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Enhancing geothermal power generation from abandoned oil wells with thermal reservoirs

机译:利用储油库提高废弃油井的地热发电

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Using abandoned oil wells for geothermal power generation can relieve energy problem, save drilling cost, and govern the pollution caused by the residual oil of the abandoned oil wells. In this paper, a novel method for enhancing the geothermal utilization efficiency by developing thermal reservoirs is presented. A 2-D thermal reservoirs coupling with 1-D wellbore heat transfer model was set up to simulate geothermal energy production, and the effects of the thermal reservoirs on the geothermal production and electric power output were analyzed. The study results showed that the geothermal well with thermal reservoirs could produce about 4 times the heat and electric power output as that without thermal reservoirs. Moreover, the thermal reservoirs parameters would impact the heat production and power generation significantly. Especially, the heat production and electric power output increased with the thermal reservoirs depth and the fluid injection rate, however increased with the thermal reservoirs length firstly, and then decreased, which indicated that there was a maximal heat production and power generation at an optimal reservoir length. Simultaneously, the fluid loss in the thermal reservoirs increased with the thermal reservoirs depth and length as well as thermal reservoirs porosity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用废弃的油井进行地热发电可以缓解能源问题,节省钻井成本,并控制废弃油井的残留油造成的污染。本文提出了一种通过开发储层提高地热利用效率的新方法。建立了与一维井筒换热模型耦合的二维储层,模拟了地热能的产生,并分析了该储层对地热产能和电力输出的影响。研究结果表明,具有热储层的地热井所产生的热量和电力输出约为不具有热储层的地热井的四倍。而且,储热器参数将显着影响热量产生和发电。尤其是,热量和功率输出随蓄热器深度和流体注入速率的增加而增加,但随着蓄热器长度的增加先增大,然后减小,这表明在最佳蓄热器中有最大的热量产生和发电量。长度。同时,储层中的流体损失随着储层的深度和长度以及储层孔隙度的增加而增加。 (C)2016 Elsevier Ltd.保留所有权利。

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