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The role of ice-microphysics parametrizations in determining the prevalence of supercooled liquid water in high-resolution simulations of a Southern Ocean midlatitude cyclone

机译:冰 - 微物理参数化在确定南大洋中纬度旋风高分辨率模拟中过冷液态水的普遍性中的作用

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摘要

High-resolution simulations of a Southern Ocean cyclone are compared to satellite-derived observations of liquid water path, cloud-top properties, and top-of-atmosphere radiative fluxes. The focus is on the cold-air-outflow region, where there are contributions to the hydrological budget from the microphysical growth of ice particles by riming and vapor deposition and transport by turbulent mixing. The sensitivity of the simulation to the parameterization of these processes is tested and the relative importance of ice-nucleation temperature is identified. It is shown that ice-phase microphysics is a key factor determining the phase composition of Southern Ocean clouds and physically reasonable parameterization changes are identified that affect the liquid water content of these clouds. The information gained from the sensitivity tests is applied to global model development, where it is shown that a modification to the riming parameterization improves climate mean-state biases in the Southern Ocean region.
机译:将南大洋气旋的高分辨率模拟与卫星派生的液态水路径,云顶特性和大气顶辐射通量的观测结果进行了比较。重点是冷空气流出区域,在该区域中,冰缘的微物理生长(通过边沿作用和蒸汽沉积以及湍流混合的运输)对水文预算有所贡献。测试了仿真对这些过程的参数设置的敏感性,并确定了冰成核温度的相对重要性。结果表明,冰期的微观物理学是决定南大洋云的相组成的关键因素,并且确定了影响这些云的液态水含量的物理上合理的参数化变化。从敏感性测试中获得的信息被应用到全球模型开发中,结果表明,对边缘参数化的修改可以改善南大洋区域的气候平均态偏差。

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  • 作者

    Furtado K; Field P;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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