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Microphysical and Radiative Effects of Ice Clouds on Tropical Equilibrium States: A Two-Dimensional Cloud-Resolving Modeling Study

机译:冰云对热带平衡态的微物理和辐射影响:二维云解析模型研究

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摘要

The microphysical and radiative effects of ice clouds on tropical equilibrium states are investigated based on three two-dimensional cloud-resolving simulations imposed by zero vertical velocity and time-invariant zonal wind and sea surface temperature. An experiment without ice microphysics (ice microphysical and radiative effects; C00), another experiment without ice radiative effects (CI0), and the control experiment (CIR) are carried out. The model with cyclic lateral boundaries is integrated for 40 days to reach equilibrium states in all experiments. CI0 produces a colder and drier equilibrium state than CIR and C00 do through generating a larger IR cooling, a larger vapor condensation rate, and consuming a larger amount of water vapor. A larger surface rain rate occurs in CI0 than in CIR and C00. The ice radiative effects on thermodynamic equilibrium states are stronger than the ice microphysical effects so that the exclusion of ice microphysics yields a colder and drier equilibrium state in C00 than in CIR. The ice radiative effects and the ice microphysical effects on surface rainfall processes are largely offset, which leads to similar zonal-mean surface rain rates in C00 and CIR.
机译:基于零垂直速度和时不变纬向风和海面温度强加的三个二维云解析模拟,研究了冰云对热带平衡状态的微物理和辐射效应。进行了没有冰微物理学的实验(冰的微物理和辐射效应; C00),没有冰辐射效应的另一实验(CI0)和对照实验(CIR)。在所有实验中,将具有周期性横向边界的模型整合40天,以达到平衡状态。与通过CIR和C00产生更大的IR冷却,更大的蒸气凝结率以及消耗大量的水蒸气相比,C10产生的冷态比CIR和C00更为干燥。与CIR和C00相比,CI0中的表面降雨率更大。冰对热力学平衡状态的辐射作用要强于冰微物理作用,因此,排除冰微物理作用,在C00中比在CIR中产生更冷,更干燥的平衡状态。冰的辐射效应和冰的微物理效应对地表降雨过程的影响被大大抵消,这导致了C00和CIR中类似的纬向平均地表降雨率。

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