钻采工艺 ›› 2021, Vol. 44 ›› Issue (1): 147-151.DOI: 10.3969/J. ISSN.1006-768X.2021.01.34

• 生产线上 • 上一篇    下一篇

南海番禺油田大位移井全程漂浮旋转下套管技术

王志伟, 张伟国, 金 颢, 覃建宇, 王堂青, 王 磊   

  1. 中海石油(中国)有限公司深圳分公司
  • 出版日期:2021-01-25 发布日期:2021-01-25
  • 作者简介:王志伟(1989-),工程师,硕士,2012年毕业于西南石油大学,主要从事海洋钻井研究。地址:(518000)广东省深圳市南山区后海滨路中海油大厦A座,电话:13802569415,E-mail: wangzhiwei0517@163.com

Rotating Casing Running Technology with Full-floatation for Panyu Oilfield ERWs in South China Sea#br#

WANG ZhiweiZHANG Weiguo, JIN Hao, QIN Jianyu, WANG Tangqing, WANG Lei#br#   

  1. Shenzhen Branch, CNOOC China Limited, Shenzhen 518000, China
  • Online:2021-01-25 Published:2021-01-25

摘要: 南海番禺油田大位移井Ø244. 5 mm套管平均下深 5 045m,下入过程中面临裸眼段长,稳斜角度大,地层均质性差,下入摩阻大,断层处钻井液安全密度窗口窄,易发生漏失等难点。大位移井常用的漂浮接箍下套管方式存在着漂浮接箍失效、遇阻时处理手段有限等弊端,为此,结合南海番禺油田大位移井垂深浅、延伸段长的特点,提出了全程漂浮旋转下套管技术,分析了技术原理,介绍了旋转下套管系统、套管强度校核、套管组件选择等一系列关键技术。通过在6口大位移井Ø244. 5 mm套管下入中的应用,其效果显示,当采用全程漂浮的方式旋转下入套管柱时,套管柱受到的轴向力载荷大大减轻,增大了抗拉安全系数,套管柱下入遇阻时,旋转通过遇阻点,避免产生压力激动,通过断层时未发生井下漏失及因黏附压差导致卡套管的情况,套管柱全部下至目的深度。

关键词: 大位移井, 旋转下套管系统, 全程漂浮, 套管选型, 海上油田现场应用

Abstract:

With average Ø244. 5 mm casing setting depth of 5 045 m in Panyu oilfield extended reach wells(ERWs) , which have features such as long open hole with high hold inclination, high friction factor in open hole with multi-interbed, narrow safety window of drilling fluid density in fault location which tend to cause fracture downhole loss in 244. 5 mm casing running process. Currently, casing floatation collar technology was chiefly used in ERWs, which may have disadvantage risks such as floatation collar failure, limited measurements to deal with casing stuck and so on. In light of reality such as shallow true vertical depth(TVD) and long extended hole section in Panyu oilfield ERWs, a rotating casing running technology with full-floatation was presented to avoid those risks. In this paper, technical principle was analyzed and key technologies such as over drive system, stress check of casing string and the selection of casing flotation package were introduced entirely. The effects of this technique were elaborated. Through 6 of Ø244. 5 mm extended-reach wells applications, the results show that, during the rotating running of casing with full-floatation, decrease casing string load, increase hook load safety factor, run casing string through tight section smoothly and get through fault safely without downhole loss, differential stuck and other downhole complications. All ERWs′ Ø244. 5 mm casing string were set at designed depth.

Key words: extended reach well( ERW) , rotating casing running system, full-floatation, casing selection, field application in offshore oilfields