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Engineered Vesicles for the Controlled Release of Chemical Additives and Application for Enhanced Oil Well Cement Integrity

机译:用于控制化学添加剂的控制释放的工程囊泡和增强油井水泥完整性的应用

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Encapsulation-based systems are of interest in the oil and gas industry in applications such as chemical additive preservation, small molecule release, particle delivery, and self-sealing materials. Many methods are used to encapsulate relevant chemical additives for the controlled release of contents like polymeric vesicles, inorganic shells, and mesoporous materials. Here a novel system for the controlled release of encapsulated cargo that utilizes engineered features of permeable polymeric shell walls is shown. When placing cement, a multitude of additives in large quantities are needed to meet a variety of functional needs that are suitable for the many diverse wellbore conditions. However, using large amounts of certain additives could have adverse effects which can destabilize the slurry at surface conditions. Using vesicles, cement additives are delivered without requiring modification. In this way, the possibilities of formulations comprised of a number of vesicles with various encapsulants lends to significant advancements in cementing. Applications in cement design is demonstrated from measurements obtained using the consistometer as well as testing from oilfield equipment. Experimental results show that a basic cement slurry design responds to the release of an encapsulant by the measure of change in viscosity and thickening times at two different temperatures at 3,000 psi. For example, the thickening time of a slurry can be controlled with the delayed release of an accelerant, at ambient pressure. With an increase in temperature up to 100 °F and 300 °F, the encapsulated additive is squeezed at a higher diffusion rate, resulting in a faster thickening time. In all cases, the vesicles are observed to remain intact within the set cement and contribute significantly to the mechanical properties of set cement. Vesicle dual performance stems from unique characteristics, such as an aqueous core, wall thickness and permeability, chemical composition, and mechanical integrity of the shell wall. Here, the shell walls are engineered with high molecular weight polymeric material that upon release of the encapsulated chemical additives, the emptied vesicles continue to impart beneficial mechanical properties to the set cement, such as compression strength.
机译:封装的系统在化学添加剂保存,小分子释放,颗粒递送和自密封材料等应用中,对石油和天然气行业感兴趣。许多方法用于包封相关的化学添加剂,用于控制含量,如聚合物囊泡,无机壳和介孔材料。这里示出了一种用于控制封装的封装货物的控制释放的新系统,其利用可渗透的聚合物壳壁的工程特征。在放置水泥时,需要大量的大量添加剂来满足适合于许多不同井筒状况的各种功能性需求。然而,使用大量的某些添加剂可能具有可能使浆料在表面条件下破坏浆料的不利影响。使用囊泡,在不需要修改的情况下提供水泥添加剂。以这种方式,由各种密封剂的许多囊泡组成的制剂的可能性在胶结中提供了显着的进步。通过使用助气器和油田设备的测试来证明水泥设计中的应用。实验结果表明,基本水泥浆化设计通过在3,000psi的两个不同温度下的粘度和增稠时间的变化来响应密封剂的释放。例如,可以在环境压力下用促进剂的延迟释放来控制浆料的增稠时间。随着温度的增加,高达100°F和300°F,封装的添加剂以较高的扩散速率挤压,导致更快的增稠时间。在所有情况下,观察到囊泡在设定水泥内保持完整,并显着贡献到设定水泥的机械​​性能。囊泡双性能源于独特的特性,如含水芯,壁厚和渗透性,化学成分和壳壁的机械完整性。这里,壳体壁具有高分子量聚合物材料,即在释放包封的化学添加剂后,空洞的囊泡继续赋予设定的水泥,例如压缩强度。

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