Hydrodynamic Techniques in Well Control: In Professional Point of View

Mohamed Lamoj
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Abstract

The purpose of hydrodynamic methods is to understand the motion of fluids. The field of hydrodynamics has expanded widely in the petroleum industries and takes into account the energy of a fluid - the effect of pressures - the continuous matter, in short. Hydrodynamic theory deals with solving problems in oil and gas fields. Well control techniques focus on not losing control of the well in the first place. Because it is one of the most important aspects of drilling operations. Kicks can lead to explosions with potential loss of life and equipment. Choosing the right way to kill the well is very important and protects against human and equipment losses. Therefore, this study will choose the appropriate method for killing the well based on which conditions and characteristics of the well from a professional and safe point of view. In this study I used Kill sheet Excel model to compare the killing methods in terms of speed, efficiency, ambient environment, and well characteristics. Findings showed that the concurrent method is the best way to kill thr well if all resources and equipment are available at the drilling site, After that comes the engineer’s method if the calculations were done correctly. Because it saves time with only one cycle and reduces casing pressure. Finally, the Driller method because it consumes more time and more circulation which leads to an increase in casing pressure. Thus, it can be said that this study enables us to choose the appropriate method for killing the well from a heuristic point of view.
井控中的流体动力学技术:从专业角度看
水动力学方法的目的是了解流体的运动。流体动力学在石油工业中得到了广泛的发展,它考虑了流体的能量——压力的影响——简而言之就是连续的物质。水动力理论是解决油气田问题的理论。井控技术首先关注的是不失去对井的控制。因为它是钻井作业中最重要的方面之一。踢腿可能导致爆炸,可能造成生命和设备的损失。选择正确的压井方式非常重要,可以避免人员和设备的损失。因此,本研究将根据井的条件和特点,从专业和安全的角度选择合适的压井方法。在这项研究中,我使用了压井表格Excel模型,从速度、效率、环境环境和井特征等方面对不同的压井方法进行了比较。研究结果表明,如果钻井现场的所有资源和设备都可用,并行方法是最好的压井方法,其次是工程师的方法,如果计算正确的话。因为它节省了一次循环时间,降低了套管压力。最后,司钻法,因为它消耗更多的时间和更多的循环,导致套管压力增加。因此,可以说,本研究使我们能够从启发式的角度选择合适的压井方法。
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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