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首页> 外文期刊>International Journal of Automotive Technology >Effect of Combustion Reaction Based on Capacitive Discharge Ignition in Air-Propane Equivalence Ratio
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Effect of Combustion Reaction Based on Capacitive Discharge Ignition in Air-Propane Equivalence Ratio

机译:基于气丙烷等效率的电容放电点火燃烧反应的影响

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The main purpose of this research work is to demonstrate the effective plasma of capacitive discharge ignition (CDI) comparing with conventional ignition discharge. A constant volume combustion chamber (CVCC) with a volume of 450 cm(3) is developed to study thermochemical combustion process. The experimental conditions set 2, 3 and 4 bar for initial pressure, 363 K of chamber temperature, 1.00, 1.25 and 1.50 mm of electrodes gap, 1 ms of discharge time, 100 mJ in spark energy and lambda = 1.0 to 1.7 in air-C3H8 equivalence ratio. In order to validate the collected data and verify the repeatability of experimental study, the experiments are repeated 10 times. The discharge effect of CDI is demonstrated to significantly enhance the combustion reaction, flame propagation and internal flame kernel comparing with conventional ignition discharge. Due to electron impact dissociation (EID) and breakdown strength (BS) increases, the effective plasma of CDI is shown to effectively propagate the flame kernel under the combustion reaction more than conventional ignition discharge inside CVCC. Consequently, the combustion reaction by CDI is verified that in CVCC diluted with the rarefied air-C3H8 equivalence ratios, the converting efficiency is much more active than conventional ignition energy.
机译:该研究工作的主要目的是展示与传统点火放电相比的电容排放点火(CDI)的有效等离子体。具有体积为450cm(3)的恒定体积燃烧室(CVCC)以研究热化学燃烧过程。实验条件为初始压力设定2,3和4巴,腔室温度为363 k,1.00,1.25和1.50 mm电极间隙,1 ms放电时间,100 mJ在火花能量和λ= 1.0至1.7的空气 - C3H8等效率。为了验证收集的数据并验证实验研究的可重复性,实验重复10次。证明CDI的放电效果显着增强了与常规点火放电比较的燃烧反应,火焰繁殖和内部火焰核。由于电子冲击解离(EID)和击穿强度(BS)增加,CDI的有效血浆显示出在CVCC内的常规点火放电的燃烧反应下有效地传播火焰核。因此,通过CDI的燃烧反应验证,在用稀土空气-C3H8等效比稀释的CVCC中,转换效率比常规点火能量要更活跃。

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