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Hydraulic Fracturing Mechanical Mechanism Analyses for Soft Seams considering Strain softening Character

机译:考虑菌株软化特征的软接缝液压压裂机理分析

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Mathematical model based on elasticity is not suitable for soft seam hydraulic fracturing mechanism study because its intensity is small, Poisson's ratio is relatively large, and it's prone to plastic deformation. Based on plastic mechanics, the theory of large deformation and fracture mechanics theory, hydraulic fracturing of soft coal seam is divided into three phases, namely, coal bed compaction, fracture initiation and crack propagation from the view of the deformation mechanism, the occurring and developing mechanism. The initiation pressure of soft seams considered strain softening character after plastic deformation is obtained on the basis of above. The result shows that the initiation pressure is related to elastic modulus, Poisson's ratio, the angle of internal friction and residual strength. Elastic modulus is inversely proportional to the initiation pressure, the greater its value, the smaller the initiation pressure; but Poisson's ratio, the angle of internal friction and the residual strength and fracture initiation pressure is directly proportional relationship, the greater its value, since the smaller the crack pressure.
机译:基于弹性的数学模型不适用于软缝液压压裂机制研究,因为其强度小,泊松比相对较大,而且易于塑性变形。基于塑料力学,大变形和断裂力学理论的理论,软煤层的水力压裂分为三个阶段,即煤层压实,断裂启动和裂纹传播从变形机制,发生和发展机制。在基于上述基础上获得塑性变形后,软接缝的起始压力被认为是塑性变形之后的应变软化特征。结果表明,发起压力与弹性模量,泊松比,内部摩擦角和残余强度有关。弹性模量与起始压力成反比,其值越大,起始压力越小;但泊松比,内部摩擦角度和残余强度和断裂引发压力是直接成比例的关系,其值越大,由于裂缝压力越小。

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