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首页> 外文期刊>Journal of the Atmospheric Sciences >Toward Improved Cloud-Phase Simulation with a Mineral Dust and Temperature-Dependent Parameterization for Ice Nucleation in Mixed-Phase Clouds
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Toward Improved Cloud-Phase Simulation with a Mineral Dust and Temperature-Dependent Parameterization for Ice Nucleation in Mixed-Phase Clouds

机译:在混合相云中改善矿物粉尘和温度依赖参数化的云相模拟

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摘要

Mixed-phase clouds are frequently observed in the atmosphere. Here we present a parameterization for ice crystal concentration and ice nucleation rate based on parcel model simulations for mixed-phase stratocumulus clouds, as a complement to a previous parameterization for stratus clouds. The parcel model uses a singular (time independent) description for deposition nucleation and a time-dependent description for condensation nucleation and immersion freezing on mineral dust particles. The mineral dust and temperature-dependent parameterizations have been implemented in the Geophysical Fluid Dynamics Laboratory atmosphere model, version 4.0 (AM4.0) (new), while the standard AM4.0 (original) uses a temperature-dependent parameterization. Model simulations with the new and original AM4.0 show significant changes in cloud properties and radiative effects. In comparison to measurements, cloud-phase (i.e., liquid and ice partitioning) simulation appears to be improved in the new AM4.0. More supercooled liquid cloud is predicted in the new model, it is sustained even at temperatures lower than -25 degrees C unlike in the original model. A more accurate accounting of ice nucleating particles and ice crystals is essential for improved cloud-phase simulation in the global atmosphere.
机译:在大气中经常观察混合相云。在这里,我们提出了基于混合相划线的包模拟模拟的冰晶浓度和冰成核速率的参数化,作为Stratus云的先前参数化的补充。包裹模型使用单数(时间独立的)描述进行沉积成核和用于凝结成核的时间依赖性描述,并浸没在矿物粉尘颗粒上的冻结。矿物粉尘和温度依赖的参数化已经在地球物理流体动力学实验室大气模型中实施,版本4.0(AM4.0)(新),而标准的AM4.0(原件)使用温度依赖性参数化。使用新的和原始AM4.0模拟模拟显示云属性和辐射效果的显着变化。与测量相比,新AM4.0似乎在新的云相(即液体和冰分配)仿真中似乎得到改善。在新模型中预测了更多的过冷液体云,即使在原始模型上的温度低于-25摄氏度的温度下也是持续的。更准确的冰核颗粒和冰晶核算对于改善全球气氛中的云相模拟至关重要。

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