Research on the influential factors related to the fuel leakage rate in the plunger-sleeve clearance of high pressure common rail system

IF 2.1 4区 工程技术 Q2 ENGINEERING, MECHANICAL
Xiangdong Lu, Jianhui Zhao, Leonid Grekhov
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Abstract

In this study, a numerical model of the fuel leakage rate in the plunger-sleeve clearance of high-pressure common rail system was established based on graph theory. The transient clearance changes caused by the elastic deformation and the physical properties of the fuel along the flow direction within the plunger-sleeve were considered. This model realized the fluid–structure–thermal transient coupling during the leakage, and the accuracy was verified by comparing the calculated fuel leakage rate with the experimental data. Based on the main structural parameters of the plunger-sleeve, a three-level five-factor experimental calculation matrix was proposed using the D-optimal design method. The fuel leakage rates of all groups in the calculation matrix were obtained based on the fuel leakage rate numerical model, and the significant influencing parameters of the fuel leakage rate were determined using analysis of variance (ANOVA). The results indicate that the plunger diameter, sleeve external diameter, plunger-sleeve initial clearance and sealing length are significant parameters that affect the fuel leakage rate. In case of interaction between parameters, the interaction between the plunger diameter and sleeve external diameter, plunger diameter and plunger-sleeve initial clearance, and plunger diameter and plunger-sleeve sealing length contributed to a significant change in the fuel leakage rate. The influencing behavior of significant single parameters and significant interactions between parameters on the fuel leakage rate were revealed. The research outcomes can provide theoretical support for the optimization of the design of plunger-sleeve.
高压共轨系统柱塞-套间隙燃油泄漏率影响因素研究
基于图论,建立了高压共轨系统柱塞-套间隙燃油泄漏率的数值模型。考虑了燃料在柱塞套内沿流动方向的弹性变形和物理性质引起的瞬态间隙变化。该模型实现了泄漏过程中的流-固-热瞬态耦合,并将计算的燃油泄漏率与实验数据进行了比较,验证了模型的准确性。基于柱塞套的主要结构参数,采用d -最优设计方法,提出了一个三级五因素实验计算矩阵。基于燃油泄漏率数值模型得到计算矩阵中各组的燃油泄漏率,并利用方差分析(ANOVA)确定燃油泄漏率的显著影响参数。结果表明,柱塞直径、柱塞外径、柱塞-套初始间隙和密封长度是影响燃油泄漏率的重要参数。在参数相互作用的情况下,柱塞直径与套筒外径、柱塞直径与套筒初始间隙、柱塞直径与柱塞套筒密封长度的相互作用导致燃油泄漏率发生显著变化。揭示了重要的单个参数和参数之间的重要交互作用对燃油泄漏率的影响行为。研究结果可为柱塞套的优化设计提供理论支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
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