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Thermodynamics of supercooled water

机译:过冷水的热力学

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We review the available experimental information on the thermodynamic properties of supercooled water and demonstrate the possibility of modeling these thermodynamic properties on a theoretical basis. We show that by assuming the existence of a liquid-liquid critical point in supercooled water, the theory of critical phenomena can give an accurate account of the experimental thermodynamic-property data up to a pressure of 150 MPa. In addition, we show that a phenomenological extension of the theoretical model can account for all currently available experimental data in the supercooled region, up to 400 MPa. The stability limit of the liquid state and possible coupling between crystallization and liquid-liquid separation are also discussed. It is concluded that critical-point thermodynamics describes the available thermodynamic data for supercooled water within experimental accuracy, thus establishing a benchmark for further developments in this area.
机译:我们回顾了有关过冷水热力学性质的可用实验信息,并证明了在理论上对这些热力学性质进行建模的可能性。我们表明,通过假设过冷水中存在液-液临界点,临界现象理论可以准确地解释高达150 MPa压力的实验热力学性质数据。此外,我们表明理论模型的现象学扩展可以解释过冷区域(最高400 MPa)中所有当前可用的实验数据。还讨论了液态的稳定性极限以及结晶和液-液分离之间可能的耦合。结论是,临界点热力学描述了在实验精度范围内过冷水的可用热力学数据,从而为该领域的进一步发展建立了基准。

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