论文详情
卡点精确计算方法与应用
石油钻采工艺
2021年 43卷 第1期
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Title
Accurate free point calculation method and its application
Authors
LI Yumin
MING Xin
LAN Kai
单位
中石化中原石油工程有限公司管具公司
中石化中原石油工程有限公司西南钻井分公司
Organization
Pipe Company, SINOPEC Zhongyuan Petroleum Engineering Ltd., Puyang 457331, Henan, China
Southwest Drilling Company, SINOPEC Zhongyuan Petroleum Engineering Ltd., Chengdu 610000, Sichuan, China
摘要
钻井过程中由于地层或操作不当等因素导致偶发的卡钻,不仅延长了钻井周期,而且可能导致次生故障甚至埋钻等事故,造成严重经济损失。目前,现场采用的提拉法计算卡点方法没有考虑井内管柱所受摩擦阻力影响,导致计算出的卡点深度误差随着摩阻增加而增加,难以适用于高摩阻直井及大斜度井。基于卡点深度计算原理,运用胡克定律,利用上提、下放过程中相同钩载条件下管柱在井眼内所受摩擦阻力大小相等、方向相反的特点,推导了可消除套管内管柱摩擦阻力影响的卡点深度计算公式,同时提出了该计算公式配套的操作方法和实施步骤。实践证明,该方法计算卡点深度结果准确,具有较强的实用价值。
Abstract
In the process of drilling, formation factors or misoperation can lead to incidental pipe sticking, which not only extends the drilling cycle, but also may cause secondary failure and even pipe burying and other accidents, resulting in great economic loss. At present, the pulling method adopted on site to calculate free points doesn’t consider the influence of friction drag applied on downhole pipe strings, which increases the calculation error of free point depth with the increase of the friction drag, so it is hardly applicable to high-friction vertical wells and high-angle deviated wells. In this paper, the free point depth calculation formula which can eliminate the influence of the friction drag applied on the pipe string inside the casing was derived by making use of the performance that the friction drag applied on the downhole pipe string under the same hook load in the process of pulling and lowering is equal in value and opposite in direction, according to the free point depth calculation principle and the Hooke’s Law. What’s more, the operation method and implementation step corresponding to this calculation formula were put forward. The practice proves that this method can calculate the free point depth accurately and has a great practical value.
关键词:
钻井;
卡钻;
卡点深度;
胡克定律;
提拉法;
摩擦阻力;
Keywords:
drilling;
pipe sticking;
free point depth;
Hooke’s Law;
pulling method;
friction drag;
DOI
10.13639/j.odpt.2021.01.006