Affiliation:
1. State Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining & Technology
2. Yunlong Lake Laboratory of Deep Earth Science and Engineering
Abstract
Abstract
Vertical borehole heat exchangers (VBHEs) have been considered to be one of the best sustainable geotechnical technologies for building heating or cooling. In most of the current numerical models for the analysis of VBHE heat transfer, the assumption of subsurface homogeneity is considered. However, the actual subsurface presents a layered structure, and some aquifer groups have groundwater seepage. An improved numerical model is proposed that takes into account not only the coupled condition of groundwater seepage and the layered subsurface but also the heat transfer of VBHEs at different locations, including inside the borehole, borehole wall and outside the borehole. The model is further verified by comparing numerical predictions with in-situ experimental data. The heat transfer characteristic at these different locations under groundwater seepage and layered subsurface coupled condition is investigated. Moreover, the model is applied to investigate the thermal behaviors of VBHE arrays in two typical arrangements (matrix and staggered arrangement). Furthermore, the influence of groundwater seepage in different layers on the heat transfer ability of the VBHE is discussed. The results demonstrate that the model can comprehensively consider the influencing factors inside or outside the borehole, and can reflect the actual geological conditions of the VBHEs.
Publisher
Research Square Platform LLC