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ADVANCED COMBUSTION SYSTEM SOLUTIONS FOR INCREASING THERMAL EFFICIENCY IN NATURAL GAS ENGINES WHILE MEETING FUTURE DEMAND FOR LOW NOX EMISSIONS

机译:满足低NOx排放的未来需求时提高天然气发动机热效率的先进燃烧系统解决方案

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摘要

Key requirements for state of the art industrial gas engines are high engine thermal efficiency, high engine brake mean effective pressure (BMEP), low Nox emissions, and acceptable spark plug life. Fundamentally, as engine thermal efficiency and power density increase, along with the requirement of reduced Nox emissions, the pressure at the time of ignition increases. This results in a higher spark breakdown voltage that negatively affects spark plug life. This problem is resolved with a smaller electrode gap and high spark energy to overcome quenching effects during ignition kernel development. High flow fields in the spark gap region are required to assure the spreading of the discharge, which reduces the rate of electrode erosion. In addition, these high flow fields overcome mixture inhomogeneities by developing large ignition kernels. These large ignition kernels, inside the prechamber spark plug, produce high velocity flame jets into the main chamber enhancing combustion, which results in thermal efficiency gains at lower Nox levels and higher BMEP. The advanced combustion system solution discussed in this paper is the combination of high-energy ignition and a prechamber spark plug with flow fields at the electrode gap. Future developments include improved ion signal quality detonation detection resulting in additional gains in thermal efficiency.
机译:现有技术对工业燃气发动机的关键要求是高发动机热效率,高发动机制动平均有效压力(BMEP),低NOx排放以及可接受的火花塞寿命。从根本上说,随着发动机热效率和功率密度的提高,以及减少NOx排放的要求,点火时的压力也随之增加。这会导致较高的火花击穿电压,从而对火花塞的寿命产生负面影响。通过较小的电极间隙和较高的火花能量解决了该问题,从而克服了点火核形成过程中的猝灭效应。需要火花间隙区域中的高流场以确保放电的扩散,从而降低电极腐蚀的速率。另外,这些高流场通过形成大的点火核克服了混合物的不均匀性。这些在前室火花塞内的大型点火核将高速火焰喷射到主室中,从而增强燃烧效果,从而在较低的NOx水平和较高的BMEP下提高了热效率。本文讨论的先进燃烧系统解决方案是将高能点火和预燃火花塞结合在一起,并在电极间隙处设置流场。未来的发展包括改进离子信号质量爆震检测,从而进一步提高热效率。

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