ASHRAE FUNDAMENTALS SI CH 22-2017 PIPE DESIGN.pdf
《ASHRAE FUNDAMENTALS SI CH 22-2017 PIPE DESIGN.pdf》由会员分享,可在线阅读,更多相关《ASHRAE FUNDAMENTALS SI CH 22-2017 PIPE DESIGN.pdf(40页珍藏版)》请在麦多课文档分享上搜索。
1、22.1CHAPTER 22PIPE DESIGNFUNDAMENTALS. 22.1Codes and Standards . 22.1Design Considerations. 22.1General Pipe Systems 22.1Design Equations. 22.5Sizing Procedure 22.10Pipe-Supporting Elements . 22.10Pipe Expansion and Flexibility 22.11Pipe Bends and Loops 22.12PIPE AND FITTING MATERIALS 22.14Pipe 22.1
2、4Fittings . 22.18Joining Methods . 22.18Expansion Joints and Expansion Compensating Devices 22.20APPLICATIONS. 22.22Water Piping 22.22Service Water Piping 22.23Steam Piping 22.29Low-Pressure Steam Piping. 22.30Steam Condensate Systems 22.32Gas Piping 22.35Fuel Oil Piping. 22.36HIS CHAPTER discusses
3、pipe systems, materials, design, in-Tstallation, supports, stress calculations, pipe expansion andflexibility, bends and loops, and application of pipe systems com-monly used for heating, air conditioning, refrigeration, and servicewater. When selecting and applying components; applicable localcodes
4、, state or provincial codes, and voluntary industry standards(some of which have been adopted by code jurisdictions) must befollowed. Further details on specific piping systems can be found inapplication-specific chapters of the ASHRAE Handbook.1. FUNDAMENTALS1.1 CODES AND STANDARDSThe following org
5、anizations in the United States issue codes andstandards for piping systems and components:ASME American Society of Mechanical EngineersASTM American Society for Testing and MaterialsNFPA National Fire Protection AssociationICC International Code CouncilMSS Manufacturers Standardization Society of t
6、he Valve and Fittings Industry, Inc.AWWA American Water Works AssociationParallel federal specifications also have been developed by gov-ernment agencies and are used for many public works projects.Chapter IV of ASME Standard B31.9 lists applicable U.S. codes andstandards for HVAC piping. In additio
7、n, it gives requirements forsafe design and construction of piping systems for building heatingand air conditioning. ASME Standard B31.5 gives similar require-ments for refrigerant piping.1.2 DESIGN CONSIDERATIONSPipes are conduits in which fluids compressible (e.g., air, steam)and noncompressible (
8、e.g., water) flow in a system, in response toa pressure differential. Piping system designers should assess thefollowing aspects: Code requirements.Load: the amount of energy or fluid to be moved through the pipeto where it is needed; determination of load is not covered in thischapter (see Chapters
9、 16 to 18 for information on load calcula-tions).Working fluid and fluid properties in the pipe.Pressure and temperature of the fluid.External environment of the pipe: outdoor installations deal withtemperature extremes, environmental contaminants, and ultravio-let radiation. Other environments coul
10、d contain caustic chemicals.Soil can contain elements that can be corrosive to undergroundpipe systems.Installation cost.Pipes resistance to chemical attack from the fluid.When designing a fluid flow system, two related but distinct con-cerns emerge: sizing the pipe and determining the flow/pressure
11、 rela-tionship. The two are often confused because they can use the sameequations and design tools. Nevertheless, they should be determinedseparately.This chapter focuses on sizing the pipe during the design phase,and to this end presents design charts and tables for specific fluids inaddition to th
12、e equations that describe fluid flow in pipes. Once asystem has been sized, it should be analyzed with more detailedmethods of calculation to determine the pump pressure, if applica-ble, required to achieve the desired flow. Computerized methods arewell suited to handling the details of calculating
13、losses around anextensive system.Not discussed in detail in this chapter, but of potentially greatimportance, are physical and chemical considerations such as pipeand fitting design; materials; and joining methods appropriate forworking pressures and temperatures encountered, as well as resis-tance
14、to chemical attack by the fluid. For more information, see Esh-bach (2009), Heald (2002), and Nayyar (1999).For fluids not included in this chapter or for piping materials ofdifferent dimensions, manufacturers literature frequently suppliespressure drop charts. The Darcy-Weisbach equation, with theM
15、oody chart or Colebrook equation, can be used as an alternative topressure drop charts or tables.1.3 GENERAL PIPE SYSTEMSMetallic Pipe SystemsEach HVAC system and, under some conditions, portions of asystem require a study of the conditions of operation to determinesuitable materials. For example, b
16、ecause the static pressure of waterin a high-rise building is higher in the lower levels than in the upperlevels, a heavier pipe or different materials may be required for dif-ferent vertical zones.Table 1 lists some typical systems and materials used for heatingand air-conditioning metallic piping.
