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Description of the Earth system model of intermediate complexity LOVECLIM version 1.2

机译:中等复杂程度LOVECLIM 1.2版地球系统模型的说明

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The main characteristics of the new version 1.2 of the three-dimensional Earth system model of intermediate complexity LOVECLIM are briefly described. LOVECLIM 1.2 includes representations of the atmosphere, the ocean and sea ice, the land surface (including vegetation), the ice sheets, the icebergs and the carbon cycle. The atmospheric component is ECBilt2, a T21, 3-level quasi-geostrophic model. The oceanic component is CLIO3, which is made up of an ocean general circulation model coupled to a comprehensive thermodynamic-dynamic sea-ice model. Its horizontal resolution is 3° by 3°, and there are 20 levels in the ocean. ECBilt-CLIO is coupled to VECODE, a vegetation model that simulates the dynamics of two main terrestrial plant functional types, trees and grasses, as well as desert. VECODE also simulates the evolution of the carbon cycle over land while the oceanic carbon cycle is represented in LOCH, a comprehensive model that takes into account both the solubility and biological pumps. The ice sheet component AGISM is made up of a three-dimensional thermomechanical model of the ice sheet flow, a visco-elastic bedrock model and a model of the mass balance at the ice-atmosphere and ice ocean interfaces. For both the Greenland and Antarctic ice sheets, calculations are made on a 10 km by 10 km resolution grid with 31 sigma levels. LOVECLIM 1.2 reproduces well the major characteristics of the observed climate both for present-day conditions and for key past periods such as the last millennium, the mid-Holocene and the Last Glacial Maximum. However, despite some improvements compared to earlier versions, some biases are still present in the model. The most serious ones are mainly located at low latitudes with an overestimation of the temperature there, a too symmetric distribution of precipitation between the two hemispheres, an overestimation of precipitation and vegetation cover in the subtropics. In addition, the atmospheric circulation is too weak. The model also tends to underestimate the surface temperature changes (mainly at low latitudes) and to overestimate the ocean heat uptake observed over the last decades.
机译:简要描述了中等复杂度LOVECLIM的三维地球系统模型的新版本1.2的主要特征。 LOVECLIM 1.2包括大气,海洋和海冰,陆地表面(包括植被),冰盖,冰山和碳循环的表示。大气成分是ECBilt2,这是一个T21三级准地转模型。海洋成分是CLIO3,它由海洋总环流模型和综合的热力学-动态海冰模型组成。它的水平分辨率为3°x 3°,海洋中有20个水位。 ECBilt-CLIO与VECODE耦合,VECODE是一种植被模型,可以模拟两种主要陆生植物功能类型(树木和草木以及沙漠)的动态。 VECODE还模拟了陆地上碳循环的演变,而海洋碳循环以LOCH表示,这是一个综合模型,同时考虑了溶解度和生物泵。冰原组件AGISM由冰原流动的三维热力学模型,粘弹性基岩模型以及在冰层和冰洋界面处的质量平衡模型组成。对于格陵兰岛和南极冰盖,都是在10 km x 10 km分辨率为31 sigma的网格上进行计算的。 LOVECLIM 1.2很好地再现了当前条件和过去关键时期(例如上个千年,全新世中期和最后一个冰川期)的观测气候的主要特征。但是,尽管与早期版本相比有所改进,但是模型中仍然存在一些偏差。最严重的地区主要位于低纬度地区,那里的温度被高估,两个半球之间的降水分布过于对称,亚热带地区的降水和植被覆盖率被高估。另外,大气环流太弱。该模型还倾向于低估地表温度的变化(主要是在低纬度地区),并高估了过去几十年来观测到的海洋热量吸收。

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