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Investigation of the Flow Pattern inside a Diesel Engine Injection Nozzle to Determine the Relationship between Various Flow Parameters and the Occurrence of Cavitation

机译:研究柴油机喷油嘴内的流型以确定各种流参数与气蚀发生之间的关系

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In diesel engines the fuel injection system produces the spray, which directly affects the combustion of the fuel, which in turn determines the production of pollutants. In spite of this, the details of this causal relationship remain unclear. There is, however, a lack of quantitative experimental data for determining and visualizing the cavitation inside real size diesel injector nozzle. The present work is devoted to analyze analytically the flow pattern inside the nozzle of a diesel engine working with hydrocarbon fuel (Diesel fuel) and to predict the relationship between the various flow parameters and occurrence of fuel cavitation in such nozzles. Basic physical parameters affecting this phenomenon are identified and quantified while the effect of nozzle geometry, fuel injection pressure, and engine cylinder temperature upon the flow pattern and occurrence of cavitation in such nozzles are assessed. In this study, a commercial computational fluid dynamics (CFD) package (FLUENT-T grid) is used while a computational grid is generated for the real geometry of diesel injector nozzle using (ANSYS). The suitability of the generated computational grid to give reliable results is examined using the suitable procedures and techniques. The results indicated that, cavitation modeling has reached a stage of maturity and it can usefully identify many of the cavitation structures present in internal nozzle flows and their dependence on nozzle design and flow conditions. The qualitative distributions and comparison of cavitation inception and distribution as well as flow parameters at the nozzle exit are also studied.
机译:在柴油发动机中,燃油喷射系统会产生喷雾,直接影响燃油的燃烧,进而决定污染物的产生。尽管如此,这种因果关系的细节仍然不清楚。但是,缺乏确定和可视化实际尺寸柴油喷油嘴内的气蚀现象的定量实验数据。本工作致力于分析性地分析使用碳氢燃料(柴油燃料)的柴油发动机喷嘴内部的流型,并预测各种流量参数与此类喷嘴中发生的燃料气蚀之间的关系。确定并量化影响此现象的基本物理参数,同时评估喷嘴几何形状,燃料喷射压力和发动机气缸温度对此类喷嘴中的流型和空化现象的影响。在这项研究中,使用商业计算流体动力学(CFD)程序包(FLUENT-T网格),同时使用(ANSYS)为柴油喷射器喷嘴的实际几何形状生成计算网格。使用适当的过程和技术检查了生成的计算网格提供可靠结果的适用性。结果表明,空化模型已经达到成熟阶段,它可以有效地识别内部喷嘴流中存在的许多空化结构及其对喷嘴设计和流动条件的依赖性。还研究了气蚀开始和分布的定性分布和比较,以及喷嘴出口处的流动参数。

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