提高遥远北方油井的运行可靠性

A. Mihaylov, E. Petrovskii, P. Pavlova, I. Strelkov
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引用次数: 0

摘要

迄今为止,俄罗斯境内油田的开发主要集中在遥远的北方地区。这些地区的很大一部分是由永久冻土(MMP)组成的。以前,人们认为MMP的传播深度不超过700 m,然而,Markhinskaya井的地质信息研究表明,在平均岩石温度为零下3℃的情况下,MMP的传播深度为1400 m。因此,在MMP融化期间,在冰冻岩石带作业的井会造成严重的并发症,甚至会导致套管柱和油管的褶皱。旨在提高遥远北方条件下油井运行可靠性的技术解决方案是通过使用专业设备确定的。在指定的作业条件下,设备类型的选择取决于井与MMP的热和机械相互作用的计算,以及对最危险区域的参数控制。本文提出了一种提高低温区井的运行可靠性的方法,即通过超声波监测MMP的变暖区来创建隔热管的多层保护套管结构。根据保温层厚度和井的使用寿命计算保护套管保温层的导热系数。对比评估了MMP在井眼空间的融化半径。
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IMPROVING THE OPERATIONAL RELIABILITY OF OIL WELLS IN THE FAR NORTH
To date, the development of oil fields on the territory of Russia is concentrated in the regions of the Far North. A significant part of these areas is composed of permafrost rocks (MMP). Previously, it was believed that the depth of MMP propagation does not exceed 700 m, however, a geoinformation study of the Markhinskaya well established the spread of MMP to a depth of 1400 m at an average rock temperature of minus 3 C. Thus, the operation of wells in cryolithzones during the thawing of MMP causes serious complications, up to the crumpling of casing strings and tubing. Technical solutions aimed at improving the operational reliability of oil wells in the conditions of the Far North are determined by the use of specialized equipment. The choice of the type of equipment for the specified operating conditions is due to the calculation of the thermal and mechanical interaction of the well with the MMP, as well as parametric control of the most dangerous zones. This article suggests an approach to improve the operational reliability of a well in a cryolytic zone by creating a multilayer structure of a protective casing of a thermally insulated pipe with ultrasonic monitoring of the warming zones of the MMP. The thermal conductivity coefficient of the thermal insulation of the protective casing is calculated depending on the insulation thickness and the life of the well. A comparative assessment of the radius of thawing of the MMP in the borehole space of the well was performed.
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