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Computational optimization of CH_4/H_2/CO blends in a spark-ignition engine using quasi-dimensional combustion model

机译:使用准维燃烧模型在火花点火发动机中的CH_4 / H_2 / COS的计算优化

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Recent research has proven that computational fluid dynamics (CFD) modeling in combination with a genetic algorithm (GA) algorithm is an effective methodology to optimize the design of internal combustion (IC) engines. However, this approach is time consuming, which limits the practical application of it. This study addresses this issue by using a quasi-dimensional (QD) model in combination with a GA to find optimal fuel composition in a spark ignition (SI) engine operated with CH4/H2/CO fuel blends. The QD model for the simulation of combustion of the fuel blends coupled with a chemical kinetics tool for ignition chemistry was validated with respect to measured pressure traces and NOx emissions of a small size single-cylinder SI engine operated with CH4/H2 blends. Calibration was carried out to assess the predictive capability of the QD model, and the effect of hydrogen addition on the lean limit extension of the methane fueled engine was studied. A GA approach was then used to optimize the blend composition and engine input parameters based on a fitness function. The QD-GA methodology was implemented to simultaneously investigate the effects of three input parameters, i.e., fuel composition, air-fuel equivalence ratio and spark timing on NOxemissions and indicated thermal efficiency (ITE) for the engine. The results found indicated that this approach could provide optimal fuel blends and operating conditions with considerable lower NOx emissions together with improved thermal efficiencies compared to the methane fueled engine. The presented computationally-efficient methodology can also be used for other fuel blends and engine configurations.
机译:最近的研究已经证明,与遗传算法(GA)算法组合的计算流体动力学(CFD)建模是优化内燃机(IC)发动机的设计的有效方法。然而,这种方法是耗时的,这限制了它的实际应用。本研究通过使用准尺寸(QD)模型结合GA在用CH4 / H2 / CO燃料共混物操作的火花点火(Si)发动机中找到最佳燃料组合物来解决该问题。关于测量的压力迹线和用CH4 / H2混合物操作的小尺寸单缸Si发动机的测量的压力迹线和NOx排放验证了用于点火化学的化学动力学工具的燃料混合物的QD模型。进行了校准以评估QD模型的预测能力,研究了氢添加对甲烷燃料发动机的贫极限延伸的影响。然后使用GA方法基于适合度函数优化混合组合物和发动机输入参数。实施QD-GA方法以同时研究三个输入参数,即燃料组合物,空气燃料等效比和火花正时对发动机的热效率(ITE)的影响。结果表明,与甲烷燃料发动机相比,这种方法可以提供最佳的燃料混合物和具有相当低的NOx排放的操作条件。所提出的计算上有效的方法也可用于其他燃料混合和发动机配置。

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