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首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >MULTIDIMENTIGNAL SIMULATION OF CAVITATING FLOWS IN DIESEL INJECTORS BY A HOMOGENEOUS MIXTURE MODELING APPROACH
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MULTIDIMENTIGNAL SIMULATION OF CAVITATING FLOWS IN DIESEL INJECTORS BY A HOMOGENEOUS MIXTURE MODELING APPROACH

机译:均质混合建模方法在柴油喷射器空化流动的多维模拟中的应用。

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Because of intense flow recirculations and strong local depression,cavitation occurs in high-pressure Diesel injectors.Because experiments are very difficult to perform for injection conditions(small length and time scales,high-speed flow,etc.),multidimensional modeling seems to be an appropriate tool in order to better understand the flow features inside and at the exit of the injector nozzle.The purpose of this paper is to present the application of the homogeneous equilibrium modeling(HEM)approach for the simulation of cavitating flows inside a Diesel multihole injector.The validation of the model for typical cavitating flow configurations is presented.The HEM approach allows one to reproduce different cavitation regimes observed experimentally.Indeed,numerical results obtained on a simplified injector[7]agree well with experimental visualizations of cavitation and multiple flow fields.Also,the computed steady-state discharge coefficients of a single hole injector are close to the measured values.Furthermore,numerical results reproduce qualitatively the experimental images of cavitation.Finally,computations of cavitating flows in a six-hole narrow-angle Diesel injector,taking into account the needle displacement,are discussed.It is shown that transient injector exit conditions(i.e.,fluid velocity at the injector exit,void fraction,cone angle,etc.)are mainly due to the cavitation collapse especially,during the opening and closing of the injector needle.Therefore,transient computational fluid dynamics code boundary conditions have to be taken into account to improve spray atomization and combustion modeling.
机译:由于强烈的流动再循环和强烈的局部凹陷,高压柴油机喷油器中会发生气蚀。由于在喷射条件(长度和时间尺度小,高速流动等)下很难进行实验,因此多维建模似乎是可行的。为了更好地了解喷油嘴内部和出口的流动特性,本文使用了适当的工具。本文的目的是介绍均质平衡建模方法在模拟柴油机多孔孔内空化流中的应用。提出了典型空化流结构模型的验证。HEM方法允许重现实验观察到的不同空化状态。在简化的注入器上获得的数值模拟[7]与空化和多流的实验可视化非常吻合。同样,单孔注入器的稳态排放系数计算值也接近m此外,数值结果定性地再现了空化的实验图像。最后,讨论了六孔窄角柴油机的空化流,并考虑了针的位移。 (例如,喷油器出口处的流体速度,空隙率,锥角等)主要是由于在喷油器针头的打开和关闭过程中气蚀崩溃而引起的。因此,必须在瞬态计算流体动力学代码边界条件下考虑到改善喷雾雾化和燃烧模型。

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