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首页> 外文期刊>Journal of Chemical Engineering of Japan >An Approximate Method for the Computation of Wall Temperature Using Thermal Equilibrium and Fluid Temperatures from the Enthalpy and Mole Fraction
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An Approximate Method for the Computation of Wall Temperature Using Thermal Equilibrium and Fluid Temperatures from the Enthalpy and Mole Fraction

机译:使用焓和摩尔分数计算热平衡和流体温度的壁温计算近似方法

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摘要

Using computational thermofluid dynamics, we calculated the fluid temperature from the enthalpy and mole fractions of chemical species and the inner wall temperature from thermal equilibrium with radiative heat transfer. The fluid and wall temperatures were approximately found using a temporary solution in the iterative part of the polynomial equations. We carried out combustion simulations using Newton's method and the approximate method introduced in this study, and calculated the fluid and wall temperatures. The computed temperatures from both methods agree completely; furthermore, over 20% reduction in computational time compared to current methods was achieved. Therefore, the approximate method is useful for computations concerning steady-state thermofluids, such as those in combustion simulation.
机译:采用计算热流体动力学,我们计算了化学物质的焓和摩尔分数的流体温度和辐射传热的热平衡的内壁温度。 使用多项式方程的迭代部分中的临时溶液发现流体和壁温度。 我们使用牛顿的方法和本研究中介绍的近似方法进行了燃烧模拟,并计算了流体和壁温度。 两种方法的计算温度完全同意; 此外,与当前方法相比,计算时间超过20%的计算时间超过20%。 因此,近似方法可用于有关稳态热流体的计算,例如燃烧模拟中的计算。

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