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Transient in-Cylinder Gas Flow Characteristics of Single Cylinder Port Injection Hydrogen Fueled Engine | Science Publications

机译:单缸进气口喷氢燃料发动机的瞬时缸内气体流动特性科学出版物

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> Problem statement: The variation of the in-cylinder gas flow characteristics for single cylinder port injection hydrogen fueled internal combustion engine was investigated through transient state simulation. Approach: One dimensional gas dynamics was described the flow and heat transfer in the components of the engine model. Special attention is paid to selection and correction of heat transfer correlation which describe of in-cylinder heat transfer to coincide with the practical observations. The engine model was simulated with variable engine speed and Air Fuel Ratio (AFR). Engine speed varied from 2000-5000 rpm with increment equal to 1000 rpm, while AFR changed from stoichiometric to lean limit. Results: The acquired results showed that the maximum in-cylinder temperature and pressure obtained of 2753 K and 49.62 bar at 24°CA ATDC and 13°CA ATDC for AFR = 34.33 respectively, while the minimum in-cylinder temperature and pressure obtained of 1366 K and 29.14 bar at 18 deg CA of ATDC and 8 deg CA of ATDC for AFR = 171.65 respectively. The obtained results show that AFR has a crucial effect on characteristics variation during the power cycle whilst engine speed has minor effects. Conclusion: These results utilized for study the combustion process, fuel consumption, emission production and engine performance.
机译: > 问题陈述:通过瞬态模拟研究了单缸进气口氢燃料内燃机的缸内气体流动特性的变化。 方法:一维气体动力学描述了发动机模型组件中的流动和热传递。特别注意对传热相关性的选择和校正,这些描述与实际观察相符,描述了缸内传热。使用可变的发动机转速和空燃比(AFR)对发动机模型进行了仿真。发动机转速在2000-5000 rpm之间变化,增量等于1000 rpm,而AFR从化学计量比变为稀薄极限。 结果:获得的结果表明,对于AFR,分别在24°CA ATDC和13°CA ATDC下获得的缸内最高温度和压力分别为2753 K和49.62 bar,而在对于AFR = 171.65,在ATDC的18度CA和ATDC的8度CA下,气缸温度和压力分别为1366 K和29.14 bar。获得的结果表明,AFR对动力循环期间的特性变化有至关重要的影响,而发动机转速的影响很小。 结论:这些结果用于研究燃烧过程,燃料消耗,排放产生和发动机性能。

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