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Development and Application of 3D Generic Cells to the Acoustic Modelling of Exhaust Systems

机译:3D通用细胞对排气系统声学建模的开发和应用

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The acoustic simulation of internal combustion engine exhaust systems is an important aspect to meet customer expectations and legislation targets. One dimensional gas dynamic simulation tools are used for the calculation of the exhaust orifice noise in the early stages of the engine development process. This includes the prediction of the acoustic performance of individual components in the exhaust line. One common element used in exhaust systems to increase the acoustic damping is the plug flow muffler. This study looks at the prediction of acoustic performance of various plug mufflers at different flow velocities. These include a single plug muffler, a double plug muffler and an eccentric plug muffler with different porosities for the perforated sections. To this purpose a generic 3D cell approach was developed and applied. It is based on the solution of the mass, momentum and energy equations for non viscous flows over clusters of cell elements arbitrarily connected among each other. In each case a suitable mesh of 3D cells is created to model the geometry of the muffler. Particular attention is required in meshing the cross section of the mufflers. The models include perforated connections between cells to which appropriate numerical methods are applied to provide a stable solution. This includes the application of a flux limiting technique for the momentum equation for each connector. The models provide accurate prediction of the acoustic behaviour with and without flow as well as the pressure drop across the muffler. The results are validated against experimental measurements of the transmission loss and pressure drop.
机译:内燃机排气系统的声学仿真是满足客户期望和立法目标的重要方面。一维气体动态模拟工具用于计算发动机开发过程的早期阶段的排气孔噪声。这包括预测排气管路中各个部件的声学性能。用于增加声学阻尼的排气系统中使用的一个共同元件是插头流动消声器。本研究介绍了不同流速下各种插头消声器的声学性能的预测。它们包括单个插头消声器,双插头消声器和具有不同孔隙座的偏心插头消声器,适用于多孔部分。为此目的,开发并应用了通用的3D细胞方法。它基于对彼此任意连接的细胞元件的簇的非粘性流的质量,动量和能量方程的解决方案。在每种情况下,创建3D单元的合适网格以模拟消声器的几何形状。在啮合消声器的横截面时需要特别注意。该模型包括施加适当数值的细胞之间的穿孔连接以提供稳定的溶液。这包括在每个连接器的动量方程中应用磁通限制技术。该模型提供了对具有和无流量的声学行为的精确预测以及消声器上的压力下降。结果针对透射损耗和压降的实验测量验证。

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