裸眼完井钻井液填料的优化配方研究

N. Suleimenov
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引用次数: 0

摘要

通过实验研究,确定了惰性填料对泥饼形成过程中过滤性能的影响。实验顺序与阶段顺序相对应:形成滤饼的主要结构(通过钻井模拟开孔过程),处理井底区域以恢复初始渗透率(例如,在化学破坏滤饼期间),将井底区域的工艺流体滤液冲洗到井中。钻井液中的固相可以由形成结构的粘土颗粒和填料(重晶石、破碎岩屑、桥接剂等)来表示。此外,填料可以具有胶体分散程度大小的单个颗粒,并显著影响钻井悬浮液的过滤性能。在滤饼主体结构形成阶段,评价粘土悬浮液固相组成对滤饼过滤性能的影响尤为重要。这一阶段的特点是不稳定的过滤过程。实质上,过滤过程的大部分研究都是在这种模式下进行的。在我们的情况下,有必要确定溶液的过滤指数Пр与固相组成的关系。在实验研究过程中,证实了在第1阶段形成的滤饼的后续过滤同样取决于压降应用的大小和性质(如在第1阶段),以及滤饼和堵塞区的渗透率。因此,第二阶段的研究方法需要在渗透性砂包过滤过程中对滤饼的形成和改性进行实验补充。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DEVELOPMENT OF OPTIMAL COMPOSITION OF DRILLING FLUID FILLER FOR OPEN HOLE WELL COMPLETION
Experimental studies were carried out to determine the effect of inert fillers on the filtration properties of clay cakes during their formation. The sequence of experiments corresponds to the sequence of stages: formation of the main structure of the filter cake (simulation of the opening process by drilling), treatment of the bottomhole zone to restore the initial permeability (for example, during chemical destruction of the filter cakes) and washing out of process fluid filtrates from the bottomhole zone into the well. The solid phase in the drilling fluid can be represented by both structure-forming clay particles and fillers (barite, crushed cuttings, bridging agents, etc.). Moreover, fillers can have individual particles of a size of a colloidal degree of dispersion and significantly affect the filtration performance of drilling suspensions. It is especially important to evaluate the influence of the composition of the solid phase of the clay suspension on the filtration properties at the stage of formation of the main structure of the filter cake. This stage is characterized by a non-stationary filtration process. In essence, the bulk of the studies of filtration processes is carried out in this mode. In our case, it is necessary to determine the dependence of the filtration index of solutions Пр on the composition of the solid phase. In the course of experimental studies, it was confirmed that subsequent filtration through the cakes formed at stage 1 equally depends on the magnitude and nature of the drawdown application, as in stage 1, as well as on the permeability of the filter cake and the clogging zone. Therefore, the research methodology at stage 2 required supplementing experiments with the formation and modification of filter cakes during filtration through permeable sand packs.
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