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Revisiting Twomey's approximation for peak supersaturation

机译:重新审视Twomey的峰值过饱和度的近似值

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Twomey's seminal 1959 paper provided lower and upper bound approximations to the estimation of peak supersaturation within an updraft and thus provides the first closed expression for the number of nucleated cloud droplets. The form of this approximation is simple, but provides a surprisingly good estimate and has subsequently been employed in more sophisticated treatments of nucleation parametrization. In the current paper, we revisit the lower bound approximation of Twomey and make a small adjustment that can be used to obtain a more accurate calculation of peak supersaturation under all potential aerosol loadings and thermodynamic conditions. In order to make full use of this improved approximation, the underlying integro-differential equation for supersaturation evolution and the condition for calculating peak supersaturation are examined. A simple rearrangement of the algebra allows for an expression to be written down that can then be solved with a single lookup table with only one independent variable for an underlying lognormal aerosol population. While multimodal aerosol with N different dispersion characteristics requires 2N+1 inputs to calculate the activation fraction, only N of these one-dimensional lookup tables are needed. No additional information is required in the lookup table to deal with additional chemical, physical or thermodynamic properties. The resulting implementation provides a relatively simple, yet computationally cheap, physically based parametrization of droplet nucleation for use in climate and Numerical Weather Prediction models.
机译:Twomey的精细1959纸纸为上升峰值估计下限和上限近似,从而为有核云液滴的数量提供第一封闭表达。这种近似的形式很简单,但提供了令人惊讶的良好估计,随后在更复杂的核化学性参数化治疗中。在目前的论文中,我们重新审视了Twomey的下限近似,并进行了小调整,可用于在所有潜在的气溶胶载荷和热力学条件下获得更准确的峰值过饱和度。为了充分利用这种改进的近似,检查了过饱和演化的底层积分差分方程和计算峰值过饱和的条件。代数的简单重新排列允许将表达式写入,然后可以用单个查找表来解决,该表只有一个独立变量对于潜在的逻辑型气溶胶种群。虽然具有N不同色散特性的多模式气溶胶需要2n + 1输入来计算激活分数,但只需要这些一维查找表中的n。在查找表中不需要额外信息来处理额外的化学,物理或热力学性质。由此产生的实现提供了一种相对简单,但计算地廉价,物理基础的液滴成核的参数化,用于气候和数值天气预报模型。

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