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Performance prediction of spark-ignition engine running on gasoline-hydrogen and methane-hydrogen blends

机译:汽油-氢气和甲烷-氢气混合气运行的火花点火式发动机的性能预测

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摘要

Hydrogen is a strong candidate as an alternative fuel and energy carrier which could address problems of environmental pollution, emissions, and geo-political tensions. The aim of this paper is to compare the performance of hydrogen fuel with other fuels and to investigate the power and performance penalty when adding different fractions of hydrogen fuel to the other fuels. A one-dimensional model is developed for an engine with hydrogen and gasoline-hydrogen and methane-hydrogen blends. These models have been calibrated and validated against experimental works and the findings of previous studies. The validation of the pressure trace and the torque showed the predictive capability of the model. Furthermore, the penalty and benefits from hydrogen enrichment were clarified. It was shown that adding small controllable mass factions of hydrogen (<10%) to gasoline enhances the burning velocity and combustion process in the low speed range. However, a small reduction in the output power (<6%) was documented. Adding hydrogen to methane showed greater advantages due to the extremely low burning velocity of methane. The benefits of hydrogen addition are considerably stronger than the limitations. Methane-hydrogen blend seemed more attractive than gasoline-hydrogen blends. It can be seen that the developed simulation codes are powerful tools for the H2ICE community. (C) 2015 Elsevier Ltd. All rights reserved.
机译:氢是替代燃料和能源的强有力的候选者,可以解决环境污染,排放和地缘政治紧张的问题。本文的目的是比较氢燃料与其他燃料的性能,并研究在向其他燃料中添加不同比例的氢燃料时的功率和性能损失。为具有氢气和汽油-氢气和甲烷-氢气混合物的发动机开发了一维模型。这些模型已经根据实验工作和先前研究的结果进行了校准和验证。压力轨迹和扭矩的验证显示了模型的预测能力。此外,阐明了氢富集的惩罚和益处。结果表明,在汽油中添加少量可控的氢质量分数(<10%)会提高低速范围内的燃烧速度和燃烧过程。但是,记录到输出功率有小幅下降(<6%)。由于甲烷的燃烧速度极低,将氢气添加到甲烷中显示出更大的优势。加氢的好处比限制要强得多。甲烷-氢气混合物似乎比汽油-氢气混合物更具吸引力。可以看出,开发的仿真代码是H2ICE社区的强大工具。 (C)2015 Elsevier Ltd.保留所有权利。

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