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Numerical investigation on the oscillating flow and uneven heat transfer processes of the cooling oil inside a piston gallery

机译:活塞廊中冷却油振荡流动和不均匀传热过程的数值研究

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摘要

In previous research of achieving high cooling efficiency of engine pistons, the phenomenon of uneven heat transfer has not been investigated or recognized. These issues lead to a greater piston temperature gradient and its effects on engine durability have not been paid sufficient attention. In this research, a piston gallery was classified into four regions and several zones per region to investigate oscillating oil flows and uneven heat transfer distributions with a Relative Displacement Method (RDM). The RDM allows the cooling gallery to be treated as a rigid body, and the original constant boundary conditions could be translated into varying conditions that change as a function of engine crank angle. The relationships are investigated between the heat transfer performance and some factors such as the movement conditions of the air-oil two-phase flow inside the gallery, the instantaneous oil distributions, the relative oil velocity, the instantaneous acceleration and the velocity of the piston. The results reveal that the instantaneous oil charge ratio decreases and the area-weighted heat transfer coefficient increases as the engine speed increases. Different regions exhibit more apparent uneven heat transfer at higher engine speeds, and the top and bottom regions play a dominant role in the overall heat transfer coefficient. When the gallery was positioned closer to the oil inlet passage, the uneven heat transfer is more intense. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在以前实现发动机活塞的高冷却效率的研究中,不高度传热的现象尚未研究或认识到。这些问题导致了更大的活塞温度梯度,其对发动机耐用性的影响尚未得到足够的注意。在本研究中,将活塞廊分为四个区域和每个区域的几个区域,以研究振荡油流量和具有相对位移方法(RDM)的不均匀传热分布。 RDM允许将冷却廊视为刚体,并且原始恒定边界条件可以转换成随着发动机曲柄角的函数而变化的变化条件。在传热性能和空气油两相流动的运动条件之外的一些因素之间研究了关系,瞬时油分布,相对油速度,瞬时加速度和活塞的速度等因素。结果表明,随着发动机速度的增加,瞬时油电荷比降低,并且面积加权传热系数增加。不同的区域在更高的发动机速度下表现出更明显的不均匀传热,并且顶部和底部区域在整体传热系数中起着显着作用。当画廊定位更接近油入口通道时,不均匀的传热比较强烈。 (c)2017 Elsevier Ltd.保留所有权利。

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