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首页> 外文期刊>High temperature: English translation of teplofizika vysokikh temperatur >Calculation of thermodynamic properties of SF6 including the critical region. Thermal functions and speed of sound
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Calculation of thermodynamic properties of SF6 including the critical region. Thermal functions and speed of sound

机译:计算包括关键区域的SF6热力学性质。 热函数和声速

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Specific heats C (v) and C (p), entropy S, enthalpy H, and speed of sound W have been calculated using a new thermal equation of state with a small number of variable constants, which includes regular and scale contributions with a new transition function. The calculation results correspond to the accuracy level of the modern reference equations of state with a large number of determined parameters in the regular behavioral region of SF6 properties; in the critical region, these results make it possible to supplement the existing reference data with the related tables, taking into account the scaling-theory advances. The experimental and tabular data on C (v), C (p), S, H, and W have not been used to determine the constants of the calculation equations (except for isochoric specific heat, C (v), in the ideal-gas state). These data have been applied only for comparison of the calculated values with the experimental and tabular values. To calculate the behavior of thermal properties in the critical region, universal critical indices alpha, beta, and gamma have been used according to the threedimensional Ising model. The mean error in describing thermal properties of SF6 does not exceed the error of the existing experimental data. The calculated values coincide with the modern reference data in the regular region in the entire range of gas and liquid states. The discrepancies in the critical region are due to the application of the scale equation of state (in contrast to the regular equations used previously in this region for composing reference tables).
机译:使用具有少量可变常量的新的热方程来计算特定的热量c(v)和c(p),熵s,焓h和声音W的速度,其中包括具有新的常规和规模贡献过渡功能。计算结果对应于SF6属性的常规行为区域中具有大量确定参数的现代参考方程的准确度。在关键区域中,这些结果使得可以使用相关表来补充现有的参考数据,同时考虑到缩放理论进步。在C(v),c(p),s,h和w上的实验和表格数据尚未用于确定计算方程的常数(除了等因素特定的热量,c(v),在理想中气态)。这些数据仅应用于使用实验和表格值的计算值的比较。为了计算临界区域中的热性质的行为,根据三维ising模型使用通用关键索引α,β和伽玛。描述SF6热性质的平均误差不超过现有实验数据的误差。计算值与整个气体和液态范围内的常规区域中的现代参考数据一致。临界区域中的差异是由于状态的尺度方程(与先前在该区域中使用的常规方程形成对比,用于组成参考表)。

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