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Effect of End-Restraint Conditions on Energy Pile Behavior

机译:约束条件对能量桩行为的影响

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Energy piles are deep foundation elements designed to utilize the relatively constant temperature of the ground for efficient heating and cooling of the buildings while at the same time serve as foundations. The temperature changes during the operation of energy piles result in axial displacements, a part of which is restrained by the surrounding soil or the building on top. The restrained part of the axial displacements induces compressive stresses during temperature increase and tensile stresses during temperature decrease along energy piles. Moreover, the unrestrained part of the displacement results in changes in the mobilized shaft resistance, which need to be taken into consideration during design of energy piles. With the aim of quantifying these effects, a series of full-scale field tests on three energy piles with different end-restraint conditions was carried out in Richmond, TX. The field test program included conventional pile load tests and application of temperature. Temperature changes were applied to the test piles with and without maintained mechanical loads to investigate the effects of structural loads on energy piles. Moreover, the lengths of the test piles were determined to represent different end-restraint conditions at the toe. In this paper, a comparison of the thermally induced axial stresses and mobilized shaft resistance of two identical, end-bearing test piles with and without maintained mechanical loads are presented along with the details from the full-scale field test.
机译:能量桩是深层的地基元素,旨在利用地面的相对恒定温度对建筑物进行有效的加热和冷却,同时充当地基。能量堆运行期间的温度变化导致轴向位移,其中一部分受到周围土壤或顶部建筑物的限制。轴向位移的约束部分沿着能量堆在温度升高期间引起压缩应力,而在温度降低期间引起拉伸应力。此外,位移的不受约束的部分导致动轴阻力的变化,这在能量堆的设计中需要考虑。为了量化这些影响,在德克萨斯州里士满市对三个具有不同最终约束条件的能量桩进行了一系列的全面现场测试。现场测试程序包括常规桩载荷测试和温度施加。将温度变化应用于承受和不承受机械载荷的试验桩,以研究结构载荷对能量桩的影响。此外,确定测试桩的长度以代表脚趾处的不同最终约束条件。在本文中,比较了两个相同的带有和不带有机械载荷的端承式测试桩的热诱导轴向应力和动轴阻力,并进行了全面实地测试的细节。

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