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Numerical Optimization of Parameters to Improve Thermal Efficiency of a Spark-Ignited Natural Gas Engine

机译:参数的数值优化,提高火花点燃天然气发动机热效率

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Natural gas is a promising alternative fuel for internal combustion engines because of its clean combustion characteristics and abundant reserves. However, it has several disadvantages due to its low energy density and low thermal efficiency at low loads. Thus, to assist efforts to improve the thermal efficiency of spark-ignited (SI) engines operating on natural gas and to minimize test procedures, a numerical simulation model was developed to predict and optimize the performance of a turbocharged test engine, considering flame propagation, occurrence of knock and ignition timing. The numerical results correlate well with empirical data, and show that increasing compression ratios and retarding the intake valve closing (IVC) timing relative to selected baseline conditions could effectively improve thermal efficiency. In addition, employing moderate EGR ratios is also effective for avoiding knock. Overall, the optimization of operating conditions reported in the present paper increased thermal efficiency relative to the selected baseline conditions by 5% points.
机译:由于其清洁特性和储备丰富,天然气是内燃机的有希望的替代燃料。然而,由于其低负荷和低负荷的低热效率,它具有若干缺点。因此,为了帮助提高在天然气上运行的火花点燃(Si)发动机的热效率,并最大限度地减少测试程序,这是一种数值模拟模型,以预测和优化涡轮增压测试发动机的性能,考虑火焰传播,发生爆震和点火时间。数值结果与经验数据相关,并且表明,增加的压缩比和延迟进气门闭合(IVC)相对于所选基线条件的定时可以有效地提高热效率。此外,采用中度EGR比率也有效地避免爆震。总体而言,本文报告的操作条件的优化增加了相对于所选基线条件的热效率5%。

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