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Relation of measured basal temperatures and the spatial distribution of the geothermal heat flux for the Greenland ice sheet

机译:格陵兰冰盖实测基础温度与地热通量空间分布的关系

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摘要

The thermomechanical, three-dimensional ice-sheet model SICOPOLIS is applied to the Greenland ice sheet. Simulations over two glacial–interglacial cycles are carried out, driven by a climatic forcing interpolated between present conditions and Last Glacial Maximum anomalies. Based on the global heat-flow representation by Pollack and others (1993), we attempt to constrain the spatial pattern of the geothermal heat flux by comparing simulation results to direct measurements of basal temperatures at the GRIP, NorthGRIP, Camp Century and Dye 3 ice-core locations. The obtained heatflux map shows an increasing trend from west to east, a high-heat-flux anomaly around NorthGRIP with values up to 135mWm–2 and a low-heat-flux anomaly around Dye 3 with values down to 20mWm–2. Validation is provided by the generally good fit between observed and measured ice thicknesses. Residual discrepancies are most likely due to deficiencies of the input precipitation rate and further variability of the geothermal heat flux not captured here.
机译:热机械三维冰盖模型SICOPOLIS用于格陵兰冰盖。在当前条件和最后一次冰川最大异常之间插值的气候强迫作用下,进行了两个冰期-冰间期循环的模拟。基于Pollack等人(1993)的全球热流表示,我们试图通过将模拟结果与直接测量GRIP,NorthGRIP,Camp Century和Dye 3冰的基础温度进行比较,来限制地热通量的空间格局。 -核心位置。所获得的热通量图显示了从西向东的增加趋势,NorthGRIP附近的高热通量异常值最高为135mWm-2,染料3周围的低热通量异常值最低为20mWm-2。通过观察到的和测得的冰厚之间总体上的良好拟合来提供验证。残留差异最有可能是由于输入降水速率的不足以及此处未捕获的地热通量的进一步变化所致。

著录项

  • 作者

    Greve, Ralf;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 en
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