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Effects of climatic variability on the active layer and permafrost.

机译:气候变化对活动层和多年冻土的影响。

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This thesis represents a collection of papers on the response of the active layer and permafrost to climatic variations on different time scales.; Quantitative estimates of the amplitudes of the Milankovich rhythms in several regions of the Russian permafrost zone were used in numerical simulations of permafiost dynamics. The results of modeling explained many aspects of the permafrost distribution and its vertical structure within Russia.; Spatial and temporal variability of the air, ground surface and permafrost temperatures were also analyzed using daily temperature data (upper 0.9 m) from 1986-1993 and results of annual temperature measurements in boreholes (nominally 60 m) from 1983-1995 at three sites in the Prudhoe Bay region of Alaska.; Three numerical models which are based on different numerical methods and are used for calculations of the ground thermal regime were compared with each other, with analytical solutions, and with temperature data. Several approximate analytical solutions for the temperature regime and thickness of the active layer were introduced.; The calculations were used to estimate the interannual variability of the thermal properties of soils which appear to be a result of interannual variations of the average water content during the summer in the upper part of the active layer. Precise temperature data together with computer modeling provided essential new information on dynamics of unfrozen water content in the ground in natural undisturbed conditions during freezing and the subsequent cooling of the active layer. A layer with unusually large unfrozen water content was found to exist at the depth of freeze-up.; The same set of data was used to reconstruct daily permafrost temperatures from 1986-1993 for all depths down to 55 m. Mean annual temperature profiles for each year of 1987-1992 show significant interannual variations within the upper 40 m in a good agreement with published data.; A numerical model of the temperature field in permafrost near its southern limits was developed to study the influence of short-term climatic variations (with periods of 300 and 90 years) on permafrost dynamics.
机译:本论文代表了一系列有关活性层和多年冻土对不同时间尺度上气候变化的响应的论文。在俄罗斯多年冻土带的数值模拟中,使用了俄罗斯多年冻土带多个区域中Milankovich节奏振幅的定量估计。建模结果解释了俄罗斯境内多年冻土分布及其垂直结构的许多方面。还使用1986-1993年的日温度数据(最高0.9 m)和1983-1995年的三个地点的井眼(标称60 m)的年温度测量结果,分析了空气,地面和多年冻土温度的时空变化。阿拉斯加的普拉德霍湾地区。分别将三种基于不同数值方法并用于计算地热状态的数值模型,解析解和温度数据进行了比较。介绍了几种有关温度范围和有源层厚度的近似解析解。该计算用于估算土壤热学特性的年际变化,这似乎是活动层上部夏季平均水含量年际变化的结果。精确的温度数据与计算机建模一起提供了有关冻结和随后冷却活性层的自然不受干扰条件下地下未冻结水分动态的重要新信息。发现在冻结深度存在未冻结水含量异常大的层。使用同一组数据重建了1986-1993年低至55 m的所有深度的多年冻土日温度。 1987-1992年每年的年平均温度曲线显示,在上40 m内年际变化很大,与已公布的数据吻合良好。建立了一个位于其南部极限附近的多年冻土温度场的数值模型,以研究短期气候变化(周期为300和90年)对多年冻土动力学的影响。

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