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A synthesis of the basal thermal state of the Greenland Ice Sheet

机译:格陵兰冰原基础热态的综合

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The basal thermal state of an ice sheet (frozen or thawed) is an important control upon its evolution, dynamics, and response to external forcings. However, this state can only be observed directly at sparse boreholes or inferred conclusively from the presence of subglacial lakes. Here we synthesize spatially extensive inferences of the basal thermal state of the Greenland Ice Sheet to better constrain this state. Existing inferences include outputs from the eight thermomechanical ice-flow models included in the Sea Level Response to Ice Sheet Evolution (SeaRISE) effort. New remote-sensing inferences of the basal thermal state are derived from Holocene radiostratigraphy, modern surface velocity, and Moderate Resolution Imaging Spectroradiometer (MODIS) imagery. Both thermomechanical modeling and remote inferences generally agree that the Northeast Greenland Ice Stream and large portions of the southwestern ice-drainage systems are thawed at the bed, whereas the bed beneath the central ice divides, particularly their west facing slopes, is frozen. Elsewhere, there is poorer agreement regarding the basal thermal state. Both models and remote inferences rarely represent the borehole-observed basal thermal state accurately near NorthGRIP and DYE-3. This synthesis identifies a large portion of the Greenland Ice Sheet (about one third by area), where additional observations would most improve knowledge of its overall basal thermal state.
机译:冰盖(冻结或融化)的基础热态是对其演变,动力学和对外部强迫的响应的重要控制。但是,只能在稀疏的钻孔中直接观察到这种状态,或者只能根据冰下湖泊的存在来得出结论。在这里,我们综合了格陵兰冰原基础热态的空间广泛推断,以更好地约束该状态。现有推论包括海平面对冰盖演化的响应(SeaRISE)工作中包含的八个热机械冰流模型的输出。从全新世射电地层学,现代表面速度和中分辨率成像光谱仪(MODIS)图像中得出了基础热状态的新遥感推断。热力学建模和远程推论都普遍认为,东北格陵兰冰流和西南部冰排水系统的大部分都在河床融化,而中央冰区下方的河床,特别是其向西的斜坡被冻结。在其他地方,关于基础热态的共识较差。模型和远程推论都很少能准确地表示NorthGRIP和DYE-3附近井眼观测到的基础热状态。该合成确定了格陵兰冰原的很大一部分(按面积计算约占三分之一),在那里进行额外的观察将最能提高人们对其整体基础热态的了解。

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