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首页> 外文期刊>Journal of Glaciology >Computing the volume response of the Antarctic Peninsula ice sheet to warming scenarios to 2200
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Computing the volume response of the Antarctic Peninsula ice sheet to warming scenarios to 2200

机译:计算南极半岛冰盖对2200年变暖情景的体积响应

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摘要

The contribution to sea level to 2200 from the grounded, mainland Antarctic Peninsula ice sheet (APIS) was calculated using an ice-sheet model initialized with a new technique computing ice fluxes based on observed surface velocities, altimetry and surface mass balance, and computing volume response using a linearized method. Volume change estimates of the APIS resulting from surface massbalance anomalies calculated by the regional model RACMO_2, forced by A1B and E1 scenarios of the global models ECHAM5 and HadCM3, predicted net negative sea-level contributions between -0.5 and -12mm sea-level equivalent (SLE) by 2200. Increased glacier flow due to ice thickening returned ~15% of the increased accumulation to the sea by 2100 and ~30% by 2200. The likely change in volume of the APIS by 2200 in response to imposed 10 and 20km retreats of the grounding line at individual large outlet glaciers in Palmer Land, southern Antarctic Peninsula, ranged between 0.5 and 3.5mm SLE per drainage basin. Ensemble calculations of APIS volume change resulting from imposed grounding-line retreat due to ice-shelf break-up scenarios applied to all 20 of the largest drainage basins in Palmer Land (covering ~40% of the total area of APIS) resulted in net sea-level contributions of 7-16mm SLE by 2100, and 10-25mm SLE by 2200. Inclusion of basins in the northern peninsula and realistic simulation of grounding-line movement for AP outlet glaciers will improve future projections.
机译:南极半岛大陆冰原(APIS)对海平面的贡献达到2200,方法是使用冰原模型计算冰原模型,该冰原模型采用一种新技术进行初始化,该新技术根据观测到的地表速度,测高和地表质量平衡以及计算量来计算冰通量使用线性化方法的响应。由全球模型ECHAM5和HadCM3的A1B和E1情景强迫的,由区域模型RACMO_2计算的表面质量平衡异常所导致的APIS的体积变化估计,预测了-0.5至-12mm海平面当量之间的净负海平面贡献( SLE)到2200年。由于冰层增厚,冰川流量增加了,到2100年,增加了约15%的海洋积聚,到2200年,增加了约30%。APIS的体积可能会因施加10公里和20公里撤退而变化2200年。南极半岛南部帕尔默地的单个大型出口冰川的接地线间距为每个流域0.5至3.5mm SLE。 APIS体积变化的综合计算,是由于应用于帕尔默地所有20个最大流域(覆盖APIS总面积的约40%)的冰架破裂情景而导致的强制性地面撤退所导致的APIS体积变化到2100年将达到7-16毫米SLE,到2200年将达到10-25毫米SLE。将北部半岛的盆地包括在内,并对AP出口冰川的地线运动进行现实模拟,将改善未来的预测。

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