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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Measurement and Simulation of Two-Inlet Single-Outlet Mufflers
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Measurement and Simulation of Two-Inlet Single-Outlet Mufflers

机译:两进单出消声器的测量与仿真

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摘要

In several applications, two-inlet single-outlet mufflers are possible to encounter in exhaust systems. They are usually used to merge two exhaust streams from two similar engines or from two sides of an engine. They have an advantage of reducing the back pressure on the engine(s). There is a lot of published research on the analysis of single-inlet single-outlet mufflers acting as a two-port. On the other hand, there are a few publications on the analysis of two-inlet single-outlet mufflers due to their complexity representing a three-port. A three-port is characterized by a 3×3 Scattering Matrix. The nine elements of this matrix represent the 3 reflection coefficients at each port, and the 6 transmission coefficients between the 3 ports in both directions. In this work, a two-inlet single-outlet muffler is studied. The elements of the scattering matrix were measured using the two-source two-microphone technique with and without flow. These elements were also calculated from 1D simulation using a set of two-port elements representing the internal dimensions of the muffler, and compared to those obtained from the measurement. A similar 1D simulation was performed using Flow two-ports in order to analyze the flow distribution inside the muffler and the pressure drop across both flow paths. The flow distribution is crucial to obtain accurate acoustic predictions. For all cases, there was a very good agreement between the measurement and the simulations.
机译:在几种应用中,排气系统中可能会遇到两入口单出口消声器。它们通常用于合并来自两个相似发动机或来自发动机两侧的两个排气流。它们具有减少发动机背压的优点。关于分析作为两个端口的单入口单出口消声器的研究很多。另一方面,由于两入口单出口消声器的复杂性代表三端口,因此有一些出版物对它们进行了分析。三端口的特点是具有3×3散射矩阵。该矩阵的九个元素代表每个端口上的3个反射系数,以及两个方向上三个端口之间的6个透射系数。在这项工作中,研究了一个两入口单出口消声器。散射矩阵的元素是使用带和不带流动的两源两麦克风技术测量的。这些元素也是通过使用一组代表消声器内部尺寸的两个端口元素的一维模拟计算得出的,并与从测量中获得的元素进行比较。为了分析消声器内部的流量分布和两个流路之间的压降,使用流量两个端口进行了类似的一维模拟。流量分布对于获得准确的声学预测至关重要。对于所有情况,在测量和模拟之间都有很好的一致性。

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