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首页> 外文期刊>International Journal of Automotive Technology >Numerical and experimental investigation of lubricating oil flow in a gerotor pump
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Numerical and experimental investigation of lubricating oil flow in a gerotor pump

机译:齿轮泵内润滑油流动的数值和实验研究

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摘要

Gerotor pumps are widely used in the automotive industry for engine oil lubrication, due to their high volumetric efficiency and smooth pumping action. In many cases, the lubricating oil from the sump is mixed with contaminants, such as dust and tiny solid particles, or becomes thickened, due to aging. These problems will lead to critical situations, such as increased noise, enhanced wear and erosion, and poor lubrication of the engine. These critical situations were studied by conducting a detailed CFD integrated investigation on a gerotor pump’s performance at different operating conditions in three phases, and the results are presented in this paper. In first phase, a CFD model of a gerotor pump was developed with a dynamic mesh for the rotary movement of both the inner and outer rotors. The effects on pump flow rate of important parameters, such as rotor speed, fluid viscosity and number of ports, were simulated using non-contaminated oil at room temperature and an elevated temperature of 140oC. The relationship between flow rate and pressure at different rotor speeds was predicted and validated with test data for further parametric study. The pressure ripples at different time steps were measured at different angular positions of the rotors to examine the model accuracy. It was found that the flow rate increased and pressure pulsation, as well as flow recirculation, was reduced when ports were added to the cover plate. A suction pipe with a strainer was added for the second phase to capture the undesired changes in flow behavior, such as cavitation, which is caused by negative suction at the inlet region of pump. A suitable size for the inlet suction pipe for this pump was chosen after performing tests to characterize the flow behavior with single and double ports. Next, the relationship between pressure drop and strainer porosity was determined using different porosity values for the strainers. In the final phase, oil with different concentrations of solids was simulated to measure the effect of solid particles on flow rates and pressure losses. It was observed that the intensity of the recirculation was reduced at the suction end at the higher concentration of 0.04%, due to particle inertial effects. It was also found that particle size distribution affected the overall efficiency and pressure head of the pump.
机译:Gerotor泵因其高容积效率和平稳的泵送作用而广泛用于汽车工业中的机油润滑。在许多情况下,来自油底壳的润滑油会与污染物(例如灰尘和微小的固体颗粒)混合,或者由于老化而变稠。这些问题将导致严重情况,例如噪音增加,磨损和腐蚀加剧以及发动机润滑不良。通过在三个阶段中对齿轮泵在不同运行条件下的性能进行详细的CFD综合研究,研究了这些关键情况,并在本文中介绍了结果。在第一阶段,开发了带有动态网格的齿轮转子泵的CFD模型,用于内转子和外转子的旋转运动。在室温和140oC的高温下,使用无污染的油模拟了重要参数对泵流量的影响,例如转子速度,流体粘度和端口数量。预测了不同转子转速下的流量与压力之间的关系,并用测试数据进行了验证,以进行进一步的参数研究。在转子的不同角度位置测量了不同时间步长的压力脉动,以检验模型的准确性。已经发现,当将端口添加到盖板上时,流速增加并且压力脉动以及流动再循环减少。在第二阶段中添加了带有过滤器的吸管,以捕获不希望的流动行为变化,例如气蚀,这是由泵入口区域的负吸力引起的。在执行测试以选择单口和双口的流动特性后,为该泵的入口吸入管选择合适的尺寸。接下来,使用不同的过滤器孔隙率值确定压降和过滤器孔隙率之间的关系。在最后阶段,模拟了具有不同固体浓度的油,以测量固体颗粒对流速和压力损失的影响。观察到由于颗粒惯性效应,在较高浓度为0.04%的情况下,吸入端的再循环强度降低了。还发现粒度分布会影响泵的整体效率和压头。

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