首页> 外文期刊>Frontiers in energy >Wenjiong CAO, Wenbo HUANG, Guoling WEI, Yunlong JIN, Fangming JIANG A numerical study of non-Darcy flow in EGS heat reservoirs during heat extraction
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Wenjiong CAO, Wenbo HUANG, Guoling WEI, Yunlong JIN, Fangming JIANG A numerical study of non-Darcy flow in EGS heat reservoirs during heat extraction

机译:wen囧c AO, wen博Huang, GU O令Wei, Y UN龙jin, fan G命Jiang A numerical study of non-Darcy发咯wine GS heat reservoirs during heat extraction

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摘要

Underground non-Darcy fluid flow has been observed and investigated for decades in the petroleum industry. It is deduced by analogy that the fluid flow in enhanced geothermal system (EGS) heat reservoirs may also be in the non-Darcy regime under some conditions. In this paper, a transient 3D model was presented, taking into consideration the non-Darcy fluid flow in EGS heat reservoirs, to simulate the EGS long-term heat extraction process. Then, the non-Darcy flow behavior in water- and supercritical CO2 (SCCO2)-based EGSs was simulated and discussed. It is found that non-Darcy effects decrease the mass flow rate of the fluid injected and reduce the heat extraction rate of EGS as a flow resistance in addition to the Darcy resistance which is imposed to the seepage flow in EGS heat reservoirs. Compared with the water-EGS, the SCCO2-EGS are more prone to experiencing much stronger non-Darcy flow due to the much larger mobility of the SCCO2. The non-Darcy flow in SCCO2- EGSs may thus greatly reduce their heat extraction performance. Further, a criterion was analyzed and proposed to judge the onset of the non-Darcy flow in EGS heat reservoirs. The fluid flow rate and the initial thermal state of the reservoir were taken and the characteristic Forchheimer number of an EGS was calculated. If the calculated Forchheimer number is larger than 0.2, the fluid flow in EGS heat reservoirs experiences non-negligible non-Darcy flow characteristic.
机译:在石油工业中已经观察和研究了地下非达西流体流动。通过类推可以推断,在某些条件下,增强型地热系统(EGS)储热器中的流体流动也可能处于非达西状态。本文提出了一个瞬态3D模型,其中考虑了EGS热库中的非达西流体流动,以模拟EGS长期吸热过程。然后,对基于水和超临界CO2(SCCO2)的EGS中的非达西流动行为进行了仿真和讨论。发现非达西效应降低了注入流体的质量流速,并降低了EGS除作为对EGS储热器中的渗流所施加的达西阻力之外的流动阻力,从而降低了EGS的吸热率。与水EGS相比,由于SCCO2的流动性大,因此SCCO2-EGS更倾向于经历更强的非达西流动。因此,SCCO2-EGS中的非达西流动可能会大大降低其排热性能。此外,分析并提出了一个标准来判断EGS热库中非达西流的开始。记录了储层的流体流速和初始热状态,并计算了EGS的特征Forchheimer数。如果计算出的Forchheimer数大于0.2,则EGS热库中的流体流将经历不可忽略的非达西流动特性。

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