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基于声能量传递分析的空腔阻隔结构布置方案设计

Optimal design of vehicle cavity fillers’ arrangement based on flow of acoustic power

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【作者】 牛胜福张立军赵英龙孟德建曹诚陈阳马扎根余卓平

【Author】 NIU Shengfu;ZHANG Lijun;ZHAO Yinglong;MENG Dejian;CAO Cheng;CHEN Yang;MA Zhagen;YU Zhuoping;School of Automobile Studies,Tongji University;SAIC Volkswagen Co.,Ltd;Shanghai Huate Automotive Parts Co.,Ltd;

【机构】 同济大学汽车学院上汽大众汽车有限公司上海华特汽车配件有限公司

【摘要】 基于统计能量分析原理,建立整车SEA模型,并简化出汽车侧围空腔模型,进行激励源至舱内声腔的声能量传递分析。根据声能量传递分析得到的主要激励源、主要泄漏段以及主要传递路径三方面结果,制定阻隔结构的布置方案,并在整车模型中添加空腔阻隔结构进行降噪效果预测。结果表明,该方案使用较少的阻隔结构达到了甚至稍高于原厂方案的降噪效果。

【Abstract】 Based on the principles of the statistical energy analysis( SEA),a whole-body model for a vehicle was constructed here. From the model,a side-body model was built and simplified to analyze the flow of acoustic power from excitation sources to the acoustic cavity inside the car’s passenger compartment. According to the analysis results including main excitations,major leaking positions and main paths of acoustic power flow,three different arrangements of cavity fillers were made. Cavity fillers were put into the whole-body model,the noise attenuation effects of cavity fillers in three arrangements were predicted,respectively. Through comparing three results,the optimal arrangement was obtained. The study results showed that the optimal arrangement with less cavity fillers has a better denoising effect than the original arrangement does.

【基金】 国家重点研发计划(2016YFB0100901)
  • 【文献出处】 振动与冲击 ,Journal of Vibration and Shock , 编辑部邮箱 ,2018年02期
  • 【分类号】U463.8
  • 【被引频次】4
  • 【下载频次】168
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