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Dynamic effects of the power-conversion module in a reciprocating engine

机译:往复式发动机中动力转换模块的动态效果

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The forced response characteristics of piston, connecting rod and their assembly, henceforth called power-conversion module, is studied subjecting a forced response model of such a module to combustion characteristics in order to investigate clattering noise characteristics brought with compression ignition excitation. Existing research either focused on the piston or the connecting rod solely. As demonstrated by the modal analysis of the whole power-conversion module, it is revealed that the natural frequencies of the entire module dominate the noise-characteristics of clattering noise even when using a linear model. A subsequent parametric study applying different combustion characteristics with different pressure rise rates, but similar peak pressures on the modal-model of the power-conversion module delivered novel insights into the root cause of clattering noise characteristics. Moreover, the approach delivers an amended understanding of disturbing noises occurring in knock control systems of internal combustion engines. The reason for empirically elaborated limits of the maximum cylinder pressure rise rate to achieve smooth engine acoustics, published first in the late 1920s, was revealed.
机译:对活塞,连杆及其组件(以下称为功率转换模块)的强制响应特性进行了研究,以使该模块的强制响应模型具有燃烧特性,以研究压缩点火激发带来的拍击噪声特性。现有研究要么集中在活塞上,要么仅集中在连杆上。正如整个功率转换模块的模态分析所表明的,揭示了即使使用线性模型,整个模块的固有频率仍在控制杂波噪声的噪声特性。随后的参数研究应用了不同的燃烧特性和不同的升压速率,但是功率转换模块的模态模型上的峰值压力相似,从而提供了有关产生杂音的根本原因的新颖见解。此外,该方法提供了对在内燃机的爆震控制系统中出现的干扰噪声的修正理解。揭示了为达到平滑的发动机声学效果而对最大气缸压力升高速率进行经验详细说明的限制的原因,该原因最早发表于1920年代后期。

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