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基于QPSO的水下加肋圆柱壳体噪声优化设计 被引量:1
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作者 刘金实 强学才 +1 位作者 商德江 陈鸿洋 《噪声与振动控制》 CSCD 2015年第2期11-14,共4页
提出了厚度分布沿轴向周期变化的加肋圆柱壳体有限元矩阵的快速导出算法,并结合边界元法对圆柱壳体在水下受力振动与声辐射进行预报。在此基础上,以低频段内总声辐射功率最小为优化目标,采用量子粒子群算法对厚度沿轴向周期分布的加肋... 提出了厚度分布沿轴向周期变化的加肋圆柱壳体有限元矩阵的快速导出算法,并结合边界元法对圆柱壳体在水下受力振动与声辐射进行预报。在此基础上,以低频段内总声辐射功率最小为优化目标,采用量子粒子群算法对厚度沿轴向周期分布的加肋圆柱壳体进行优化设计。数值仿真结果表明,该算法对水下加肋圆柱壳体的噪声优化设计分析周期有明显的改善,合理配置圆柱壳体的厚度分布可以有效的改善圆柱壳体在水下的噪声性能。 展开更多
关键词 振动与波 加肋圆柱壳 优化设计 量子粒子群算法 有限元—边界元法
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Noise comparison of centrifugal pump operating in pump and turbine mode 被引量:5
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作者 DONG Liang DAI Cui +1 位作者 LIN Hai-bo CHEN Yi-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第11期2733-2753,共21页
Investigations regarding the relation of noise performance for centrifugal pump operating in pump and turbine modes continue to be inadequate.This paper presents a series of comparisons of flow-induced noise for both ... Investigations regarding the relation of noise performance for centrifugal pump operating in pump and turbine modes continue to be inadequate.This paper presents a series of comparisons of flow-induced noise for both operation modes.The interior flow-borne noise and structure modal were verified through experiments.The flow-borne noise was calculated by the acoustic boundary element method(ABEM),and the flow-induced structure noise was obtained by the coupled acoustic boundary element method(ABEM)/structure finite element method(SFEM).The results show that in pump mode,the pressure fluctuation in the volute is comparable to that in the outlet pipe,but in turbine mode,the pressure fluctuation in the impeller is comparable to that in the draft tube.The main frequency of interior flow-borne noise lies at blade passing frequency(BPF)and it shifts to the 9th BPF for interior flow-induced structure noise.The peak values at horizontal plane appear at the 5th BPF,and at axial plane,they get the highest sound pressure level(SPL)at the 8th BPF.Comparing with interior noise,the SPL of exterior flow-induced structure noise is incredibly small.At the 5th BPF,the pump body,cover and suspension show higher SPL in both modes.The outer walls of turbine generate relatively larger SPL than those of the pump. 展开更多
关键词 centrifugal pump as turbine noise performance acoustic boundary element method acoustic finite element method
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