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To Determine the Effect of Dimpled Poppet Valve on the Flow in Engine Cylinder by Port Flow Simulation

机译:通过端口流模拟确定凹陷提升阀对发动机缸流量的影响

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Intake system is one of the crucial sub-systems in engine, the geometrical configuration of the inlet ports and the valves and their opening schedule creates organized motions in the cylinder, known as swirl (about the cylinder axis) and tumble (orthogonal to the cylinder axis) which help in proper mixing of fuel and air. Surface texturing of intake valve can improve the performance of engine drastically by generating more swirl, turbulent kinetic energy and reducing the coefficient of skin friction in the valve proximity area. Making dimples on intake valve is one of the many ways in which surface texturing can be done and its effectiveness can be easily measured by conducting a steady-state port flow simulation on ANSYS IC fluent solver using standard k-omega model. Port flow analysis was carried on dimpled intake valve at a lift of 5mm for 5 dimple ratio ranging from 0.1 to 0.3 in steps of 0.05. The dimple depth-over diameter ratio is a very crucial parameter in determining the optimum geometry of dimple on which best results are obtained. The results showed that the maximum mass flow rate is obtained at dimple ratio of 0.2 with an increase of 0.005% over the simple intake valve and a 38.4% decrease in the area weighted average skin friction coefficient in valve proximity area was seen in case of dimpled valve.
机译:进气系统是发动机的关键子系统之一,入口端口和阀门的几何配置及其开放时间表在圆柱体中产生有组织的动作,称为旋流(围绕圆柱轴)并翻滚(正交到圆柱形轴)有助于燃料和空气的适当混合。通过产生更多的旋涡,湍流的动能并降低阀门接近区域中的皮肤摩擦系数,可以通过产生更多的旋流,从而提高发动机的性能。在进气阀上制造凹坑是可以通过在使用标准K-Omega模型对ANSYS IC流畅的求解器进行稳态端口流模拟来实现表面纹理的许多方式之一。端口流量分析在凹陷进气门上以5毫米的升力,5伏比的升力为0.05的步长0.1至0.3。凹坑深度过度直径比是确定获得最佳结果的最佳几何形状的非常重要的参数。结果表明,在0.2的浊度下获得最大质量流量,在简单的进气门上增加0.005%,在凹陷的情况下,阀门接近区域的面积加权平均皮肤摩擦系数的38.4%降低阀门。

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