAPACITY REQUIREMENTSParagraph 1. TOTAL STORAGE REQUIREMENT . 3-12. ELEVATED STORAGE CAPACITY 3-23. ECONOMIC ANALYSES . 3-3CHAPTER 4. DESIGN
14、 AND CONSTRUCTION OF WATER STORAGE FACILITIESParagraph 1. CONSTRUCTION MATERIALS . 4-12. ROOFS AND COVERS . 4-13. ALTITUDE VALVES 4-24. INSTRUMENTATION AND CONTROL 4-25. DISINFECTION . 4-2Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-iiCEMP-E EI 11
15、C103 1 March 1997Table of Contents (continued) Page6. DESIGN ANALYSES . 4-37. CORROSION CONTROL . 4-38. COATING SYSTEMS 4-39. BID DOCUMENTS 4-4APPENDIX A REFERENCES A-1APPENDIX B TYPICAL DESIGN EXAMPLES . B-1FIGURESFigure Title1-3 Effects of elevated storage . 1-32-1 Elevated storage tank (alternati
16、ve design) . 2-32-2 Elevated storage tank (alternative design) . 2-4Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-CEMP-E EI 11C1031 March 19971-1CHAPTER 1GENERAL1. PURPOSE AND SCOPE. This document provides design criteria for water storage requirem
17、ents atmilitary facilities, gives typical design analyses for elevated tanks, standpipes, and reservoirs, and providesguidance on the procedures to be followed in selecting sites for such storage works. The manual coversrequirements for treated water storage in the distribution system, but not the s
18、torage requirements for rawwater supplies or fire deluge systems. 2. APPLICABILITY. These instructions are applicable to all USACE elements planning and designingwater storage facilities at fixed Army and Air Force installations.3. REFERENCES. Appendix A contains a list of references used in these i
19、nstructions.4. OBJECTIVES OF STORAGE. a. Flow Requirements. Storage should meet peak flow requirements, equalize system pressures, andprovide emergency water supply. The water supply system must provide flows of water sufficient in quantityto meet all points of demand in the distribution system. To
20、do so, the source must produce the requiredquantity and quality, pressure levels within the distribution system must be high enough to provide suitablepressure, and water distribution mains must be large enough to carry these flows. It is usually inefficientand uneconomical to construct the treatmen
21、t plant and pumping stations sufficiently large to meet thelargest anticipated water demands. A water treatment plant is less efficient if flow rates through the plantare rapidly varied. Water storage facilities are constructed within a distribution network to meet the peakflow requirements exerted
22、on the system and to provide emergency storage.b. Cost. At times it is desirable to know the cost of constructing water storage for fire protection. In suchcases only the actual fire flow for the fire period will be used in establishing the proportionate share of thetotal cost of storage. Cost of th
23、at portion of the storage required for concurrent domestic, industrial, orspecial demands that cannot be curtailed during the fire period will not be charged to fire protection. c. Meeting peak flow requirements. Water supply systems must be designed to satisfy maximumanticipated water demands. The
24、peak demands usually occur on hot, dry, summer days when larger thannormal amounts of water are used for watering lawns and washing vehicles and equipment. In addition,most industrial processes, especially those requiring supplies of cooling water, experience greaterevaporation on hot days, thus req
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