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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >MODELING FUEL SPRAY IMPINGEMENT AND HEAT TRANSFER BETWEEN SPRAY AND WALL IN DIRECT INJECTION DIESEL ENGINES
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MODELING FUEL SPRAY IMPINGEMENT AND HEAT TRANSFER BETWEEN SPRAY AND WALL IN DIRECT INJECTION DIESEL ENGINES

机译:直接喷射柴油机中喷雾与壁之间的燃油喷雾撞击和传热模拟

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摘要

A mired laminar and turbulent (MLT) model of heat transfer has been developed and implemented in the KIVA II code for describing impinging fuel sprays in direct injection diesel engines. The model accounts for various wall impingement regimes, including rebounding drops and drops sliding along the wall, using the drop's Weber number as a criterion. The model identifies flooded and nonflooded regimes depending on whether or not a sliding film is determined to be present on the wall, respectively. In the flooded condition, the heat flux between the liquid film and the wall is calculated by a laminar or turbulent model of heat transfer, using the Reynolds number as a criterion. In the nonflooded condition the heal flux is calculated using a heat transfer model of individual drops on a wall. The fuel spray development and the heal transfer characteristics of impinging diesel sprays in a rapid compression machine were investigated using the new model. The model predictions and the experimental results were generally in good agreement for cases with different distances between the spray nozzle and the wall. [References: 15]
机译:已开发并在KIVA II代码中实施了一个层流和湍流(MLT)换热模型,用于描述直喷式柴油机中撞击的燃油喷雾。该模型使用液滴的韦伯数作为判据,说明了各种壁撞击方式,包括反弹的液滴和沿壁滑动的液滴。该模型分别根据是否确定壁上存在滑动膜来识别溢流和非溢流状态。在浸没状态下,液膜和壁之间的热通量是使用雷诺数为准则,通过层流或湍流传热模型计算的。在非淹没状态下,可使用壁上单个液滴的传热模型来计算修复通量。使用新模型研究了快速压缩机中燃油喷雾的发展和撞击柴油喷雾的愈合传递特性。对于喷嘴与壁之间距离不同的情况,模型的预测与实验结果总体上吻合良好。 [参考:15]

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