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首页> 外文期刊>International journal of engine research >Development of a flame propagation model for dual-fuel partially premixed compression ignition
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Development of a flame propagation model for dual-fuel partially premixed compression ignition

机译:双燃料部分预混压缩点火火焰传播模型的建立

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摘要

The limitations of an existing characteristic-time combustion (CTC) model are explored and a new combustion model is developed and applied to simulate combustion in dual-fuel engines in which the premixed natural gas is ignited by the combustion flame initiated by a diesel spray. The model consists of a diesel auto-ignition model and a flame propagation model. A G-equation-based model previously developed to simulate SI engine combustion was incorporated with an auto-ignition model to simulate the flame propagation process in partially premixed environments. The computer code is based on the KIVA-3V code and consists of updated sub-models to simulate more accurately the fuel spray atomization, auto-ignition, combustion, and emissions processes. Modifications were made to implement the level set G-equation approach and to track the location of the flame as a function of the turbulent flame speed, flame curvature, flow velocity, and the movement of the computational mesh in the engine environment. Good agreement with engine experiments was obtained by using the present model.
机译:探索了现有特征时间燃烧(CTC)模型的局限性,并开发了一种新的燃烧模型并将其应用于模拟双燃料发动机中的燃烧,在该双燃料发动机中,预混合天然气被柴油喷雾引发的燃烧火焰点燃。该模型包括柴油自动点火模型和火焰传播模型。先前开发的用于模拟SI发动机燃烧的基于G方程的模型与自动点火模型结合在一起,用于模拟部分预混环境中的火焰传播过程。该计算机代码基于KIVA-3V代码,由更新的子模型组成,可以更准确地模拟燃油喷雾的雾化,自动点火,燃烧和排放过程。进行了修改,以实现水平集G方程方法,并根据湍流火焰速度,火焰曲率,流速和计算网格在发动机环境中的运动来跟踪火焰的位置。通过使用本模型获得了与发动机实验的良好一致性。

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