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Effect of Water Injection and Spatial Distribution on Combustion, Emission and Performance of GDI Engine-A CFD Analysis

机译:注水和空间分布对GDI发动机燃烧,排放和性能的影响 - CFD分析

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Water injection in diesel engines is a successful way to reduce NO_x emissions and enhance brake power output. The advantages of water injection are because of its high enthalpy of vaporization and high specific heat capacity by which it absorbs heat from the in-cylinder mixture. The benefits of water injection depend on the rate of water vaporization and its spatial distribution in the combustion chamber. However, detailed effects of these parameters are very rarely studied in the past. Therefore, in the present study, an attempt has been made to assess the effect of water injector configuration on performance of a GDI engine by CFD analysis. Here, the analysis is done mainly to study and enhance the evaporation and spatial distribution characteristics of the water injection inside the combustion chamber. Water is directly injected into the cylinder of a naturally aspirated, four-stroke GDI engine. Various water injection configurations formed by different spray patterns and injector orientations are considered for the study and compared with a no water case. The analysis is done under full-load conditions with a constant engine speed of 2000 rev/min. The CFD models used in this study are validated from the available data in the literature. From the results, it is found that the water spray pattern in a shape of the regular hexagon at an injector orientation of 25° produces higher IMEP with lower NO_x and soot emissions.
机译:柴油发动机注水是减少NO_X排放的成功方法,提高制动力输出。注水的优点是其蒸发的高焓和高比热容量,通过其吸收来自缸内混合物的热量。注水的益处取决于水蒸发速率及其在燃烧室中的空间分布。然而,过去,这些参数的详细效果非常易于研究。因此,在本研究中,已经尝试通过CFD分析评估水喷射器配置对GDI发动机性能的影响。这里,分析主要是为了研究和增强燃烧室内注水的蒸发和空间分布特性。将水直接注入到天然吸气的四冲程GDI发动机的气缸中。通过不同的喷射图案和喷射器取向形成的各种水喷射配置被认为是研究,并与无水箱进行比较。该分析在满载条件下进行,恒定的发动机速度为2000 Rev / min。本研究中使用的CFD模型从文献中的可用数据验证。从结果中,发现在25°的喷射器取向的常规六边形形状的水喷雾模式产生更高的IMEP,具有较低的NO_X和烟灰排放。

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