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An innovative technology of directional propagation of hydraulic fracture guided by radial holes in fossil hydrogen energy development

机译:化石氢能开发中径向孔引导水力压裂定向传播的创新技术

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Conventional hydraulic fracturing fails to develop low permeability reservoirs of fossil hydrogen energy that are not located in the direction of maximum principal in-situ stress. A new technology of fracture propagation guided by radial holes is proposed, which can realize directional propagation of hydraulic fracture along radial holes in fossil hydrogen energy development. In order to verify this new technology, a model of radial holes combined with hydraulic fracturing is established by the ABAQUS extended finite element method. Simulation results show that radial holes play a guiding role in fractures propagation. The influence extent of seven factors on the directional propagation of hydraulic fracture is listed as follows (from strong to weak): azimuth of radial holes horizontal in situ stress difference of fossil hydrogen reservoir injection rate of fracturing fluid Young's modulus of rock permeability of fossil hydrogen reservoir Poisson ratio of rock viscosity of fracturing fluid. True tri-axial experiment is carried out to verify the accuracy of numerical simulation, and the result is consistent with numerical model, which indicates that numerical simulation is reliable. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:常规的水力压裂无法开发化石氢能的低渗透储层,而该储层并未位于最大原地应力方向上。提出了一种以径向孔为导向的裂缝扩展新技术,可以实现化石氢能开发中水力裂缝沿径向孔的定向扩展。为了验证这项新技术,通过ABAQUS扩展有限元方法建立了径向孔与水力压裂相结合的模型。仿真结果表明,径向孔在裂缝扩展中起着指导作用。七个因素对水力压裂定向传播的影响程度如下(从强到弱):径向孔的方位角>化石储氢层的水平原位应力差>压裂液的注入速率>岩石的杨氏模量>化石储氢层渗透率>岩石泊松比>压裂液粘度通过真三轴试验验证了数值模拟的准确性,结果与数值模型吻合,表明数值模拟是可靠的。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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