BS ISO 24678-6-2016 Fire safety engineering Requirements governing algebraic formulae Flashover related phenomena《消防安全工程 控制代数公式要求 闪燃相关现象》.pdf
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1、BS ISO 24678-6:2016Fire safety engineering Requirements governingalgebraic formulaePart 6: Flashover related phenomenaBSI Standards PublicationWB11885_BSI_StandardCovs_2013_AW.indd 1 15/05/2013 15:06BS ISO 24678-6:2016 BRITISH STANDARDNational forewordThis British Standard is the UK implementation o
2、f ISO 24678-6:2016.The UK participation in its preparation was entrusted to TechnicalCommittee FSH/24, Fire safety engineering.A list of organizations represented on this committee can beobtained on request to its secretary.This publication does not purport to include all the necessaryprovisions of
3、a contract. Users are responsible for its correctapplication. The British Standards Institution 2016.Published by BSI Standards Limited 2016ISBN 978 0 580 84703 5ICS 13.220.01Compliance with a British Standard cannot confer immunity fromlegal obligations.This British Standard was published under the
4、 authority of theStandards Policy and Strategy Committee on 31 August 2016.Amendments/corrigenda issued since publicationDate T e x t a f f e c t e dBS ISO 24678-6:2016 ISO 2016Fire safety engineering Requirements governing algebraic formulae Part 6: Flashover related phenomenaIngnierie de la scurit
5、 incendie Exigences rgissant les formules algbriques Partie 6: Phnomnes lis lembrasement gnralisINTERNATIONAL STANDARDISO24678-6First edition2016-08-01Reference numberISO 24678-6:2016(E)BS ISO 24678-6:2016ISO 24678-6:2016(E)ii ISO 2016 All rights reservedCOPYRIGHT PROTECTED DOCUMENT ISO 2016, Publis
6、hed in SwitzerlandAll rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized otherwise in any form or by any means, electronic or mechanical, including photocopying, or posting on the internet or an intranet, without prior written permission. Permissio
7、n can be requested from either ISO at the address below or ISOs member body in the country of the requester.ISO copyright officeCh. de Blandonnet 8 CP 401CH-1214 Vernier, Geneva, SwitzerlandTel. +41 22 749 01 11Fax +41 22 749 09 47copyrightiso.orgwww.iso.orgBS ISO 24678-6:2016ISO 24678-6:2016(E)Fore
8、word ivIntroduction v1 Scope . 12 Normative references 13 Terms and definitions . 14 Symbols . 25 Requirements governing description of physical phenomena . 26 Requirements governing documentation. 27 Requirements governing limitations 28 Requirements governing input parameters 39 Requirements gover
9、ning domain of applicability . 3Annex A (informative) Algebraic formulae for calculating the minimum heat release rate to cause flashover in residential size enclosures 4Bibliography .18 ISO 2016 All rights reserved iiiContents PageBS ISO 24678-6:2016ISO 24678-6:2016(E)ForewordISO (the International
10、 Organization for Standardization) is a worldwide federation of national standards bodies (ISO member bodies). The work of preparing International Standards is normally carried out through ISO technical committees. Each member body interested in a subject for which a technical committee has been est
11、ablished has the right to be represented on that committee. International organizations, governmental and non-governmental, in liaison with ISO, also take part in the work. ISO collaborates closely with the International Electrotechnical Commission (IEC) on all matters of electrotechnical standardiz
12、ation.The procedures used to develop this document and those intended for its further maintenance are described in the ISO/IEC Directives, Part 1. In particular, the different approval criteria needed for the different types of ISO documents should be noted. This document was drafted in accordance w
13、ith the editorial rules of the ISO/IEC Directives, Part 2 (see www.iso.org/directives).Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. ISO shall not be held responsible for identifying any or all such patent rights. Details of any
14、 patent rights identified during the development of the document will be in the Introduction and/or on the ISO list of patent declarations received (see www.iso.org/patents).Any trade name used in this document is information given for the convenience of users and does not constitute an endorsement.
15、For an explanation on the meaning of ISO specific terms and expressions related to conformity assessment, as well as information about ISOs adherence to the World Trade Organization (WTO) principles in the Technical Barriers to Trade (TBT) see the following URL: www.iso.org/iso/foreword.html.The com
16、mittee responsible for this document is ISO/TC 92, Fire safety, Subcommittee SC 4, Fire safety engineering.A list of all parts in the ISO 24678 series can be found on the ISO website.iv ISO 2016 All rights reservedBS ISO 24678-6:2016ISO 24678-6:2016(E)IntroductionThis document is intended to be used
17、 by fire safety practitioners involved with fire safety engineering calculation methods. Examples include fire safety engineers; authorities having jurisdiction such as: territorial authority officials, fire service personnel, code enforcers and code developers. It is expected that users of this doc
18、ument are appropriately qualified and competent in the field of fire safety engineering. It is particularly important that users understand the parameters within which particular methodologies may be used.Algebraic formulae conforming to the requirements of this document are used with other engineer
19、ing calculation methods during fire safety design. Such design is preceded by the establishment of a context, including the fire safety goals and objectives to be met, as well as performance criteria when a tentative fire safety design is subject to specified design fire scenarios. Engineering calcu
20、lation methods are used to determine if these performance criteria will be met by a particular design and if not, how the design must be modified.The subjects of engineering calculations include the fire-safe design of entirely new built environments, such as buildings, ships or vehicles as well as
21、the assessment of the fire safety of existing built environments.The algebraic formulae discussed in this document are very useful for estimating the consequences of design fire scenarios. Such formulae are particularly valuable for allowing the practitioner to quickly determine how a proposed fire
22、safety design should be modified to meet performance criteria. Thus, detailed numerical calculations can be delayed until final design documentation. Examples of areas where algebraic formulae have been applicable include determination of heat transfer, both convective and radiant, from fire plumes,
23、 prediction of ceiling jet flow properties governing detector response times, calculation of smoke transport through vent openings and analysis of compartment fire hazards such as smoke filling and flashover.With respect to flashover phenomena, algebraic formulae are often used to estimate the thres
24、hold (minimum) heat release rate required to produce flashover in the space under consideration. These estimates can suggest restrictions on flammable contents or an appropriate fire detection and suppression package to limit the maximum expected heat release rate to below that expected to produce f
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