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Multidimensional modeling of the effect of EGR (exhaust gas recirculation) mass fraction on exergy terms in an indirect injection diesel engine

机译:间接喷射柴油机中EGR(废气再循环)质量分数对火用项影响的多维建模

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In this investigation, the energy and exergy analyses are carried out for a Lister 8.1 IDI (indirect injection) diesel engine at four different EGR (exhaust gas recirculation) mass fractions (0%, 10%, 20% and 30%) and at 50% load operation. The energy analysis is performed during a closed cycle by using a three-dimensional CFD (Computational Fluid Dynamics) code. For the exergy analysis, an in-house computational code is developed, which uses the results of the energy analysis at different ECR mass fractions. The cylinder pressure results for baseline engine are compared with the corresponding experimental data that shows a good agreement. With crank position at different ECR mass fractions, various exergy components and the cumulative exergy are identified and calculated separately. It is found that at 50% load operation, as EGR mass fraction increases from 0% to 30% (in 10% increments), exergy efficiency decreases from 31.74% to 25.38%. Also, the cumulative irreversibility related to the combustion chamber decreases from 29.8% of the injected fuel exergy to 25.5%. This work demonstrates that multidimensional modeling can be used to simulate the effect of various EGR mass fractions and gain more insight into the impact of flow field on combustion process in IDI engines from the second law perspective.
机译:在此调查中,对Lister 8.1 IDI(间接喷射)柴油发动机在四种不同的EGR(废气再循环)质量分数(0%,10%,20%和30%)和50时进行了能量和火用分析。 %加载操作。通过使用三维CFD(计算流体动力学)代码在封闭循环中执行能量分析。对于能值分析,开发了一个内部计算代码,该代码使用了不同ECR质量分数下的能量分析结果。将基准发动机的气缸压力结果与相应的实验数据进行了比较,结果显示出很好的一致性。通过在不同ECR质量分数下的曲柄位置,分别识别和计算各种火用成分和累积火用成分。发现在50%负载运行时,随着EGR质量分数从0%增加到30%(以10%的增量),火用效率从31.74%降低到25.38%。而且,与燃烧室相关的累积不可逆性从喷射燃料的火用的29.8%降低到25.5%。这项工作表明,多维模型可用于模拟各种EGR质量分数的影响,并从第二定律的角度更深入地了解流场对IDI发动机燃烧过程的影响。

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