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Modeling of Foam-Assisted Wellbore Cleanup and Drilling Processes with Both Dry-and Wet-Foam Rheological Properties

机译:泡沫辅助井筒清理和钻孔过程的型号,干湿泡沫流变性能

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As advanced drilling technology gains more popularity in the development of unconventional reservoirs and deepwater fields,the demand for an improved drilling hydraulics modeling escalates today.The situation is also true for foam applications that have long been used as a useful means of downhole cleaning and underbalanced drilling methods.This study investigates how a new foam model,recently developed by Wang et al.(2017),can be applied to a wide range of hole cleaning and drilling scenarios.The model combines rheological properties of wet foams and dry foams by using 9 model parameters(3 to define the range of gas and liquid flowrates and corresponding frictional pressure losses of interest,4 to fit the power-law rheology of wet and dry foams,and last 2 to capture the sensitivity of foam rheology to gas and liquid rates).These scenarios consider foam circulation into 10,000 ft long wells at different inclination angles with a long vertical,inclined,or horizontal trajectory.The results from this new method are compared with two existing foam modeling techniques,so-called Chen et al.'s model(based on the correlations for wet foams only)and Edrisi and Kam's model(based on wet-and dry-foam rheological properties with 5 model parameters).The results show that,with or without formation fluid influx,the new foam model demonstrates the robustness of the new modeling technique in all scenarios capturing foam flow characteristics better,whenever the situation forms stable fine-textured foams or unstable coarse-textured foams.
机译:作为非常规油藏和深水油气田开发先进的钻井技术获得更多的普及,一种改进的钻孔水力模型升级顺应天意形势的需求也已经长期被用作井下清洗和欠平衡的有效手段泡沫应用真钻methods.This研究探讨如何一个新的泡沫模型中,最近由Wang等人开发的。(2017),可应用于广泛的孔清洗,并通过使用钻孔scenarios.The模型结合湿泡沫和干泡沫的流变性质9个模型参数(3以限定气体和液体流速和相应的兴趣,4的摩擦压力损失,以适应湿和干泡沫的幂律流变性的范围内,和最后2捕捉泡沫流变的气体和液体的灵敏度率)。这些方案中考虑泡沫循环成不同的倾斜角度万英尺长井长的垂直,倾斜或水平trajectory.The resul从这种新方法的TS与现有的两个泡沫建模技术相比,所谓的陈等人的模型(基于只湿泡沫的相关性)的基础上湿和干泡沫的流变性能和Edrisi和锦模型( 5个模型参数)。结果表明,有或没有地层流体涌入,新的泡沫模型表明捕捉泡沫的流动性较好的所有场景,新的建模技术,一有情况形成稳定的精细质感泡沫或不稳定的稳健性粗质泡沫。

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