点火模式对氢气 Wankel 旋转发动机燃烧特性的影响:数值研究

IF 5 Q2 ENERGY & FUELS
Huaiyu Wang , James Turner , Xin Wang , Yunshan Ge , Liqun Lyu , Shuofeng Wang , Changwei Ji , Jinxin Yang
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引用次数: 0

摘要

氢气被认为是万克尔旋转发动机(WRE)实现高效率和低排放的最佳解决方案。本文旨在揭示点火模式对氢燃料 WRE 燃烧过程的影响。结果表明,由于尾部火花塞(TSP)与被动预燃烧室的结构相似,其燃烧速率超过了前部火花塞(LSP)。单向流场促进了 TSP 火焰的向前发展,但抑制了 LSP 火焰的向后发展。此外,燃烧室的凹槽有利于 TSP 的火焰传播。异步点火模式比同步点火模式显示出更高的指示热效率(ITE),有利于有效控制燃烧阶段。当 LSP 的点火时间推迟,而 TSP 的点火时间提前时,TSP 的火焰超过 LSP,导致 ITE 不变。当 TSP 点火时间推迟,而 LSP 点火时间提前时,自由基峰值和燃烧体积率最高,导致燃烧速度加快。建议在实际操作中将 LSP 点火时间提前。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of ignition pattern on combustion characteristics in a hydrogen Wankel rotary engine: A numerical study

Hydrogen is considered the optimal solution for achieving high efficiency and low emissions in Wankel rotary engines (WREs). This paper aims to reveal the effect of ignition patterns on the combustion process of a hydrogen-fueled WRE. The results show that the combustion rate of the trailing spark plug (TSP), due to its structural similarity with the passive precombustion chamber, surpasses that of the leading spark plug (LSP). The unidirectional flow field promotes the forward development of the flame of TSP but inhibits the backward development of the flame of LSP. Moreover, the recess in combustion chamber facilitates flame propagation of TSP. Asynchronous ignition mode exhibits a higher indicated thermal efficiency (ITE) than synchronous ignition mode, facilitating effective control of the combustion phase. When the ignition timing of LSP is delayed, and TSP is earlier, the flame of TSP exceeds LSP, resulting in unchanged ITE. When the ignition timing of TSP is delayed, and LSP is earlier, the peak of free radicals and burned volume rate are the highest, resulting in a faster combustion rate. It is recommended that the LSP ignition timing is set earlier for practical operations.

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