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Study on Cuttings Starting Velocity in Air Drilling Horizontal and Highly-Deviated Wells

机译:空气钻井水平井和高斜井钻屑起始速度的研究

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Air injection rate as the key parameter of drilling air is directly related to the success of drilling procedure. Inthe previous studies, most of air injection rate models were built based on the vertical wells, which are not appropriate forhorizontal and highly-deviated well and limit the wide application of air drilling to some extent. Based on the movementanalysis of cuttings, this paper assumed that after the cuttings deposit to the low side of borehole, Air is injected to carrythe cuttings out of the wellbore. Then, the starting velocity model in different hole angles is established through the stressanalysis of cuttings motion, which can be used to calculate the minimum air injection rate. The numerical simulationresults show that starting velocity of cuttings reaches the maximum in the hole angle 60-70 degrees. The larger diametercuttings require a high starting velocity, which is difficulty to be transported. This means some appropriate methodsshould be applied for air drilling procedure, like using secondary crush tools. The subsidence degree is one importantfactor to the calculation model, and it is necessary to study cutting subsidence degree in next step.
机译:空气注入量作为钻井空气的关键参数,直接关系到钻井程序的成功与否。在以前的研究中,大多数注气速率模型都是基于垂直井建立的,不适用于水平井和高斜率井,并且在一定程度上限制了空气钻探的广泛应用。基于岩屑运动分析,本文假设岩屑沉积到井眼低端后,注入空气将岩屑带出井眼。然后,通过对钻屑运动的应力分析,建立了不同孔角的起始速度模型,可用于计算最小注气量。数值模拟结果表明,钻屑的起始速度在孔角60-70度时达到最大值。较大的直径切口需要较高的启动速度,这很难运输。这意味着应将一些适当的方法应用于空气钻孔过程,例如使用辅助破碎工具。沉陷度是计算模型的重要因素,下一步需要研究切削沉陷度。

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