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Numerical investigation of the performance of group of geothermal energy piles in unsaturated sand

机译:不饱和沙子群地热能桩性能的数值研究

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The use of foundation structures (piles) coupled to a heat pump system, commonly referred to as geothermal energy pile (GEP) system, provides a renewable energy solution of achieving space heating and cooling in buildings; whilst also being utilised for the structural stability of the overlying structures. The system operates by exchanging the low-grade heat energy within the shallow earth surface with the building, via the circulation of heat carrier fluid enclosed in a high-density polyethylene plastic pipes. In summer, heat energy is extracted from the building and transferred into the ground to achieve space cooling. While in winter, the ground heat energy is harnessed and transferred to the building to achieve sustainable space heating. This paper investigates the thermal performance of group of GEP system under the effects of different initial soil pore water content. Through the five-year simulation’s period, it was found that the increase in soil pore water content decreases the possibility of thermal interaction between the GEPs in the group. Also, it was observed that the trend in maximum temperature witnessed within the soil domain decreases nonlinearly during the five years period.
机译:使用基础结构(桩)耦合到热泵系统,通常称为地热能桩(GEP)系统,提供了可再生能源解决方案的可再生能源解决方案,实现了建筑物的空间加热和冷却;虽然也用于覆盖结构的结构稳定性。通过在高密度聚乙烯塑料管中的热载体流体的循环在建筑物中与建筑物交换浅地球表面内的低级热能来操作。在夏季,从建筑物中提取热能并转移到地面以实现空间冷却。在冬季,地面热能被利用并转移到建筑物中以实现可持续的空间加热。本文研究了不同初始土壤孔隙水含量的影响下GEP系统的热性能。通过五年的模拟期,发现土壤孔隙水含量的增加降低了该组的GEP之间热相互作用的可能性。此外,观察到,在五年期间,土壤结构域内的最高温度的趋势降低了。

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