首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >FLUID-STRUCTURE INTERACTION ANALYSIS ON THE PERFORMANCE OF THE HIGH-PRESSURE FUEL PUMP FOR DIESEL ENGINES
【24h】

FLUID-STRUCTURE INTERACTION ANALYSIS ON THE PERFORMANCE OF THE HIGH-PRESSURE FUEL PUMP FOR DIESEL ENGINES

机译:柴油发动机高压燃料泵性能的流体结构相互作用分析

获取原文

摘要

In this paper, a 3-D fluid-structure interaction (FSI) analysis on the performance of the high-pressure fuel pump for diesel engines is presented. The fluid and structure are two-way coupled and several complex factors are taken into accounts in the FSI model. For instance, the fluid model includes not only the high-pressure fuel pump but also the rail and pressure-control valve which are used to maintain a stable delivery pressure of the pump; Gap boundary condition is adopted to simulate the opening and closing of the valve; The flow is assumed to be nonisothermal and the physical properties of the fuel such as dynamic viscosity and density are functions of pressure and temperature. While in the structure model, the spring force on the valve and the contacts between the valve and the valve seat as well as the top block are considered. The calculated volumetric efficiency losses agree well with the experiments, which indicates that the FSI model established in this study could well predict the physical phenomenon taking place in the high-pressure fuel pump. Several new conclusions can be drawn from the discussions on the results such as the suction efficiency loss due to the delay closing of the inlet valve is extremely small while the suction loss due to the expansion of the high-pressure fuel entrapped in the dead volume is very large.
机译:在本文中,被呈现在柴油发动机的高压燃料泵的性能的3-d流体 - 结构交互(FSI)分析。在流体和结构是双向耦合和几个复杂的因素都考虑在FSI模型帐户。例如,该流体模型不仅包括高压燃料泵,而且还包括用于保持所述泵的稳定输送压力的轨和压力控制阀;间隙的边界条件被采用来模拟所述开口和所述阀的开闭;流被假定为非等温和燃料的诸如动态粘度和密度的物理性质是压力和温度的函数。虽然在结构模型,在阀和弹簧力的阀和阀座,以及顶块之间的接触被考虑。计算出的容积效率损失与实验,这表明本研究建立的FSI型可以很好地预测的物理现象发生在高压燃油泵吻合。几个新的结论可以从对结果因进气门的延迟关闭的讨论如吸入效率损失被吸入极小而由于高压燃料中的死体积截留的膨胀吸入损失是很大。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号