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A New Ignitior for Large-Bore Natural Gas Engines - Railplug Design Improvement and Optimization

机译:对大型天然气发动机的新型Ignitior - Railplug设计改进和优化

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It is a very challenging problem to reliably ignite extremely lean mixtures, especially for the low-speed, high-load conditions of large-bore natural gas engines. If these engines are to be use for the distributed power generation market, it will require operation with higher boost pressures and even leaner mixtures. Both place greater demands on the ignition system. The railplug is a very promising ignition system for lean burn natural gas engines with its high-energy deposition and high velocity plasma arc. It requires care to properly design railplugs for this new application, however. For these engines, in-cylinder pressure and mixture temperature are very high at the time of ignition due to the high boost pressure. Hot spots may exist on the electrodes of the ignitor, causing pre-ignition problems. A heat transfer model is proposed in this paper to aid the railplug design. The electrode temperature was measured in an operating natural gas engine. The engine tests showed that the lean-stability-limit (LSL) was extended from a fuel/air equivalence ratio of Φ = 0.63 (0.02 J) or Φ= 0.59 (0.7 J) for spark plugs to Φ = 0.535 using a magnet enhanced railplug with a discharge energy of 0.7J. The LSL was extended to Φ = 0.54 for railplugs with delivered energy 0.15 J, a typical discharge energy for commercial capacitor discharge ignition systems.
机译:这是一个非常具有挑战性的问题,可靠地点燃极其精益的混合物,特别是对于大孔天然气发动机的低速,高负荷条件。如果这些发动机用于分布式发电市场,则需要具有更高升压压力甚至更精简混合物的操作。对点火系统进行了更大的要求。 Railplug是一种非常有前途的点火系统,用于贫燃烧天然气发动机,其高能量沉积和高速等离子体弧。但是,它需要注意适用于这种新应用的railplugs。对于这些发动机,由于高升压压力,在点火时,气缸压力和混合温度非常高。在点火器的电极上可能存在热点,导致火前问题。本文提出了一种传热模型,以帮助Railplug设计。在操作天然气发动机中测量电极温度。发动机测试表明,使用磁铁增强的火花塞到φ= 0.535的燃料/空气等效比倾斜稳定极限(LSL)从φ= 0.63(0.02 j)或φ= 0.59(0.7 j)延伸Railplug,放电能量为0.7J。对于具有输送能量0.15J,用于商业电容器放电点火系统的典型放电能量,LSL延伸到φ= 0.54的滤波器。

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