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Nanoparticles based drilling muds a solution to drill elevated temperature wells: A review

机译:基于纳米颗粒的钻探泥浆是钻探高温井的一种解决方案:综述

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摘要

Demand of the oil and gas energy is increasing very drastically. Conventional hydrocarbon reservoirs contain below the sealing cap rock (shale) and easily move towards wellbore are at the depletion stage. Therefore, drilling engineers in collaboration with mud engineers, geologists and geophysicists are looking for innovative materials to drill unconventional hydrocarbons reservoir which are distributed at the basin scale and cannot approach easily. Geo-thermal energy wells and most of unconventional reservoirs are occurred at high pressure high temperature (HPHT) conditions. Conventional micro-macro organic drilling mud additives with heat insulator in nature can minimize efficiency while drilling HPHT wells. Oil-based muds (OBM) are strictly restricted due to high toxic level and poor emulsion stability at HT. However, this review suggests that addition of macro size organic particles and inorganic nanoparticles can enhance rheological performance, reduce filtrate loss volume and improve shale inhibition characteristics of environmental friendly water-based mud (WBM). Despite an impressive amount of experimental work has been done over drilling additives and their effect over rheological and shale inhibition, taking into account their literature review are rare. In addition, there is no review work of the knowledge gained to date. This work will hope fully trigger further development and new research topics in the area of drilling muds system.
机译:石油和天然气能源的需求正在急剧增加。常规的碳氢化合物储层包含在密封盖岩(页岩)之下,并且在枯竭阶段很容易移向井筒。因此,钻井工程师与泥浆工程师,地质学家和地球物理学家合作,正在寻找创新的材料来钻探非常规碳氢化合物储层,这些非常规碳氢化合物储层分布在盆地规模并且难以接近。地热能井和大多数非常规油藏都发生在高压高温(HPHT)条件下。自然界中具有隔热层的传统的微宏有机钻井泥浆添加剂可以在钻探HPHT井时将效率降至最低。由于高毒性水平和HT乳液稳定性差,油基泥浆(OBM)受到严格限制。然而,该评论表明,加入大尺寸有机颗粒和无机纳米颗粒可以增强流变性能,减少滤液损失量,并改善环境友好型水基泥浆(WBM)的页岩抑制特性。尽管在钻探添加剂方面进行了大量的实验工作,并且它们对流变学和页岩抑制作用的影响很少,但考虑到它们的文献综述却很少。此外,目前尚无对所学知识的复习工作。这项工作将希望在钻井泥浆系统领域全面引发进一步的发展和新的研究课题。

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