首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >LABORATORY VISUALIZATION OF GRAVITY FLUID DISPLACEMENT IN WELL ANNULUS AFFECTED BY SUSTAINED CASING PRESSURE
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LABORATORY VISUALIZATION OF GRAVITY FLUID DISPLACEMENT IN WELL ANNULUS AFFECTED BY SUSTAINED CASING PRESSURE

机译:持续套管压力对井筒重力流体位移的实验室可视化

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Sustained Casing Pressure (SCP) in petroleum wells poses environmental risk and needs to be removed using either downhole intervention or annular intervention methods. The latter method involves displacing the annular fluid above the top of the gas-leaking well cement with a heavy fluid to increase the hydrostatic pressure and stop the gas leak. Past field applications of the method failed - most likely due to incompatibility of the two fluids. In this study, a see-through scaled-down hydraulic analog of the well's annulus was designed and used for video-taped displacement experiments with clear synthetic-clay muds and heavy (kill) fluids. The results show that only immiscible hydrophobic kill fluids provide effective displacement. The study demonstrates importance of controlled injection of the kill fluid to set out efficient buoyant settling and prevent initial dispersion. A side-(versus top-) injection geometry and the injection rate data are analyzed to develop empirical correlation of maximum injection rate for a given properties of the two fluids.
机译:石油井中的持续套管压力(SCP)构成环境风险,需要使用井下干预或环形干预方法将其去除。后一种方法涉及用重质流体将漏气井水泥顶部上方的环形流体置换以增加静水压力并阻止气体泄漏。该方法在过去的现场应用失败了-最有可能是由于两种流体不兼容造成的。在这项研究中,设计了透明的井眼环空按比例缩小的水力模拟物,并将其用于使用透明合成粘土泥浆和重质(致死性)流体进行录像带驱替实验。结果表明,只有不混溶的疏水性杀井液才能提供有效的驱替作用。该研究表明,控制注入杀井液对于确定有效的浮力沉降并防止初始扩散的重要性。分析了侧向(相对于顶部)喷射几何形状和喷射速率数据,以针对两种流体的给定特性开发最大喷射速率的经验相关性。

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