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SimCloud version 1.0: a simple diagnostic cloud scheme for idealized climate models

机译:SIMCLOUD版本1.0:一种简单的理想化气候模型诊断云方案

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A simple diagnostic cloud scheme (SimCloud) for general circulation models (GCMs), which has a modest level of complexity and is transparent in describing its dependence on tunable parameters, is proposed in this study. The large-scale clouds, which form the core of the scheme, are diagnosed from relative humidity. In addition, the marine low stratus clouds, typically found off the west coast of continents over subtropical oceans, are determined largely as a function of inversion strength. A “freeze-dry” adjustment based on a simple function of specific humidity is also available to reduce an excessive cloud bias in polar regions. Other cloud properties, such as the effective radius of cloud droplet and cloud liquid water content, are specified as simple functions of temperature. All of these features are user-configurable. The cloud scheme is implemented in Isca, a modeling framework designed to enable the construction of GCMs at varying levels of complexity, but could readily be adapted to other GCMs. Simulations using the scheme with realistic continents generally capture the observed structure of cloud fraction and cloud radiative effect (CRE), as well as its seasonal variation. Specifically, the explicit low-cloud scheme improves the simulation of shortwave CREs over the eastern subtropical oceans by increasing the cloud fraction and cloud water path. The freeze-dry adjustment alleviates the longwave CRE biases in polar regions, especially in winter. However, the longwave CRE in tropical regions and shortwave CRE over the extratropics are both still too strong compared to observations. Nevertheless, this simple cloud scheme provides a suitable basis for examining the impacts of clouds on climate in idealized modeling frameworks.
机译:在本研究中提出了一种简单的循环模型(GCMS)的简单诊断云方案(GCMS),其具有适度的复杂性,并且在描述其对可调谐参数的依赖性方面是透明的。形成该方案的核心的大规模云被诊断为相对湿度。此外,通常在亚热带的大陆西海岸的海洋低层云,主要是作为反演强度的函数。基于特定湿度的简单功能的“冷冻干”调整也可用于减少极地区域的过度云偏差。其他云属性,例如云液滴的有效半径和云液体含水量,被指定为温度的简单功能。所有这些功能都是用户可配置的。云方案在ISCA中实现,该建模框架旨在使得能够以不同程度的复杂性构建GCM,但可以容易地适应其他GCM。使用具有现实大陆的方案的模拟通常捕获观察到的云分数和云辐射效果(CRE)的结构,以及其季节性变化。具体而言,通过增加云分数和云水路,显式的低云方案通过增加云分数和云水路来改善东部亚热带上的短波克雷斯的模拟。冷冻干燥调整减轻了极地地区的龙波克雷偏见,特别是在冬季。然而,与观察结果相比,热带地区的龙波克雷在热带地区和短波克雷上仍然太强烈。然而,这种简单的云方案为检查云对理想建模框架中的气候的影响提供了合适的基础。

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