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Heat of freezing for supercooled water: Measurements at atmospheric pressure

机译:过冷水的冷冻热:大气压下的测量

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Unlike reversible phase transitions, the amount of heat released upon freezing of a metastable supercooled liquid depends on the degree of supercooling. Although terrestrial supercooled water is ubiquitous and has implications for cloud dynamics and nucleation, measurements of its heat of freezing are scarce. We have performed calorimetric measurements of the heat released by freezing water at atmospheric pressure as a function of supercooling. Our measurements show that the heat of freezing can be considerably below one predicted from a reversible hydrostatic process. Our measurements also indicate that the state of the resulting ice is not fully specified by the final pressure and temperature; the ice is likely to be strained on a variety of scales, implying a higher vapor pressure. This would reduce the vapor gradient between supercooled water and ice in mixed phase atmospheric clouds.
机译:与可逆相变不同,亚稳态过冷液体冻结时释放的热量取决于过冷程度。尽管陆地过冷水无处不在,并且对云的动力学和成核有影响,但对其冷冻热的测量却很少。我们已经对大气压下冷冻水释放的热量进行过量热测量,以作为过冷的函数。我们的测量结果表明,冻结热可以大大低于可逆静液压过程所预测的热量。我们的测量结果还表明,最终压力和温度并未完全确定所形成的冰的状态。冰可能会在各种尺度上变形,这意味着更高的蒸气压。这将减少混合相大气云中过冷水和冰之间的蒸气梯度。

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