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An efficient regional energy-moisture balance model for simulation of the Greenland Ice Sheet response to climate change

机译:用于模拟格陵兰冰原对气候变化响应的有效区域能量-水分平衡模型

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In order to explore the response of the Greenland ice sheet (GIS) to climate change on long (centennial to multi-millennial) time scales, a regional energy-moisture balance model has been developed. This model simulates seasonal variations of temperature and precipitation over Greenland and explicitly accounts for elevation and albedo feedbacks. From these fields, the annual mean surface temperature and surface mass balance can be determined and used to force an ice sheet model. The melt component of the surface mass balance is computed here using both a positive degree day approach and a more physically-based alternative that includes insolation and albedo explicitly. As a validation of the climate model, we first simulated temperature and precipitation over Greenland for the prescribed, present-day topography. Our simulated climatology compares well to observations and does not differ significantly from that of a simple parameterization used in many previous simulations. Furthermore, the calculated surface mass balance using both melt schemes falls within the range of recent regional climate model results. For a prescribed, ice-free state, the differences in simulated climatology between the regional energy-moisture balance model and the simple parameterization become significant, with our model showing much stronger summer warming. When coupled to a three-dimensional ice sheet model and initialized with present-day conditions, the two melt schemes both allow realistic simulations of the present-day GIS.
机译:为了探索格陵兰冰原(GIS)在长时间(百年至千禧年)尺度上对气候变化的响应,已开发了区域能量-水分平衡模型。该模型模拟格陵兰岛上温度和降水的季节性变化,并明确考虑海拔和反照率反馈。从这些字段中,可以确定年平均表面温度和表面质量平衡,并将其用于强制冰盖模型。表面质量平衡的熔体成分在此使用正度日方法和更基于物理的替代方法(明确包括日射和反照率)进行计算。作为对气候模型的验证,我们首先对格陵兰岛当前规定的地形模拟了温度和降水。我们的模拟气候可以很好地与观测值进行比较,并且与许多以前的模拟中使用的简单参数化没有明显不同。此外,使用两种融化方案计算的表面质量平衡都在近期区域气候模型结果的范围内。对于规定的无冰状态,区域能量-水分平衡模型与简单的参数化之间的模拟气候差异变得很明显,而我们的模型显示出强烈的夏季变暖。当与三维冰原模型耦合并用当前条件初始化时,这两种融化方案都可以对当今的GIS进行逼真的模拟。

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