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Exergy analysis of air injection at various loads in a natural aspirated direct injection diesel engine using multidimensional model

机译:利用多维模型对自然吸气式直喷柴油发动机在不同负荷下的空气喷射进行火用分析

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Research studies indicate that the Soot and NOx emissions in natural aspirated DI diesel engines, can be reduced through applying an air jet. In order to achieve this aim, an air-cell can be designed inside the piston body by maintaining the performance parameters. The diameter of the air cell is 35 mm and its height is 1.2 mm and the diameter of the throats is 1 mm. At the present work, however, exergy analyses are carried out for an MT4.244 engine, which is modeled with an air-cell. Energy analyses and numerical combustion have been performed for compression ratios of 25%, 50%, 75% and 100% full load. A three-dimensional CFD code is employed for this purpose in a closed cycle. The numerical results of cylinder pressure are compared with the measured experimental data and show a good agreement. Exergy analysis is carried out using an in-house computational developed code which uses the results of combustion and energy analysis. Various rates and the cumulative exergy components are identified separately for two engine cases at various loads. The comparison of the results show that, as load engine increases from 25% to 100% full load (in 25% increments), the exergy efficiency in air injection engine decreases by 5.69%, 10.5%, 10.9%, and 10.8% in comparison to baseline engine. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究表明,通过使用空气喷射器可以减少自然吸气式DI柴油发动机的烟尘和NOx排放。为了达到这个目的,可以通过保持性能参数在活塞体内设计一个气室。气囊的直径为35毫米,高度为1.2毫米,喉咙的直径为1毫米。但是,在当前的工作中,对MT4.244发动机进行了火用分析,该发动机以空气室为模型。已针对25%,50%,75%和100%满负荷的压缩率进行了能量分析和数值燃烧。为此,在封闭的循环中使用三维CFD代码。将气缸压力的数值结果与测量的实验数据进行比较,并显示出良好的一致性。火用分析是使用内部计算开发的代码进行的,该代码使用燃烧和能量分析的结果。分别确定了两种发动机箱在各种负载下的各种比率和累积火用分量。结果比较表明,当负载发动机从满负荷的25%增加到100%(以25%的增量)时,空气喷射发动机的火用效率相比降低了5.69%,10.5%,10.9%和10.8%。基准引擎。 (C)2015 Elsevier Ltd.保留所有权利。

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