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The atmospheric boundary layer structure over the open and ice-covered Baltic Sea: in situ measurements compared to simulations with the regional model REMO

机译:开放和冰覆盖的波罗的海上的大气边界层结构:现场测量与区域模型REmO的模拟相比较

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摘要

The regional model REMO, which is the atmospheric component of the coupled atmosphere–ice–ocean–land climate model system BALTIMOS, is tested with respect to its ability to simulate the atmospheric boundary layer over the open and ice-covered Baltic Sea. REMO simulations are compared to ship, radiosonde, and aircraft observations taken during eight field experiments. The main results of the comparisons are: (1) The sharpness and strength of the temperature inversion are underestimated by REMO. Over open water, this is connected with an overestimation of cloud coverage and moisture content above the inversion. (2) The vertical temperature stratification in the lowest 200 m over sea ice is too stable. (3) The horizontal inhomogeneity of sea ice concentration as observed by aircraft could not be properly represented by the prescribed ice concentration in REMO; large differences in the surface heat fluxes arise especially under cold-air advection conditions. The results of the comparisons suggest a reconsideration of the parameterization of subgrid-scale vertical exchange both under unstable und stable conditions.
机译:测试了区域模型REMO,它是大气-冰-海-陆耦合气候模型系统BALTIMOS的大气组成部分,它具有模拟开放和冰雪覆盖的波罗的海大气边界层的能力。将REMO模拟与在八个现场实验中获得的船舶,无线电探空仪和飞机观测结果进行了比较。比较的主要结果是:(1)REMO低估了温度反演的清晰度和强度。在开阔水域,这与反演以上云量和水分含量的高估有关。 (2)在海冰最低200 m处的垂直温度分层过于稳定。 (3)航空器观测到的海冰浓度水平不均匀性不能用REMO中规定的冰浓度适当地表示;特别是在冷空气对流条件下,表面热通量会产生很大差异。比较的结果表明,在不稳定和稳定条件下,都将重新考虑亚网格规模垂直交换的参数化。

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