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VIBROACOUSTIC STUDY OF SCIENTIFIC SATELLITES RELYING ON A TIME DOMAIN FEM/BEM METHOD

机译:基于时域有限元/边界元方法的科学卫星的振动声学研究

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Satellites and payloads launched with large vehicles with solid rocket boosters like ARIANE-5 are subject to significant noise levels during lift-off which may be critical in terms of stress/acceleration level for sensitive components or lightweight panels. This paper highlights how a time domain FEM/BEM approach for modeling the vibroacoustic loads may be applied in the early stage of design of the Herschel Planck satellites to provide an early assessment of the acceleration responses of satellite substructures. A special focus is given on the proposed methodology, its benefits and obtained results in terms of response predictions, as well as on the progress still expected by the space industry in terms of computational efficiency vs. frequency range of interest.
机译:大型飞机使用的固体运载火箭助推器(如ARIANE-5)发射的卫星和有效载荷在起飞时会受到很大的噪音,这对于敏感组件或轻型面板的应力/加速度而言可能是至关重要的。本文重点介绍了如何在建模Herschel Planck卫星的早期阶段中应用时域FEM / BEM方法建模振动声载荷,以便对卫星子结构的加速度响应进行早期评估。在响应预测方面,将特别关注所提出的方法,它的好处和获得的结果,以及在计算效率与目标频率范围方面,航天工业仍希望取得的进展。

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