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首页> 外文期刊>International journal of hydrogen energy >Multi-objective optimization of operating parameters for a H_2/Diesel dual-fuel compression-ignition engine
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Multi-objective optimization of operating parameters for a H_2/Diesel dual-fuel compression-ignition engine

机译:H_2 /柴油双燃料压缩 - 点火发动机的运行参数多目标优化

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This numerical study covers the engine performance and emissions of a dual-fuel compression-ignition engine fueled by hydrogen/diesel mixtures. Advanced simulations of the combustion process were performed by focusing on simulating the engine performance and emissions at different hydrogen quantities. Different factors that have significant effects on engine performance and emissions, such as exhaust gas recirculation and modifying diesel injection timing (IT), were also considered in this study. The relationship between the performance, emissions, and the operating parameters considered in this work are investigated and explained. A significant reduction of soot emissions by approximately 32.5% has been achieved by increasing hydrogen levels up to 37.5%; however, this has led to an increase in nitrogen oxides (NOx) emissions by similar to 22%. To overcome this problem, the optimum operating parameters that will lead to minimum emissions and maximum efficiency were also sought. Hydrogen rates, exhaust gas recirculation (EGR) rates, and diesel injection timing were the main operating conditions while the engine performance and NOx/soot emissions were the objectives. The best operating conditions for hydrogen/diesel engines were obtained by solving the multi-objective problem of maximizing the efficiency while minimizing the NOx and soot emissions. This multi-objective optimization problem (MOOP) with conflicting objectives was solved by using different optimization techniques, including regression analysis, artificial neural networks, and genetic algorithms. By solving MOOP, the first preferred operating condition at similar to 13% hydrogen, 4% EGR, and 30 BTDC of diesel injection timing was obtained. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:该数值研究涵盖了通过氢/柴油混合物燃料的双燃料压缩点火发动机的发动机性能和排放。通过专注于模拟不同氢气量的发动机性能和排放来进行燃烧过程的高级模拟。在本研究中也考虑了对发动机性能和排放具有显着影响的不同因素,例如废气再循环和改性柴油注射正时(IT)。调查并解释了在本工作中考虑的性能,排放和操作参数之间的关系。通过将氢水平增加至37.5%,已经实现了大约32.5%的烟灰排放的显着降低;然而,这导致氮氧化物(NOx)排放量增加到22%。为了克服这个问题,还寻求最佳的操作参数,这些参数将导致最低排放和最高效率。氢气速率,废气再循环(EGR)速率和柴油注射时间是主要的操作条件,而发动机性能和NOx /烟灰排放是目标。通过解决最大限度地提高效率的多目标问题,同时最大限度地减少NOx和烟灰排放来获得氢气/柴油发动机的最佳操作条件。通过使用不同的优化技术解决了具有冲突目标的多目标优化问题(MOOP),包括回归分析,人工神经网络和遗传算法。通过求解MOOP,获得类似于13%氢,4%EGR和30BTDC的柴油喷射正时的第一优选操作条件。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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