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河间潜山地热资源开发方案数值模拟
引用本文:丁蕊,朱传庆,曹倩,方朝合,杨亚波,江晓雪.河间潜山地热资源开发方案数值模拟[J].地球学报,2023,44(1):248-256.
作者姓名:丁蕊  朱传庆  曹倩  方朝合  杨亚波  江晓雪
作者单位:中国石油大学(北京)地球科学学院;中国石油大学(北京)油气资源与探测国家重点实验室;中国石油勘探开发研究院
基金项目:国家自然科学基金“渤海湾盆地挽近时期构造-热演化与有效热源机制”(编号: 42172334);国家重点研发计划课题“中国东部挽近时期热体制与深层高温地热聚集模式”(编号: 2021YFA0716003)
摘    要:古潜山地热资源具备岩溶孔隙发育程度高、热储面积厚度大、地热水储量大的优点。冀中坳陷内古潜山分布密集且地热资源丰富, 河间潜山位于冀中坳陷饶阳凹陷中东部, 具有良好的地热地质条件, 开发潜力巨大。本文基于河间潜山及其周缘地区测井资料、岩石热物性并进行了计算, 发现其地温梯度为29.8 ℃/km到44.5 ℃/km之间, 平均值为40.7 ℃/km。大地热流值介于64.8~80.6 mW/m2之间, 平均值为 73.4 mW/m2。通过水热耦合模拟方法模拟选定的地热资源有利区的温度变化, 结果发现河间潜山合理的开采井距为800 m, 合理开采量为60 L/s, 回灌温度为35 ℃, 总可开采量为6.32×1016 J, 单年可开采量为 6.32×1014 J, 可供暖面积为1.22×106 m2, 对于冀中坳陷潜山地热资源的开发利用具有一定的指导意义。

关 键 词:地热资源开发    数值模拟    地温场    潜山    河间

Numerical Simulation of Buried Hill Geothermal Resources Exploitation in Hejian Area
DING Rui,ZHU Chuan-qing,CAO Qian,FANG Chao-he,YANG Ya-bo,JIANG Xiao-xue.Numerical Simulation of Buried Hill Geothermal Resources Exploitation in Hejian Area[J].Acta Geoscientia Sinica,2023,44(1):248-256.
Authors:DING Rui  ZHU Chuan-qing  CAO Qian  FANG Chao-he  YANG Ya-bo  JIANG Xiao-xue
Institution:College of Geosciences, China University of Petroleum (Beijing);State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing);PetroChina Research Institute of Petroleum Exploration & Development
Abstract:Buried hill geothermal reservoirs have the advantages of large heat reservoirs and thickness, developed pores and cracks, and abundant geothermal water resources. The buried hills in the Jizhong depression are densely distributed and rich in geothermal resources. Hejian buried hill is located centrally to the east of Raoyang Sag in the Jizhong depression. The study area has excellent geothermal geological conditions and high potential for development and utilization. Logging data and thermophysical properties of rocks in the Hejian buried hill and its surrounding areas reveal that the present-day geothermal gradient ranges from 29.8 °C/km to 44.5 °C/km, with an average of 40.7 °C/km, and the terrestrial heat flow ranges from 64.8 mW/m2 to 80.6 mW/m2, with an average of 73.4 mW/m2. Based on the favorable areas of geothermal resources development, the temperature changes in the reservoir during geothermal reinjection are simulated using the hydrothermal coupled method to study optimization of exploitation operation. The reasonable distance between the production and rejection wells is 800 m, production mass flow rate is 60 L/s, reasonable reinjection water temperature is 35 °C, total production is 6.32×1016 J, annual production is 6.32×1014 J, and the annual geothermal resource can meet the indoor heating demand of 1.22×106 m2. This has guiding significance for the development and utilization of buried hill geothermal resources in the Jizhong Depression.
Keywords:exploitation of geothermal resources  numerical simulation  geothermal field  buried hill  Hejian area
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