首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >NANOPARTICLES AS FLUID LOSS CONTROL ADDITIVES FOR HYDRAULIC FRACTURING OF TIGHT AND ULTRA-TIGHT HYDROCARBON-BEARING FORMATIONS
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NANOPARTICLES AS FLUID LOSS CONTROL ADDITIVES FOR HYDRAULIC FRACTURING OF TIGHT AND ULTRA-TIGHT HYDROCARBON-BEARING FORMATIONS

机译:纳米颗粒作为致密和超致密含油气层水力压裂的流体损失控制添加剂

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Injection of polymeric solutions, either as slick water or cross-linked fluids, in order to propagate a fracture and distribute proppants and keep the fracture open is a common practice in hydraulic fracturing of unconventional tight and ultra-tight formations. In addition to propagation of a main fracture, polymeric fluids will be invading the already existing network of micro-fractures and extending the network connected to the main fracture. Fluid loss into the matrix rock and micro-fractures is inevitable, so is the use of a comparable fluid loss additive to reduce the filtrate volume. Different classes of nanoparticles have been used by several researchers to carry different agents including surfactants and enzymes for hydraulic fracturing purposes. Nano-sized pores and micro-sized fractures in tight and ultra-tight formations require a nano to micro- sized fluid loss additive to improve propagation of the hydraulic fractures by efficiently reducing the fluid loss. In this study, application of silica and polyelectrolyte complex (PEC) nanoparticles as fluid loss additives for three sets of core plugs with permeability values within the 10~(-5) -10~(-4) mD, 0.01-0.1 mD and 1-40 mD range was investigated. The nano-sized material used in this study significantly reduced the fluid loss volume for the cores with permeability values below 0.1 mD when mixed only with 2% KCl or with low concentrations of guar polymer prepared in 2% KCl. Combination of the fluid loss additive application with chemical carrying application makes these nanoparticle systems a suitable package for hydraulic fracturing of tight and ultra-tight formations.
机译:在非常规的致密和超致密地层的水力压裂中,注入聚合物溶液(如光滑水或交联流体)以扩展裂缝并分布支撑剂并使裂缝保持开放是一种常见的做法。除了主裂缝的扩展之外,聚合物流体还将侵入已经存在的微裂缝网络,并扩展与主裂缝相连的网络。不可避免的是,流体会损失到基体岩石和微裂缝中,因此使用可比的流体损失添加剂来减少滤液的体积也是不可避免的。几位研究人员已使用不同种类的纳米颗粒来携带不同的试剂,包括用于水力压裂目的的表面活性剂和酶。致密和超致密地层中的纳米孔和微米级裂缝需要纳米至微米级的滤失量添加剂,以通过有效减少滤失量来改善水力裂缝的传播。在这项研究中,二氧化硅和聚电解质复合物(PEC)纳米颗粒作为失水量添加剂在三组渗透率分别在10〜(-5)-10〜(-4)mD,0.01-0.1 mD和1的芯塞中的应用研究了-40 mD范围。仅与2%KCl或在2%KCl中制备的瓜尔胶聚合物浓度低时,本研究中使用的纳米级材料显着降低了渗透率值低于0.1 mD的岩心的失水量。降滤失剂应用与化学载体应用的结合使这些纳米颗粒系统成为用于致密和超致密地层水力压裂的合适包装。

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