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A practical method for calculating thermally-induced stresses in pile foundations used as heat exchangers

机译:用于计算用作热交换器的桩基中的热诱导应力的实用方法

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摘要

Thermo-active piles are capable of providing both structural stability as foundations and low carbon heating and cooling as ground source heat exchangers. When subjected to heating or cooling, the soil surrounding the pile restricts its expansion or contraction, giving rise to thermally-induced axial stresses, which need to be considered during design. Previous numerical studies often assume axisymmetry of the problem and/or a simplification of the heating or cooling mechanism of the pile. To simulate accurately the development of thermally-induced axial stresses, this paper presents a computational study comprising three-dimensional fully coupled thermo-hydromechanical finite element analyses conducted using the Imperial College Finite Element Program (ICFEP), where the heating of a thermo-active pile is simulated by prescribing a flow of hot water through the heat exchanger pipes within the pile. The effects of pipe arrangement on thermally-induced axial stresses are investigated by considering three different cases - single U-loop, double U-loop and triple U-loop. Since three-dimensional analyses are computationally expensive, a simplified method using a combination of two-dimensional analyses is proposed to estimate the thermally-induced axial stresses, which is subsequently validated and shown to yield accurate results.
机译:热活性桩能够以基础和低碳加热和冷却为基础源热交换器提供结构稳定性。当经过加热或冷却时,围绕桩周围的土壤限制了其膨胀或收缩,从而引起了热引起的轴向应力,这在设计期间需要考虑。以前的数值研究通常占据问题的轴对称和/或简化桩的加热或冷却机构。为了精确地模拟热引起的轴向应力的发展,本文介绍了使用帝国院有限元(ICFEP)进行的三维全耦合的热机电机械有限元分析,其中热活跃的加热通过规定通过桩内的热交换器管道进行热水的流动模拟桩。通过考虑三种不同的情况,研究了管道布置对热感应轴向应力的影响 - 单个U形环,双U形环和三重U圈。由于三维分析是计算昂贵的,所以提出了一种使用二维分析组合的简化方法来估计热感应的轴向应力,随后被验证并显示为产生准确的结果。

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