过冷
成核
冰核
接触角
经典成核理论
材料科学
温度梯度
热力学
半径
临界半径
等温过程
学位(音乐)
物理
复合材料
气象学
计算机科学
球体
计算机安全
声学
天文
作者
Liping Wang,Weiliang Kong,Peixiang Bian,Fuxin Wang,Hong Liu
出处
期刊:Chinese Physics B
[IOP Publishing]
日期:2020-12-30
卷期号:30 (6): 068203-068203
被引量:10
标识
DOI:10.1088/1674-1056/abd764
摘要
Understanding the behaviours of ice nucleation in non-isothermal conditions is of great importance for the preparation and retention of supercooled water. Here ice nucleation in supercooled water under temperature gradients is analyzed thermodynamically based on classical nucleation theory (CNT). Given that the free energy barrier for nucleation is dependent on temperature, different from a uniform temperature usually used in CNT, an assumption of linear temperature distribution in the ice nucleus was made and taken into consideration in analysis. The critical radius of the ice nucleus for nucleation and the corresponding nucleation model in the presence of a temperature gradient were obtained. It is observed that the critical radius is determined not only by the degree of supercooling, the only dependence in CNT, but also by the temperature gradient and even the Young’s contact angle. Effects of temperature gradient on the change in free energy, critical radius, nucleation barrier and nucleation rate with different contact angles and degrees of supercooling are illustrated successively. The results show that a temperature gradient will increase the nucleation barrier and decrease the nucleation rate, particularly in the cases of large contact angle and low degree of supercooling. In addition, there is a critical temperature gradient for a given degree of supercooling and contact angle, at the higher of which the nucleation can be suppressed completely.
科研通智能强力驱动
Strongly Powered by AbleSci AI