Swab – Surge Pressure Investigation, and the Influence Factors, Prediction and Calculation (Review)

Amel Habeeb Assi
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Abstract

Surge pressure is supplemental pressure because of the movement of the pipes downward and the swab pressure is the pressure reduction as a result of the drill string's upward movement. Bottom hole pressure is reduced because of swabbing influence. An Investigation showed that the surge pressure has great importance for the circulation loss problem produced by unstable processes in the management pressure drilling (MPD) actions. Through Trip Margin there is an increase in the hydrostatic pressure of mud that compensates for the reduction of bottom pressure due to stop pumping and/or swabbing effect while pulling the pipe out of the hole. This overview shows suggested mathematical/numerical models for simulating surge pressure problems inside the wellbore with adjustable cross-section parts. The developed models require simple input data that may be gotten from the rig location. Pressure variations due to Swabs and surge has been a major concern in the oil industry for numerous years. If the pressure variations become moreover extraordinary, this leads to formation fracture, and formation influx principal to a kick. In the worst circumstances and situations that kick principal on the blowout and put crew life in hazard. By using theoretical investigation and experimental consequences, it established that the surge pressure is a function of the well depth, the drilling tools combination, the diameter of the wellbore, drilling mud properties, drilling pipe operation speed, and acceleration of the drill pipe movement, etc. This review focuses and investigates the essential theory and on software that computes the pressure variations in different flow conditions to predict surge and swab pressure values.
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抽汲-喘振压力调查、影响因素、预测和计算(回顾)
涌动压力是由于管柱向下运动而产生的补充压力,抽汲压力是由于钻柱向上运动而产生的压力降低。由于抽吸的影响,井底压力降低。研究表明,在管理压力钻井(MPD)作业中,冲击压力对不稳定过程产生的循环漏失问题具有重要意义。通过起下钻余量,泥浆的静水压力增加,弥补了在将管柱拔出井眼时由于停止泵送和/或抽汲作用而导致的底部压力降低。本文概述了用于模拟井筒内具有可调节截面部件的冲击压力问题的建议数学/数值模型。开发的模型需要简单的输入数据,这些数据可以从钻机位置获得。多年来,由于抽汲和井喷引起的压力变化一直是石油行业关注的主要问题。如果压力变化变得更加异常,这将导致地层破裂,地层流入导致井涌。在最坏的情况下,会导致井喷,使船员的生命处于危险之中。通过理论研究和实验结果,确定了冲击压力是井深、钻具组合、井筒直径、钻井泥浆性质、钻杆运行速度、钻杆运动加速度等因素的函数。本文重点研究了计算不同流动条件下压力变化的基本理论和软件,以预测喘振和抽汲压力值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
12 weeks
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