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首页> 外文期刊>Geothermics >CO2 injection for heat extraction and carbon sequestration in a geothermal site: Huizhou Sag, the Pearl River Mouth Basin
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CO2 injection for heat extraction and carbon sequestration in a geothermal site: Huizhou Sag, the Pearl River Mouth Basin

机译:注入二氧化碳用于地热站点的热提取和碳固存:珠江口盆地惠州凹陷

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摘要

Recently more attention has been paid to CO2 geological storage combined with geothermal water recovery (CO2-EWR). In this regard, the production performance of a geothermal site in Huizhou Sag was evaluated. In the process of evaluation, a new technology in which cold water is injected through the tubing and CO2 through the annulus is used and simulated. In this study, a conceptual model was established by coupling the wellbore and the geothermal reservoir according to the field exploration data. The power production performance was evaluated by using the output from the wellbore-reservoir coupled simulation. The numerical simulation outputs showed a temperature difference of approximately 5.5 degrees C from well bottom to wellhead at the beginning. The 3D-visualization of CO2 distribution demonstrates two steps of migration, vertical migration and horizontal spreading. It was also found that injecting water above CO2 plays a significant role in preventing rising of CO2 "bubble" in the early stages of injection process. The results of thermodynamic simulations suggests the desired thermal production efficiency and gross power output could be obtained. In addition, the impact of various parameters on simulation results were investigated and analyzed, the analysis results provided a better understanding of CO2-EWR (CO2 geological storage enhanced with geothermal resources recovery) technology as well as practical perforation depth of the wells. (C) 2016 Elsevier Ltd. All rights reserved.
机译:近来,人们对结合地热水回收(CO2-EWR)的二氧化碳地质封存给予了更多关注。对此,对惠州凹陷地热场的生产性能进行了评估。在评估过程中,使用并模拟了一种新技术,该技术通过管道注入冷水,并通过环空注入二氧化碳。在这项研究中,根据野外勘探数据,通过结合井筒和地热储层建立了一个概念模型。通过使用井眼-储层耦合模拟的输出来评估发电性能。数值模拟输出显示,在开始时从井底到井口的温度差约为5.5摄氏度。 CO2分布的3D可视化展示了迁移的两个步骤,即垂直迁移和水平扩散。还发现在注入过程的早期阶段,向CO2上方注入水在防止CO2“气泡”上升方面起着重要作用。热力学模拟的结果表明可以获得所需的热生产效率和总功率输出。此外,还对各种参数对模拟结果的影响进行了调查和分析,分析结果使人们对CO2-EWR(利用地热资源回收技术提高CO2地质储量)技术以及井的实际射孔深度有了更好的了解。 (C)2016 Elsevier Ltd.保留所有权利。

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