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Experimental investigation of the hydraulic and heat-transfer properties of artificially fractured granite

机译:人工压裂花岗岩水力和传热性能的实验研究

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摘要

In this paper, the hydraulic and heat-transfer properties of two sets of artificially fractured granite samples are investigated. First, the morphological information is determined using 3D modelling technology. The area ratio is used to describe the roughness of the fracture surface. Second, the hydraulic properties of fractured granite are tested by exposing samples to different confining pressures and temperatures. The results show that the hydraulic properties of the fractures are affected mainly by the area ratio, with a larger area ratio producing a larger fracture aperture and higher hydraulic conductivity. Both the hydraulic apertureand the hydraulic conductivity decrease with an increase in the confining pressure. Furthermore, the fracture aperture decreases with increasing rock temperature, but the hydraulic conductivity increases owing to a reduction of the viscosity of the fluid flowing through. Finally, the heat-transfer efficiency of the samples under coupled hydro-thermal-mechanical conditions is analysed and discussed.
机译:本文研究了两组人造裂缝花岗岩样品的水力和传热性能。首先,使用3D建模技术确定形态信息。面积比用于描述断裂表面的粗糙度。其次,通过将样品置于不同的围压和温度下,测试了破裂花岗岩的水硬性。结果表明,裂缝的水力特性主要受面积比的影响,面积比越大,裂缝的孔径越大,导水率越高。随着围压的增加,水力孔和水力传导率均减小。此外,裂缝直径随着岩石温度的升高而减小,但是由于流经的流体的粘度降低,因此水力传导率增大。最后,分析和讨论了在水热力耦合条件下样品的传热效率。

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