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首页> 外文期刊>International journal of hydrogen energy >A numerical study on the effects of constant volume combustion phase on performance and emissions characteristics of a diesel-hydrogen dual-fuel engine
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A numerical study on the effects of constant volume combustion phase on performance and emissions characteristics of a diesel-hydrogen dual-fuel engine

机译:恒空燃阶段对柴油双燃料发动机性能和排放特性影响的数值研究

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A detailed numerical study is carried out to investigate the performance of a diesel-hydrogen dual fuel (DF) compression ignition engine operating under a novel combustion strategy in which diesel injection and most of the combustion occur at a constant volume. A detailed validation of the numerical model for diesel-hydrogen DF engine operation has been carried out. Then a parametric study has been performed to investigate the effects of the constant volume combustion phase (CVCP) at up to 90% hydrogen energy share (HES) on engine performance and emissions at low and high load with comparisons to the conventional engine. The results demonstrate that the CVCP strategy can improve thermal efficiency at all HESs and load conditions with far lower carbon-based emissions. Conventional DF engines struggle at low load high HESs due to the reduced diesel injection failing to ignite the leaner premixed charge. Through use of a CVCP thermal efficiency at low load 90% HES increased from 11% to 38% with considerably reduced hydrogen emission due to the increased temperatures and pressures allowing for the wholesale ignition of the hydrogen-air mix. It was also found that increasing the time allowed for combustion within the CVCP, by advancing the diesel injection, can lead to even further thermal efficiency gains while not negatively impacting emissions. Crown Copyright (C) 2020 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC. All rights reserved.
机译:进行了详细的数值研究,以研究在新的燃烧策略下操作的柴油 - 氢双燃料(DF)压缩点火发动机的性能,其中柴油注射和大部分燃烧处于恒定体积。已经进行了柴油机DF发动机操作的数值模型的详细验证。然后,已经进行了参数研究以研究恒定体积燃烧相(CVCP)在高达90%的氢能量份额(HES)对发动机性能和低负荷的排放的影响,以与传统发动机的比较。结果表明,CVCP策略可以提高所有HESS的热效率,并且负载条件具有远低于基于碳的排放。传统的DF发动机由于柴油注射减少未能点燃稀释剂预混电荷,常规DF发动机在低负荷高赫斯时斗争。通过在低负荷下使用CVCP热效率90%HES从11%增加到38%,由于允许氢气混合物的批发点火,因此引起的氢排放量显着降低。还发现,通过推进柴油喷射,增加CVCP内燃烧的时间可以导致进一步的热效率增益,同时不会产生负面影响。皇冠版权(c)2020由elsevier有限公司发布代表氢能出版物LLC。版权所有。

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