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Simulation and inversion of borehole temperature profiles in surrogate climates: Spatial distribution and surface coupling

机译:替代气候下井眼温度剖面的模拟和反演:空间分布和地表耦合

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摘要

A heat-conduction forward model driven by ground surface temperature from three 1000-year climate simulations with the state-of-the-art ECHO-g model has been used to simulate underground temperature perturbation profiles. An inversion approach has been applied to reconstruct ground surface temperature histories from the simulated profiles and to compare them with the climate model temperatures. Results support the skill of borehole inversion methods to retrieve long-term temperature trends, and the robustness of using the present-day borehole network for reconstructing SAT variations.
机译:通过三个最长达1000年的气候模拟以及最先进的ECHO-g模型,由地表温度驱动的热传导正演模型已用于模拟地下温度扰动剖面。反演方法已应用于从模拟剖面重建地表温度历史并将其与气候模型温度进行比较。结果支持了井眼反演方法检索长期温度趋势的技巧,以及使用当今井眼网络重构SAT变化的鲁棒性。

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