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Applicability evaluation of cast-in-place energy piles based on two-year heating and cooling operation

机译:基于两年加热和冷却操作的铸造能源桩的适用性评价

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摘要

An energy pile is a type of ground heat exchanger (GHEX) that can reduce the initial construction cost by being installed in the existing foundation structure (i.e., pile). However, despite economic benefits, energy piles have not been globally employed owing to a lack of construction cases and appropriate design methods. Therefore, in this study, a design method applicable to large-diameter cast-in-place energy piles was developed and verified by conducting long-term monitoring on the heating and cooling operation. In addition, to evaluate the applicability of the cast-in-place energy piles, their thermo-mechanical behaviors and economic feasibility were analyzed using the long-term monitoring results. Although degradation of thermal performance and significant changes in the ground temperature were observed in the heating operation, it was concluded that the proposed design method could provide reliable design outcomes. The maximum thermal stress was estimated to be 2.38 MPa during the long-term monitoring, which is approximately 8.5% of the design strength criterion for cast-in-place concrete. Finally, compared with a conventional closed-loop vertical GHEX, the cast-in-place energy piles could reduce the initial investment cost by 25.31%, and the investment payback period was evaluated to be 1.61 years.
机译:能量桩是一种类型地热交换器(GHEX),其可以通过被安装在现有的基础结构(即,桩)降低初始建设成本。然而,尽管经济效益,能源柱还没有在全球范围,由于缺乏建设情况和相应的设计方法中。因此,在该研究中,适用于大直径的设计方法铸造到位的能量桩被开发并通过进行长期监视在加热和冷却操作进行验证。此外,评估投就地能量桩的适用性,他们的热机械行为和使用的长期监测结果进行分析经济上的可行性。虽然在加热操作中观察到的热性能,并在地面温度显著变化降解,可以得出结论,提出的设计方法能够提供可靠的设计结果。最大热应力估计的长期监测,这是浇铸的现浇混凝土设计强度标准的约8.5%时为2.38兆帕。最后,与传统的闭环垂直GHEX相比,投就地能量桩可以通过25.31%,降低了初始投资成本,投资回收期被评价为1.61年。

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