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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experimental Examination of Prechamber Heat Release in a Large Bore Natural Gas Engine
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Experimental Examination of Prechamber Heat Release in a Large Bore Natural Gas Engine

机译:大口径天然气发动机前室放热的实验研究

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摘要

A common solution in reducing NO_x emissions to meet new emission regulations has been lean burn combustion. However, with very lean air/fuel (A/F) ratios, both carbon monoxide and hydrocarbon emissions become unacceptably high due to the spark misfiring and combustion instabilities. In order to mitigate this, a prechamber ignition system is often used to stabilize combustion at very lean A/F ratios. In this paper, the heat release in a retrofit prechamber system installed on a large bore natural gas engine is examined. The heat release analysis is based on dynamic pressure measurements both in the main chamber and prechamber. The Woschni correlation is utilized to model heat transfer. Based on heat release modeling and test data analysis, the following observations are made. Main chamber heat release rates are much more rapid for prechamber ignition compared to spark ignition. During combustion in the prechamber, much of the fuel flows into the main chamber unreacted. About 52% of the mass in the prechamber, at ignition, flows into the main chamber during prechamber combustion. Prechamber total heat release, pressure rise, and maximum jet velocity all increase with increasing prechamber equivalence ratio. Prechamber combustion duration and coefficient of variation of peak pressure are minimized at a prechamber equivalence ratio of about 1.09.
机译:减少NO_x排放以满足新排放法规的常见解决方案是稀薄燃烧。但是,由于空气/燃料(A / F)比例很低,一氧化碳和碳氢化合物的排放量由于火花不点火和燃烧不稳定性而变得不可接受。为了减轻这种情况,通常使用前室点火系统将燃烧稳定在非常稀的空燃比下。在本文中,研究了安装在大口径天然气发动机上的改装前室系统中的热量释放。放热分析基于主腔室和前腔室中的动态压力测量。 Woschni相关性用于建模传热。根据放热模型和测试数据分析,进行以下观察。与火花点火相比,前室点火的主腔室放热速率要快得多。在前室中燃烧期间,许多燃料未反应就流入主室。在点火前,燃烧室中约有52%的质量流入主室。预燃室的总热量释放,压力上升和最大射流速度均随预燃室的当量比增加而增加。在约1.09的室前当量比下,使室前燃烧持续时间和峰值压力的变化系数最小。

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