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Ultrasonic evaluation of thermodynamic parameters of liquids under high pressure

机译:超声评估高压下液体的热力学参数

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In many technological processes (e.g. in chemical, petrochemical, food and plastics industry) liquids are subjected to high pressures and temperatures. Therefore knowledge of their thermodynamic properties is essential for understanding, design and control of the process technology. Direct evaluation of thermodynamic parameters of liquids under high pressure, using conventional methods, is very difficult. Therefore, these methods are useless in industrial conditions, particularly in on-line control of the technological parameters of liquids. Ultrasonic methods (e.g., sound speed measurements) due to their simplicity and accuracy are very suitable for this purpose. The sound velocity is closely related with numerous thermodynamic properties of liquids. In this paper we report ultrasonic velocity and density measurements (performed by the authors) in diacylglycerol (DAG) oil over a range of pressures and temperatures. On the basis of experimental results (the sound velocity and liquid density versus pressure and temperature) the thermal expansion coefficient, specific heat capacity at constant pressure, isothermal and adiabatic compressibility of DAG oil were calculated as a function of pressure and temperature.
机译:在许多技术过程中(例如在化学,石化,食品和塑料工业中),液体要经受高压和高温。因此,了解它们的热力学性质对于理解,设计和控制工艺技术至关重要。使用常规方法直接评估高压下液体的热力学参数非常困难。因此,这些方法在工业条件下是无用的,特别是在液体技术参数的在线控制中。超声波方法(例如,声速测量)由于其简单性和准确性而非常适合于此目的。声速与液体的众多热力学性质密切相关。在本文中,我们报告了在一定压力和温度范围内在二酰基甘油(DAG)油中进行的超声波速度和密度测量(由作者执行)。根据实验结果(声速和液体密度与压力和温度的关系),计算了DAG油的热膨胀系数,恒压下的比热,等温和绝热可压缩性,它们是压力和温度的函数。

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