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The Optimization of the Dual Fuel Engine Injection Parameters by Using a Newly Developed Quasi-Dimensional Cycle Simulation Combustion Model

机译:通过使用新开发的准尺寸循环仿真燃烧模型来优化双燃料发动机注入参数

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The paper presents the optimization of injection parameters of directly injected fuel in the dual fuel engine operation. The optimization is performed numerically by using a cycle simulation model of the considered engine. In the cycle simulation model, combustion is simulated by a newly developed quasi-dimensional dual fuel combustion model. The model is based on the modified multi-zone combustion model and the quasi-dimensional combustion model. The modified multi-zone combustion model handles the part of the combustion process that is governed by the mixing-controlled combustion, while the modified quasi-dimensional combustion model handles the part that is governed by the flame propagation through the combustion chamber. The developed dual fuel combustion model features a phenomenological description of spray processes, i.e. the liquid spray break-up, fresh charge entrainment, droplet heat-up, and evaporation processes. In order to capture chemical effects on the ignition delay, special ignition delay tables are made. Additionally, to capture the effect of entrained methane on the chemical reaction rate, a special table that features the chemical reaction time scale is also created. The turbulence is calculated by the modified k-ε turbulence model that takes into account the effect of diesel pilot injection on the increase in the in-cylinder turbulence level. Before being used for the optimization, the engine model is validated through a comparison with experimental data. After that, the direct injection parameters are changed in search for the optimal solution. The objective is to obtain the maximum efficiency while maintaining the limits on emissions and on the mechanical load. The study is conducted at the mid load point at a constant engine speed.
机译:本文介绍了双燃料发动机运行中直接注入燃料的注射参数的优化。通过使用所考虑的引擎的循环仿真模型来数值执行优化。在循环仿真模型中,通过新开发的准维燃料燃烧模型模拟燃烧。该模型基于改进的多区燃烧模型和准维燃烧模型。改进的多区燃烧模型处理由混合控制燃烧控制的燃烧过程的一部分,而改进的准燃烧模型处理通过燃烧室的火焰传播控制的部分。开发的双燃料燃烧模型具有喷雾过程的现象学描述,即液体喷射分段,新鲜电荷夹带,液滴加热和蒸发过程。为了捕获对点火延迟的化学效果,制造特殊的点火延迟表。另外,为了捕获夹带的甲烷对化学反应速率的影响,还产生了具有化学反应时间标度的特殊表。通过修改的K-ε湍流模型计算湍流,该模型考虑了柴油先导喷射对缸内湍流水平的增加的影响。在用于优化之前,通过与实验数据的比较进行验证发动机模型。之后,在寻找最佳解决方案中改变直接注入参数。目的是获得最大效率,同时保持对排放的限制和机械负荷。该研究以恒定的发动机速度在中负荷点进行。

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