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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Experimental investigation of C-shape embedded multi-channel plasma igniter in a single-head swirl combustor
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Experimental investigation of C-shape embedded multi-channel plasma igniter in a single-head swirl combustor

机译:单头旋流燃烧器中C形嵌入式多通道等离子体点火器的实验研究

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摘要

A C-shape embedded multi-channel plasma igniter (CEMPI) is presented in this paper. Compared with traditional spark igniter (SI), it has a deeper penetration depth of fire kernel. The fuel supply pressure was kept at 0.2 MPa for the ignition tests. The ignition processes of two igniters at different air flow in a single-head swirl combustor were captured by using the technology of CH* chemiluminescence imaging. The influence of air flow on the ignition process and the ignition characteristics of two igniters were studied. The results show that the ignition dynamic process can be divided into four stages: fire kernel growth stage, flame stagnation stage, flame propagation stage and overall flame stage. To some extent, increasing air flow can shorten the ignition delay caused by flame stagnation, improve the flame propagation speed, and form overall flame earlier, which is conducive to fast ignition. Compared with SIs, CEMPIs can produce larger and more powerful fire kernel, which can penetrate deeper into the central recirculation zone and touch combustible mixture to generate initial flame. It also has a faster flame propagation speed to reduce the ignition time significantly. In addition, the CEMPI can widen the lean ignition boundary and has a more significant ignition advantage when the air flow is small.
机译:介绍了一种C型嵌入式多通道等离子体点火器(CEMPI)。与传统的火花点火器(SI)相比,它具有更深的火核穿透深度。点火试验时,燃油供应压力保持在0.2 MPa。利用CH*化学发光成像技术,捕捉了单头旋流燃烧室内两个点火器在不同空气流量下的点火过程。研究了气流对两种点火器点火过程和点火特性的影响。结果表明,点火动力学过程可分为四个阶段:火核生长阶段、火焰停滞阶段、火焰传播阶段和整体火焰阶段。在一定程度上,增加空气流量可以缩短火焰停滞引起的点火延迟,提高火焰传播速度,提前形成整体火焰,有利于快速点火。与SIs相比,CEMPIs可以产生更大、更强大的火核,它可以深入到中央再循环区,接触可燃混合物以产生初始火焰。它还具有更快的火焰传播速度,从而显著缩短点火时间。此外,CEMPI可以拓宽稀薄点火边界,在气流较小时具有更显著的点火优势。

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