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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Electromagnetic design of a novel microwave internal combustion engine ignition source, the quarter wave coaxial cavity igniter
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Electromagnetic design of a novel microwave internal combustion engine ignition source, the quarter wave coaxial cavity igniter

机译:新型微波内燃机点火源,四分之一波同轴腔点火器的电磁设计

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摘要

New ignition sources are needed to operate the next generation of lean high-efficiency internal combustion engines. A significant environmental and economic benefit could be obtained from these lean engines. Towards this goal, the quarter wave coaxial cavity resonator (QWCCR), igniter was examined. A brief overview of the QWCCR's history is presented, followed by an electromagnetic analysis of the resonator. Microwave and radio-frequency gas breakdown at atmospheric and higher conditions are reviewed briefly. The presented analysis focuses on geometric and material parameter relations compared with performance characteristics, such as resonator quality factor and developed tip electric field which initiates a single-electrode high-pressure microwave gas breakdown. Conductor surface losses, dielectric losses, and radiation losses of the device are considered in the analysis, for which parameters of a prototype QWCCR were chosen for construction and evaluation of a resonator. Improved designs allowed successful integration of a QWCCR into a Briggs and Stratton engine. Given the capability of precise control, high power, and high energy delivery, and the opportunity for further optimization, the QWCCR has the potential to deliver more energy per ignition than a conventional spark plug and thus should be considered for application as a lean ignition source. [PUBLICATION ABSTRACT]
机译:需要新的点火源来运行下一代稀薄高效内燃机。这些稀薄的发动机可以带来巨大的环境和经济效益。为了实现这一目标,研究了四分之一波长同轴腔谐振器(QWCCR)点火器。简要介绍了QWCCR的历史,然后对谐振器进行电磁分析。简要回顾了大气和更高条件下的微波和射频气体分解。提出的分析着重于几何和材料参数之间的关系以及性能特征,例如谐振器品质因数和发达的尖端电场,这些电场引发单电极高压微波气体击穿。分析中考虑了器件的导体表面损耗,介电损耗和辐射损耗,为此选择了原型QWCCR的参数来构造和评估谐振器。改进的设计使QWCCR成功集成到Briggs和Stratton发动机中。鉴于精确控制,大功率和高能量输送的能力以及进一步优化的机会,QW​​CCR每次点火具有比常规火花塞输送更多能量的潜力,因此应考虑将其作为稀薄点火源应用。 [出版物摘要]

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