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Study on the migration of gas kicks in undulating sections of horizontal wells

机译:水平井起伏段瓦斯涌动运移研究

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Undulations are typically encountered in horizontal wells. Gas gathers at the top of undulating sections at low liquid velocity or well shut-in conditions. Thus, a gas slug is formed if gas kicks occur because of buoyancy, which makes well control more complex and difficult. In this paper, the storage and removal processes of the gas slug are simulated by experiments and the migration of the gas slug are analyzed. The results indicate that a minimum circulation velocity is required to remove the gas slug for a certain size and shape of undulating section of horizontal well. In addition, a migration model of gas kicks in undulating sections of horizontal wells is proposed based on the theoretical analysis. The model considers the effects of density difference, degree of curvature, surface tension, viscosity, and pipe diameter on gas slug removal rate and shows a good consistence with experimental results.
机译:在水平井中通常会遇到波动。在低液体速度或井关闭条件下,气体聚集在起伏部分的顶部。因此,如果由于浮力而发生气涌则形成气团,这使得井的控制更加复杂和困难。本文通过实验模拟了气团的储存和去除过程,并对气团的迁移进行了分析。结果表明,对于一定大小和水平井的波浪形截面形状,需要最小的循环速度才能去除气团。另外,在理论分析的基础上,提出了水平井起伏段瓦斯涌出运移模型。该模型考虑了密度差,曲率,表面张力,粘度和管径对气团去除率的影响,与实验结果具有很好的一致性。

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