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Experimental investigation of proppant flowback phenomena using a large scale fracturing simulator

机译:使用大规模压裂模拟器的支撑剂回流现象的实验研究

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This paper evaluates the maximum flow rate before the sand production initiates while flowing back a reservoir after the hydraulic fracturing treatment. The experiments are performed in a high pressure slot which simulates a fracture. The slot is a parallel plate device, which is 7 ft high and 9 1/3 ft long with provisions for varying fracture gap width. The slot is filled with proppant to simulate a propped fracture, then, the closure pressure is applied with 12 actuators to simulate confining pressure on the proppant pack. Water is pumped into the lot to simulate flowing back of the fracturing fluid. The water flow rate is varied till the proppant pack destabilizes, and the sand production begins. The sand distribution is observed in the fracture with a vision system. The experimental results show that the critical water flowback rate decreases as the closure pressure increases, or when the fracture gap width increases. However, the sand-free maximum water flow rate increases as the sand size increases for a given fracture gap width. Lastly, the cumulative sand production decreases as the closure stress decreases at ta particular flow rate. The visual observations of the proppant flowback phenomena show that the sand production initiates close to the perforation. After the initiation of the sand flow, continued pumping of the water results in sand production through a channel formed in the proppant pack.
机译:本文评估了在液压压裂处理后损坏储层的砂生产前的最大流速。实验在高压槽中进行,该高压槽模拟裂缝。槽是平行板装置,其是7英尺高,9 1/3英尺长,具有用于变化的裂缝间隙宽度的规定。槽填充有支撑剂以模拟支撑裂缝,然后,用12个致动器施加闭合压力以模拟支撑剂包上的限制压力。将水泵入批次以模拟压裂液的流动。水流速率变化,直到支撑剂包稳定,砂生产开始。用视觉系统在骨折中观察到砂分布。实验结果表明,随着闭合压力的增加,或者当断裂间隙宽度增加时,临界水流率降低。然而,随着给定的裂缝间隙宽度的砂尺寸增加,无砂最大水流量增加。最后,随着TA特定流速的闭合应力降低,累积砂产生减少。支撑剂回流现象的视觉观察表明,砂生产靠近穿孔。在砂流动开始之后,继续泵送水通过在支撑剂包中形成的通道产生砂产生。

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