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The influence of temperature on shear strength at a soil-structure interface

机译:温度对土结构界面剪切强度的影响

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Thermal heat exchanger piles combine the requirements of a traditional pile foundation with the energy harvesting/dissipating potential of a ground source heat pump. Such installations are becoming increasingly popular as a means of reducing the energy demands of buildings. Behaviour of the soil-pile interface is central to predicting the shear response of floating piles; yet understanding of the effects of thermal loading on soil-structure interaction remains uncertain. In this paper, heated interface shear tests have conducted using a specially adapted direct shear apparatus; to mimic the behaviour of a thermal pile interface. Testing was undertaken at various over-consolidationratios, normal stresses and temperatures. This investigation observed the interface friction angle to remain unaffected by heating until its thermal yield is reached and thermal consolidation takes place, at which point there is a reduction in the friction angle which remains when the soil is cooled. There is also an observed increase in apparent adhesion at the interface in response to heating which also remains after cooling.
机译:热换热器桩将传统桩基的要求与地源热泵的能量收集/散热潜力相结合。这种装置越来越受到降低建筑物能源需求的手段。土桩界面的行为是预测浮桩剪切响应的核心;然而,了解热负荷对土结构相互作用的影响仍然不确定。在本文中,采用特殊适应的直接剪切装置进行了加热的界面剪切试验;模拟热绒桩界面的行为。测试在各种过度整理,正常应力和温度下进行。该研究观察到界面摩擦角以保持不受加热的影响,直到达到其热率并且热固结发生,此时存在摩擦角度的减少,摩擦角仍然存在于土壤被冷却时。响应于加热后,还存在在界面上观察到的表观粘附性增加,冷却后也保持。

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