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首页> 外文期刊>The Journal of Chemical Thermodynamics >A novel application of Recursive Equation Method for determining thermodynamic properties of single phase fluids from density and speed-of-sound measurements
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A novel application of Recursive Equation Method for determining thermodynamic properties of single phase fluids from density and speed-of-sound measurements

机译:递归方程法在密度和声速测量中确定单相流体热力学性质的新应用

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摘要

The determination of thermal quantities from mechanical properties is still a challenge in the thermodynamic field. In this work, the authors suggest a preliminary numerical calculation which allows to determine the constant pressure specific heat capacity, starting from density and speed-of-sound experimental values, as input data. This method is a variant of the well characterized Recursive Equation Method (REM) [1] and permits to develop empirical equations of state for single phase fluids. In particular, the isobaric specific heat capacity has been obtained, in a wide range of temperatures and pressures, for pure water, n-nonane, n-undecane, and rapeseed oil methyl ester. The results have been compared with those available in the literature, when it was possible. Moreover, the typical uncertainty of heat capacity has been estimated to be in the order of 1.5%; however it has been shown that it can be improved when proper distributions of the experimental points are available.
机译:从机械性能确定热量仍然是热力学领域的挑战。在这项工作中,作者提出了一个初步的数值计算方法,可以从密度和声速实验值作为输入数据确定恒压比热容。这种方法是特征明确的递归方程方法(REM)[1]的一种变体,可以开发单相流体的状态经验方程。特别地,对于纯水,正壬烷,正十一烷和菜籽油甲基酯,已经在很宽的温度和压力范围内获得了等压比热容。在可能的情况下,将结果与文献中的结果进行了比较。此外,热容的典型不确定度估计为1.5%左右。然而,已经表明,当实验点的适当分布可用时,可以对其进行改进。

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