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首页> 外文期刊>Renewable energy >Effects of saturated soil on the lengths of a double U-tube borehole with two independent circuits, a parallel double U-tube borehole and on the power consumption of a GSHP
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Effects of saturated soil on the lengths of a double U-tube borehole with two independent circuits, a parallel double U-tube borehole and on the power consumption of a GSHP

机译:饱和土壤对具有两个独立回路的双U型管井孔,平行的双U型管井孔的长度以及GSHP功耗的影响

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Ground in winter as a heat source can increase the coefficient of performance of the heat pump. However, cost of digging the ground is high. Thermal properties of the soil affect the length of boreholes. The saturated soil of Kerman has a unique potential for establishment of geothermal boreholes. In this paper, the effects of Kerman's saturated soil with freezing and thawing, on lengths of a double U-tube borehole with two independent circuits and a parallel double U-tube borehole have been investigated. Besides, effects of the saturated soil on the power consumption of a solar assisted ground-coupled heat pump system and a conventional ground-coupled heat pump system have been investigated numerically. The results show that the double U-tube borehole with two independent circuits in Kerman's soil comes out 28.6% shorter in length compared with a parallel double U-tube borehole in a conventional soil. Besides, the power consumption of the solar assisted ground-coupled heat pump system in Kerman's soil decreases by 6.1% in comparison with a conventional ground-coupled heat pump in the standard soil. Moreover, it has been shown that the length of the boreholes in the lower thermal conductivity of the soil can be reduced by as much as 35.4%, 40 m. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在冬季将其作为热源可以增加热泵的性能系数。但是,挖地的成本很高。土壤的热特性会影响井眼的长度。克尔曼的饱和土壤具有建立地热钻孔的独特潜力。在本文中,研究了克尔曼饱和土壤的冻融作用对具有两个独立回路的双U型管井眼和平行的双U型管井眼的长度的影响。此外,还对饱和土壤对太阳能辅助地热泵系统和常规地热泵系统的功耗的影响进行了数值研究。结果表明,与传统土壤中的平行双U型管钻孔相比,克尔曼土壤中具有两个独立回路的双U型管钻孔的长度缩短了28.6%。此外,与标准土壤中的传统地面耦合热泵相比,克尔曼土壤中的太阳能辅助地面耦合热泵系统的功耗降低了6.1%。此外,已经表明,在较低的土壤热导率下,钻孔的长度可以减少多达35.4%,即40 m。 (C)2019 Elsevier Ltd.保留所有权利。

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