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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Finite Element Modeling of Slip Insert Geometric Grip Optimization for Oil Well Drill Pipes
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Finite Element Modeling of Slip Insert Geometric Grip Optimization for Oil Well Drill Pipes

机译:油井钻管滑动刀片几何握力优化的有限元建模

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摘要

Drilling is being used to access ever-deeper oil and gas reservoirs, thereby presenting various challenges to the design and operation of down-hole tools. Slip inserts are suspension devices that are used to lower the drill pipe into the borehole and lift it to the wellhead, and their performance determines the extended depth of the borehole. In this paper, based on the field and laboratory test of the slip system, parameter sensitivity analysis is applied to the performance of a slip insert to guide the design of the latter. First, a mechanical model is developed of the drill pipe with the slip insert acting on it, and the stress acting on the drill pipe is analyzed theoretically by regarding the drill pipe as a thick-walled cylinder. Next, a numerical model is established to investigate how the slip-insert structure influences the drill-pipe stress, wherein the drill-pipe diameter is 5″ and the axial load is 180?tons. Finally, the results of a series of numerical simulations are presented. For the present slip insert and drill pipe, the optimum slip-insert parameter values are a front-rake angle of 70°, a back-rake angle of 30°, a tooth height of 2?mm, and zero chamfer.
机译:钻井用于进入更深的石油和气体储层,从而向下孔工具的设计和操作呈现各种挑战。滑动件是悬架装置,用于将钻杆降低到钻孔中并将其提升到井口,并且它们的性能决定了钻孔的延伸深度。本文基于防滑系统的现场和实验室测试,参数灵敏度分析应用于滑动插入件的性能,以引导后者的设计。首先,通过作用在其上的滑动插入物体开发机械模型,从理论上,通过将钻杆作为厚壁圆筒理论上地分析作用在钻管上的应力。接下来,建立一个数值模型来研究滑动插入结构如何影响钻管应力,其中钻管直径为5“,轴向载荷为180Ω吨。最后,提出了一系列数值模拟的结果。对于目前的滑动插入和钻杆,最佳滑动插入件参数值是70°的前耙角,返回角度为30°,齿高2Ωmm,校倒角。

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