首页> 外文会议>ASME Internal Combustion Engine Division fall technical conference 2010 >PERFORMANCE OF A LARGE BORE NATURAL GAS ENGINE WITH REFORMED NATURAL GAS PRECHAMBER FUELING
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PERFORMANCE OF A LARGE BORE NATURAL GAS ENGINE WITH REFORMED NATURAL GAS PRECHAMBER FUELING

机译:大型天然气发动机与重整天然气前室混合气的性能

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Lean combustion is a standard approach used to reduce N0_x emissions in large bore natural gas engines. However, at lean operating points, combustion instabilities and misfires give rise to high total hydrocarbon (THC) and carbon monoxide (CO) emissions. To counteract this effect, precombustion chamber (PCC) technology is employed to allow engine operation at an overall lean equivalence ratio while mitigating the rise of THC and CO caused by combustion instability and misfires. A PCC is a small chamber, typically 1-2% of the clearance volume. A separate fuel line supplies gaseous fuel to the PCC and a standard spark plug ignites the slightly rich mixture (equivalence ratio 1.1 to 1.2) in the PCC. The ignited PCC mixture enters the main combustion chamber as a high energy flame jet, igniting the lean mixture in the main chamber. Typically, natural gas fuels both the main cylinder and the PCC. In the current research, a mixture of reformed natural gas (syngas) and natural gas fuels the PCC. Syngas is a broad term that refers to a synthetic gaseous fuel. In this case, syngas specifically denotes a mixture of hydrogen, carbon monoxide, nitrogen, and methane generated in a natural gas reformer. Syngas has a faster flame speed and a wider equivalence ratio range of operation. Fueling the PCC with Syngas reduces combustion instabilities and misfires. This extends the overall engine lean limit, enabling further NO_x reductions.Research results presented are aimed at quantifying the benefits of syngas PCC fueling. A model is developed to predict equivalence ratio in the PCC for different mixtures and flowrates of fuel. An electronic injection valve is used to supply the PCC with syngas. The delivery pressure, injection timing, and flow rate are varied to optimize PCC equivalenceratio. The experimental results show that supplying the PCC with syngas improves combustion stability by 16% compared to natural gas PCC fueling. Comparing equivalent combustion stability operating points between syngas mixtures and natural gas shows a 40% reduction in NO_x emissions when fueling the PCC with syngas mixtures compared to natural gas fueling.
机译:稀薄燃烧是用于减少大口径天然气发动机中N0_x排放的标准方法。但是,在稀薄运行点,燃烧不稳定性和失火会导致较高的总碳氢化合物(THC)和一氧化碳(CO)排放量。为了抵消这种影响,采用了预燃烧室(PCC)技术,以允许发动机在总体稀薄当量比下运行,同时减轻了由燃烧不稳定性和失火引起的THC和CO升高。 PCC是一个小腔室,通常为间隙体积的1-2%。一条单独的燃料管线向PCC提供气态燃料,而标准的火花塞点燃PCC中稍浓的混合气(当量比1.1至1.2)。点燃的PCC混合物作为高能火焰射流进入主燃烧室,从而点燃主室中的稀薄混合物。通常,天然气为主缸和PCC燃料。在当前的研究中,重整天然气(合成气)和天然气的混合物为PCC提供了燃料。合成气是广义术语,是指合成气态燃料。在这种情况下,合成气具体表示在天然气重整器中产生的氢气,一氧化碳,氮气和甲烷的混合物。合成气具有更快的火焰速度和更宽的工作当量比范围。用合成气为PCC加油可减少燃烧不稳定性和失火。这扩大了整体发动机稀薄极限,使NO_x进一步降低。提出的研究结果旨在量化合成气PCC加油的好处。开发了一个模型来预测不同燃料混合物和流量的PCC中的当量比。电子喷射阀用于为PCC提供合成气。改变输送压力,喷射时间和流速以优化PCC等效比。实验结果表明,与天然气PCC燃料相比,向PCC提供合成气可将燃烧稳定性提高16%。比较合成气混合物和天然气之间的等效燃烧稳定性工作点,与天然气燃料相比,当使用合成气混合物为PCC燃料时,NO_x排放降低了40%。

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