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Experimental investigation of a double expansion chamber reactive muffler for stationary diesel engine

机译:固定式柴油机双膨胀室反应消声器的实验研究

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The increasing need to control noise levels in our environment produced by internal combustion engines, demands the accurate designing of mufflers to meet specific noise emission norms. This paper describes a theoretical and experimental study of a circular double expansion chamber reactive muffler designed specifically for a stationary generator engine. For the theoretical approach, the equations are solved by four pole transfer matrix method using MATLAB software to obtain optimized dimensions of three mufflers at desired maximum transmission loss and at frequencies at which highest sound level is observed. MATLAB software is also used to obtain the graphs for transmission loss versus frequency. In the experimental method a white noise 1D plane wave is generated in the impedance tube attached on both sides of the muffler to obtain the transmission loss. The theoretical results obtained are then compared with experimental results for validation. The theoretical results are well correlated with the experimental results.
机译:控制内燃机在我们的环境中产生的噪声水平的日益增长的需求,要求对消声器进行精确设计以满足特定的噪声排放标准。本文介绍了专门为固定式发电机发动机设计的圆形双膨胀室反应消声器的理论和实验研究。对于理论方法,使用MATLAB软件通过四极传递矩阵法求解方程,以在所需的最大传输损耗和观察到最高声级的频率下获得三个消声器的优化尺寸。 MATLAB软件还用于获得传输损耗与频率的关系图。在实验方法中,在安装在消声器两侧的阻抗管中产生白噪声一维平面波,以获得传输损耗。然后将获得的理论结果与实验结果进行比较以进行验证。理论结果与实验结果很好地相关。

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