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A Self‐Healing PAM/CMHPG System for Unconventional Reservoir Stimulation

机译:一个自我疗愈为非常规PAM / CMHPG系统水库的刺激

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摘要

Abstract A hybrid chemically and physically linked polyacrylamide (PAM)/carboxymethyl hydroxypropyl guar gum (CMHPG) system is prepared via a fast and controllable one‐pot strategy. Due to the synergetic effect of the non‐covalent interactions between chains, these systems show improved, balanced mechanical properties. The apparent morphology, storage modulus G′, and loss modulus G″ show that these systems have rapid and almost full recovery ability (the self‐healing efficiency can reach 95%) with several hydrogen‐bonding interactions between two networks. This self‐healing property can cover the shortage of G′, G″, and viscosity loss at high shear force, which will help the system keep enough viscosity to create fractures or carry proppants during the whole fracturing process. Meanwhile, the self‐healing fracturing fluid can be broken easily and flow back to surface with little damage to the fracture conductivity, indicating great potential in unconventional reservoir which is sensitive to the fracturing fluid damage.
机译:<标题聚丙烯酰胺化学的和物理的联系(PAM) /羧甲基羟丙基瓜尔胶(CMHPG)系统通过快速和准备可控的特色锅策略。协同作用的非共价链之间的相互作用,这些系统改善,平衡的力学性能。明显的形态学,储能模量G’,和损失模量G”表明,这些系统快速几乎完全恢复能力(自我疗愈与几个效率可以达到95%)两个氢量键相互作用网络。短缺的G, G”,粘度损失高剪切力,这将有助于保持系统足够的粘度来创建骨折或携带整个压裂过程中支撑剂。与此同时,自我疗愈应承担的压裂液很容易破碎,流回到表面小损伤断裂电导率,指示在非传统的巨大潜力储层压裂敏感流体损失。

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