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Extending the Lean Limit of Natural-Gas Engines

机译:扩大天然气发动机的精益极限

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摘要

Two different methods to improve the thermal efficiency and reduce the emissions from lean-burn natural-gas fueled engines have been developed and are described in this paper. One method used a "squish-jet" combustion chamber designed specifically to enhance turbulence generation, while the second method provided a partially stratified-charge mixture near the spark plug in order to enhance the ignition of lean mixtures of natural gas and air. The squish-jet combustion chamber was found to reduce brake specific fuel consumption by up to 4.8% in a Ricardo Hydra engine, while the NO_x efficiency trade-off was greatly improved in a Cummins L-10 engine. The partially stratified-charge combustion system extended the lean limit of operation in the Ricardo Hydra by some 10%, resulting in a 64% reduction in NO_x emissions at the lean limit of operation. Both techniques were also shown to be effective in increasing the stability of combustion, thereby reducing cyclic variations in cylinder pressure.
机译:本文开发了两种不同的方法来提高热效率并减少稀燃天然气燃料发动机的排放。一种方法使用专门设计用于增强湍流生成的“挤压式”燃烧室,而第二种方法则在火花塞附近提供部分分层装料的混合物,以增强天然气和空气的稀薄混合物的点火。发现在里卡多·海德拉(Ricardo Hydra)发动机中,喷气喷气燃烧室可将制动器的比油耗降低多达4.8%,而在康明斯L-10发动机中,NO_x效率的权衡得到了极大的改善。部分分层充气燃烧系统使里卡多·海德拉(Ricardo Hydra)的稀燃运行极限延长了约10%,从而使稀薄运行极限的NO_x排放降低了64%。还显示出两种技术都可有效提高燃烧稳定性,从而减少气缸压力的周期性变化。

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