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Transient Multiphase Analysis of Well Trajectory Effects in Production of Horizontal Unconventional Wells

机译:水平非传统井生产井轨迹效应的瞬态多相分析

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The effects of horizontal well geometry remain debatable in most production modeling works. Most of recent reports fail to mention the effects of well geometries, especially in severe slugging cases. This study presents a qualitative comparison between different well geometries and their impacts in production performance of horizontal wells. The study utilizes a transient multiphase simulator to mimic the production from a horizontal well over a 12-hour period. The well has a 2-7/8″ ID tubing with TVD of approximately 5000 ft and MD of 10000 ft and maximum inclination angle of 10o within the horizontal section. The trajectories of horizontal section in the well include 5 cases, 5 undulations, hump (one undulation upward), sump (one undulation downward), toeup and toe-down. These configurations are the representative examples of horizontal wells. A reservoir with a given deliverability equation and several perforation stages is used to provide well inflow. The impacts of reservoir deliverability, GOR, pressure and temperature are studied for all well geometries. The simulation results offer some valuable insights into the effects of well trajectory on production performance, including borehole pressure profile, liquid holdup, gas and liquid rate variations with time, and cumulative gas and liquid production. At high production rates, severe slugging is not observed, and thus, the well geometry effects are minimized with a consistent production at the surface. However, toe-up configuration exhibits a slightly better performance than the others. As the productivity and pressure reduces throughout the life of a well, the impacts of well trajectories become clearer. The presence of severe slugs and blockage of perforations near the toes causes a noticeable drop in production. During severe slugging, the pressure profile reveals longer fluctuation cycles, resulting in extreme separator flooding issues. The slugging frequencies are compared among different well geometries. Toe-down case exhibits lower slugging severity. As a result, toe-down well produces the highest cumulative liquid and gas rates. The presence of liquid blockage is observed in lateral and curvature sections. The toe-up and hump configurations exhibit the most severe slugs with minimum cumulative gas and liquid productions. The differences in productions among well trajectories exceed 30% under different well configurations. With the augmented growth of production from unconventional reservoirs, horizontal well technology has grown in oil and gas industry, yet study of well geometry in production system remains to be limited. This study is a unique effort to optimize well configuration and perforation placement in order to alleviate multiphase flow problems in the wellbore. Providing the practical potential on simulation works, this study provides a predictive guidline to connect well geometry selection and production optimization.
机译:在大多数生产建模工程中,水平井几何形状的影响仍然是可贬值的。最近的大部分报告都未能提及井几何的影响,尤其是在严重的弹性盒中。本研究介绍了不同井几何形状与水平井生产性能之间的定性比较。该研究利用瞬态多相模拟器来模拟在12小时内从水平井的生产。该井具有2-7 / 8“ID管,TVD大约5000英尺和MD为10000英尺的MD和水平部分内的10o的最大倾斜角。井中的水平部分的轨迹包括5例,5个起伏,驼峰(向上一个起伏),贮藏(向下一个下降),才结构和脚趾。这些配置是水平孔的代表性示例。具有给定可传递方程和多个穿孔级的储存器用于提供井流入。对所有井几何形状研究了储层可递送性,GOR,压力和温度的影响。仿真结果对生产性能的井轨迹的影响提供了一些有价值的见解,包括钻孔压力曲线,液体夹持,气体和液体速率变化以及累积的气体和液体生产。在高生产率下,未观察到严重的粘性,因此,在表面的一致性产生的井几何效应最小化。然而,Toe-Up配置表现出比其他配置稍好的性能。随着生产力和压力在整个井中减少,井轨迹的影响变得更加清晰。在脚趾附近存在严重的叔盒和穿孔的堵塞会导致产生明显的下降。在严重的挡板期间,压力曲线显示出较长的波动周期,导致极端的分离器洪水问题。在不同的井几何形状中比较镇压频率。脚趾箱表现出较低的折叠严重程度。结果,脚趾良好地产生最高的累积液体和气体速率。在横向和曲率部分中观察到液体堵塞的存在。令牌和驼峰配置具有最小累积气体和液体制作的最严重的粘合剂。在不同的井配置下,井轨迹的生产差异超过30%。随着来自非传统水库的生产增长,水平井技术已经在石油和天然气工业中生长,但生产系统中井几何的研究仍有限制。本研究是优化井配置和穿孔放置的独特努力,以减轻井筒中的多相流动问题。本研究提供了对模拟作品的实际潜力,提供了连接井几何选择和生产优化的预测指导。

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