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首页> 外文期刊>SPE journal >Impact of Acid Additives on the Rheological Properties of a Viscoelastic Surfactant and Their Influence on Field Application
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Impact of Acid Additives on the Rheological Properties of a Viscoelastic Surfactant and Their Influence on Field Application

机译:酸添加剂对粘弹性表面活性剂流变性能的影响及其对现场应用的影响

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This paper examines a new class of viscoelastic surfactants (am-photeric) that are used to enhance sweep efficiency during matrix acid treatments. It appears that surfactant molecules align themselves and form rod-shaped micelles once the acid is spent. These micelles might cause the viscosity to significantly increase, and induce viscoelastic properties to the spent acid. The enhancement in these properties depends on the micelle shape and magnitude of entanglement. The effects of acid additives and contaminants [mainly iron (III)] on the rheological properties of these systems were examined over a wide range of parameters. Viscosity measurements were conducted using specially designed viscometers to handle very corrosive fluids. Measurements were made between 25 and 100℃, and at 300 psi at various shear rates from 58 to 1,740 s~(-1). Acid additives included corrosion inhibitors, inhibitor aids, an iron control agent, a hydrogen sulfide scavenger, an anti-sludge agent, and a nonionic surfactant. Effects of mutual solvents and methanol on the apparent viscosity were also investigated. It is observed that temperature, pH, shear conditions, and acid additives have a profound influence on the apparent viscosity of the surfactant-acid system. The viscosity and related properties are very different from what were observed with both natural and synthetic polymers. The differences in these properties were characterized and correlated with the type and nature of the additives used. Optimum conditions for better fluid performance in the field were derived.
机译:本文研究了一类新的粘弹性表面活性剂(两性表面活性剂),这些表面活性剂可用于提高基质酸处理过程中的清扫效率。似乎一旦酸耗尽,表面活性剂分子就会自我排列并形成棒状胶束。这些胶束可能导致粘度显着增加,并导致废酸产生粘弹性。这些性质的增强取决于胶束的形状和缠结的大小。在广泛的参数范围内研究了酸添加剂和污染物[主要是铁(III)]对这些体系的流变性的影响。使用专门设计的粘度计进行粘度测量,以处理腐蚀性极强的流体。在25至100℃之间,以300 psi在58至1,740 s〜(-1)的不同剪切速率下进行测量。酸添加剂包括腐蚀抑制剂,抑制剂助剂,铁控制剂,硫化氢清除剂,防污剂和非离子表面活性剂。还研究了互溶剂和甲醇对表观粘度的影响。观察到温度,pH,剪切条件和酸添加剂对表面活性剂-酸体系的表观粘度具有深远的影响。粘度和相关性能与天然和合成聚合物均存在很大差异。表征了这些性质的差异,并与所用添加剂的类型和性质相关。得出了在现场改善流体性能的最佳条件。

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