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The Application of Acoustic Radiation Modes to Engine Oil Pan Design

机译:声学辐射模式在发动机油盘设计中的应用

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In modern engine design, downsizing and reducing weight while still providing an increased amount of power has been a general trend in recent decades. Traditionally, an engine design with superior NVH performance usually comes with a heavier, thus sturdier structure. Therefore, modern engine design requires that NVH be considered in the very early design stage to avoid modifications of engine structure at the last minute, when very few changes can be made. NVH design optimization of engine components has become more practical due to the development of computer software and hardware. However, there is still a need for smarter algorithms to draw a direct relationship between the design and the radiated sound power. At the moment, techniques based on modal acoustic transfer vectors (MATVs) have gained popularity in design optimization for their good performance in sound pressure prediction. Since MATVs are derived based on structural modes, they are not independent with respect to radiated sound power. In contrast, acoustic radiation modes are an orthogonal set of velocity distributions on the structure’s surface that contribute to the radiated sound power independently. As a result, it is beneficial to describe structural vibration in terms of acoustic radiation modes in order to identify the velocity distributions that contribute the majority of the radiated sound power. Measures can then be taken to modify the identified vibration patterns to reduce their magnitudes, which will in turn result in an unequivocal reduction of the radiated sound power. A workflow based on multibody dynamic simulation and acoustic radiation modes to optimize an engine oil pan design is demonstrated in this paper.
机译:在现代发动机设计中,近几十年来仍然提供增加的权力仍然提供了较大的权力。传统上,具有优异的NVH性能的发动机设计通常具有更重的,因此坚固的结构。因此,现代发动机设计要求在非常早期的设计阶段考虑NVH,以避免在最后一分钟内修改发动机结构,当可以进行很少的变化时。由于计算机软件和硬件的开发,NVH设计优化已变得更加实用。然而,仍然需要更智能的算法来绘制设计与辐射声功率之间的直接关系。目前,基于模态声学传输向量(MATV)的技术在设计优化方面具有普及,以便在声压预测中的良好性能方面。由于基于结构模式导出MATV,因此它们与辐射声功率无关。相反,声学辐射模式是结构表面上的速度分布的正交组,其为独立地贡献辐射声功率。结果,在声辐射模式方面描述结构振动是有益的,以识别有助于大部分辐射声功率的速度分布。然后可以采取测量来修改所识别的振动模式以减小其幅度,这又导致辐射声功率的明确降低。本文证实了基于多体动态仿真和声辐射模式的基于多体动态仿真和声学辐射模式的工作流程。

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