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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Effects of uncertainties in the geothermal heat flux distribution on the Greenland Ice Sheet: An assessment of existing heat flow models
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Effects of uncertainties in the geothermal heat flux distribution on the Greenland Ice Sheet: An assessment of existing heat flow models

机译:格陵兰冰盖中地热通量分布的不确定性影响:现有热流模型的评估

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摘要

This study analyzes the uncertainties in the models of the Greenland Ice Sheet (GIS) that arise from ill-constrained geothermal heat flux (GHF) distribution. Within the context of dynamic GIS modeling, we consider the following questions: (i) What is the significance of the differences between the existing GHF models for the GIS modeling studies? (ii) How well does the modeled GIS controlled by the GHF models agree with the observational data? (iii) What are the relative contributions of uncertainties in GHF and climate forcing to the misfit between the observed and modeled present-day GIS? The results of paleoclimatic simulations suggest that differences in the GHF models have a major effect on the history and resulting present-day state of the GIS. The ice sheet model controlled by any of these GHF forcings reproduces the observed GIS state to only a limited degree and fails to reproduce either the topography or the low basal temperatures measured in southern Greenland. By contrast, the simulation controlled by a simple spatially uniform GHF forcing results in a considerably better fit with the observations, raising questions about the use of the three GHF models within the framework of GIS modeling. Sensitivity tests reveal that the misfit between the modeled and measured temperatures in central Greenland is mostly due to inaccurate GHF and Wisconsin precipitation forcings. The failure of the ice sheet model in southern Greenland, however, is mainly caused by inaccuracies in the surface temperature forcing and the generally overestimated GHF values suggested by all GHF models.
机译:这项研究分析了格陵兰冰盖(GIS)模型中由于不确定的地热通量(GHF)分布而引起的不确定性。在动态GIS建模的背景下,我们考虑以下问题:(i)现有GHF模型之间的差异对于GIS建模研究有何重要意义? (ii)由GHF模型控制的建模GIS与观测数据的吻合程度如何? (iii)GHF和气候强迫的不确定性对观测到的和目前的GIS之间的失配有哪些相对影响?古气候模拟的结果表明,GHF模型中的差异对GIS的历史和目前的状态有重大影响。由这些GHF强迫中的任何一个控制的冰盖模型只能在有限的程度上复制观测到的GIS状态,而无法复制格陵兰南部测得的地形或低基础温度。相比之下,由简单的空间均匀GHF强迫控制的模拟结果与观测值的拟合度更高,从而引发了在GIS建模框架内使用三个GHF模型的疑问。敏感性测试表明,格陵兰中部的模拟温度与实测温度之间的不匹配主要是由于GHF和威斯康星州的降水强迫不正确所致。然而,格陵兰岛南部冰盖模型的失败主要是由于地表温度强迫不准确以及所有GHF模型都普遍高估了GHF值所致。

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