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针对航天器声振力学环境预示的难题,开展大型复杂航天器声振力学环境的预示方法研究和试验验证。首先结合航天器声振力学环境的特点,研究采用混合有限元-统计能量分析(FE-SEA)方法建立航天器声振预示模型的关键技术,在此基础上建立整星级和系统级航天器(整流罩-卫星-仪器舱-适配器组合体)的混合预示模型,最后将预示结果与噪声试验数据进行对比,验证了预示方法和模型的有效性,并基于分析结果探讨影响航天器声振力学环境预示精度的关键环节。  相似文献   
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This paper presents a new method for measuring the cabin noise of a structure in a wind tunnel. A method for scaling the cabin sound was derived to obtain the cabin noise of a structure, and the derivation of the scaling procedure was based on a theoretical hypothesis regarding the cabin noise prediction for a scaled model in a wind tunnel. A frequency offset was generated because of the error introduced by model manufacture and installation, and a proposed modal test method was used to eliminate the frequency offset. Both a full-scale structure and scaled structure were measured in the wind tunnel tests. The cabin noise of the full-scale model was compared with the results obtained using the scaling procedure based on the scaled model. The comparisons of the measurement results indicate that the scaling procedures developed in this paper are effective for vibro-acoustic predictions in wind tunnels. Moreover, background noise tended to affect the results of the cabin sound for the wind tunnel test, and thus background noise should be prevented through specific design efforts.  相似文献   
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