一个具有隐式液滴激活、避免饱和度调整的暖云模型

Nikolas Porz, M. Hanke, Manuel Baumgartner, P. Spichtinger
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引用次数: 10

摘要

天气和气候模式中云过程的表示对于它们对大气流动的反馈是至关重要的。由于没有关于云的一般宏观理论,相应的模拟软件中云的参数化主要依赖于底层的建模假设。在这项研究中,我们提出了一个新的中等复杂程度的模型(一个半时刻方案),这是由物理原理推导出来的。我们的模型由一个允许过饱和的微分代数方程系统组成,并且由于针对该问题量身定制的液滴质量和数量浓度的耦合,包括固有的自动液滴激活。对于该系统的数值解,我们推荐了一种半隐式积分格式,并对隐式部分进行了有效的求解。与其他云参数化方法相比,新模式显示出令人鼓舞的数值结果,并且非常适合于研究模式的不确定性和量化潮湿大气状态下天气事件的可预测性。
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A model for warm clouds with implicit droplet activation, avoiding saturation adjustment
Abstract The representation of cloud processes inweather and climate models is crucial for their feedback on atmospheric flows. Since there is no general macroscopic theory of clouds, the parameterization of clouds in corresponding simulation software depends crucially on the underlying modeling assumptions. In this study we present a new model of intermediate complexity (a one-and-a-half moment scheme) for warm clouds, which is derived from physical principles. Our model consists of a system of differential-algebraic equations which allows for supersaturation and comprises intrinsic automated droplet activation due to a coupling of the droplet mass- and number concentrations tailored to this problem. For the numerical solution of this system we recommend a semi-implicit integration scheme, with effcient solvers for the implicit parts. The new model shows encouraging numerical results when compared with alternative cloud parameterizations, and it is well suited to investigate model uncertainties and to quantify predictability of weather events in moist atmospheric regimes.
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