首页|逆流条件下基于能量守恒的Taylor泡运移速度预测模型

逆流条件下基于能量守恒的Taylor泡运移速度预测模型

Taylor bubble migration velocity prediction model based on energy conservation under countercurrent condition

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在逆流条件下分析Taylor气泡运移行为,考虑流体的特征本构方程提出管流流场及Taylor气泡周围速度场计算方法,基于速度场模型建立气泡各阻力的能量耗散模型.基于能量守恒分析提出统一的适用于不同流变类型的Taylor泡上升速度预测模型(模型T),探究逆流条件下Taylor泡运移规律.结果表明:与公开试验数据对比,模型T对逆流条件下Taylor泡运移速度转折点的预测误差小于 7.35%;随气泡体积增加,鼻端区域和尾流区域的能量耗散比例降低,液膜区的能量耗散比例增加;随气泡体积增加,屈服应力、惯性力和表面张力做功占比降低,黏性耗散占比增加;制约气泡上升速度增加的原因是气泡浮力做功增加的正功值被液膜区增加的能量耗散相抵消.
Based on the analysis of Taylor bubble migration behavior under countercurrent condition and considering the char-acteristic constitutive equation of fluid,the calculation method of pipe flow field and velocity field around Taylor bubble was proposed,and the energy dissipation model of bubble resistance based on the velocity field model was established.On the bases of the energy conservation analysis,a unified Taylor bubble rising velocity prediction model(Model T)suitable for dif-ferent rheological types was put forward to explore the law of Taylor bubble migration under countercurrent conditions.The re-sults show that compared with the public experimental data,the prediction error of model T for the turning point of Taylor bubble migration velocity under countercurrent conditions is less than 7.35%.With the increase of bubble volume,the ener-gy dissipation ratio of nose region and wake region decreases,and the energy dissipation ratio of the liquid film region increa-ses.With the increase of bubble volume,the work proportion of yield stress,inertial force and surface tension decreases,and the proportion of viscous dissipation increases.The reason for restricting the increase of bubble rising speed is that the positive work value of bubble buoyancy is offset by the increased energy dissipation in the liquid film area.

countercurrent flowTaylor bubblespeed prediction modelvelocity fieldenergy conversion

娄文强、王金堂、贺艳祥、张党生、孙小辉、孙宝江、王志远

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中国石油大学(华东)石油工程学院,山东青岛 266580

中国石油煤层气有限责任公司,北京 100028

中国石油集团渤海钻探工程有限公司井下作业分公司,河北沧州 062552

非常规油气开发教育部重点实验室(中国石油大学(华东)),山东青岛 266580

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逆流流动 Taylor泡 速度预测模型 速度场 能量转化

国家自然科学基金重大项目广东省海洋经济发展(海洋六大产业)专项中石油重大科技专项山东省博士后创新人才支持计划项目

51991363GDNRC[2021]56ZD2019-184-003SDBX2020005

2023

中国石油大学学报(自然科学版)
中国石油大学

中国石油大学学报(自然科学版)

CSTPCDCSCD北大核心
影响因子:1.169
ISSN:1673-5005
年,卷(期):2023.47(6)
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