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Effect of intake conditions on heat transfer characteristics for port injection hydrogen fueled engine

机译:进气条件对进气口喷射氢燃料发动机传热特性的影响

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In this work, effect of the inlet conditions for the intake charge on the in-cylinder heat transfer characteristics for port injection Hydrogen Fueled Engine H2ICE are investigated through steady state simulation. One dimensional gas dynamics was described the flow and heat transfer in the components of the engine model. Firstly a brief demonstration for the model description was inserted; followed by the model governing equations. The engine model is simulated with variable engine speed and AFR with influence of the variation of intake charge conditions (pressure and temperature). Engine speed varied from 2000 rpm to 5000 rpm with increment equal to 1000 rpm, while AFR changed from stoichiometric to lean limit. As well as the inlet pressure varied from 0.95 bar to 1.05 bar with 0.05 interval and the inlet temperature varied from 290 to 310 with 10 interval. The combined effects for the intake charge conditions with variation of AFR and the engine speed on the in-cylinder heat transfer characteristics for port injection H2ICE are presented in this paper. The baseline engine model is verified with existing previous published result. The results showed the heat transfer characteristics to be more affected by changes in the intake pressure than in the temperature. It was also found that the effect of change for the intake charge pressure disappeared for lean mixture. Beside that the acquired results are presented by examining the dependency of in-cylinder heat transfer rate on the engine speed and AFR.
机译:在这项工作中,通过稳态模拟研究了进气的进气条件对进气道进气式氢燃料发动机H 2 ICE的缸内传热特性的影响。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。首先,插入了模型描述的简短演示;其次是模型控制方程。在进气速度变化(压力和温度)的影响下,用可变的发动机转速和AFR对发动机模型进行仿真。发动机转速从2000 rpm变化到5000 rpm,增量等于1000 rpm,而AFR从化学计量比变为稀薄极限。入口压力从0.055 bar到1.05 bar间隔为0.05,并且入口温度从290到310间隔为10。本文提出了进气充量条件随AFR和发动机转速的变化对进气道喷射H 2 ICE的缸内传热特性的综合影响。基线引擎模型已使用现有的先前发布的结果进行了验证。结果表明,传热特性受进气压力变化的影响比受温度影响更大。还发现对于稀薄混合气,进气压力变化的影响消失了。此外,通过检查缸内传热速率对发动机转速和AFR的依赖性,可以得出获得的结果。

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