Determination of optimal designs for geothermal energy piles in the soil supporting a multi-storey building

B. Zlender, P. Jelušič
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Abstract

The article presents the optimal design of geothermal energy piles supporting a multi-story building at different pile spacing. The optimization model OPTPILE, based on the construction cost of the single pile, was used for this purpose. It was provided with geotechnical and structural design constraints that satisfy the requirements of building codes. The optimal design of a geothermal energy pile was studied for a 10-storey building with different pile spacing. So far, only a single energy pile has been optimized and therefore the spacing between the piles has not yet been considered in the design. However, in this work, pile spacing is taken into account by considering the entire load distribution of the multi-story building. A 3D beam-slab frame was created to determine the pile loads. The recommendation for the optimal design of geothermal energy pile spacing for a 10-storey building was developed. The results show that the optimal pile spacing (square distribution) for a 10-storey building is about 7 m. The construction cost for all thermal pile foundations and concrete structural components for a 10-storey building is estimated to be 101.1 €/m2. The optimal architecturally reasonable spacing of piles with a square distribution for a 10-storey building is 8.5 m. In this case, the cost of the concrete structural elements of the building and the piles increases by 1% to 102.1 €/m2. The cost of installing the heating pipes in the pile is about 1 €/m2.
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多层建筑土中地热能桩优化设计的确定
本文介绍了不同桩距下支撑多层建筑的地热能桩的优化设计。为此,采用基于单桩施工成本的优化模型OPTPILE。它具有满足建筑规范要求的岩土和结构设计约束。以某10层建筑为研究对象,对不同桩间距的地热能桩进行优化设计。到目前为止,只对单个能源桩进行了优化,因此在设计中还没有考虑桩间距。然而,在本工作中,考虑了多层建筑的整体荷载分布,同时考虑了桩间距。建立了三维梁-板框架来确定桩荷载。提出了10层建筑地热能桩间距优化设计建议。结果表明,10层建筑的最优桩间距(方分布)约为7 m。一座10层建筑的所有热桩基础和混凝土结构部件的施工成本估计为101.1欧元/平方米。10层建筑的最佳桩间距为8.5 m,桩间距为方形分布。在这种情况下,建筑的混凝土结构元件和桩的成本增加了1%,达到102.1欧元/平方米。在桩内安装供热管道的费用约为1€/m2。
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