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Experimental Modal Analysis and Numerical Model Development of Diesel Engine Block

机译:柴油机缸体的实验模态分析与数值模型开发

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Evaluating structure-borne noise contribution of various engine components is critical to predict the total engine radiated noise. This paper covers the experiment modal test and numerical model development for the three cylinder engine block. Experimental modal test were conducted at a new test facility in Pune, India. Finite Element Model was developed to predict the vibration characteristics of the engine block. Finite Element Model was utilized to choose the excitation and response locations for successful correlation. Modal Assurance Criteria (MAC) was used to confirm the accuracy of Finite Element Model compared to the experimental modal test. Comparison of Frequency Response Function (FRF) between Finite Element Model and experimental modal test were also discussed. Finite Element Model results shows very good agreement with test result. We plan to continue this work by adding more components to understand the vibration behavior of the sub-assembly and eventually entire engine assembly and successfully predict the structure-borne noise.
机译:评估各种发动机部件的固体声噪声贡献对于预测总的发动机辐射噪声至关重要。本文涵盖了三缸发动机缸体的实验模态试验和数值模型开发。实验模态测试是在印度浦那的一家新测试机构进行的。开发了有限元模型来预测发动机缸体的振动特性。利用有限元模型来选择激发和响应位置,以进行成功的关联。与实验模态测试相比,模态保证标准(MAC)用于确认有限元模型的准确性。还讨论了有限元模型与实验模态测试之间的频率响应函数(FRF)的比较。有限元模型结果与测试结果非常吻合。我们计划通过添加更多组件来继续这项工作,以了解子组件乃至整个发动机组件的振动行为,并成功预测结构噪声。

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