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Field test on thermal response characteristics of an energy pile in underground row piles

机译:地下排桩能量桩热响应特性的现场试验

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Underground row piles are usually used in excavation of underground structures and abandoned after structural construction. The heat exchanger tubes embedded in the underground row piles can be severed as energy piles, which can exchange shallow geothermal energy. The construction process of the energy pile in the underground row piles was introduced. Compared with the traditional single energy pile, there is a special characteristic of the energy pile in underground row piles: piles are linked as a whole by the top beam at the top of the row pile. Field tests on the thermal response and thermo-mechanical characteristics of the energy pile in underground row piles were performed. The stable input power of 2.07 kW. The distribution of temperature, strain, and stress of pile body along depth were measured and discussed. It shows that the measured comprehensive thermal conductivity coefficient of soil is 3.72W/(m×K). In the thermo-mechanical analysis after heating, due to the end restrains by the top beam and toe in stiff rock, the rate of thermal stress to temperature change at the top and toe are -0.101 MPa/°C (34% of fully restrain) and -0.061 MPa/°C (20% of fully restrain).
机译:地下排桩通常用于挖掘地下结构并在结构结构后被遗弃。嵌入在地下排桩中的热交换器管可以被切断为能量桩,其可以交换浅层地热能量。介绍了地下排桩中的能量桩的施工过程。与传统的单一能量桩相比,地下排桩中的能量桩具有特殊特性:桩在排桩顶部的顶部梁上作为整体连接。进行现场测试在地下排桩中的能量桩的热响应和热机械特性。 2.07 kW的稳定输入功率。测量并讨论了桩体的温度,应变和应力的分布。它表明,测量的综合导热系数的土壤为3.72W /(m×k)。在加热后的热机械分析中,由于顶梁和脚趾在刚性岩石中的末端限制,顶部和脚趾温度变化的热应力速率为-0.101MPa /°C(34%的完全约束)和-0.061 MPa /°C(占总限制的20%)。

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