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Practical approach to modelling and controlling stick-slip oscillations in oilwell drillstrings

机译:模拟和控制油井钻柱中粘滑振荡的实用方法

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摘要

Stick-slip friction-induced oscillations appearing in oilwell drillstrings are a source of failures which reduce penetration rates and increase drilling operation costs. For this reason, a major problem to solve is modelling the drillstring torsional behaviour and proposing control solutions to help reduce stick-slip phenomenon. This paper is focused on both problems. On the one hand, it presents dynamic drillstring models in order to reproduce stick-slip vibrations under different operating conditions. The model used for the torque on the bit is the main difference with respect to other models proposed in the literature. On the other hand, some experience-based control estrategies are evaluated in order to reduce stick-slip oscillations. These estrategies will use the angular velocity at the drillstring upper part, the torque on the bit and the weight on the bit, proved to have a key importance in the reduction of drillstring torsional vibrations. The control approach followed is a decentralized one, i.e., the angular velocity at the top end of the drillstring and the bit velocity are controlled separately. The supervisory task is made by the driller. ©2004 IEEE.
机译:油井钻柱中出现的粘滑摩擦引起的振荡是导致降低渗透率并增加钻井作业成本的失败根源。因此,要解决的主要问题是对钻柱扭转行为进行建模并提出控制解决方案以帮助减少粘滑现象。本文着重于两个问题。一方面,它提供了动态钻柱模型,以重现在不同操作条件下的粘滑振动。与文献中提出的其他模型相比,用于钻头扭矩的模型是主要区别。另一方面,评估了一些基于经验的控制策略,以减少粘滑振荡。这些策略将利用钻柱上部的角速度,钻头上的扭矩和钻头上的重量,这些对减小钻柱扭转振动具有至关重要的意义。遵循的控制方法是分散控制,即,分别控制钻柱顶端的角速度和钻头速度。监督任务由司钻完成。 ©2004 IEEE。

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