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Induced thermal compaction in cohesive sediments around a borehole heat exchanger: laboratory tests on the effect of pore water salinity

机译:钻孔换热器周围粘性沉积物中的热致密化:孔隙水盐度影响的实验室测试

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In closed-loop geothermal systems, the operation of a Borehole Heat Exchanger (BHE) affects the thermal equilibrium of the surrounding subsoil. This study was part of a large laboratory program undertaken to understand how the cyclic thermal stress induced by a BHE in the subsoil can change sediments' mechanical properties, if the BHE works in extreme running conditions which induce both freeze-thaw cycles and heating processes in the ground. This paper presents the results from an experimental laboratory investigation on the effects of different pore water salinity concentrations on the vertical strain induced in a thermally loaded silty clay. The considered study case is the historical center of Venice (Italy), which provides an example of typical conditions of densely urbanized areas inserted in coastal or transitional environments, with abundance of cohesive layers and brackish conditions in the subsoil. Results show that the irreversible compaction effect induced on sediments increases with higher salinity concentration, despite the fact that increasing salt content lowers the sediment freezing point, thereby protecting the soil from freezing processes.
机译:在闭环地热系统中,钻孔热交换器(BHE)的运行会影响周围地下土壤的热平衡。这项研究是一项大型实验室计划的一部分,旨在了解BHE在底土中引起的循环热应力如何改变沉积物的机械性能(如果BHE在极端运行条件下工作,而这种条件会引起冻融循环和加热过程)。地面。本文介绍了实验性实验室研究的结果,这些研究结果是不同孔隙水盐度浓度对热加载粉质粘土中引起的垂直应变的影响。所考虑的研究案例是威尼斯(意大利)的历史中心,它提供了一个典型的例子,说明在沿海或过渡环境中插入人口稠密的城市化地区的典型条件,并且在地下土壤中有大量的粘结层和咸淡的条件。结果表明,尽管盐分含量的增加会降低沉积物的凝固点,但随着盐分浓度的升高,对沉积物的不可逆压实作用也会增加,从而保护了土壤免受冻结过程的影响。

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