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Hydraulic Fracturing Experiment Investigation for the Application of Geothermal Energy Extraction

机译:地热能提取应用的水力压裂实验研究

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As an attractive renewable energy source, deep geothermal energy is increasingly explored. Granite is a typical geothermal reservoir rock type with low permeability, and hydraulic fracturing is a promising reservoir stimulation method which could obviously enhance the reservoir permeability. Previous hydraulic fracturing studies were mostly conducted on artificial samples and small cylindrical granites. The fracturing pressures of artificial samples and small real rock sample were much lower than that of field operation, and it was difficult to observe morphological changes in small rocks. Hence, this paper presents a hydraulic fracturing experimental study on large-scale granite with a sample size of 300 × 300 × 300 mm under high temperatures. Besides, injection flow rate is an important parameter for on-site hydraulic fracturing; previous studies usually only focused on breakdown pressure, and there is a lack of comprehensive analysis about fracturing pressure curves and fracturing characteristics caused by different injection flow rates. This study aims to investigate the influence of injection flow rate on different pressure curve characteristic parameters which are initiation pressure, propagation time, breakdown pressure, postfracturing pressure, fracture geometry, and fracture permeability. The mean injection power was proposed to roughly estimate the fracture total lengths. These results could provide some guidance for field-scale reservoir stimulation and heat extraction efficiency improvement.
机译:作为一种有吸引力的可再生能源,越来越多地探索深层地热能。花岗岩是一种典型的地热储层岩体,具有低渗透性,液压压裂是一个有前途的储层刺激方法,可显着提高储层渗透性。以前的液压压裂研究主要在人造样品和小圆柱形花岗岩上进行。人造样品和小型真实岩样的压裂压力远低于现场操作的压力,并且很难观察小岩石的形态变化。因此,本文介绍了在高温下的大规模花岗岩上的液压压裂实验研究,在高温下的样品尺寸为300×300×300mm。此外,注射流量是现场液压压裂的重要参数;以前的研究通常只关注击穿压力,缺乏关于压裂压力曲线和由不同喷射流量引起的压裂特性的综合分析。本研究旨在研究注射流速对引发压力,传播时间,击穿压力,后压力,断裂几何和断裂渗透性的不同压力曲线特征参数的影响。提出平均喷射功率以粗略地估计裂缝总长度。这些结果可以为现场估计储层刺激和热提取效率提高提供一些指导。

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