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Water-based bentonite drilling fluids modified by novel biopolymer for minimizing fluid loss and formation damage

机译:新型生物聚合物改性的水性膨润土钻井液,可最大程度地减少流失和地层破坏

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摘要

Cellulose nanoparticles (CNPs), including cellulose nanocrystals (CNCs) and cellulose nanofibers (CNFs), were used as an environmentally friendly and high performance additive in water-based bentonite drilling fluids for minimizing fluid loss and formation damage. The effects of CNP dimension and concentration on the rheological and filtration properties of the fluids were investigated. With half of the bentonite in the fluid replaced by a small fraction of CNPs, the resultant fluids showed excellent shear thinning behavior and the fluids' viscosity, yield point, and gel strength increased with the concentrations of CNPs. The addition of CNPs did not produce a pronounced effect in loss of the fluids under low temperature and low pressure (LTLP) conditions. However, reduced fluid loss and formation damage were observed with use of CNPs at a higher temperature and pressure condition, demonstrating CNP's potentials for high temperature and high pressure well applications. Additionally, CNCs and CNFs functioned differently in the rheological and filtration properties of the fluids, attributed to their distinct morphology and surface functionality, which could be controlled to maximize the performance of the fluids. (C) 2016 Elsevier B.V. All rights reserved.
机译:纤维素纳米颗粒(CNP),包括纤维素纳米晶体(CNC)和纤维素纳米纤维(CNF),被用作水基膨润土钻井液中的环保高性能添加剂,以最大程度地减少流体损失和地层破坏。研究了CNP尺寸和浓度对流体流变性和过滤性能的影响。流体中的一半膨润土被一小部分CNP取代,所得的流体表现出出色的剪切稀化行为,并且随着CNP的浓度,流体的粘度,屈服点和凝胶强度增加。在低温和低压(LTLP)条件下,CNP的添加不会对流体的损失产生明显的影响。但是,在较高的温度和压力条件下使用CNP可以观察到减少的流体损失和地层损害,这证明了CNP在高温高压井应用中的潜力。此外,CNC和CNF在流体的流变和过滤特性上的功能有所不同,这归因于它们独特的形态和表面功能,可以对其进行控制以最大化流体的性能。 (C)2016 Elsevier B.V.保留所有权利。

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