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Is Well Clean Enough? A Fast Approach to Estimate Hole Cleaning for Directional Drilling

机译:干得好吗? 一种快速探测定向钻孔的孔清洁方法

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In spite of many recent technology improvements in drilling, hole cleaning remains a significant challenge, especially in deviated and horizontal wells. Inadequate hole cleaning can lead to a series of problems such as stuck pipe, fractured formation, high drag and torque, premature bit wear, decreased ROP, logging, and casing and cementing difficulties. Hole cleaning is a complex issue that is affected by many drilling parameters. The major approaches of hole cleaning evaluations include experimental correlations and mechanistic models. But these techniques frequently require complex computations or numerical iterations to get the solutions. In this paper, a set of charts is developed to allow the drilling engineer to quickly estimate the cuttings volumetric concentration in the wellbore. From previous cuttings transport studies, we know that well inclination angle, drilling fluid velocity, fluid rheology, fluid density and drill pipe rotation have the most important effects on hole cleaning. These parameters are divided into several ranges based on their sensitivity to cuttings concentration in the wellbore. The charts are obtained by running a hole cleaning simulator, which is based on a large number of experimental and modeling studies of cuttings transport. The results of the charts are verified by experimental data. The difference between the charts’ prediction results and experimental data are within 20%. Instead of solving complex equations in cuttings transport models, drilling engineers are able to quickly estimate the cuttings volumetric concentration by looking up the charts and conducting very simple calculations. This paper is also helpful in guiding the driller to quickly choose proper operational parameters during drilling operations.
机译:尽管钻井的最近技术改进,但孔清洁仍然是一个重大挑战,特别是在偏离和水平井中。孔清洁不足会导致一系列问题,如卡住管道,骨折形成,高压和扭矩,过早的钻头磨损,降低,测井和套管和粘合困难。孔清洁是一种复杂的问题,受许多钻探参数的影响。孔清洁评估的主要方法包括实验相关性和机械模型。但这些技术经常需要复杂的计算或数字迭代来获取解决方案。在本文中,开发了一组图表,以允许钻井工程师快速估计井筒中的切屑体积浓度。从先前的切割传输研究中,我们知道井倾斜角度,钻孔流体速度,流体流变学,流体密度和钻孔管旋转对孔清洁有最重要的影响。这些参数基于它们对井筒中的切割浓度的敏感性分为几个范围。通过运行孔清洁模拟器来获得图表,该模拟器基于扦插传输的大量实验和建模研究。图表的结果通过实验数据验证。图表预测结果和实验数据之间的差异在20%以内。钻井工程师不能通过查找图表并进行非常简单的计算来快速估计切屑体积浓度的复杂方程。本文也有助于引导钻机在钻井操作期间快速选择适当的操作参数。

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