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作 者:沈哲 杨志刚[2,3,4] 彭里奇[3] 王勇 SHEN Zhe;YANG Zhigang;PENG Liqi;WANG Yong(State Key Laboratory of Vehicle Noise Vibration Harshness(NVH)and Safety Technology,Chongqing 401122,China;Postdoctoral Station of Mechanical Engineering,Tongji University,Shanghai 201804,China;Shanghai Automotive Wind Tunnel Center,Tongji University,Shanghai 201804,China;Beijing Aeronautical Science and Technology Research Institute,Beijing 102211,China)
机构地区:[1]汽车噪声振动和安全技术国家重点实验室,重庆401122 [2]同济大学机械工程博士后流动站,上海201804 [3]同济大学上海地面交通工具风洞中心,上海201804 [4]北京民用飞机技术研究中心,北京102211
出 处:《同济大学学报(自然科学版)》2022年第6期915-920,共6页Journal of Tongji University:Natural Science
基 金:汽车噪声振动和安全技术国家重点实验室开放基金(NVHSKL-202003);上海市重点实验室项目(18DZ2273300)。
摘 要:从非均匀声场偏移角度研究汽车风洞流场外测量得到纯音信号声幅值伴随风速大幅变化的机理。以汽车表面可控声源为试验研究对象进行风洞试验,通过传声器获得不同风速下纯音声压级波动幅度,并使用传声器阵列观察到声场的非均匀分布。基于点声源干涉理论模拟重构了非均匀声场,参数化分析了各个反射壁面影响。根据几何声学理论推导剪切层折射产生的声场偏移,较为准确地预测了不同试验风速下纯音幅值变化的趋势。结果证明干涉产生非均匀声场经剪切层折射后偏移是风洞纯音幅值波动的根本原因,使用该声场重构方法能有效减小误差。From the perspective of non-uniform sound field offset,the mechanism of pure-tone sound-amplitude large change with wind speed which measured outside flow field of automobile wind tunnel was studied.A wind tunnel test was conducted with a controllable sound source on the automobile surface as the research object.The amplitude fluctuation of pure tone sound pressure level at different wind speeds was obtained by microphone,and the non-uniform distribution of sound field was observed by microphone array.Based on the point source interference theory,the non-uniform sound field was simulated and reconstructed,and the influence of each reflecting wall was analyzed parametrically.The acoustic field offset caused by shear layer refraction was deduced according to the geometrical acoustic theory,and the trend of pure tone amplitude variation at different test wind speed was predicted.The results show that the deviation of the non-uniform sound field caused by the interference is the fundamental reason for the amplitude fluctuation of the pure sound in the wind tunnel,and the reconstruction method of acoustic field can effectively reduce the error.
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