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Effects of hydrogen blending mode on combustion process of a rotary engine fueled with natural gas/hydrogen blends

机译:氢混合模式对天然气/氢混合燃料旋转发动机燃烧过程的影响

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The highly advanced wankel rotary engine is a promising energy system because of its favorable energy to weight ratio, multi-fuel capability and large specific power output. This work aims to numerically study the performance, combustion and emission characteristics of a side-ported rotary engine fueled with natural gas/hydrogen blends under different hydrogen blending modes. 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, choosing the RNG k-epsilon turbulent model, the eddy-dissipation concept (EDC) combustion model and a reduced reaction mechanism. The three-dimensional dynamic simulation model based on the chemical reaction kinetics was also validated by the experimental data. Meanwhile, further simulations were then conducted to investigate how to impact the combustion process by the coupling function between hydrogen distribution and the flow field inside the cylinder. Simulation results showed that in order to improve the combustion efficiency, the low-pressure early injection should be used as the hydrogen blending mode. The low-pressure early injection, not only allowed the hydrogen in the combustion chamber to be distributed evenly, but also resulted in the high concentration areas of hydrogen located at the front of the trialing spark plug, which can be used to increase the combustion rate. For the hydrogen low-pressure early injection, the improved combustion rate made in cylinder pressure and the intermediate OH increase significantly. Compared with no hydrogen induction, it shows a 29% increase in the peak pressures. Meanwhile, the drawback is the increase in NO emissions. Copyright (C) 2016, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:先进的wankel旋转式发动机具有良好的能量重量比,多种燃料容量和大比功率输出,因此是很有前途的能源系统。这项工作旨在通过数值研究在不同的氢气混合模式下以天然气/氢气混合燃料为燃料的侧向旋转发动机的性能,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,选择RNGk-ε湍流模型,涡耗概念(EDC)燃烧模型和简化的反应机理,建立了三维动态仿真模型。实验数据验证了基于化学反应动力学的三维动力学仿真模型。同时,随后进行了进一步的模拟,以研究如何通过氢分布与气缸内流场之间的耦合函数影响燃烧过程。仿真结果表明,为了提高燃烧效率,应采用低压早期喷射作为氢的混合方式。低压早期喷射不仅使燃烧室内的氢气均匀分布,而且还导致氢气位于试火花塞前部的高浓度区域,可用于提高燃烧速率。对于氢气低压早期喷射,气缸压力和中间OH的燃烧率显着提高。与没有氢诱导相比,它的峰值压力增加了29%。同时,缺点是NO排放增加。 Hydrogen Energy Publications,LLC(C)2016版权所有。由Elsevier Ltd.出版。保留所有权利。

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