ISO TR 16576-2017 Fire safety engineering - Examples of fire safety objectives functional requirements and safety criteria《消防安全工程 消防安全目标 功能性需求和安全标准示例》.pdf
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1、 ISO 2017 Fire safety engineering Examples of fire safety objectives, functional requirements and safety criteria Ingnierie de la scurit incendie Exemples dobjectifs de scurit incendie, dexigences fonctionnelles et de critres de scurit TECHNICAL REPORT ISO/TR 16576 Reference number ISO/TR 16576:2017
2、(E) First edition 2017-06 ISO/TR 16576:2017(E)ii ISO 2017 All rights reserved COPYRIGHT PROTECTED DOCUMENT ISO 2017, Published in Switzerland All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized otherwise in any form or by any means, electronic o
3、r mechanical, including photocopying, or posting on the internet or an intranet, without prior written permission. Permission can be requested from either ISO at the address below or ISOs member body in the country of the requester. ISO copyright office Ch. de Blandonnet 8 CP 401 CH-1214 Vernier, Ge
4、neva, Switzerland Tel. +41 22 749 01 11 Fax +41 22 749 09 47 copyrightiso.org www.iso.org ISO/TR 16576:2017(E)Foreword iv Introduction v 1 Scope . 1 2 Normative references 1 3 Terms and definitions . 1 4 Examples from France, New Zealand and Japan 2 Annex A (informative) Example of fire safety desig
5、n objectives and functional requirements in France 3 Annex B (informative) Example of fire safety design objectives and functional requirements in New Zealand 11 Annex C (informative) Example of fire safety design objectives and functional requirements in Japan 23 Annex D (informative) Examples of p
6、erformance safety criteria for verification of compliance with functional requirements for individual buildings in Japan 42 Bibliography .86 ISO 2017 All rights reserved iii Contents Page ISO/TR 16576:2017(E) Foreword ISO (the International Organization for Standardization) is a worldwide federation
7、 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 established has the right to be represented on that committee.
8、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 standardization. The procedures used to develop this document and thos
9、e 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 with the editorial rules of the ISO/IEC Directives, Part 2 (s
10、ee 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 patent rights identified during the development of the
11、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. For an explanation on the voluntary nature of stand
12、ards, 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: w w w . i s o .org/ iso/ foreword .html. This documen
13、t was prepared by Technical Committee ISO/TC 92, Fire safety, Subcommittee SC 4, Fire safety engineering.iv ISO 2017 All rights reserved ISO/TR 16576:2017(E) Introduction The vast majority of fire safety designs rely on prescriptive specifications written into regional, national, or local regulation
14、s. Currently, various engineering approaches are also allowed by these regulations, although information needed for an engineering approach is still generally obtained from conventional test methods. Fire safety engineering (FSE) is a discipline increasingly being used throughout the world in suppor
15、t of performance-based design, i.e. the reliance on engineering methods to determine whether a given design meets stated performance objectives. ISO 23932 provides general principles for a performance-based methodology for engineers to assess the level of fire safety for new or existing built enviro
16、nments. Fire safety is evaluated through an engineered approach based on the quantification of the behaviour of fire and people and based on knowledge of the consequences of such behaviour on life safety, property and the environment. The difference between prescriptive and performance-based approac
17、hes to fire safety design is highlighted in ISO 23932 by emphasizing the development of quantifiable fire safety design objectives and related functional requirements as the first step in a performance-based analysis. According to ISO 23932, the fire safety objectives include, for example, safety of
18、 life, conservation of property, continuity of operations, protection of the environment and preservation of heritage. In ISO 23932, it is also mentioned that explicit performance criteria should be developed for each functional requirement. Performance criteria are engineering metrics that are expr
19、essed in deterministic or probabilistic (e.g. measures of fire risk) form to determine if each functional requirement has been satisfied by the fire safety design. As a preliminary work prior to producing ISO standardized documents for fire safety objectives, functional requirements and safety crite
20、ria, ISO/TC 92/SC 4 decides to collect the examples of those from the existing documents that have been developed in different countries in the course of moving towards performance-based fire safety design. So far, three countries have responded to the solicitation for such documents, i.e. Japan, Fr
21、ance and New Zealand. The development of these documents, as summarized below, was motivated by the attempts to rationalize the existing fire safety design practices based on prescriptive building by making use of fire safety engineering methods. Japan: First developed by the Building Research Insti
22、tute during the Ministry of Constructions project for developing a performance-based fire safety design method, 1981 to 1986, and subsequently improved by the committee on fire safety design in Architectural Institute of Japan, of which the report was published in 2000. France: Developed in the coll
23、aborative research project to establish the bases to introduce fire safety engineering into fire safety design, which was conducted with the sponsorship of French ministry for construction and home office from 2005 to 2011, involving research institutes, fire brigades, practitioners, designers and o
24、wners. New Zealand: Developed by a working group made up of external fire experts and staff from the regulatory agency. The group was set up to research and develop a suitable fire safety design framework, in the course of amending the New Zealand Building Codes corresponding to the introduction of
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