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

机译:微波等离子燃烧发动机的研究与开发(第二部分:等离子燃烧发动机的发动机性能)

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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:这项研究的目的是开发一种创新的微波感应等离子点火系统,以改善当前发动机的燃油经济性并在不进行任何配置更改的情况下实现更高的效率。提出了一种新的等离子体产生技术,用于稳定而强烈的点火源。开发了微波等离子燃烧系统,该系统由火花塞,微波传输系统和控制系统组成。像在微波炉中那样的磁控管被用作微波振荡器。火花塞内部有一个微波天线,该微波天线在发动机气缸中产生等离子体。微波传输系统将微波功率从振荡器传输到天线。使用单缸研究引擎进行燃烧实验。微波等离子体扩大了稀薄运行条件的范围。单缸发动机在2000 rpm的发动机转速下具有275 kPa的指示平均有效压力(IMEP)。稀薄极限的阈值定义为IMEP的5%变异系数(COV)。对于等离子点火情况,即使在稀薄条件下燃烧也稳定,并且COV保持在2%以下,直到空燃比(A / F)为22%。等离子点火将稀薄极限从19.3提高到24.1。

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