首页> 外文会议>International Conference on Materials Science, Resource and Environmental Engineering >Determination of gas liquid two-phase flow regime transitions in wellbore annulus by virtual mass force coefficient when gas cut
【24h】

Determination of gas liquid two-phase flow regime transitions in wellbore annulus by virtual mass force coefficient when gas cut

机译:气体切割时虚拟质量力系数测定井筒环的气体和液态两相流量转换

获取原文

摘要

With the development of drilling technology to deeper stratum, overflowing especially gas cut occurs frequently, and then flow regime in wellbore annulus is from the original drilling fluid single-phase flow into gas & liquid two-phase flow. By using averaged two-fluid model equations and the basic principle of fluid mechanics to establish the continuity equations and momentum conservation equations of gas phase & liquid phase respectively. Relationship between pressure and density of gas & liquid was introduced to obtain hyperbolic equation, and get the expression of the dimensionless eigenvalue of the equation by using the characteristic line method, and analyze wellbore flow regime to get the critical gas content under different virtual mass force coefficients. Results show that the range of equation eigenvalues is getting smaller and smaller with the increase of gas content. When gas content reaches the critical point, the dimensionless eigenvalue of equation has no real solution, and the wellbore flow regime changed from bubble flow to bomb flow. When virtual mass force coefficients are 0.50, 0.60, 0.70 and 0.80 respectively, the critical gas contents are 0.32, 0.34, 0.37 and 0.39 respectively. The higher the coefficient of virtual mass force, the higher gas content in wellbore corresponding to the critical point of transition flow regime, which is in good agreement with previous experimental results. Therefore, it is possible to determine whether there is a real solution of the dimensionless eigenvalue of equation by virtual mass force coefficient and wellbore gas content, from which we can obtain the critical condition of wellbore flow regime transformation. It can provide theoretical support for the accurate judgment of the annular flow regime.
机译:随着钻井技术进入更深层次的地层,经常发生溢出的储气,然后在井筒环中的流动状态是从原始钻井液单相流入气体和液体两相流。通过使用平均的双流体模型方程和流体力学的基本原理,分别建立了气相和液相的连续性方程和动量保护方程。引入了气体和液体压力和密度之间的关系,得到双曲线方程,并通过使用特征线法来获得等式的无量纲特征值,分析井筒流动调节,以在不同的虚拟质量力下获得临界气体含量系数。结果表明,随着气体含量的增加,方程式值范围越来越小,更小。当气体含量达到临界点时,等式的无量纲的特征值没有真正的解决方案,并且井筒流动状态从泡沫流变为轰炸流动。当虚拟质量力系数分别为0.50,0.60,70和0.80时,临界气体含量分别为0.32,0.34,0.37和0.39。虚拟质量的系数越高,井筒中的较高气体含量对应于过渡流动状态的临界点,这与先前的实验结果很好。因此,可以通过虚拟质量力系数和井筒气体含量确定是否存在方程的无量纲特征值的真实解,我们可以获得井筒流动调节变换的临界条件。它可以为环形流动状态的准确判断提供理论支持。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号