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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effects of pocket shape and ignition slot locations on the combustion processes of a rotary engine fueled with natural gas
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Effects of pocket shape and ignition slot locations on the combustion processes of a rotary engine fueled with natural gas

机译:气穴形状和点火槽位置对以天然气为燃料的旋转式发动机燃烧过程的影响

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摘要

This work aims to numerically study the performance, combustion and emission characteristics of a side-ported natural-gas-fueled rotary engine under different pocket shapes and ignition slot positions. Simulations were performed using multi-dimensional software FLUENT 14.0. On the basis of the software, a three-dimensional dynamic simulation model was established by writing dynamic mesh programs and choosing a detailed reaction mechanism. The three-dimensional dynamic simulation model, based on the chemical reaction kinetics, was also validated by the experimental data. Simulation results showed that a bigger intensity of the tumble, a larger area of the high speed oblique flow and a higher average flow speed in the middle of the combustion chamber can make the flame propagation speed increase. When the combustion chamber configuration had a middling pocket coupled with an ignition slot located at the middle of the width direction of rotor surface, the combustion rate is the highest. As a result, the cylinder pressure and the intermediate OH increased significantly. Compared with the combustion chamber configuration, which had a flat-top pocket without ignition slot, it showed a 10 percent increase in the peak pressures, but a certain increase in NO emissions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作旨在通过数值研究侧进气天然气旋转式发动机在不同型腔形状和点火槽位置下的性能,燃烧和排放特性。使用多维软件FLUENT 14.0进行了仿真。在此软件的基础上,通过编写动态网格程序并选择详细的反应机理,建立了三维动态仿真模型。实验数据也验证了基于化学反应动力学的三维动态仿真模型。仿真结果表明,较大的滚流强度,较大的高速斜流面积和较高的燃烧室中部平均流速可以使火焰传播速度增加。当燃烧室构造具有在转子表面的宽度方向的中央处与点火槽连接的中间凹穴时,燃烧率最高。结果,气缸压力和中间OH显着增加。与燃烧室配置相比,燃烧室配置具有不带点火槽的平顶袋,与之相比,其峰值压力增加了10%,但NO排放有所增加。 (C)2015 Elsevier Ltd.保留所有权利。

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