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Development of an absorption coefficient calculation method potential for combustion and gasification simulations

机译:开发用于燃烧和气化模拟的吸收系数计算方法

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Efficient and accurate calculation of the absorption coefficient is very important to the modeling of combustion and high-temperature gasification where the thermal radiation plays an important role. It is therefore important to develop a radiative absorption coefficient calculation method which is accurate enough, universal but not time consuming. In this work, a computationally efficient exponential wide band (E-EWB) model based on the exponential wide band (EWB) model is put forward and programmed so that it can be integrated into the computational fluid dynamics (CFD) software. The E-EWB calculation results are then validated against the results obtained via the line by line (LBL) model, and the runtime of this model is also evaluated. Through this work, the E-EWB model is found effective and reliable. The maximum deviation between the results obtained by the E-EWB model proposed in this work and the LBL results is within 0.8%. Moreover, the calculation speed of this model can be about 350 times faster than that of the original EWB model and is fast enough to be applied to the combustion and gasification simulations. Thus, the E-EWB model is a good choice to do the future absorption calculations during the combustion and gasification CFD simulations.
机译:吸收系数的有效和精确计算对于其中热辐射起着重要作用的燃烧和高温气化的建模非常重要。因此,重要的是开发一种足够准确,通用但不费时的辐射吸收系数计算方法。在这项工作中,提出并编程了基于指数宽带(EWB)模型的具有计算效率的指数宽带(E-EWB)模型,以便可以将其集成到计算流体力学(CFD)软件中。然后,针对通过逐行(LBL)模型获得的结果验证E-EWB计算结果,并评估该模型的运行时间。通过这项工作,发现E-EWB模型有效且可靠。通过这项工作中提出的E-EWB模型获得的结果与LBL结果之间的最大偏差在0.8%以内。而且,该模型的计算速度可以比原始EWB模型的计算速度快350倍左右,并且速度足够快,可以应用于燃烧和气化模拟。因此,E-EWB模型是在燃烧和气化CFD模拟过程中进行未来吸收计算的理想选择。

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