ISO 3898-2013 Bases for design of structures - Names and symbols of physical quantities and generic quantities《结构设计基础 物理量和通用数量的名称和符号》.pdf
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1、 ISO 2013 Bases for design of structures Names and symbols of physical quantities and generic quantities Bases du calcul des constructions Noms et symboles des grandeurs physiques et grandeurs gnriques INTERNATIONAL STANDARD ISO 3898 Fourth edition 2013-03-01 Reference number ISO 3898:2013(E) ISO 38
2、98:2013(E)ii ISO 2013 All rights reserved COPYRIGHT PROTECTED DOCUMENT ISO 2013 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 or mechanical, including photocopying, or posting on the intern
3、et 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 Case postale 56 CH-1211 Geneva 20 Tel. + 41 22 749 01 11 Fax + 41 22 749 09 47 E-mail copyrightiso.org Web w
4、ww.iso.org Published in Switzerland ISO 3898:2013(E) ISO 2013 All rights reserved iii Contents Page Foreword iv 0 Introduction .v 1 Scope . 1 2 Normative references 1 3 Names and symbols for physical quantities and units 1 3.1 General rules and method for forming and writing names and symbols . 1 3.
5、2 Rules and method for forming and writing names and symbols of physical quantities . 1 3.3 Rules for forming and writing names and symbols of units 4 3.4 Additional rules for forming of symbols . 5 3.5 Tables 6 Annex A (normative) Definition and scope of generic quantities .29 Bibliography .41 ISO
6、3898:2013(E) Foreword ISO (the International 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
7、for which a technical committee has been established 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) o
8、n all matters of electrotechnical standardization. International Standards are drafted in accordance with the rules given in the ISO/IEC Directives, Part 2. The main task of technical committees is to prepare International Standards. Draft International Standards adopted by the technical committees
9、are circulated to the member bodies for voting. Publication as an International Standard requires approval by at least 75 % of the member bodies casting a vote. 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
10、 responsible for identifying any or all such patent rights. ISO 3898 was prepared by Technical Committee ISO/TC 98, Bases for design of structures, Subcommittee SC 1, Terminology and symbols. This fourth edition cancels and replaces the third edition ( ISO 3898:1997), which has been technically revi
11、sed. The main reasons for this fourth edition of ISO 3898 are application of new techniques and methods in the analysis and design of structures, e.g. probabilistic and partial factor methods, introduction of codes for new design situations, and more advanced materials have increased the need for a
12、more fundamental set of rules for the formation and presentation of symbols, and revisions of the ISO Guide 31 series for the International System of Units (S.I.). The major technical changes from the previous edition are the following: the normative references have been updated; particularly with r
13、egard to the ISO 80000 series; the so-called kernel-index-method for forming and writing names and new (compound) symbols is presented; the presentation of the (tables of) indices has been altered in accordance herewith; the concept of generic quantities is introduced (Annex A).iv ISO 2013 All right
14、s reserved ISO 3898:2013(E) 0 Introduction 0.1 The concept of a physical quantity The concept of a physical quantity is, according to ISO/IEC Guide 99, defined by the following descriptive statement: an attribute of a phenomenon, body or substance that can be distinguished qualitatively and determin
15、ed quantitatively. The concept physical quantity is designated by a name = a verbal designation of an individual concept (see 3.4.2 of ISO 1087-1:2000) and a corresponding symbol. A physical quantity is characterized by its unique dimension. The dimension of a physical quantity is expressed in units
16、 (of measurement). NOTE 1 According to the ISO/IEC Directives, Part 2 for drafting International Standards, SI units are applied. NOTE 2 Physical quantities can be dimensionless, e.g. often the case with factors. In that case their dimension is noted as 1. The names and symbols of the most important
17、 physical quantities (according ISO/IEC Guide 99: physical quantities in a general sense) - and their characterizing units - within the field of physical sciences and technology are given in ISO 80000-1. However, this is a limited set of names and symbols. 0.2 General method for forming and writing
18、names and symbols of physical quantities The names and symbols of the most important physical quantities (and their units) within the field of the design of structures are given in this document: see the Tables 2 to 4 of this International Standard (but necessarily there will/must be some overlap wi
19、th ISO 80000-1). This set of names and symbols is also limited, but with the help of the method given in this International Standard (kernel-index-method) t he u ser w i l l be able t o form/compose new a nd u n ique (compou nd) s y mbol s for a wide variety of physical quantities (according ISO/IEC
20、 Guide 99: particular physical quantities). Adapted reading of the compound symbols moreover enables the user to designate and particularize the corresponding unique names of the physical quantities (see examples in 3.2.2.5 and 3.2.2.8). The method itself is presented/worked-out in 3.1 of this Inter
21、national Standard, the kernel of a compound symbol is given in or has to be chosen from the above mentioned Tables 2 to 4 and the indices forming that unique (compound) symbol (mostly subscripts) are given in or have to be chosen from Tables 5 to 10. ISO 2013 All rights reserved v Bases for design o
22、f structures Names and symbols of physical quantities and generic quantities 1 Scope This International Standard covers physical quantities in a general sense. The kernel-index-method enables to form (compound) symbols of physical quantities related to a particular material and/or a particular techn
23、ical field of design of structures. It also g ives t he main names, sy mbols, and unit s for physical quant it ies w it hin t he f ield of desig n of st r uc t ures. Annex A in a general sense covers generic quantities which are genuine to this field. The kernel-index- method can likewise be applied
24、. 2 Normative references The following documents, in whole or in part, are normatively referenced in this document and are indispensable for its application. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any ame
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