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Earth Sciences Research Journal

versão impressa ISSN 1794-6190

Resumo

HOU, Jikun; LUO, Xingqi  e  ZHANG, Lei. Establishment of Evaluation Model for Shallow Geothermal Energy Resource Development Potential Based on Characteristic of Geotemperature. Earth Sci. Res. J. [online]. 2020, vol.24, n.3, pp.317-325.  Epub 24-Abr-2021. ISSN 1794-6190.  https://doi.org/10.15446/esrj.v24n3.89513.

The potential analysis of geothermal energy based on geothermal characteristics requires research of the regional shallow geothermal energy. Then, an evaluation model can be constructed. Taking Weinan City as an example, paper studied the depth and temperature characteristics of the constant zone of subsurface temperature, the vertical variation characteristic of geotemperature, and the horizontal distribution characteristic of geotemperature in Weinan City. Based on the analysis of geotemperature characteristics, the analytic hierarchy process was used to construct the zoning evaluation system of the suitability of ground source, groundwater source, and surface water source. Then, the suitability of Weinan city was comprehensively zoned by the zoning evaluation system. The heat capacity and heat-exchange power of the heat pump system at the groundwater source were calculated based on the zoning results, and the heat-exchange power of the ground-coupled heat pump was obtained. According to the evaluation index, the development potential of shallow geothermal energy resources was evaluated. It can be seen that the heat pump system has great potential for heating in winter and cooling in summer through the experimental analysis model applied in this paper. The area is 50.79 km2. The area of the potential middle region of the buried pipe heat pump is 135.74 km2, and the potential of the pump system is low. The possible area of the ground source heat pump is 82.14 km2. Upon comparing the model results with the current results, it was found that the consistency between the two is high.

Palavras-chave : Geothermal characteristics; Shallow layer; Geothermal energy; Resource development; Potential evaluation; Model construction.

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