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水轮机导水机构力学特性测试研究 被引量:2
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作者 常万光 刘迎曦 +1 位作者 郭杏林 吴玉良 《大连理工大学学报》 EI CAS CSCD 北大核心 2002年第2期190-194,共5页
提出一种实测方法分析水轮机导水机构的力学特性 ,并指出压紧特性的测试不仅能提供导水机构闭紧时的载荷条件 ,而且对了解并改善它的受力状态均有意义 .
关键词 水轮发电机 轴力电测法 导水机构 力学特性 轴力测试法 水力力矩 摩擦力矩
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A Comparative Study on Hydrodynamic Performance of Double Deflector Rectangular Cambered Otter Board 被引量:7
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作者 XU Qingchang FENG Chunlei +7 位作者 HUANG Liuyi XU Jiqiang WANG Lei ZHANG Xun LIANG Zhenlin TANG Yanli ZHAO Fenfang WANG Xinxin 《Journal of Ocean University of China》 SCIE CAS CSCD 2018年第5期1218-1224,共7页
In the present work,the hydrodynamic performance of the double deflector rectangular cambered otter board was studied using wind tunnel experiment,flume tank experiment and numerical simulation.Results showed that the... In the present work,the hydrodynamic performance of the double deflector rectangular cambered otter board was studied using wind tunnel experiment,flume tank experiment and numerical simulation.Results showed that the otter board had a good hydrodynamic performance with the maximum lift-to-drag ratio(K_(MAX) = 3.70).The flow separation occurred when the angle of attack(AOA) was at 45?,which revealed that the double deflector structure of the otter board can delay the flow separation.Numerical simulation results showed a good agreement with experiment ones,and could predict the critical AOA,which showed that it can be used to study the hydrodynamic performance of the otter board with the advantage of flow visualization.However,the drag coefficient in flume tank was much higher than that in wind tunnel,which resulted in a lower lift-to-drag ratio.These may be due to different fluid media between flume tank and wind tunnel,which result in the big difference of the vortexes around the otter board.Given the otter boards are operated in water,it was suggested to apply both flume tank experiment and numerical simulation to study the hydrodynamic performance of otter board. 展开更多
关键词 wind tunnel experiment flume tank experiment numerical simulation double deflector rectangular cambered otter board hydrodynamic performance
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