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Temperature-Dependent Adjustments of the Permafrost Thermal Profiles on the Qinghai-Tibet Plateau, China

机译:青藏高原多年冻土热剖面的温度依赖性调整

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Using continuous data obtained from 17 monitoring sites, the permafrost temperature profiles and the depths of zero annual amplitude (DZAA) on the Qinghai-Tibet Plateau are examined. Permafrost thermal trumpet curves are generally narrow and the DZAAs are generally shallow in warm permafrost regions, especially at sites where the permafrost temperature is close to 0 °C. The observed DZAAs in warm permafrost regions are indeed generally less than 7.0 m and for three sites less than 4.0 m. In low-temperature permafrost areas, the situation is reversed: the thermal trumpet curves are generally wide and the DZAAs are generally deep. Theoretical and numerical analyses clearly show there is a causal relationship between permafrost warming and the decrease of the DZAA. Latent heat effects are buffering the increase of permafrost temperature and result in narrow thermal trumpet curves and shallow DZAAs. Based on observations and numerical analyses, this research suggests that most of the permafrost on the Qinghai-Tibet Plateau is undergoing internal thaw and the latent heat effects have important implications on the permafrost thermal regime. The temperature-dependent adjustments in permafrost will promote both the downward and upward degradation of permafrost as a result of climate warming.
机译:利用从17个监测点获得的连续数据,研究了青藏高原的多年冻土温度剖面和零年振幅深度(DZAA)。在温暖的多年冻土地区,尤其是在多年冻土温度接近0°C的地点,多年冻土的热喇叭曲线通常较窄,而DZAA通常较浅。实际上,在温暖的多年冻土地区观测到的DZAA实际上通常小于7.0 m,而对于三个站点,其小于4.0 m。在低温多年冻土地区,情况则相反:热喇叭曲线通常较宽,而DZAA通常较深。理论和数值分析清楚地表明,永久冻土变暖与DZAA的减少之间存在因果关系。潜热效应正在抑制永冻土温度的升高,并导致狭窄的热喇叭曲线和浅的DZAA。根据观测和数值分析,该研究表明,青藏高原的多年冻土正在经历内部融化,潜热效应对多年冻土的热力状况具有重要意义。由于气候变暖,多年冻土的温度相关调整将促进多年冻土的向下和向上降解。

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