Novel Technology of Concentric Coiled Tubing Enhances Ultra-Low Pressure Reservoir Wellbore Cleanouts in Kuwait

M. Almatar, F. Alshammari, Naser Bader Alhouti
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Abstract

Wells in the South Ratqa field often fill with sand. Ultra low bottom-hole pressure did not allow efficient sand cleanouts in several wells. Despite using massive amounts of nitrogen during clean out, and largest available CT size (2.375") to ensure enough annular velocity; severe fluid losses occurred into the formation, which resulted in decreased well production post clean outs, moreover handling energized returns has always been a logistic and safety hazard Recently, concentric coiled tubing (CCT) technology was employed for the first time in Kuwait and five wells were identified as viable fill cleanout candidates for which traditional cleanout methods had proved inefficient at best and many times unsuccessful. The system uses concentric coiled tubing and a special vacuum tool designed to apply a localized drawdown, which would deliver the sand particles through the Coiled Tubing / Coiled tubing annulus to surface. Returns were handled using H2S resistant lines into a desander. A carefully engineered cleanout program enabled removal of more than 12 MT of sand from four vertical wells, and also identified the formation damage in a horizontal wellbore. The identification of wellbore damage revealed the best intervention to cure the damage and eliminated speculative remedies that sometimes increased the damage done to reservoir. Additionally, the layout of well plots was designed in a very congested way to maximize output but made it impractical to have return pits, requiring mobile tanks to handle returns, while the energized nature of returns in conventional nitrogen jobs are dangerous to handle in a closed tank environment. CCT eliminated that hazard as the returns are not energized. The campaign has pushed the boundaries of the coiled tubing interventions in Kuwait and has unlocked several wellbore cleanout opportunities using the CCT technology
同心连续油管新技术提高了科威特超低压油藏井筒清洗效果
Ratqa油田南部的油井经常填满沙子。由于井底压力过低,几口井无法进行有效的清砂。尽管在清洗过程中使用了大量的氮气,并且使用了最大的连续油管尺寸(2.375”)来确保足够的环空速度;最近,科威特首次采用了同心连续油管(CCT)技术,并确定了5口井是可行的填充清洗候选井,传统的清洗方法效率低下,而且多次失败。该系统使用同心连续油管和一种特殊的真空工具,设计用于施加局部压降,从而将砂粒通过连续油管/连续油管环空输送到地面。在除砂器中使用抗H2S管线处理回流。经过精心设计的清砂程序,从4口直井中清除了超过12吨的砂粒,并确定了水平井筒中的地层损坏情况。对井眼损伤的识别揭示了修复损伤的最佳干预措施,并消除了有时会增加对储层损害的投机性补救措施。此外,为了最大限度地提高产量,井区的布局设计得非常拥挤,但设置回坑是不切实际的,需要移动储罐来处理回坑,而在封闭的储罐环境中,传统的氮气作业中,回坑的能量特性是很危险的。由于没有通电,CCT消除了这种危险。该活动突破了科威特连续油管干预的界限,并利用CCT技术释放了几次井筒清洗机会
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