首页> 外文期刊>Mathematical Problems in Engineering >Recoverable Resource Prediction of Shallow Geothermal Energy in Small Towns Using the Finite Volume Method: Taking the Central Urban Area of Danyang City, Jiangsu Province, as an Example
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Recoverable Resource Prediction of Shallow Geothermal Energy in Small Towns Using the Finite Volume Method: Taking the Central Urban Area of Danyang City, Jiangsu Province, as an Example

机译:基于有限体积法的小城镇浅层地热能可采资源量预测-以江苏省丹阳市中心城区为例

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The ground-coupled ground-source heat pump (GSHP) system is a common method for shallow geothermal energy exploitation and utilization. GSHP has a great heat exchange rate and wide application range. In order to effectively exploit shallow geothermal energy in the central urban area of Danyang City, Jiangsu Province, based on finite volume method, it is adopted to simulate the amount of recoverable shallow geothermal energy in the study area through ground-coupled heat exchange. The simulation is conducted on the development trend of thermal transport and thermal balance in the study area from early June 2015 to the end of May 2025 to obtain the temperature distribution at different times. Under the presupposed working conditions, with the operation of a ground-coupled GSHP, thermal accumulation occurs in parts of the study area. To mitigate the problem of thermal accumulation, two schemes are proposed: (1) adding auxiliary cooling towers and (2) increasing the amount heated domestic water in spring and autumn. Both schemes mitigate thermal accumulation. For Scheme1, the total heat supply for shallow geothermal energy in the central urban area of Danyang City in winter is 2.91 x 10(6)kW, and the total heat release in summer is 3.53 x 10(6)kW. For Scheme2, the total heat release in summer is 3.52 x 10(6)kW and the total heat supply in winter is 2.90 x 10(6)kW. A ground-coupled GSHP system has significant applicability in the central urban area of Danyang City, where shallow geothermal energy has good exploitation prospects.
机译:地面耦合地源热泵(GSHP)系统是浅层地热能开发利用的常用方法。 GSHP具有很高的热交换率和广泛的应用范围。为了有效利用江苏省丹阳市中心城区的浅层地热能,采用有限体积法,通过地面耦合热交换模拟研究区可回收浅层地热能的数量。对研究区从2015年6月上旬到2025年5月下旬的热传输和热平衡的发展趋势进行了模拟,以获取不同时间的温度分布。在预设的工作条件下,通过接地耦合GSHP的运行,研究区域的某些部分会发生热量积聚。为了缓解热量积聚的问题,提出了两种方案:(1)增加辅助冷却塔;(2)增加春季和秋季的生活热水量。两种方案都减轻了热累积。对于方案1,丹阳市中心城区冬季浅层地热能的总热量供应为冬季2.91 x 10(6)kW,夏季总热量释放为3.53 x 10(6)kW。对于方案2,夏季的总热量释放为3.52 x 10(6)kW,冬季的总热量供应为2.90 x 10(6)kW。地面耦合地源热泵系统在丹阳市中心城区具有很强的适用性,那里的浅层地热能具有良好的开发前景。

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