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    BS PD ISO TR 17534-2-2014 Acoustics Software for the calculation of sound outdoors General recommendations for test cases and quality assurance interface《声学 户外声的计算软件 测试案例和质量保证接口的通用建议》.pdf

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    BS PD ISO TR 17534-2-2014 Acoustics Software for the calculation of sound outdoors General recommendations for test cases and quality assurance interface《声学 户外声的计算软件 测试案例和质量保证接口的通用建议》.pdf

    1、BSI Standards Publication PD ISO/TR 17534-2:2014 Acoustics Software for the calculation of sound outdoors Part 2: General recommendations for test cases and quality assurance interfacePD ISO/TR 17534-2:2014 PUBLISHED DOCUMENT National foreword This Published Document is the UK implementation of ISO/

    2、TR 17534-2:2014. The UK participation in its preparation was entrusted to Technical Committee EH/1/3, Residential and industrial noise. A list of organizations represented on this committee can be obtained on request to its secretary. This publication does not purport to include all the necessary pr

    3、ovisions of a contract. Users are responsible for its correct application. The British Standards Institution 2014. Published by BSI Standards Limited 2014 ISBN 978 0 580 84118 7 ICS 17.140.01 Compliance with a British Standard cannot confer immunity from legal obligations. This Published Document wa

    4、s published under the authority of the Standards Policy and Strategy Committee on 30 September 2014. Amendments issued since publication Date Text affectedPD ISO/TR 17534-2:2014 ISO 2014 Acoustics Software for the calculation of sound outdoors Part 2: General recommendations for test cases and quali

    5、ty assurance interface Acoustique Logiciels pour le calcul des bruits lair libre Partie 2: Recommandations gnrales pour les cas dessai et linterface dassurance qualit TECHNICAL REPORT ISO/TR 17534-2 First edition 2014-08-01 Reference number ISO/TR 17534-2:2014(E)PD ISO/TR 17534-2:2014ISO/TR 17534-2:

    6、2014(E)ii ISO 2014 All rights reserved COPYRIGHT PROTECTED DOCUMENT ISO 2014 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 internet

    7、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 www.

    8、iso.org Published in SwitzerlandPD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) ISO 2014 All rights reserved iii Contents Page Foreword iv Introduction v 1 Scope . 1 2 Normative references 1 3 T erms and definitions . 1 4 Additional recommendations . 1 5 Test cases (T) 1 5.1 General . 1 5.2 Test cases

    9、(T) applicable in method specific Technical Reports 2 6 Quality Assurance Interface.18 Bibliography .19PD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) Foreword ISO (the International Organization for Standardization) is a worldwide federation of national standards bodies (ISO member bodies). The work o

    10、f 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. International organizations, governmental and non-governmenta

    11、l, 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 those intended for its further maintenance are described in the I

    12、SO/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 (see www.iso.org/directives). Attention is drawn to the possibi

    13、lity 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 document will be in the Introduction and/or on the ISO list of p

    14、atent 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 meaning of ISO specific terms and expressions related to conformity assessment, as well as i

    15、nformation about ISOs adherence to the WTO principles in the Technical Barriers to Trade (TBT) see the following URL: Foreword - Supplementary information The committee responsible for this document is ISO/TC 43, Acoustics, Subcommittee SC 1, Noise. ISO 17534 consists of the following parts, under t

    16、he general title Acoustics Software for the calculation of sound outdoors: Part 1: Quality requirements and quality assurance Part 2: General recommendations for test cases and quality assurance interface Technical report The following parts are under preparation: Part 3: Recommendations for quality

    17、 assured implementation of ISO 9613-2 in software according to ISO 17534-1 Technical reportiv ISO 2014 All rights reservedPD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) Introduction The general structure of the ISO 17534 series consisting of ISO 17534-1 and various Technical Reports is shown in Figure

    18、 1. The series itself describes the measures necessary to assure a high quality calculation methods implemented in different software products with respect to correctness and precision. The requirements and specifications included are obviously independent from a specific calculation method, because

    19、 they should be applied for all of them. This Technical Report contains generally applicable recommendations to be taken into account in the formulation of such recommendations in the method-specific Technical Reports. Further, a set of test cases is presented that can be supplemented with method-sp

    20、ecific parameters to be applied in these Technical Reports. This Technical Report is a first step. Contents will be supplemented step by step, and or even withdrawn due to newer technical or scientific expertise. Figure 1 Structure of the ISO 17534 series consisting of the main Part 1 and subordinat

