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Arctic Mixed-phase Clouds Simulated by a Cloud-Resolving Model: Comparison with ARM Observations and Sensitivity to Microphysics Parameterizations

机译:云解析模型模拟的北极混合相云:与ARM观测值的比较以及对微物理参数化的敏感性

摘要

Single-layer mixed-phase stratiform (MPS) Arctic clouds, which formed under conditions of large surface heat flux combined with general subsidence during a subperiod of the Atmospheric Radiation Measurement (ARM) Program Mixed-Phase Arctic Cloud Experiment (M-PACE), are simulated with a cloud resolving model (CRM). The CRM is implemented with either an advanced two-moment (M05) or a commonly used one-moment (L83) bulk microphysics scheme and a state-of-the-art radiative transfer scheme. The CONTROL simulation, that uses the M05 scheme and observed aerosol size distribution and ice nulei (IN) number concentration, reproduces the magnitudes and vertical structures of cloud liquid water content (LWC), total ice water content (IWC), number concentration and effective radius of cloud droplets as suggested by the M-PACE observations. It underestimates ice crystal number concentrations by an order of magnitude and overestimates effective radius of ice crystals by a factor of 2-3. The OneM experiment, that uses the L83 scheme, produces values of liquid water path (LWP) and ice plus snow water path (ISWP) that were about 30% and 4 times, respectively, of those produced by the CONTROL. Its vertical profile of IWC exhibits a bimodal distribution in contrast to the constant distribution of IWC produced in the CONTROL and observations.
机译:单层混合相层状(MPS)北极云,它是在大气辐射测量(ARM)程序混合相北极云实验(M-PACE)的一个子时期中,在大表面热通量和一般沉降共同作用下形成的,使用云解析模型(CRM)进行仿真。 CRM可以通过高级两时(M05)或常用的一时(L83)本体微物理方案和最新的辐射传输方案来实现。 CONTROL模拟使用M05方案并观察到气溶胶尺寸分布和冰核(IN)浓度,再现了云状液体水含量(LWC),总冰水含量(IWC),数量浓度和有效量的大小和垂直结构。 M-PACE观测所建议的云滴半径。它低估了一个数量级的冰晶数量浓度,高估了2-3倍的冰晶有效半径。使用L83方案的OneM实验产生的液态水路径(LWP)和冰加雪水路径(ISWP)的值分别约为CONTROL所产生值的30%和4倍。与控制和观测中产生的IWC的恒定分布相比,其IWC的垂直分布呈现双峰分布。

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