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Numerical investigation of the effect split injection scheme on exergy terms in an IDI (indirect injection) diesel engine by three dimensional modeling

机译:三维建模对IDI(间接喷射)柴油机火用项有效分割喷射方案的数值研究

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The investigations suggest that it is possible to control the injected masses between two subsequent injections in split injection schemes by modern injection systems. It offers the opportunity to optimize the injection system. During this investigation, therefore, the exergy analysis is carried out under various two-step injection schemes in which the percentage of total fuel injected in the first pulse is changed from 75% to 100%, and the value of dwelling time duration is 20 degrees CA (crank angle) for all cases. The calculations were performed on a Lister 8.1 IDI (indirect injection) diesel engine at full load operation. The energy analysis for these schemes was performed during a closed cycle by utilizing a three-dimensional CFD (computational fluid dynamics) code. The cylinder pressure results of the baseline engine were compared with the corresponding experimental data which showed a good agreement. For the exergy analysis, an in-house computational code was developed, which uses the results of the energy analysis at various cases. With crank angle position and the percentage of total fuel injected in the first pulse under different injection schemes, various rates of exergy and cumulative exergy components are identified and calculated separately. The results showed that the values of work exergy and exergy efficiency increase by 11.1% when the mass ratio injected in first pulse is changed from 75% to 100%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究表明,通过现代喷射系统,可以在分次喷射方案中控制两次后续喷射之间的喷射质量。它提供了优化注射系统的机会。因此,在此研究期间,在多种两步喷射方案下进行了火用分析,在该方案中,第一个脉冲中喷射的总燃料百分比从75%变为100%,并且停留时间为20度所有情况下的CA(曲柄角)。计算是在Lister 8.1 IDI(间接喷射)柴油发动机满负荷运行时进行的。这些方案的能量分析是通过使用三维CFD(计算流体力学)代码在封闭循环中进行的。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。对于火用分析,开发了一个内部计算代码,该代码使用了各种情况下的能量分析结果。通过曲柄角位置和在不同喷射方案下在第一个脉冲中喷射的总燃料百分比,分别确定和计算各种火用率和累积火用分量。结果表明,当第一个脉冲中注入的质量比从75%变为100%时,工作火用值和火用效率值增加11.1%。 (C)2015 Elsevier Ltd.保留所有权利。

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