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Modelling mixed-phase clouds with the large-eddy model UCLALES–SALSA

机译:用大涡模型Uclales-Salsa建模混合相云

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The large-eddy model UCLALES–SALSA, with an exceptionally detailed aerosol description for both aerosol number and chemical composition, has been extended for ice and mixed-phase clouds. Comparison to a previous mixed-phase cloud model intercomparison study confirmed the accuracy of newly implemented ice microphysics. A further simulation with a heterogeneous ice nucleation scheme, in which ice-nucleating particles (INPs) are also a prognostic variable, captured the typical layered structure of Arctic mid-altitude mixed-phase cloud: a liquid layer near cloud top and ice within and below the liquid layer. In addition, the simulation showed a realistic freezing rate of droplets within the vertical cloud structure. The represented detailed sectional ice microphysics with prognostic aerosols is crucially important in reproducing mixed-phase clouds.
机译:对于冰和混合相云,大型涡旋式甲豆具有出色的气溶胶数和化学成分的气溶胶描述。与先前的混合阶段云模型互通研究的比较证实了新实施的冰微物质学的准确性。具有异质冰成核方案的进一步模拟,其中冰成核颗粒(INPS)也是预后变量,捕获了北极中高度混合相云的典型分层结构:云顶部附近的液体层和冰在液体层下方。此外,仿真显示垂直云结构内的液滴的逼真冻结速率。具有预后气溶胶的所代表的详细的剖面冰微佳体在再现混合相云中至关重要。

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