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DIRECT INJECTION DIESEL ENGINE SIMULATION FOR COMBUSTION AND PERFORMANCE STUDIES

机译:用于燃烧和性能研究的直喷柴油机仿真

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A computer simulation of a four-stroke turbocharged diesel engine has been developed for combustion and performance studies. The combustion model accounts for spray geometry evolution, ignition delay, heat release rate, equilibrium product concentrations and heat transfer evaluation. In the model, the fuel spray is divided into five zones which are treated as open systems. While mass and energy equations are solved for each zone, a simplified momentum conservation equation is used to calculate the amount of air entrained into each zone. Details of the DI spray, combustion model and its implementation into the open cycle simulation are described in this paper. The model is validated by experimental data. First, prediction of spray penetration is validated against measurements in a pressurized constant volume chamber. Subsequently, predictions of heat release rates are compared with experimental data obtained from representative heavy-duty, turbocharged diesel engine and a single cylinder engine. It is demonstrated that the model can predict the rate of heat release and engine performance with high accuracy.
机译:已经开发了一种用于燃烧和性能研究的四冲程涡轮增压柴油发动机的计算机模拟。燃烧模型用于喷雾几何演化,点火延迟,热释放率,平衡产品浓度和传热评估。在该模型中,燃料喷雾分为五个区域,被视为开放系统。虽然为每个区域求解质量和能量方程,但是简化的动量保守方程用于计算夹带在每个区域中的空气量。本文描述了DI喷涂,燃烧模型及其进入开放循环模拟的细节。该模型由实验数据验证。首先,验证喷雾渗透的预测以防加压恒定容积室中的测量。随后,将热释放速率的预测与由代表性重型,涡轮增压柴油发动机和单个汽缸发动机获得的实验数据进行比较。结果证明,该模型可以高精度地预测热释放和发动机性能的速率。

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