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Formation protection method of oil‐based drilling fluid for deep fractured tight gas reservoir

机译:深骨折闭煤层油基钻井液的形成保护方法

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Deep fractured tight gas reservoirs have attracted more and more attention worldwide, which also promotes the large‐scale application of oil‐based drilling fluids. Due to its poor permeability, deep tight gas reservoirs need to pay more attention to the issue of reservoir protection. However, previous studies have shown that reservoir damage of oil‐based drilling fluid is small, and limited damage studies mainly focus on one aspect of work, and there is not a systematic reservoir protection method of oil‐based drilling fluid for tight gas reservoir. Based on the particularity of fractured tight gas reservoir protection, the thesis clarifies the fracture factors that affect the reservoir protection efficiency and the preferred factors of reservoir protection materials. Considering fully the characteristics of fracture and oil‐based drilling fluid, the design basis and overall design idea of reservoir protection method of oil‐based drilling fluid are established. Considering the four conditions of fracture determination and method selection, difference of Engineering requirements, particle selection, fracture plugging, and plugging removal mechanism, the reservoir protection technology of oil‐based drilling fluid is constructed, and the simulation experiments of reservoir protection technology of oil‐based drilling fluid for fractured tight gas reservoir were carried out; the results provided a reference for reservoir protection of oil‐based drilling fluid.
机译:深层骨折的紧的燃气藏在全球上吸引了越来越多的关注,这也促进了石油钻井液的大规模应用。由于其渗透性差,深紧的气体水库需要更多地关注水库保护问题。然而,之前的研究表明,油基钻井液的储层损坏小,损伤的损伤有限主要关注工作的一个方面,并且没有一种系统储层保护方法,用于狭长的气体储层。基于裂缝紧燃气储层保护的特殊性,本文阐明了影响水库保护效率的断裂因素及水库保护材料的优选因素。建立了充分考虑了骨折和油油钻井液的特点,建立了油基钻井液储层保护方法的设计基础和整体设计思路。考虑到裂缝测定和方法选择的四种条件,工程要求的差异,颗粒选择,断裂堵塞和堵塞机构,构成了油基钻井液的储层保护技术,以及石油储层保护技术的仿真实验进行了用于裂缝紧煤气藏的钻井液;结果为油基钻井液的储层保护提供了参考。

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