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Numerical Prediction and Verification of Noise Radiation Characteristics of Diesel Engine Block

机译:柴油机块噪声辐射特性的数值预测与验证

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To assess the contribution of structure-borne noise from an engine, it is critical to characterize the dynamic and vibro-acoustic properties of the engine components and assembly. In this paper, a component level study of a three-cylinder diesel engine block is presented. Virtual analysis was done to predict the natural frequencies and mode shapes of an engine block in the first step. Then, these results were used to decide the optimum test locations and an experimental modal test was conducted on the engine block. The initial virtual model results for the natural frequencies and mode shapes were correlated with the results from test. Then, the virtual model was updated with the damping derived from experimental modal test to match the vibration frequency response functions. Further, the virtual model was used for prediction of vibro-acoustic transfer functions. The vibro-acoustic transfer functions were also obtained from test. The results of transfer function were correlated with the test. In future, we plan to use this approach for prediction of the vibration and vibro-acoustic transfer functions for sub-assembly and eventually entire engine assembly to be able to use the models to predict the structure-borne noise from an engine.
机译:为了评估结构的噪声与发动机的贡献,表征发动机部件和组装的动态和振动声学性质至关重要。本文提出了一种三缸柴油发动机块的组成水平研究。完成虚拟分析以预测第一步中发动机块的自然频率和模式形状。然后,这些结果用于确定最佳测试位置,并在发动机块上进行实验模态测试。自然频率和模式形状的初始虚拟模型结果与测试结果相关。然后,使用从实验模态测试导出的阻尼来更新虚拟模型以匹配振动频率响应函数。此外,虚拟模型用于预测vibro-acoustic传递函数。振动声传递功能也从测试中获得。转移功能的结果与测试相关。我们将来,我们计划使用这种方法来预测子组件的振动和振动声传递函数,最终整个发动机组件能够使用模型来预测来自发动机的结构传承的噪声。

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