    21、ed Technical Reports ISO 2014 All rights reserved vPD ISO/TR 17534-2:2014PD ISO/TR 17534-2:2014Acoustics Software for the calculation of sound outdoors Part 2: General recommendations for test cases and quality assurance interface 1 Scope This Technical Report contains general additional recommendat

    22、ions for the implementation of calculation methods in software, a general applicable set of test cases described geometrically, and a description of the QA (Quality Assurance Interface) that allows the exchange of data between software programs quality assured according to ISO 17534-1. ISO 17534 ser

    23、ies contains identification of the official documentation. 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 lat

    24、est edition of the referenced document (including any amendments) applies. ISO 17534-1:, Acoustics Software for the calculation of sound outdoors Part 1: Quality requirements and quality assurance 1) 3 T erms a nd definiti ons For the purposes of this document, the terms and definitions given in ISO

    25、 17534-1: apply. 4 Additional recommendations This chapter is only a place holder, it shall be decided from time to time if due to experience with method specific recommendations. These shall be taken as a general recommendation and transferred to this Technical Report. 5 Test cases (T) 5.1 General

    26、All aspects of a method shall be covered by test cases. It is to ensure that the test cases cover the main issues which can significantly affect results. These test cases are described with exact geometry, but generally with respect to parameters that might be different with different calculation me

    27、thods. For the precisely defined test cases, according to A.2 in ISO 17534-1:, these general parameter descriptions can be concretized and supplemented by step-by-step results. 1) To be published. TECHNICAL REPORT ISO/TR 17534-2:2014(E) ISO 2014 All rights reserved 1PD ISO/TR 17534-2:2014ISO/TR 1753

    28、4-2:2014(E) 5.2 T est cases (T) appl icable in method specif ic T echnical R eports 5.2.1 T01 to T03 Flat ground with homogenous acoustic properties Key S source R receiver Figure 2 Test case to check free sound propagation with different conditions Input data: Table 1 Coordinates of source, S, and

    29、receiver, R x in m y in m z in m S 10 10 1 R 200 50 4 Table 2 Octave band sound power levels (linear) of the source Quantity Unit Values f Hz 63 125 250 500 1 000 2 000 4 000 8 000 L W dB 93 93 93 93 93 93 93 93 T01 R e f le c t i n g g r ou nd (e.g. G = 0) T02 Mixed ground (e.g. G = 0,5) T03 Porous

    30、 ground (e.g. G = 1)2 ISO 2014 All rights reservedPD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) 5.2.2 T04 Flat ground with spatially varying acoustic properties Key S source R receiver A1 reflecting ground A2 mixed ground A3 porous ground Figure 3 Flat ground with spatially varying acoustic propertie

    31、s Input data: Identical to above, but spatially varying acoustic properties as shown in Table 3. Table 3 Areas with different acoustic properties (T04) Area Ground Coordinates of areas x 1in m y 1in m x 2in m y 2in m x 3in m y 3in m x 4in m y 4in m A1 reflecting 0 60 50 60 50 10 0 10 A2 mixed 50 60

    32、150 60 150 10 50 10 A3 porous 150 60 210 60 210 10 150 10 ISO 2014 All rights reserved 3PD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) 5.2.3 T05 Ground with spatially varying heights and acoustic properties Key S source R receiver A1 porous ground A2 mixed ground A3 reflecting ground Figure 4 Spatiall

    33、y varying heights and acoustic properties Figure 5 3D presentation of scenario T05 Input data: For source and receiver positions and emission spectrum, see previous cases. Coordinates z for source and receiver are relative heights (height above ground).4 ISO 2014 All rights reservedPD ISO/TR 17534-2

    34、:2014ISO/TR 17534-2:2014(E) Table 4 Areas with different acoustic properties (T05) Area Ground Coordinates of areas x 1in m y 1in m x 2in m y 2in m x 3in m y 3in m x 4in m y 4in m A1 porous 0 60 50 60 50 10 0 10 A2 mixed 50 60 150 60 150 10 50 10 A3 reflecting 150 60 210 60 210 10 150 10 Table 5 Con

    35、tour lines (rectangular areas) (T05) z in m x in m y in m min max min max 0 0 120 10 60 0 120 210 10 60 10 185 205 5 55 5.2.4 T06 Flat ground with spatially varying acoustic properties and long barrier Key S source R receiver B barrier A1 porous ground A2 mixed ground A3 reflecting ground Figure 6 A

