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CFD modeling and experimental study of combustion and nitric oxide emissions in hydrogen-fueled spark-ignition engine operating in a very wide range of EGR rates

机译:氢燃料火花点火发动机燃烧和一氧化氮排放的CFD建模和实验研究,在很宽的EGR率范围内运行

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摘要

In the current work, the variation of EGR rates is investigated in a hydrogen-fueled, spark-ignition engine. This technique is followed in order to control the engine load and decrease the exhaust nitrogen oxides emissions. The external EGR is varied in the very wide range of 12% up to 47% (by mass), where in each test case the in-cylinder mixture is stoichiometric, diluted with the appropriate EGR rate. The operation of this engine is explored using measured data with the aid of a validated CFD code. Moreover, a new residual gas term existing in the expression of the hydrogen laminar flame speed, which has been derived from a one-dimensional chemical kinetics code, is tested in a real application for appraising its capabilities. The investigation conducted provides insight on the performance and indicated efficiency of the engine, the combustion processes, and the emissions of nitrogen oxides. More precisely, an experimental study has been deployed with the aim to identify the characteristics of such a technique, using very high EGR rates, focusing on the combustion phenomena. At the same time, the CFD results are compared with the corresponding measured ones, in order to evaluate the CFD code under such non-conventional operating conditions and to test a recent expression for the residual gas term included in the hydrogen laminar flame speed expression. It is revealed that the combustion takes place in few degrees of crank angle, especially at high engine loads (low EGR rates), whereas the exhaust nitrogen oxides emissions are significantly decreased in comparison to the use of lean mixtures for controlling the engine load. Additionally, the recent expression of the residual gas term, which has been tested and incorporated in the CFD code, seems to be adequate for the calculation of combustion phenomena in highly diluted, with EGR, hydrogen-fueled spark-ignition engines, as for every EGR rate tested (even for the higher ones) the computational results are compared in good terms with the measured data. © 2012, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在当前的工作中,研究了氢燃料火花点火发动机中EGR率的变化。为了控制发动机负荷并减少废气中氮氧化物的排放,采用了该技术。外部EGR的变化范围很广,从12%到47%(质量),在每种测试情况下,缸内混合物都是化学计量的,并以适当的EGR率稀释。借助经过验证的CFD代码,使用测量数据来探索该引擎的操作。此外,从一维化学动力学代码中得出的氢层流火焰速度表达式中存在的一个新的残余气体项在实际应用中经过测试,以评估其功能。进行的调查可深入了解发动机的性能和所指示的效率,燃烧过程以及氮氧化物的排放。更准确地说,已经进行了一项实验研究,目的是通过非常高的EGR率来着重于燃烧现象,从而确定这种技术的特性。同时,将CFD结果与相应的测量结果进行比较,以评估在这种非常规操作条件下的CFD代码,并测试包含在氢层流火焰速度表达式中的残余气体项的最新表达式。揭示了燃烧以很少的曲柄角发生,特别是在高发动机负荷(低EGR率)下,而与使用稀薄混合物控制发动机负荷相比,排气中氮氧化物的排放显着降低。此外,经过测试并纳入CFD代码中的残余气体项的最新表达式似乎足以计算出高度稀释的EGR,氢燃料火花点火发动机的燃烧现象,就像每一个测试的EGR率(即使是较高的EGR率)也将计算结果与测量数据进行了很好的比较。 ©2012,氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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