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Experimental and Model Studies on Loading Path-Dependent and Nonlinear Gas Flow Behavior in Shale Fractures

机译:页岩骨折加载路径依赖性和非线性气体流动性的实验与模型研究

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摘要

Interest in shale gas as an energy source is growing worldwide. Because the rock's natural fracture system can contribute to gas production, it is important to understand the flow behavior of natural fractures in shale. Previous studies on the flow characteristics in shale fractures were limited and did not consider the effect of nonlinearity. To understand the basic mechanics of the gas flow behavior in shale fractures, laboratory investigations with consideration of the fluid pressure gradient, the confining stress, the loading history and the fracture geometry were conducted in this paper. Izbash's equation was used to analyze the nonlinearity of the flow. The results show that the behavior of the friction factors is similar to that shown in flow tests in smooth and rough pipes. The increase of the confining stress and the irreversible damage to the shale decreased the hydraulic aperture and increased the relative roughness. Thus, turbulent flow could appear at a low Reynolds number, resulting in a significant pressure loss. The limits of the cubic law and the existing correction factor for transmissivity are discussed. It is found that the previous friction models overestimate the friction factor in the laminar regime and underestimate the friction factor in the turbulent regime. For this reason, a new friction model based on a linear combination of the Reynolds number and the relative roughness was developed.
机译:作为能源的页岩气体的兴趣正在全球范围内生长。由于岩石的自然骨折系统可以促进天然气生产,因此了解页岩自然骨折的流动行为非常重要。以前关于页岩骨折的流动特性的研究有限,并且没有考虑非线性的影响。要了解页岩骨折中气体流动行为的基本机制,本文在考虑流体压力梯度,限制应力,装载历史和断裂几何形状的实验室研究。 Izbash的等式用于分析流量的非线性。结果表明,摩擦因子的行为类似于平滑和粗管中的流动试验中所示的行为。限制压力的增加和对页岩的不可逆转损坏降低了液压孔径并增加了相对粗糙度。因此,湍流可以出现在低雷诺数,导致显着的压力损失。讨论了立方法和现有透射率的校正因子的限制。结果发现,之前的摩擦模型高估了层流制度的摩擦因子,并低估了湍流状态的摩擦因子。因此,开发了一种基于雷诺数和相对粗糙度的线性组合的新摩擦模型。

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