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Towards Numerical Simulation of Turbulent Hydrogen Combustion based on Flamelet Generated Manifolds in OpenFOAM

机译:基于爆炸氢燃烧的数值模拟,基于爆炸式炸液在OpenFoam中的歧管

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This work proposes an application of the Flamelet-Generated Manifolds (FGM) technique in the OpenFOAM environment. FGM is a chemical reduced method for combustion modeling. This technique treats the combustion process as the solution of a small amount of controlling variables. Regarding laminar simulation, a progress variable and enthalpy evolution can describe satisfactorily the problem. From a turbulent point of view, FGM can be applied to LES and RANS simulations, where the subgrid chemical terms are described with a β - PDF approach. These approaches apply satisfactorily in relatively simple gases, nevertheless for hydrogen are not more valid, due to preferential diffusion effects and instability of the flame structure. The overall aim of this research is to find technical solution for hydrogen gas turbines design in the next generation of Integrated Gasification Combined Cycle (IGCC) plants.
机译:这项工作提出了在OpenFoam环境中施加爆塞 - 生成的歧管(FGM)技术。 FGM是一种燃烧建模的化学方法。该技术将燃烧过程视为少量控制变量的溶液。关于层层模拟,进度变量和焓进化可以令人满意地描述问题。从湍流的角度来看,FGM可以应用于LES和RAN模拟,其中底层化学术语用β - PDF方法描述。由于优先的扩散效应和火焰结构的不稳定性,这些方法在相对简单的气体中令人满意地适用于相对简单的气体。本研究的整体目标是在下一代集成气化联合循环(IGCC)植物中寻找氢气涡轮机设计的技术方案。

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