Experimental Study of Self-aggregating Proppants: New Approaches to Proppant Flowback Control

Lipei Fu, Guicai Zhang, J. Ge, Kaili Liao, H. Pei, Jian-Da Li
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引用次数: 3

Abstract

Due to the high rate of proppant flowback after hydraulic fracturing stimulations, surface modified quartz sand proppants with excellent proppant flowback control abilities, self-aggregating proppants, were prepared. These surface modified proppants can aggregate together spontaneously and form a proppant column in water based liquid environment. Analyses show that the strong hydrogen bonds contribute to the absorption of the surface modifier onto the proppants, and the softening effect of the water to the polymer coating prompts the connection between the proppants. Scanning electron microscope pictures show that proppant particles are stacked together tightly. The stable structure contributes to the macroscopic stability of the proppant column. The maximum sand free flow rate of the model packed with modified proppants is 2.8 times larger than that of untreated proppants by average, indicating that the self-aggregating proppants exhibit excellent proppant flowback control abilities. In addition, fines control tests show that the modified proppants can also prevent the migration of the formation fines effectively, reducing the conductivity loss caused by particle migrations. By virtue of the reaggreating property and the encapsulation action of polymer coating to the crushed fragments, the fracture conductivities are increased by 3 times even at large closure stresses. The results provide a new alternative for proppant flowback control while do little damage to the permeability of the proppant pack.
自凝聚支撑剂的实验研究:支撑剂返排控制的新途径
针对水力压裂增产后支撑剂返排率高的特点,研制了具有良好返排控制能力的表面改性石英砂支撑剂——自聚集支撑剂。这些表面改性支撑剂可以在水基液体环境中自发聚集形成支撑剂柱。分析表明,强氢键有助于表面改性剂吸附到支撑剂上,水对聚合物涂层的软化作用促进了支撑剂之间的连接。扫描电镜显示,支撑剂颗粒紧密堆积在一起。稳定的支撑柱结构有助于支撑柱的宏观稳定性。掺入改性支撑剂后的模型最大无砂流量平均为未掺入支撑剂的2.8倍,表明自聚集支撑剂具有良好的支撑剂返排控制能力。此外,细粒控制试验表明,改性支撑剂还能有效阻止地层细粒的运移,降低颗粒运移造成的导电性损失。由于聚合物涂层的重聚特性和对破碎碎片的包封作用,即使在较大的闭合应力下,裂缝导电性也提高了3倍。研究结果为支撑剂返排控制提供了一种新的选择,同时对支撑剂充填层的渗透率损害很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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