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Static Proppant Settling Velocity Characteristics in High Viscosity Friction Reducers Fluids for Unconfined and Confined Fractures

机译:高粘度摩擦减速器中的静态支撑剂沉降速度特性,用于无束缚和狭窄的骨折

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Measuring proppant settling velocity in high viscosity friction reducers (HVFRs) plays a critical key for evaluating proppant transport in hydraulic fracture treatment. Settling of particles is governed by several factors such as fluid rheology (viscosity and elasticity), proppant size, retardation confining walls effect, and fracture orientation. The objective of this experimental study was to determine how these factors would influence particle settling velocity in hydraulic fracturing applications. The experiments were conducted in unconfmed and confined fluid conditions. Fracture cell was designed in certain ways to capture the impact of fracture orientation by 45°, 60°, and 90° on settling velocity. Results showed HVFR provided better proppant transport capability than regular FRs used in slickwater. Proppant settling velocity using HVFR was decreased by 80%. Results obtained from confined fluid experiments showed that proppant settling velocity decreased due to the confining walls exert retardation impact. The wall retardation was also reduced as the fracture width increased. Changing fracture orientation from vertical position (90 degree) to 45 degree led to high reduction in proppant settling velocity.
机译:测量高粘度摩擦减速剂(HVFRS)中的支撑剂沉降速度起到评估液压断裂处理中的支撑剂运输的关键键。颗粒的沉降是由若干因素(例如流体流变学(粘度和弹性),支撑剂尺寸,延迟限制壁效应和断裂取向的因素。该实验研究的目的是确定这些因素如何影响水力压裂应用中的颗粒稳定速度。实验是在无限制和狭窄的流体条件下进行的。以某种方式设计骨折细胞,以捕获断裂取向的影响45°,60°和90°在沉降速度上。结果显示HVFR提供比Slickwater中使用的常规FRS更好的支撑剂传输能力。使用HVFR的支撑剂沉降速度下降了80%。从密闭的流体实验获得的结果表明,由于限制墙体施加延迟撞击,支撑剂沉降速度降低。随着裂缝宽度的增加,壁延迟也降低。从垂直位置(90度)到45度改变断裂取向导致支撑剂沉降速度的高度降低。

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