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首页> 外文期刊>SPE Drilling & Completion >Comparing the Results of a Full-Scale Buckling-Test Program to Actual Well Data: New Semiempirical Buckling Model and Methods of Reducing Buckling Effects
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Comparing the Results of a Full-Scale Buckling-Test Program to Actual Well Data: New Semiempirical Buckling Model and Methods of Reducing Buckling Effects

机译:将完整屈曲测试程序的结果与实际油井数据进行比较:新的半经验屈曲模型和减少屈曲效应的方法

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摘要

Buckling and its effects are topics of economic and technical interest as extended reach drilling (ERD) and horizontal wells become critical to maximizing recoverable reserves, particularly in the continental United States and Alaska. Previous work has resulted in important discoveries about drillstring buckling, but to date, little testing has been performed on actual drillpipe in a controlled manner, particularly in measuring drillstring whirl. As a result, there can be disparities between theoretical predictions of buckling effects vs. actual field results. These disparities can result in unrealistically high friction factors required to bring calculated values close to actual data, or in many cases, operational difficulties can result such as high torque, low rate of penetration (ROP), drillstring failures, inability to maintain directional control, or inability to reach the planned depth. To learn more about drillstring behavior in buckling conditions, a full-scale buckling test fixture was developed to evaluate the effects of buckling on 27/8-, 31/2-, and 4-in. drillpipe while sliding and rotating inside 7-in. casing. The test fixture incorporated a variety of sensors and cameras to characterize torque, drag, vibration, and drillstring deformation under buckling loads. As part of the test program, low-friction nonrotating protectors were also tested to measure performance under buckling conditions. The test results show that drillstring buckling occurs at far lower loads than predicted by current models, possibly caused by minor deformations inherent in real drillpipe. The results also show that for a given amount of torque or drag, protectors increased the available compressive load by 20 to 30% and substantially reduced vibration caused by drillstring whirl. The test results were used to develop a new semiempirical buckling model that predicts contact forces resulting from drill-drag modeling software in which it was compared against actual data from a large number and variety of wells. The results show an ability to more accurately predict torque, drag, and vibration caused by buckling and whirl.
机译:屈曲及其影响是经济和技术关注的话题,因为大范围钻探(ERD)和水平井对于最大化可采储量至关重要,特别是在美国大陆和阿拉斯加。先前的工作已经获得了有关钻柱屈曲的重要发现,但是迄今为止,几乎没有以可控的方式对实际钻杆进行任何测试,尤其是在测量钻柱旋涡方面。结果,屈曲效应的理论预测与实际田间结果之间可能存在差异。这些差异可能导致使计算值接近实际数据所需的不切实际的高摩擦系数,或者在许多情况下,可能会导致操作困难,例如高扭矩,低穿透率(ROP),钻柱故障,无法保持方向控制,或无法达到计划的深度。为了了解有关屈曲条件下钻柱行为的更多信息,开发了一种全面的屈曲测试夹具,以评估屈曲对27 / 8-,31 / 2-和4-in的影响。钻杆同时在7英寸内滑动和旋转。套管。该测试夹具结合了多种传感器和摄像头,以表征屈曲载荷下的扭矩,阻力,振动和钻柱变形。作为测试程序的一部分,还对低摩擦不旋转保护器进行了测试,以测量屈曲条件下的性能。测试结果表明,钻柱屈曲发生在比当前模型预测的载荷低得多的载荷下,这可能是由实际钻杆固有的微小变形引起的。结果还表明,对于给定的扭矩或阻力,保护器将可用压缩负载增加了20%至30%,并显着降低了由钻柱回旋引起的振动。测试结果被用于开发一个新的半经验屈曲模型,该模型可以预测钻-拖建模软件所产生的接触力,并将其与来自大量不同井的实际数据进行比较。结果表明,能够更准确地预测由弯曲和旋转引起的扭矩,阻力和振动。

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