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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental investigation. about effect of glow intensity on combustion characteristics for a micro IC engine with platinum wire glow-ignition
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Experimental investigation. about effect of glow intensity on combustion characteristics for a micro IC engine with platinum wire glow-ignition

机译:实验研究。辉度对铂丝辉光点火微型IC发动机燃烧特性的影响

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摘要

Combustion efficiency and combustion stability in micro space are the key constraints to scale down the structure Of the miniature internal combustion engines from small-scale to meso-scale. For the glow ignition combustion mode of the miniature internal combustion engines, enhancing the glow intensity of platinum wire by additional electrical heating to get better combustion characteristics was proposed. An experimental platform for combustion test was set up, and glow-ignition combustion characteristics of a miniature internal combustion engine with displacement of 0.99 cc were diagnosed. It is indicated that improvement of in-cylinder combustion characteristics due to enhancing the glow intensity is not obvious under normal combustion condition; instead, with the increasing of the glow intensity, cyclic variations as well as misfiring phenomenon have a tendency of deterioration. However, under severe partial burning and misfiring conditions, enhancing the glow intensity can remarkably decrease the high rate of misfiring, get better combustion stability and broaden the limiting combustion regime, showing a real effect at least partly to advance the starting time of combustion and shorten the combustion duration. Electrical heating glow-ignition combustion can be considered as one of underlying approaches to extend the limit of combustion stability for prospective meso-scale internal combustion engines. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在微型空间中的燃烧效率和燃烧稳定性是将微型内燃机的结构从小规模缩小到中规模的关键约束。对于小型内燃机的辉光点火燃烧模式,提出了通过额外的电加热来提高铂丝的辉光强度以获得更好的燃烧特性的方法。建立了燃烧试验的实验平台,并诊断了排量为0.99 cc的微型内燃机的辉光点火燃烧特性。结果表明,在正常燃烧条件下,由于提高辉光强度而导致的缸内燃烧特性的改善并不明显。取而代之的是,随着辉光强度的增加,周期性变化以及失火现象都有恶化的趋势。但是,在严重的局部燃烧和不点火条件下,提高辉光强度可以显着降低高不点火率,获得更好的燃烧稳定性并扩大极限燃烧范围,至少在一定程度上显示出实际效果,可以延长燃烧开始时间并缩短燃烧时间。燃烧持续时间。电加热辉光点火燃烧可以被视为扩展预期的中尺度内燃机的燃烧稳定性极限的基本方法之一。 (C)2016 Elsevier Ltd.保留所有权利。

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