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Research on emission characteristics of hydrogen fuel internal combustion engine based on more detailed mechanism

机译:基于更详尽机理的氢燃料内燃机排放特性研究

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A CFD simulation model with simplified chemical reaction mechanism was built based on CONVERGE software to study the in-cylinder combustion progress and NO generation mechanism of hydrogen fueled internal combustion engine (HICE). Simulation results show that the in-cylinder combustion progress experiences the ellipsoidal flame stable propagation stage and the rapid turbulent combustion stage. At the end of rapid turbulent combustion the OH concentration decreases quickly, the peak temperature and maximum NO mass appear at that time, and then the in-cylinder temperature and NO mass decrease step by step. The final emission depends on the peak temperature and NO decomposition time of high-temperature regions. The higher the maximum temperature, the greater the NO peak mass; and the faster the temperature drop, the less the NO decomposes. Adoption of EGR can reduce the in-cylinder maximum temperature, and NO decomposes sufficiently at low speed, which in turn leads to lower NO emission of HICE. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:基于CONVERGE软件,建立了具有简化化学反应机理的CFD仿真模型,研究了氢燃料内燃机(HICE)的缸内燃烧进程和NO生成机理。仿真结果表明,缸内燃烧过程经历了椭圆形火焰稳定传播阶段和快速湍流燃烧阶段。在快速湍流燃烧结束时,OH浓度迅速降低,此时出现峰值温度和最大NO质量,然后缸内温度和NO质量逐步降低。最终排放取决于高温区域的峰值温度和NO分解时间。最高温度越高,NO峰质量就越大;温度下降越快,NO分解越少。采用EGR可以降低缸内最高温度,并且NO在低速时会充分分解,从而降低HICE的NO排放。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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