IEC 61400-23-2014 Wind turbines - Part 23 Full-scale structural testing of rotor blades《风力涡轮机 第23部分 旋转叶片的全尺寸结构试验》.pdf
《IEC 61400-23-2014 Wind turbines - Part 23 Full-scale structural testing of rotor blades《风力涡轮机 第23部分 旋转叶片的全尺寸结构试验》.pdf》由会员分享,可在线阅读,更多相关《IEC 61400-23-2014 Wind turbines - Part 23 Full-scale structural testing of rotor blades《风力涡轮机 第23部分 旋转叶片的全尺寸结构试验》.pdf(48页珍藏版)》请在麦多课文档分享上搜索。
1、 IEC 61400-23 Edition 1.0 2014-04 INTERNATIONAL STANDARD Wind turbines Part 23: Full-scale structural testing of rotor blades IEC 61400-23:2014-04(en) colour inside THIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2014 IEC, Geneva, Switzerland All rights reserved. Unless otherwise specified, no par
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10、c If you wish to give us your feedback on this publication or need further assistance, please contact the Customer Service Centre: csciec.ch. IEC 61400-23 Edition 1.0 2014-04 INTERNATIONAL STANDARD Wind turbines Part 23: Full-scale structural testing of rotor blades INTERNATIONAL ELECTROTECHNICAL CO
11、MMISSION X ICS 27.180 PRICE CODE ISBN 978-2-8322-1506-7 Registered trademark of the International Electrotechnical Commission Warning! Make sure that you obtained this publication from an authorized distributor. colour inside 2 IEC 61400-23:2014 IEC 2014 CONTENTS FOREWORD . 5 INTRODUCTION . 7 1 Scop
12、e 8 2 Normative references 8 3 Terms and definitions 9 4 Notation . 12 4.1 Symbols 12 4.2 Greek symbols 12 4.3 Subscripts . 12 4.4 Coordinate systems 12 5 General principles . 13 5.1 Purpose of tests 13 5.2 Limit states . 14 5.3 Practical constraints . 14 5.4 Results of test . 14 6 Documentation and
13、 procedures for test blade 15 7 Blade test program and test plans . 16 7.1 Areas to be tested . 16 7.2 Test program 16 7.3 Test plans . 16 7.3.1 General . 16 7.3.2 Blade description . 16 7.3.3 Loads and conditions . 17 7.3.4 Instrumentation 17 7.3.5 Expected test results . 17 8 Load factors for test
14、ing 17 8.1 General . 17 8.2 Partial safety factors used in the design 17 8.2.1 General . 17 8.2.2 Partial factors on materials 17 8.2.3 Partial factors for consequences of failure . 18 8.2.4 Partial factors on loads 18 8.3 Test load factors . 18 8.3.1 Blade to blade variation . 18 8.3.2 Possible err
15、ors in the fatigue formulation . 18 8.3.3 Environmental conditions . 19 8.4 Application of load factors to obtain the target load . 19 9 Test loading and test load evaluation . 20 9.1 General . 20 9.2 Influence of load introduction 20 9.3 Static load testing . 20 9.4 Fatigue load testing 21 10 Test
16、requirements 22 10.1 General . 22 10.1.1 Test records 22 10.1.2 Instrumentation calibration. 22 IEC 61400-23:2014 IEC 2014 3 10.1.3 Measurement uncertainties 22 10.1.4 Root fixture and test stand requirements . 22 10.1.5 Environmental conditions monitoring . 22 10.1.6 Deterministic corrections . 23
17、10.2 Static test . 23 10.2.1 General . 23 10.2.2 Static load test. 23 10.2.3 Strain measurement 24 10.2.4 Deflection measurement 24 10.3 Fatigue test . 24 10.4 Other blade property tests 24 10.4.1 Blade mass and center of gravity . 24 10.4.2 Natural frequencies . 25 10.4.3 Optional blade property te
18、sts . 25 11 Test results evaluation. 25 11.1 General . 25 11.2 Catastrophic failure . 25 11.3 Permanent deformation, loss of stiffness or change in other blade properties . 26 11.4 Superficial damage . 26 11.5 Failure evaluation . 26 12 Reporting 26 12.1 General . 26 12.2 Test report content 27 12.3
19、 Evaluation of test in relation to design requirements . 27 Annex A (informative) Guidelines for the necessity of renewed static and fatigue testing 28 Annex B (informative) Areas to be tested . 29 Annex C (informative) Effects of large deflections and load direction . 30 Annex D (informative) Formu
20、lation of test load 31 D.1 Static target load. 31 D.2 Fatigue target load 31 D.3 Sequential single-axial, single location 34 D.4 Multi axial single location 34 Annex E (informative) Differences between design and test load conditions . 36 E.1 General . 36 E.2 Load introduction 36 E.3 Bending moments
21、 and shear . 36 E.4 Flapwise and lead-lag combinations 36 E.5 Radial loads 37 E.6 Torsion loads 37 E.7 Environmental conditions 37 E.8 Fatigue load spectrum and sequence 37 Annex F (informative) Determination of number of load cycles for fatigue tests 38 F.1 General . 38 F.2 Background 38 F.3 The ap
22、proach used . 38 Bibliography 43 4 IEC 61400-23:2014 IEC 2014 Figure 1 Chordwise (flatwise, edgewise) coordinate system . 13 Figure 2 Rotor (flapwise, lead-lag) coordinate system 13 Figure C.1 Applied loads effects due to blade deformation and angulation 30 Figure D.1 Polar plot of the load envelope
23、 from a typical blade 31 Figure D.2 Design FSF . 33 Figure D.3 Area where design FSF is smaller than 1,4 (critical area) 33 Figure D.4 rFSF and critical areas, sequential single-axial test . 34 Figure D.5 rFSF and critical area, multi axial test . 35 Figure E.1 Difference of moment distribution for
24、target and actual test load . 36 Figure F.1 Simplified Goodman diagram 39 Figure F.2 Test load factor effor different number of load cycles in the test . 42 Table 1 Recommended values for effor different number of load cycles . 18 Table A.1 Examples of situations typically requiring or not requiring
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- IEC61400232014WINDTURBINESPART23FULLSCALESTRUCTURALTESTINGOFROTORBLADES 风力 涡轮机 23 部分 旋转 叶片 尺寸 结构 试验 PDF

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