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Cloud-fracture networks as a means of accessing superhot geothermal energy

机译:云裂隙网络作为获取过热地热能的一种手段

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Superhot geothermal environments (above ca. 400?°C) represent a new geothermal energy frontier. However, the networks of permeable fractures capable of storing and transmitting fluids are likely to be absent in the continental granitic crust. Here we report the first-ever experimental results for well stimulation involving the application of low-viscosity water to granite at temperatures ≥400?°C under true triaxial stress. This work demonstrates the formation of a network of permeable microfractures densely distributed throughout the entire rock body, representing a so-called cloud-fracture network. Fracturing was found to be initiated at a relatively low injection pressure between the intermediate and minimum principal stresses and propagated in accordance with the distribution of preexisting microfractures, independent of the directions of the principal stresses. This study confirms the possibility of well stimulation to create excellent fracture patterns that should allow the effective extraction of thermal energy.
机译:过热的地热环境(约400°C以上)代表了一个新的地热能前沿。但是,大陆性花岗岩壳中可能缺乏能够存储和传输流体的渗透性裂缝网络。在这里,我们报道了有史以来的首次增产实验结果,其中包括在真实三轴应力下,在温度≥400°C的情况下,将低粘度水应用于花岗岩。这项工作证明了在整个岩体中密集分布的渗透性微裂缝网络的形成,代表了所谓的云裂网络。发现压裂是在中等和最小主应力之间的相对较低的注入压力下开始的,并且根据预先存在的微裂缝的分布而传播,而与主应力的方向无关。这项研究证实了增产井产生良好裂缝模式的可能性,应该可以有效地提取热能。

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