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Research and Development of Microwave Plasma Combustion Engine (Part II: Engine Performance of Plasma Combustion Engine)

机译:微波等离子体燃烧发动机的研发(第II部分:等离子燃烧发动机发动机性能)

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The objective of this study was to develop an innovative microwave-induced plasma ignition system to improve the fuel economy of a current engine and achieve a higher efficiency without any configuration modifications. A new plasma generation technique was proposed for a stable and intense ignition source. A microwave plasma combustion system was developed consisting of a spark plug, microwave transfer system, and control system. A magnetron, like that found in a microwave oven, was used as a microwave oscillator. The spark plug had a microwave antenna inside that generated plasma in the engine cylinders. The microwave transfer system transmitted microwave power from the oscillator to the antenna. Combustion experiments were performed using a single-cylinder research engine. The microwave plasma expanded the range of lean operating conditions. The single-cylinder engine had an indicated mean effective pressure (IMEP) of 275 kPa at an engine speed of 2000 rpm. The threshold of the lean limit was defined as a coefficient of variation (COV) of 5% at the IMEP. For the plasma ignition case, the combustion was stable even in the lean condition, and the COV remained under 2% up to an air-to-fuel ratio (A/F) of 22%. The lean limit improved from 19.3 to 24.1 with the plasma ignition.
机译:本研究的目的是开发一种创新的微波诱导的等离子体点火系统,以改善电流发动机的燃料经济性,并在没有任何配置修改的情况下实现更高的效率。提出了一种新的等离子体生成技术,用于稳定和强烈的点火源。微波等离子体燃烧系统由火花塞,微波传输系统和控制系统组成。像微波炉中发现的磁控管用作微波振荡器。火花塞在发动机气缸中产生的微波天线内部产生的微波天线。微波传输系统将微波功率从振荡器传输到天线。使用单缸研究发动机进行燃烧实验。微波等离子体膨胀了瘦操作条件的范围。单缸发动机的发动机速度为2000rpm的发动机速度具有275kPa的指示平均有效压力(IMEP)。贫极限的阈值定义为IMEP中5%的变异系数(COV)。对于等离子体点火情况,即使在贫条件下,燃烧也稳定,COV保持在2%以下,燃料比率为22%的空气 - 燃料比(A / F)。贫限度从19.3到24.1改善了等离子体点火。

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