17、 The list is not all inclusive,because piping systems are constantly being developed. The pres-sure and temperature rating of each component selected must beThe preparation of this chapter is assigned to TC 6.1, Hydronic and SteamEquipment and Systems.22.2 2017 ASHRAE HandbookFundamentals (SI)Table
18、1 Common Applications of Pipe, Fittings, and Valves for Heating and Air ConditioningApplication Size, mm Material Type Joint Type Fitting MaterialClass (When Applicable)SystemgTemperature, CMaximum Pressure at Temperature,a,bkPaChilled water51 Steel Type F (CW) Schedule 40 Thread Cast iron 125 121 8
19、6262.5 to 305 Steel A or B, Type E (ERW)Schedule 40 Weld Wrought steel Standard 121 2758Flange Wrought steel 150 121 1724Cast iron 125 121 1207Cast iron 250 121 2758Copper, hard or soft Type K or L Solder Wrought or cast Cu 38 2586 Type K softFlared (soft) 4378 Type K hardRolled groove (51 to 203) 1
20、724 Type L softPress-connect (13 to 102) 2999 Type L hardPush connect (13 to 51)Mechanical formedBraze Wrought or cast Cu 38 1724 Type L softWeld 2586 Type K softCopper, hard Type M Solder Wrought or cast Cu 38 2724 Type M hardRolled groove (51 to 203)Press-connect (13 to 102)Push connect (13 to 51)
21、Mechanical formedBraze Wrought or cast Cu 38 1586 Type M softWeld10 to 25 PEX (barrier) SDR-9 Crimp Bronze 23 1000Clamp BrassExpansion CopperCompression Engineered plasticPush fitProprietary13 to 152 PE Schedule 40,f80, SDRThermal fusion, compressionPE 49 (60 limit for some applica-tions)Varies with
22、 pipe wall thickness, grade, schedule, size. Check manu-facturers documentation for design ratings 207 to 758 at 54CHeating and recirculating51 and smaller6 to 305Steel Type F (CW) Schedule 40 Thread Cast iron 125 121 862Steel B Type E (ERW)Schedule 40 Weld Wrought steel Standard 121 2758Flange Wrou
23、ght steel 150 121 1724Cast iron 125 121 862Cast iron 250 121 2758Copper, hard or soft Type K or L Solder Wrought or cast Cu 93 2069 Type K softBraze 4378 Type K hardFlared (soft) 1413 Type L softRolled groove (51 to 203) 2999 Type L hardPress-connect (13 to 102)Push connect (13 to 51)Mechanical form
24、edBraze Wrought or cast Cu 93 2069 Type K softWeld 1413 Type L soft6 to 305 Copper, hard Type M Solder Wrought or cast Cu 93 2724 Type M hardRolled groove (51 to 203)Press-connect (13 to 102)Push connect (13 to 51)Mechanical formedBraze Wrought or cast Cu 93 1379 Type M softWeld10 to 25 PEX (barrier
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- ASHRAEFUNDAMENTALSSICH222017PIPEDESIGNPDF
