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A computationally efficient and accurate numerical representation of thermodynamic properties of steam and water for computations of non-equilibrium condensing steam flow in steam turbines

机译:蒸汽和水的热力学特性的高效计算和精确数值表示,用于计算汽轮机中的非平衡冷凝蒸汽流量

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Mathematical modeling of the non-equilibrium condensing transonic steam flow in the complex 3D geometry of a steam turbine is a demanding problem both concerning the physical concepts and the required computational power. Available accurate formulations of steam properties IAPWS-95 and IAPWS-IF97 require much computation time. For this reason, the modelers often accept the unrealistic ideal-gas behavior. Here we present a computation scheme based on a piecewise, thermodynamically consistent representation of the IAPWS-95 formulation. Density and internal energy are chosen as independent variables to avoid variable transformations and iterations. On the contrary to the previous Tabular Taylor Series Expansion Method, the pressure and temperature are continuous functions of the independent variables, which is a desirable property for the solution of the differential equations of the mass, energy, and momentum conservation for both phases.
机译:在汽轮机的复杂3D几何形状中非平衡冷凝跨音速蒸汽流的数学建模是一个涉及物理概念和所需计算能力的严峻问题。可用的蒸汽特性IAPWS-95和IAPWS-IF97精确公式需要大量的计算时间。因此,建模者经常接受不切实际的理想气体行为。在这里,我们提出了一种基于IAPWS-95公式的热力学一致表示的计算方案。选择密度和内能作为自变量,以避免变量转换和迭代。与以前的表格泰勒级数展开法相反,压力和温度是自变量的连续函数,这对于求解两相质量,能量和动量守恒微分方程是一种理想的性质。

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