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Permafrost Degradation and Subsidence Observations during a Controlled Warming Experiment

机译:受控变暖实验中的多年冻土降解和沉降观测

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摘要

Global climate change has resulted in a warmer Arctic, with projections indicating accelerated modifications to permafrost in the near future. The thermal, hydrological, and mechanical physics of permafrost thaw have been hypothesized to couple in a complex fashion but data collection efforts to study these feedbacks in the field have been limited. As a result, laboratory and numerical models have largely outpaced field calibration datasets. We present the design, execution, and initial results from the first decameter-scale controlled thawing experiment, targeting coupled thermal/mechanical response, particularly the temporal sequence of surface subsidence relative to permafrost degradation at depth. The warming test was conducted in Fairbanks, AK, and utilized an array of in-ground heaters to induce thaw of a ~11 × 13 × 1.5 m soil volume over 63 days. The 4-D temperature evolution demonstrated that the depth to permafrost lowered 1 m during the experiment. The resulting thaw-induced surface deformation was ~10 cm as observed using a combination of measurement techniques. Surface deformation occurred over a smaller spatial domain than the full thawed volume, suggesting that gradients in cryotexture and ice content were significant. Our experiment provides the first large field calibration dataset for multiphysics thaw models.
机译:全球气候变化导致北极变暖,预测表明在不久的将来加速了永久冻土的改变。多年冻土融化的热,水文和机械物理被假设以复杂的方式耦合,但是研究该领域反馈的数据收集工作受到限制。结果,实验室和数值模型大大超过了现场校准数据集。我们介绍了第一个十米级可控解冻实验的设计,执行和初步结果,这些实验针对的是热/机械耦合响应,特别是相对于深部多年冻土退化的地面沉降的时间序列。在堪萨斯州的费尔班克斯进行了升温试验,并利用一系列地下加热器在63天的时间内解冻了约11××13××1.5μm的土壤。 4-D温度演变表明,在实验过程中,永久冻土的深度降低了1μm。使用多种测量技术观察到的结果是,融化引起的表面变形约为10 cm。表面变形发生在比完整解冻体积小的空间区域上,这表明低温纹理和冰含量的梯度很明显。我们的实验为多物理场解冻模型提供了第一个大场校准数据集。

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