DIN 1988-300-2012 Codes of practice for drinking water installations - Part 300 Pipe sizing DVGW code of practice《饮用水设施的使用法规 第300部分 管道尺寸 DVGW 使用法规》.pdf
《DIN 1988-300-2012 Codes of practice for drinking water installations - Part 300 Pipe sizing DVGW code of practice《饮用水设施的使用法规 第300部分 管道尺寸 DVGW 使用法规》.pdf》由会员分享,可在线阅读,更多相关《DIN 1988-300-2012 Codes of practice for drinking water installations - Part 300 Pipe sizing DVGW code of practice《饮用水设施的使用法规 第300部分 管道尺寸 DVGW 使用法规》.pdf(44页珍藏版)》请在麦多课文档分享上搜索。
1、May 2012DEUTSCHE NORM DIN-Normenausschuss Wasserwesen (NAW)DIN-SprachendienstEnglish price group 17No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for Ge
2、rman Standards (DIN-Normen).ICS 91.140.60!$lr“1987379www.din.deDDIN 1988-300Codes of practice for drinking water installations Part 300: Pipe sizing; DVGW Code of practice,English translation of DIN 1988-300:2012-05Technische Regeln fr Trinkwasser-Installationen Teil 300: Ermittlung der Rohrdurchmes
3、ser; Technische Regel des DVGW,Englische bersetzung von DIN 1988-300:2012-05Directives techniques pour installations deau potable Partie 300: Calcul du diamtre des tuyaux; Directive technique DVGW,Traduction anglaise de DIN 1988-300:2012-05Together withDIN EN 806-3:2006-07,supersedesDIN 1988-3:1988-
4、12;supersedesDIN 1988-3 Supplement 1:1988-12www.beuth.deDocument comprises 44 pages03.16 DIN 1988-300:2012-05 2 A comma is used as the decimal marker. Contents Page Foreword . 3 1 Scope . 5 2 Normative references . 5 3 Terms, symbols and units . 6 4 Sizing principles . 11 4.1 General . 11 4.2 Pipe f
5、riction . 11 4.3 Individual head losses . 13 5 Sizing of cold and hot water pipes 14 5.1 General . 14 5.2 Design and total flow rates 14 5.2.1 Design flow rate 14 5.2.2 Determining the total flow rate 17 5.3 Determining the peak flow rate . 18 5.4 Determining the available friction loss . 20 5.4.1 G
6、eneral . 20 5.4.2 Percentage head loss due to individual head losses a. 20 5.4.3 Total pipe length lges. 21 5.4.4 Minimum supply pressure . 21 5.4.5 Head loss due to difference in elevation pgeo21 5.4.6 Sum of head losses in appliances 21 5.5 Pipe sizing for the hydraulically most unfavourable flow
7、path . 23 5.6 Flow balancing to obtain the hydraulically more favourable flow path 24 5.7 Special considerations concerning circulation main branch pipe of usage units 24 6 Design of circulation systems . 24 6.1 General . 24 6.2 Downfeed systems . 25 6.2.1 Heat losses and flow rates . 25 6.2.2 Diame
8、ter of circulation pipes and pump pressure 27 6.3 Upfeed systems 28 6.4 Smart loop systems 29 6.5 Balancing the system . 29 7 Documentation 29 7.1 General . 29 7.2 Hot and cold water pipes . 29 7.3 Circulation systems 30 Annex A (informative) Comparable pipe nominal sizes and resistance coefficients
9、 for fittings and valves of dissimilar materials 32 Annex B (informative) Presentation of design assumptions . 43 Bibliography . 44 DIN 1988-300:2012-05 3 Foreword This standard has been prepared by Working Committee NA 119-04-07 AA Husliche Wasserversorgung of the Normenausschuss Wasserwesen (Water
10、 Engineering Standards Committee). In response to the publication of European Standards on drinking water installations developed by Technical Committee CEN/TC 164 “Water supply”, which have been adopted as national German Standards, the German working committee decided to review the content of the
11、DIN 1988 series “Codes of practice for drinking water installations” with the intention of preparing a comprehensive and consistent set of standards. To make up for the fact that the standards developed at European level do not reach the depth required by users in Germany, it was necessary to develo
12、p supplemental German specifications, which have been published again as the 1988 series for reasons of consistency. In order to distinguish the “new” DIN 1988 series from the previous one, the individual parts of the series have been assigned three-digit numbers. Currently, the DIN 1988 series of s
13、tandards consists of the following parts, under the general title Codes of practice for drinking water installations: Part 100, Protection of drinking water, drinking water quality control; DVGW Code of practice Part 200, Installation Type A (closed system) Planning, components, apparatus, materials
14、; DVGW Code of practice Part 300, Pipe sizing; DVGW Code of practice Part 500, Pressure boosting stations with RPM-regulated pumps; DVGW Code of practice Part 600, Drinking water installations in connection with fire fighting and fire protection installations; DVGW Code of practice For more than two
15、 decades, designers and installers have had positive experience in practice with the calculation methods described in DIN 1988-3:1988-12. In light of this, it was decided to adopt the major aspects for a differentiated hot and cold water pipe sizing in the present standard, updating, however, a numb
16、er of parameters such as the design and peak flow rates, resistance coefficient, individual head losses, etc. (see Amendments clause below). Moreover, in this standard circulation systems are sized taking into account head losses along pipe runs, the aim being to ensure that a minimum hot water temp
17、erature of 55 C at the minimum water consumption is maintained throughout the system. Amendments This standard differs from DIN 1988-3:1988-12 and DIN 1988-3 Supplement 1:1988-12 as follows: a) lower design flow rates are specified for dishwashers and washing machines; b) different flow rates at pea
18、k demand are specified in accordance with current conditions of usage, and the concept of usage units has been introduced to cover downstream peak loads (e.g. those at storey level) more adequately; c) the “simplified method” is no longer permitted (e.g. that in which the pressure losses are estimat
19、ed by means of individual head losses); reference values for individual head losses may only be used in product-neutral tendering; DIN 1988-300:2012-05 4 d) the sizing procedure is to start downstream of the water meter, using the minimum pressure as specified by the water supplier; e) checking the
20、plausibility of the reference values as specified in this standard (e.g. for minimum flow pressure) by comparing them with the manufacturers data; f) circulation main branch pipes are to be sized by a detailed method on the basis of usage units; g) the sizing of circulation systems has been modified
21、 to meet hygienic requirements at minimum technical and energetic cost; h) material values are to be taken into consideration as a function of the temperature. Previous editions DIN 1988: 1930-08, 1940-09, 1955-03, 1962-01 DIN 1988-3: 1988-12 DIN 1988-3 Supplement 1: 1988-12 DIN 1988-300:2012-05 5 1
22、 Scope This standard applies, in conjunction with the DIN 1988 series and the DIN EN 806 series, to the design, installation, modification, maintenance and operation of drinking water installations in buildings and on properties, and serves as a basis for sizing pipes and for determining the size of
23、 components in circulation systems (circulation pipes, pumps, valves). The sizing of cold and hot water pipes aims at selecting the smallest possible pipe inside diameter that ensures the minimum flow rate at all draw-off points during times of peak demand. The detailed calculation method as describ
24、ed in this standard is suitable for all types of buildings. NOTE For residential buildings with up to six dwellings, the sizing of cold and hot water pipes may also be in accordance with DIN EN 806-3 subject to the mains pressure being adequate and an acceptable water hygiene being ensured. 2 Normat
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