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Cavitating Flow in Engine Piston Ring-Cylinder Liner Conjunction

机译:发动机活塞环-缸套连接处的空化流

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摘要

The main function of piston compression ring is to seal the space between the piston and the liner, acting as slider bearing, subjected to reciprocating motion. The compression ring-cylinder liner conjunction has been extensively studied and it is responsible for a significant part of the total frictional parasitic power losses of an engine. Paradoxically, the required sealing function of the compressions ring can result in increased friction. Therefore, in order to improve engine efficiency, it is important to fundamentally understand and subsequently palliate some of these losses. Another problem in any slider bearing-type contact is lubricant film rupture and cavitation in the conjunctional outlet zone, reducing load carrying capacity and potentially leading to erosion damage. A cavitation model presented in two-phase flow CFD analysis of the ring-bore contact under isothermal conditions. Liquid flow is modelled as a continuous phase and a dispersed phase, representing cavitation bubbles. Many of the fundamental physical processes assumed to take place in cavitating flows are incorporated into the model.
机译:活塞压缩环的主要功能是密封往复运动的活塞和衬套之间的空间,用作滑动轴承。压缩环-缸套联轴器已被广泛研究,它占发动机总摩擦寄生功率损耗的很大一部分。矛盾的是,压缩环所需的密封功能会导致摩擦增大。因此,为了提高发动机效率,重要的是从根本上理解并减轻这些损失中的一些。任何滑动轴承类型的接触器中的另一个问题是在联合出口区域中的润滑膜破裂和气穴现象,从而降低了承载能力,并可能导致腐蚀损坏。等温条件下环孔接触的两相流CFD分析中提出的空化模型。液体流动被建模为连续相和分散相,代表了气蚀气泡。假定在空化流中发生的许多基本物理过程都已包含在模型中。

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