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Cuttings transport in horizontal and highly deviated wellbores

机译:切屑在水平井眼和高度偏离井眼中的运输

摘要

Drilling horizontal and highly deviated wells is almost always accompanied by hole cleaning issues and cuttings transport problems. This study was conducted to gain more in-depth understanding of cuttings transport in this type ofwells. A flow loop was designed to address the whirling and orbital motion ofa self-eccentric drillpipe under various conditions ofhole inclinations, fluid velocity and viscosity as well as particle size. In this study, it has been observed that the orbital motion of the drillpipe plays a crucial role in the rate of cuttings-bed erosion and transport pattern under the action of streaming fluid and hence affect hole cleaning capabilities of the drilling fluid in highly deviated and horizontal sections of the well. Pipe rotation was seen to improve hole cleaning to up to 74 %. Annular velocity and degree of turbulence is also shown to be critical for efficient hole cleaning requirements. Increasing hole inclination from 60° to 90° has a substantial effect on hole cleaning, in most situations a 28% improvement was established as the angle turns from 60° to 90°. However, the effect of increasing fluid viscosity at velocities ofthis study adversely affect hole cleaning. Increasing the system kinematic viscosity from 1 cSt to 10 cSt turns the system from turbulent to laminar flow and resulted in about 38 % reduction in hole cleaning. Finally cuttings size was found to have a minor effect on hole cleaning. In this study, cuttings of 1.2 and 2.4 mm were used. Higher velocities and pipe rotation as well as higher viscosities and hole inclination seemed to assist transportation of large particles than smaller ones.
机译:钻井水平井和高度偏斜的井几乎总是伴随着孔清洁问题和钻屑运输问题。进行这项研究是为了更深入地了解这类油井中的岩屑运输。设计了一种流动环路来解决自偏心钻杆在孔倾角,流体速度,粘度以及粒径等各种条件下的回旋和轨道运动。在这项研究中,已观察到钻杆的轨道运动在流动流体的作用下对钻屑床侵蚀和运输方式的速率起着至关重要的作用,因此影响了在高度偏斜和偏斜情况下钻井液的孔清洁能力。井的水平剖面。观察到管道旋转可将孔清洁度提高到74%。环形速度和湍流度对于有效的孔清洁要求也很关键。将孔的倾斜度从60°增大到90°会对孔的清洁产生重大影响,在大多数情况下,当角度从60°变为90°时,可将孔的倾斜度提高28%。但是,在本研究中,随着速度的增加,流体粘度的增加会对孔的清洁产生不利影响。将系统运动粘度从1 cSt增加到10 cSt,可使系统从湍流变为层流,并导致孔清洁减少约38%。最终发现切屑尺寸对孔的清洁影响较小。在这项研究中,使用了1.2和2.4毫米的切口。较高的速度和管道旋转以及较高的粘度和孔的倾斜度似乎比较小的颗粒更有助于大颗粒的运输。

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