侧井口和水平屠宰的固定式口流问题

Liudmyla Firsunina, Akhmetova Viktoria Akhmetova, Ivan Zezekalo
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摘要

文章分析了在井的建设和运行阶段,有侧井和水平井底的井发生流体现象的主要原因。确定了此类井的流体表现主要是由其设计特点决定的。溢流和内部溢流的存在,如果不及时发现和清理,可能会导致排放、事故和大规模的环境灾害。在井的施工和运行阶段,造成大多数复杂性的原因是钻井液饱和地层与井筒的水力连接,这伴随着随后的井运行阶段。为了解决这个问题,有必要进行修复和绝缘工作,以消除水平段井的溢流,使用封堵液暂时隔离生产管柱的射孔部分。消除柱间流动的技术解决方案是在液体或气体流动的间隔内泵送阻塞填塞成分,安装切断桥以保护生产层不受水泥材料的影响;通过射孔区上部进行绝缘工作。考虑到水平井施工中使用非胶结柄式过滤器的物理化学和机械溶液的特点,作者提出了现有保温技术的当前发展方向。所选择的工艺和材料应保证在技术上可接受的时间内,岩石井段和井下段的整个多孔介质和孔道的充填,以及成分的最佳结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Проблемы заколонных перетоков в скважинах с боковыми стволами и горизонтальным забоем
  The article analyzes the main causes of fluid manifestations that occur in wells with side shafts and horizontal bottom at the stage of construction and operation of wells. It is established that the fluid manifestations are mainly due to the design features of such wells. The presence of overflow and interstratal overflows, in case of untimely detection and liquidation, can lead to emissions, accidents and large–scale environmental disasters. The cause of most complications at the stages of construction and operation of wells is the hydraulic connection of the drilled fluid–saturated formations with the wellbore, which accompanies all subsequent periods of well operation. To solve this problem, it is necessary to carry out repair and insulation works to eliminate overflow flows in wells with horizontal sections using blocking fluids for temporary insulation of the perforated part of the production string. Technological solutions for the elimination of intercolumn flows by pumping blocking tamponing compositions in the intervals of flow of liquids or gases, the installation of cut–off bridges to protect the productive layers from the cement material; carrying out insulation work through the upper part of the perforation zone. The authors propose the current directions of development of existing insulation technologies, taking into account the peculiarities of work in horizontal wells, in the construction of which use non–cemented shank–filters using physico–chemical and mechanical solutions. The selected technology and materials should ensure the filling of the entire porous medium and channels in the well and downhole section of rocks, as well as the optimal structure of the composition in a technologically acceptable time.
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