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Combustion Modelling of Conventional Diesel-Type and HCCI-Type Diesel Combustion With Large Eddy Simulations

机译:常规柴油机型和HCCI型柴油燃烧的燃烧建模与大型涡模拟模拟

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A general combustion model, in the context of large eddy simulations, was developed to simulate the full range of combustion in conventional diesel-type and HCCI-type diesels. The combustion model consisted of a Chemkin sub-model and an Extended Flamelet Time Scale (EFTS) sub-model. Specifically, Chemkin was used to simulate autoignition process. In the post-ignition phase, the combustion model was switched to EFTS. In the EFTS sub-model, combustion was assumed to be a combination of two elementary combustion modes: homogeneous combustion and flamelet combustion. The combustion index acted as a weighting factor blending the contributions from these two modes. The Chemkin sub-model neglected the subgrid scale turbulence-chemistry interactions whereas the EFTS model took them into account through a presumed PDF approach. The model was used to simulate an early injection mode of a Cummins DI diesel engine and a mode of a Caterpillar DI diesel engine. These engine modes are representatives of HCCI-type and conventional diesel-type combustion, respectively. The comparison with experiments shows that the model can predict both types of diesel combustion without the need of ad hoc adjustments.
机译:在大涡模拟的背景下,开发了一般的燃烧模型,以模拟传统柴油型和HCCI型柴油机中的全系列燃烧。燃烧模型由Chemkin子模型和扩展的轰炸时间尺度(EFTS)子模型组成。具体而言,Chemin用于模拟自燃过程。在点火后阶段,燃烧模型切换到EFTS。在EFTS子模型中,假设燃烧是两种基本燃烧模式的组合:均匀燃烧和燧发燧弹燃烧。燃烧指数充当加权因子与这两种模式的贡献混合。 Chemkin子模型被忽略了底图速度湍流 - 化学相互作用,而EFTS模型通过假定的PDF方法考虑它们。该模型用于模拟康明斯DI柴油发动机的早期注射模式和卡特彼勒DI柴油发动机的模式。这些发动机模式分别是HCCI型和常规柴油型燃烧的代表。与实验的比较表明,该模型可以预测两种类型的柴油燃烧,而无需临时调整。

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