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Using Air Convection Ducts to Control Permafrost Degradation Under Road Infrastructure: Beaver Creek Experimental Site, Yukon, Canada

机译:使用空气对流管道控制道路基础设施下的多年冻土退化:加拿大育空,海狸溪实验场

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Thermal degradation of permafrost under road infrastructure regularly results in thaw settlement and severe structural damages. The present study discusses the results obtained by the implementation of a mitigation technique at a test section along the Alaska Highway near the Alaska-Yukon border (Beaver Creek). The objective of this study was to test possible way to slow down or prevent permafrost degradation under road embankment. Longitudinal air convection duct is a heat exchanger device based on fluid mechanics allowing for extraction of heat from the embankment by natural convective heat transfers during winter. Thermal analysis of the air temperature inside the ducts indicated that there was a strong thermal gradient between the inlets and the outlets, with air temperatures being 6 to 10°C higher at the outlet than at in the inlet of the ducts. The cooling effect of the air convection duct system elevated the permafrost table by about 1 m over 3 years. This indicates that air convection ducts have a very good potential for heat extraction within road embankment and the underlying permafrost. This technique will likely find rapid applications in the engineering community aiming to develop adaptation strategies to climate warming for road infrastructure.
机译:道路基础设施下永久冻土的热降解通常导致融化沉降和严重的结构破坏。本研究讨论了通过在阿拉斯加-育空边界(海狸溪)附近的阿拉斯加公路沿线的试验段实施缓解技术获得的结果。这项研究的目的是测试减缓或防止路堤下多年冻土退化的可能方法。纵向空气对流导管是一种基于流体力学的换热器设备,可在冬季通过自然对流换热从路堤中提取热量。对导管内部空气温度的热分析表明,入口和出口之间存在很强的热梯度,出口处的空气温度比导管入口处的温度高6至10°C。空气对流管道系统的冷却效果在3年中使多年冻土台面增加了约1 m。这表明空气对流管道在路堤和下面的永久冻土中具有很好的吸热潜力。这项技术可能会在工程界迅速应用,旨在为道路基础设施开发适应气候变暖的适应策略。

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