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Nanotechnology Applications in Viscoelastic-Surfactant Stimulation Fluids

机译:粘弹性表面活性剂刺激液中的纳米技术应用

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Viscoelastic surfactant (VES) fluids have been widely used in the oil industry as completion and stimulation fluids. The surfactants structurally arrange to form rod-like micelles that increase VES fluid viscosity for regular fracturing and frac-packing fluids. However, high fluid leak-off and low viscosities at elevated temperatures have limited VES fluids for hydraulic fracturing and frac-packing applications. This paper will introduce a nanotechnology application for maintaining viscosity at high temperatures and controlling the fluid loss of VES fluid, without generating formation damage. The nanometer-scale particles studied display unusual surface morphologies and have high surface reactivity. These nanometer-scale particles, through chemisorption and surface charge attraction, associate with VES micelles to: 1) stabilize fluid viscosity at high temperatures; and 2) produce a pseudo-filtercake of viscous VES fluid that significantly reduces the rate of fluid loss and improves fluid efficiency. When internal breakers are used to break the VES micelles, the fluid will dramatically lose its viscosity and the pseudo-filtercake will then break into nanometer-sized particles. Since the particles are small enough to pass through the pore throat of producing formations, they will be flowed back with the producing fluids, and no damage will be generated. The results of rheology, leak-off and core flow tests will be presented for the VES fluid systems at temperatures 150°F and 250°F.
机译:粘弹性表面活性剂(VES)流体已广泛用于石油工业中作为完井和刺激流体。表面活性剂在结构上布置成形成棒状胶束,其增加VES流体粘度以进行规则压裂和FRAC包装液。然而,高温下的高液体泄漏和低粘度具有限制液压压裂和FRAC包装应用的VES流体。本文将引入纳米技术应用,用于在高温下保持粘度并控制VES流体的流体损失,而不会产生损伤。纳米级粒子研究了展示了异形表面形态并具有高表面反应性。这些纳米级颗粒,通过化学吸附和表面电荷吸引,与VES胶束相关联:1)在高温下稳定流体粘度; 2)产生粘性VES流体的伪滤饼,显着降低了流体损失的速率并提高了流体效率。当使用内断路器来打破VES胶束时,流体将显着地失去其粘度,并且伪滤饼将破坏纳米尺寸的颗粒。由于颗粒足够小以通过产生地层的孔喉,因此它们将与生产流体流回,并且不会产生损坏。将在150°F和250°F温度下为VES流体系统呈现流变术,泄漏和核心流动测试的结果。

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