首页> 外文期刊>Journal of Petroleum Science & Engineering >A critical review of the possible effects of physical and chemical properties of subcritical water on the performance of water-based drilling fluids designed for ultra-high temperature and ultra-high pressure drilling applications
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A critical review of the possible effects of physical and chemical properties of subcritical water on the performance of water-based drilling fluids designed for ultra-high temperature and ultra-high pressure drilling applications

机译:亚临界水对水性钻井液性能影响的临界综述,专为超高温和超高压钻井应用设计的水性钻井液

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摘要

The design and development of ultra-high temperature and ultra-high pressure water-based drilling fluids (ultra-HTHP WBDF) has become one of the key technologies to unlock deep and the ultra-deep reservoirs, as well as the geothermal resources due to the bottomhole conditions. In this paper, we reviewed the technical problems associated with controlling the stability of ultra-HTHP WBDF rheological properties, particularly for the mechanisms of how the properties of ultra-HTHP WBDF are affected by the subcritical water. A comprehensive review has shown that the physical and chemical properties of subcritical water are not conducive to the performance of drilling fluid additives. Water in subcritical state is inhibitive for additives to perform their function properly. Water at subcritical state would cause a phenomenon of thermally induced phase separation, the polarity change of subcritical water would cause some of the additives to be extracted, and the solubility of low-polar organic compounds would increase, etc. Finally, based on the analyses of the physicochemical properties of the subcritical water and its influence on the performance of ultra-HTHP water-based drilling fluids, the ideas and methodologies for molecular structure design of ultra-high temperature resistant polymers were proposed. By making the drilling fluid additives to have better compatibility in subcritical water, the new methodology would also help to develop more stable drilling fluids that can be used for the ultra-HTHP drilling fluid applications.
机译:超高温和超高压水基钻井液(Ultra-HTHP WBDF)的设计和开发已成为解锁深层和超深层水库的关键技术之一,以及由于的地热资源井底条件。在本文中,我们审查了与控制超HTHP WBDF流变性质的稳定性相关的技术问题,特别是对于亚临界水的影响如何影响亚临界水的性质。全面的审查表明,亚临界水的物理和化学性质不利于钻井液添加剂的性能。亚临界状态的水对添加剂适当地进行抑制作用。亚临界状态下的水将导致热诱导相分离的现象,亚临界水的极性变化会导致一些待提取的添加剂,并且低极性有机化合物的溶解度最终将基于分析基于分析提出了亚临界水的物理化学性质及其对超高HTHP水基钻井液性能的影响,提出了超高温耐耐耐耐耐耐耐耐耐耐耐耐耐耐耐耐耐耐耐耐高温聚合物的思路和方法。通过使钻井液添加剂在亚临界水中具有更好的相容性,新方法还将有助于开发更稳定的钻井液,可用于超HTHP钻井液应用。

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