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Stability and ageing behaviour and the formulation of potassium-based drilling muds

机译:钾基钻井液的稳定性和时效行为及配方

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摘要

The formulation of drilling muds is currently driven by a trial-and-error process. This study aims to provide generic knowledge that helps to develop a systematic approach towards mud formulation producing muds that achieve most, if not all of their specific functionalities. The effect of KCl on the stability, viscosity and ageing behaviour of composite bentonite-barite-pyrophosphate muds was evaluated first. The ageing behaviour represented by a yield stress increasing with time was most pronounced for the 0.1 M KCl mud. At 0.2 M KCl and higher, the muds became unstable forming a two-phase suspension. The zeta potential was very small and essentially pH independent for both the 0.01 M and the 0.1 M KCl muds. Leong and Nguyen-Boger models described the ageing behaviour well, although the Leong model was found to perform better. In stage two, the effect of polyanionic carboxymethylcellulose (CMC) fluid loss prevention additives on the bentonite-barite-pyrophosphate-0.1 M KCl mud was evaluated. High molecular weight (Mw) CMC produced a thickening effect increasing both the viscosity and yield stress of the mud. Low Mw CMC (commercially known as PAC) only increased the mud yield stress marginally. All of these composite muds displayed a very similar ageing behaviour that is well described by the Leong model. The time scale-structural recovery increased with KCl and high Mw CMC concentration. All muds displayed shear thinning plastic behaviour.
机译:钻探泥浆的配方目前是由反复试验过程驱动的。这项研究旨在提供有助于开发泥浆配方的系统方法的通用知识,该方法可以生产出大多数(即使不是全部)特定功能的泥浆。首先评估了氯化钾对膨润土-重晶石-焦磷酸盐复合泥浆的稳定性,粘度和老化行为的影响。对于0.1 M KCl泥浆,以屈服应力随时间增加而表示的老化行为最为明显。在0.2 M KCl和更高的浓度下,泥浆变得不稳定,形成两相悬浮液。 zeta电位非常小,并且对于0.01 M和0.1 M KCl泥浆,其z值基本上与pH无关。 Leong和Nguyen-Boger模型很好地描述了老化行为,尽管发现Leong模型的性能更好。在第二阶段,评估了聚阴离子羧甲基纤维素(CMC)防失水添加剂对膨润土-重晶石-焦磷酸盐-0.1 M KCl泥浆的影响。高分子量(Mw)CMC产生了增稠作用,增加了泥浆的粘度和屈服应力。低分子量CMC(商业上称为PAC)仅略微增加了泥浆屈服应力。 Leong模型很好地描述了所有这些复合泥浆的老化行为。时标-结构恢复随KCl和高分子量CMC浓度而增加。所有泥浆均表现出剪切变稀的塑性行为。

著录项

  • 来源
    《Applied clay science》 |2015年第2期|309-317|共9页
  • 作者单位

    School of Mechanical and Chemical Engineering, The University of Western Australia, Crawley 6009, Australia;

    School of Mechanical and Chemical Engineering, The University of Western Australia, Crawley 6009, Australia;

    School of Mechanical and Chemical Engineering, The University of Western Australia, Crawley 6009, Australia;

    School of Mechanical and Chemical Engineering, The University of Western Australia, Crawley 6009, Australia;

    School of Mechanical and Chemical Engineering, The University of Western Australia, Crawley 6009, Australia;

    School of Petroleum Engineering, China University of Petroleum, Qingdao 266580, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Yield stress; Zeta potential; Thixotropy; Leong model; Bentonite; CMC fluid lost prevention additive;

    机译:屈服应力Zeta电位;触变性梁模型膨润土CMC防漏液添加剂;

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