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Critical humidities of homogeneous and heterogeneous ice nucleation: Inferences from extended classical nucleation theory

机译:均质和非均质冰成核的临界湿度:来自扩展经典成核理论的推论

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摘要

A generalization of classical ice nucleation theory is used to derive analytical expressions for the critical (threshold) humidities of homogeneous and heterogeneous freezing. The critical radius and energy of an ice embryo and nucleation rates were derived previously by the authors as functions of temperature, pressure, water saturation ratio, and radii of freezing particles. Here we invert the analytical expressions for the nucleation rates and solve them relative to the critical water and ice saturation ratios (or critical relative humidities). The critical humidities are expressed as analytical functions of temperature, pressure, nucleation or cooling rates, radius of freezing particles and their physico-chemical properties, misfit strain, and activation energy. Calculations of critical ice relative humidities are made using these equations over an extended temperature range down to —75°C and are compared with previous empirical parameterizations and experimental data, and differences are interpreted in the context of variation of the other parameters. It is shown that the critical humidities for heterogeneous ice nucleation are lower than those for homogeneous nucleation; however, this difference is not constant but depends substantially on the temperature and properties of freezing aerosol. Some simple parameterizations for cloud and climate models are suggested.
机译:通过对经典冰成核理论的概括,得出均质和非均质冻结的临界(阈值)湿度的解析表达式。作者先前已经得出了冰胚的临界半径和能量以及成核率,它们是温度,压力,水饱和比和冷冻颗粒半径的函数。在这里,我们将成核速率的解析表达式求反,并相对于临界水和冰饱和比(或临界相对湿度)求解它们。临界湿度表示为温度,压力,成核或冷却速率,冻结颗粒的半径及其理化性质,失配应变和活化能的分析函数。使用这些方程式可在低至-75°C的扩展温度范围内计算冰的临界相对湿度,并将其与先前的经验参数化和实验数据进行比较,并在其他参数变化的情况下解释差异。结果表明,非均质冰核化的临界湿度低于均质核化的临界湿度。然而,这种差异不是恒定的,而是主要取决于冷冻气溶胶的温度和性质。建议对云和气候模型进行一些简单的参数化。

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