首页> 外文会议>AIAA Plasmadynamics and Lasers Conference >IGNITION ENERGY TESTING OF THE QUARTERWAVE COAXIAL CAVITY RESONATOR WITH AIR-LIQUEFIED-PETROLEUM-GAS MIXTURES
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IGNITION ENERGY TESTING OF THE QUARTERWAVE COAXIAL CAVITY RESONATOR WITH AIR-LIQUEFIED-PETROLEUM-GAS MIXTURES

机译:用空气液化 - 石油 - 气体混合物的四分之道波同轴静脉谐振器的点火能量测试

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Significant environmental and economic benefit could be obtained from engines that utilize lean mixtures ignited with high energy sources. To help reach this goal, the quarter wave coaxial cavity resonator (QWCCR) igniter was examined as an ignition source. Evaluation consisted of comparative ignition tests with liquefied-petroleum-gas (LPG) air mixtures of varying composition. Combustion of these mixtures was contained in a closed steel vessel with a pre-combustion pressure near one atmosphere. The resonator igniter was fired in this vessel with a nominal 150 W microwave pulse of varying duration to determine ignition energy limits for various mixtures. Mixture compositions were determined by partial pressure measurement and the ideal gas law. Successful ignition was observed through a view port in a combustion chamber. Microwave pulse and reflected power was captured in real time with a high-speed digital storage oscilloscope. Ignition energies and power levels were calculated from these measurements. As a comparison, ignition experiments were also carried out with a standard non-resistive spark plug where gap voltage and current were recorded for energy calculations. Results show that ignitable mixtures around stoichiometric and slightly rich compositions are combustible with the QWCCR using similar levels of energy as the conventional spark plug, in the low milli-Joule range. Combustion energy for very lean mixtures could not be determined reliably for the QWCCR for this prototype test, but are expected to be lower than that for a conventional spark. Given the capability of high power, high energy delivery, and opportunity for optimization, the QWCCR has the potential to deliver more energy per unit time than a conventional spark plug and thus could be considered be as a lean ignition source.
机译:可以从利用具有高能源点燃的瘦混合物的发动机获得显着的环境和经济效益。为了帮助实现这一目标,将四分之一波同轴腔谐振器(QWCCR)点火器被检查为点火源。评价包括具有不同组合物的液化 - 石油 - 气体(LPG)空气混合物的对比点火试验。这些混合物的燃烧含有在封闭的钢容器中,在一个大气中具有预燃烧压力。谐振器点火器在该容器中用不同持续时间的标称150W微波脉冲射出,以确定各种混合物的点火能量限制。通过部分压力测量和理想的气体法测定混合物组合物。通过燃烧室中的视图口观察到成功的点火。使用高速数字存储示波器实时捕获微波脉冲和反射功率。从这些测量计算点火能量和功率水平。作为比较,也用标准的非电阻火花塞进行点火实验,其中记录了间隙电压和电流用于能量计算。结果表明,在低毫米范围内,使用与常规火花塞相似的能量水平的QWCCR,QWCCR围绕化学计量和略微富含组合物的可燃混合物。对于该原型测试的QWCCR,不能可靠地确定非常瘦混合物的燃烧能量,但预计将低于传统火花的QWCCR。鉴于高功率,高能量输送和优化机会的能力,QWCCR有可能每单位时间提供比传统火花塞更多的能量,因此可以被认为是贫源。

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