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剪切流场下诱发水下机械臂涡激振动实验研究(英文)

Experimental Study on Vortex-Induced Vibration of Underwater Manipulator Under Shear Flow

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【作者】 代森良; 段德荣; 刘鑫; 靳慧芳; 张辉; 杨学锋;

【Author】 Senliang Dai;Derong Duan;Xin Liu;Huifang Jin;Hui Zhang;Xuefeng Yang;School of Mechanical Engineering,University of Jinan;Zibo Non-public Sector Development Center;

【通讯作者】 段德荣;

【机构】 School of Mechanical Engineering,University of Jinan; Zibo Non-public Sector Development Center;

【摘要】 The position deviation of the underwater manipulator generated by vortex-induced vibration (VIV) in the shear flow increases relative to that in the uniform flow.Thus,this study established an experimental platform to investigate the vibration characteristics of the underwater manipulator under shear flow.The vibration response along the manipulator was obtained and compared with that in the uniform flow.Results indicated that the velocity,test height,and flow field were the main factors affecting the VIV of the underwater manipulator.With the increase in the reduced velocity (U_r),the dimensionless amplitudes increased rapidly in the in-line (IL) direction with a maximum of 0.13D.The vibration responses in the cross-flow (CF) and IL directions were concentrated at positions 2,3 and positions 1,2,with peak values of 0.46 and0.54 mm under U_r=1.54,respectively.In addition,the vibration frequency increased with the reduction of velocity.The dimensionless dominant frequency in the CF and IL directions varied from 0.39–0.80 and 0.35–0.64,respectively.Moreover,the ratio of the CF and IL directions was close to 1 at a lower U_r.The standard deviation of displacement initially increased and then decreased as the height of the test location increased.The single peak value of the standard deviation showed that VIV presented a single mode.Compared with the uniform flow,the maximum and average values of VIV displacement increased by 104%and 110%under the shear flow,respectively.

【Abstract】 The position deviation of the underwater manipulator generated by vortex-induced vibration (VIV) in the shear flow increases relative to that in the uniform flow.Thus,this study established an experimental platform to investigate the vibration characteristics of the underwater manipulator under shear flow.The vibration response along the manipulator was obtained and compared with that in the uniform flow.Results indicated that the velocity,test height,and flow field were the main factors affecting the VIV of the underwater manipulator.With the increase in the reduced velocity (U_r),the dimensionless amplitudes increased rapidly in the in-line (IL) direction with a maximum of 0.13D.The vibration responses in the cross-flow (CF) and IL directions were concentrated at positions 2,3 and positions 1,2,with peak values of 0.46 and0.54 mm under U_r=1.54,respectively.In addition,the vibration frequency increased with the reduction of velocity.The dimensionless dominant frequency in the CF and IL directions varied from 0.39–0.80 and 0.35–0.64,respectively.Moreover,the ratio of the CF and IL directions was close to 1 at a lower U_r.The standard deviation of displacement initially increased and then decreased as the height of the test location increased.The single peak value of the standard deviation showed that VIV presented a single mode.Compared with the uniform flow,the maximum and average values of VIV displacement increased by 104%and 110%under the shear flow,respectively.

【基金】 Supported by the National Natural Science Foundation of China (No.51905211);the “20 Regulations for New Universities” of Jinan (No. 202228116)
  • 【文献出处】 Journal of Marine Science and Application ,哈尔滨工程大学学报(英文版) , 编辑部邮箱 ,2025年05期
  • 【分类号】TP241
  • 【下载频次】23
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