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Piston slap induced pressure fluctuation in the water coolant passage of an internal combustion engine

机译:活塞拍击引起内燃机水冷却液通道中的压力波动

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Liner cavitation is caused by water pressure fluctuation in the water coolant passage (WCP). When the negative pressure falls below the saturated vapor pressure, the impulsive pressure following the implosion of cavitation bubbles causes cavitation erosion of the wet cylinder liner surface. The present work establishes a numerical model for structural-acoustic coupling between the crankcase and the acoustic field in the WCP considering their dynamic characteristics. The coupling effect is evaluated through mutual interaction terms that are calculated from the mode shapes of the acoustic field and of the crankcase vibration on the boundary. Water pressure fluctuations in the WCP under the action of piston slap forces are predicted and the contributions of the uncoupled mode shapes of the crankcase and the acoustic field to the pressure waveform are analyzed. The influence of sound speed variations on the water pressure response is discussed, as well as the pressure on the thrust sides of the four cylinders. (C) 2015 Elsevier Ltd. All rights reserved.
机译:内衬气蚀是由冷却水通道(WCP)中的水压波动引起的。当负压降至饱和蒸气压以下时,气穴气泡爆裂之后的脉冲压力会导致汽缸套湿表面的气蚀侵蚀。考虑到WCP中的动态特性,本文建立了WCP中曲轴箱和声场之间结构声耦合的数值模型。通过相互影响项评估耦合效果,这些相互影响项是根据声场的模态形状和边界上的曲轴箱振动的模态形状计算得出的。预测了WCP在活塞拍打力作用下的水压波动,并分析了曲轴箱的非耦合模态形状和声场对压力波形的影响。讨论了声速变化对水压响应的影响,以及四个汽缸推力侧的压力。 (C)2015 Elsevier Ltd.保留所有权利。

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