    36、reas with different acoustic properties and long barrier ISO 2014 All rights reserved 5PD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) Figure 7 3D presentation of scenario T06 Input data: Source and receiver coordinates Table 1 (Test case T01) Source emission frequency spectrum Table 2 (Test case T01)

    37、Areas with different acoustic properties Table 3 (Test case T04) Table 6 Barrier geometry (T06) Upper edge x in m y in m z in m S1 100,0 240,0 6,0 S2 265,0 180,0 6,0 5.2.5 T07 Flat ground with spatially varying acoustic properties and short barrier Key S source R receiver B barrier A1 porous ground

    38、A2 mixed ground A3 reflecting ground Figure 8 Areas with different acoustic properties and short barrier6 ISO 2014 All rights reservedPD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) Figure 9 3D presentation of scenario T07 Input data: Source and receiver coordinates Table 1 (Test case T01) Source emiss

    39、ion frequency spectrum Table 2 (Test case T01) Areas with different acoustic properties Table 3 (Test case T04) Table 7 Barrier geometry (T07) Upper edge x in m y in m z in m S1 175,0 50,0 6,0 S2 190,0 10,0 6,0 ISO 2014 All rights reserved 7PD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) 5.2.6 T08 Grou

    40、nd with spatially varying heights and acoustic properties and short barrier Key S source R receiver B barrier A1 porous ground A2 mixed ground A3 reflecting ground Figure 10 Spatially varying heights and acoustic properties and short barrier Figure 11 3D presentation of scenario T08 Input data: Tabl

    41、e 8 Coordinates of source and receiver x in m y in m z relin m z absin m Source 10 10 1 0 Receiver 200 50 4 14 Source emission frequency spectrum Table 2 (Test case T01)8 ISO 2014 All rights reservedPD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) Areas with different acoustic properties Table 3 (Test c

    42、ase T04) Contour lines to describe different ground heights Table 5 (Test case T05) Table 9 Barrier geometry (T08) Upper edge x in m y in m z absin m S1 175,0 50,0 17,0 S2 190,0 10,0 14,0 5.2.7 T09 Flat ground with homogeneous acoustic properties and cubic building receiver at low height Key S sourc

    43、e R receiver H object Figure 12 Screening cubic building between source and receiver at low height Figure 13 3D presentation of scenario T09 Input data: ISO 2014 All rights reserved 9PD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) Table 10 Coordinates of source, S, and receiver, R (T09) x in m y in m z

    44、 in m Source 50 10 1 Receiver 70 10 4 Source emission frequency spectrum Table 2 (Test case T01) Mixed ground (e.g. G = 0,5) Table 11 Edge coordinates of cubic building with a height of 10 m (T09) Edge no. x in m y in m 1 55 5 2 65 5 3 65 15 4 55 15 5.2.8 T10 Flat ground with homogeneous acoustic pr

    45、operties and cubic building receiver at large height Key S source R receiver Figure 14 Screening cubic building between source and receiver at large height10 ISO 2014 All rights reservedPD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) Figure 15 3D presentation of scenario T10 Input data: Table 12 Coordi

    46、nates of source, S, and receiver, R (T10) x in m y in m z in m Source 50 10 1 Receiver 70 10 15 Source emission frequency spectrum Table 2 (Test case T01) Mixed ground (e.g. G = 0,5) Edge coordinates of cubic building with a height of 10 m, see Table 11 (Test case T09) 5.2.9 T11 Flat ground with hom

    47、ogeneous acoustic properties and polygonal building re- ceiver at low height Key S source R receiver Figure 16 Screening polygonal building between source and receiver at low height ISO 2014 All rights reserved 11PD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) Figure 17 3D presentation of scenario T11

    48、Input data: Table 13 Coordinates of source, S, and receiver, R (T11) x in m y in m z relin m Source 0 10 1 Receiver 30 20 6 Source emission frequency spectrum Table 2 (Test case T01) Mixed ground (e.g. G = 0,5) Table 14 Edge coordinates of screening polygonal building with a height of 10 m Edge no.

    49、x in m y in m 1 10,96 15,50 2 12,00 13,00 3 14,50 11,96 4 17,00 13,00 5 18,04 15,50 6 17,00 18,00 7 14,50 19,04 8 12,00 18,0012 ISO 2014 All rights reservedPD ISO/TR 17534-2:2014ISO/TR 17534-2:2014(E) 5.2.10 T12 Ground with spatially varying heights and acoustic properties and polygonal building Key S source R receiver A1 mixed ground A2 porous ground A3


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