首页> 外文会议>Technical Conference of the ASME Internal Combustion Engine Division >A COMPREHENSIVE THERMODYNAMIC APPROACH TO ACOUSTIC CAVITATION SIMULATION IN HIGH-PRESSURE INJECTION SYSTEMS BY A CONSERVATIVE HOMOGENEOUS BAROTROPIC-FLOW MODEL
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A COMPREHENSIVE THERMODYNAMIC APPROACH TO ACOUSTIC CAVITATION SIMULATION IN HIGH-PRESSURE INJECTION SYSTEMS BY A CONSERVATIVE HOMOGENEOUS BAROTROPIC-FLOW MODEL

机译:保守均质辐射流流动模型中高压注射系统中声学空化模拟的综合热力学方法

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A general conservative numerical model for simulation of transmission-line unsteady fluid-dynamics has been developed and applied to high-pressure injection systems. A comprehensive thermodynamic approach for modeling acoustic cavitation, i.e. cavitation induced by wave propagation, was proposed on the basis of a homogeneous barotropic mixture model of a pure liquid in equilibrium with its vapor and a gas, both dissolved and undissolved. For the pure liquid flow simulation outside the cavitation regions, or in the absence of these, temperature variations due to compressibility effects were taken into account, for the first time in injection system simulation, through a thermodynamic state equation which was derived from energy considerations. Nevertheless, in the cavitation regions, an isothermal flow was retained which is consistent with negligible thermal effects due to vaporization because of the tiny amounts of liquid involved. A novel implicit, conservative, one step, symmetrical and trapezoidal scheme of the second-order accuracy was applied to solve the hyperbolic partial differential equations governing the pipe flows. It can also be enhanced at a high-resolution level. The numerical model was applied to wave propagation and cavitation simulation in a high-pressure injection system of the pump-line-nozzle type for light and medium duty vehicles. The system was of relevance to the model assessment because it presented severely cavitating flow conditions. The predicted pressure time histories at two pipe locations and injector needle lift were compared to experimental results, substantiating the validity and robustness of the developed conservative model in simulating cavitation inception and desinence with great degree of accuracy. Cavitation transients and the flow discontinuities induced by them were numerically analyzed and discussed.
机译:开发了一种用于模拟传输线非定常流体动力学的一般保守数值模型,并应用于高压注射系统。一种综合热力学方法,用于对声学进行建模,即通过波传播诱导的空化,基于纯液与其蒸气和气体的纯液体的均匀管孔混合物模型提出,溶解和未溶解。对于空化区域之外的纯液体流动模拟,或者在没有这些的情况下,考虑到由于可压缩效应引起的温度变化,首次通过从能量考虑的热力学状态方程进行注射系统模拟。然而,在空化区域中,保留等温流,这与由于所涉及的液体的液体的蒸发,这与由于蒸发而具有可忽略的热效应。应用了二阶精度的新颖隐含,保守,一个步骤,对称和梯形方案,用于解决管流流量的双曲线部分微分方程。它也可以在高分辨率水平上增强。泵线喷嘴型高压喷射系统中的波传播和空化模拟,用于光和中型车辆的高压喷射系统。该系统与模型评估有关,因为它呈现了严重空气的流动条件。将两个管道位置和喷射器针升力的预测压力时间历史与实验结果进行比较,实质上具有显影保守模型的有效性和鲁棒性,在模拟空化初始化和劣刻中的精度大。在数值分析和讨论它们诱导的空化瞬变和流动不连续性。

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