IEC TS 61949-2007 Ultrasonics - Field characterization - In-situ exposure estimation in finite-amplitude ultrasonic beams《超声学.原位表征.有限振幅超声波束原位曝光估计》.pdf
《IEC TS 61949-2007 Ultrasonics - Field characterization - In-situ exposure estimation in finite-amplitude ultrasonic beams《超声学.原位表征.有限振幅超声波束原位曝光估计》.pdf》由会员分享,可在线阅读,更多相关《IEC TS 61949-2007 Ultrasonics - Field characterization - In-situ exposure estimation in finite-amplitude ultrasonic beams《超声学.原位表征.有限振幅超声波束原位曝光估计》.pdf(36页珍藏版)》请在麦多课文档分享上搜索。
1、 IEC/TS 61949 Edition 1.0 2007-11 TECHNICAL SPECIFICATIONUltrasonics Field characterization In situ exposure estimation in finite-amplitude ultrasonic beams IEC/TS 61949:2007(E) THIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2007 IEC, Geneva, Switzerland All rights reserved. Unless otherwise spec
2、ified, no part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from either IEC or IECs member National Committee in the country of the requester. If you have any questions abo
3、ut IEC copyright or have an enquiry about obtaining additional rights to this publication, please contact the address below or your local IEC member National Committee for further information. IEC Central Office 3, rue de Varemb CH-1211 Geneva 20 Switzerland Email: inmailiec.ch Web: www.iec.ch About
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7、org The worlds leading online dictionary of electronic and electrical terms containing more than 20 000 terms and definitions in English and French, with equivalent terms in additional languages. Also known as the International Electrotechnical Vocabulary online. Customer Service Centre: www.iec.ch/
8、webstore/custserv If you wish to give us your feedback on this publication or need further assistance, please visit the Customer Service Centre FAQ or contact us: Email: csciec.ch Tel.: +41 22 919 02 11 Fax: +41 22 919 03 00 IEC/TS 61949 Edition 1.0 2007-11 TECHNICAL SPECIFICATIONUltrasonics Field c
9、haracterization In situ exposure estimation in finite-amplitude ultrasonic beams INTERNATIONAL ELECTROTECHNICAL COMMISSION V ICS 17.140.50 PRICE CODE ISBN 2-8318-9463-8 2 TS 61949 IEC:2007(E) CONTENTS FOREWORD.3 INTRODUCTION.5 1 Scope.6 2 Normative references .6 3 Terms and definitions .6 4 List of
10、symbols .10 5 Equipment required 11 6 Test methods .11 6.1 Establishing quasi-linear conditions.11 6.1.1 The local distortion parameter .11 6.1.2 Upper limit for quasi-linear conditions for q 12 6.1.3 Range of applicability for quasi-linear conditions .12 6.2 Measurement procedure for estimated in s
11、itu exposure .13 6.2.1 Identification of quasi-linear conditions13 6.2.2 Tables of limiting mean peak acoustic pressure.14 6.2.3 Measurement of acoustic quantities under quasi-linear conditions .14 6.2.4 Measurement of the scaling factor .14 6.2.5 Calculation of attenuated acoustic quantities .15 6.
12、3 Uncertainties.16 Annex A (informative) Review of evidence .18 Annex B (informative) Review of alternative methods for managing finite-amplitude effects during field measurement 21 Annex C (informative) Parameters to quantify nonlinearity.23 Annex D (informative) Tables of upper limits for mean pea
13、k acoustic pressure for quasi-linear conditions26 Bibliography30 Figure 1 Flow diagram for obtaining values of attenuated acoustic quantities.13 Table A.1 Experimental evidence of nonlinear loss associated with the propagation of ultrasound pulses under diagnostic conditions in water.19 Table A.2 Th
14、eoretical evidence of nonlinear loss associated with the propagation of ultrasound pulses under diagnostic conditions in water.19 Table B.1 Methods for estimation of in-situ exposure in nonlinear beams.22 Table C.1 Parameters for quantification of nonlinearity in an ultrasonic field23 Table D.1 The
15、upper limit for mean peak acoustic pressure (MPa) associated with quasi-linear conditions. q 0,5. Acoustic working frequency, f awf= 2,0 MHz .26 Table D.2 The upper limit for mean peak acoustic pressure (MPa) associated with quasi-linear conditions. q 0,5. Acoustic working frequency, f awf= 3,5 MHz
16、.27 Table D.3 The upper limit for mean peak acoustic pressure (MPa) associated with quasi-linear conditions. q 0,5. Acoustic working frequency, f awf= 5,0 MHz .28 Table D.4 The upper limit for mean peak acoustic pressure (MPa) associated with quasi-linear conditions. q 0,5. Acoustic working frequenc
17、y, f awf= 7,0 MHz29 TS 61949 IEC:2007(E) 3 INTERNATIONAL ELECTROTECHNICAL COMMISSION _ ULTRASONICS FIELD CHARACTERIZATION IN SITU EXPOSURE ESTIMATION IN FINITE-AMPLITUDE ULTRASONIC BEAMS FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization c
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