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作 者:韩洪升[1] 王德民[2] 国丽萍[1] 韩雪松[3]
机构地区:[1]大庆石油学院石油工程学院,黑龙江大庆163318 [2]大庆油田有限责任公司,黑龙江大庆163000 [3]大庆油田第三采油厂,黑龙江大庆163113
出 处:《石油学报》2004年第4期92-95,共4页Acta Petrolei Sinica
基 金:国家自然科学基金项目(50274019/E040103)资助
摘 要:大庆油田实施聚合物驱油以后 ,出现了抽油杆受力状况恶化、抽油杆柱严重偏磨的现象 ,为此开展了粘弹性流体水动力学理论和试验研究 ,得出了粘弹性流体在抽油机井筒内的流动规律及对抽油杆柱法向应力的影响规律 ,定量测出了粘弹性流体对抽油杆柱的法向应力值和抽油杆柱产生的偏心率。提出了粘弹性流体的法向力是造成抽油机井杆管偏磨的主要原因 ,建立了法向力作用下抽油杆纵向横向弯曲模型 ,并提出了抽油杆加扶正器和底部加重的综合防止偏磨措施 。The working condition of sucker rod under force action became worse,and the partial abrasion of sucker rod has resulted in the break and drop of sucker rods,after polymer flooding put into effect in Daqing Oilfield.The visco?-elastic fluid hydrodynamic theory was applied to the wear-resistance experiment on sucker rods.The values of normal stress in suck string generated by visco?-elastic fluid and eccentricity brought out by sucker string were measured quantitatively.The partial abrasion of sucker string and tube in oil well was caused from the normal stress of visco?-elastic fluid.A module for bending analysis of sucker rod in cross direction and wire direction was developed.Some integrated measures to avoid partial abrasion of sucker string and tube were provided.To add a centralizer between sucker rods and increase of weight at bottom of sucker are beneficial to protect the sucker rods.The use of this method has gained a great economic effect in Daqing Oilfield.
关 键 词:粘弹性流体 法向应力 抽油杆 偏磨 扶正器 大庆油田
分 类 号:TE833[石油与天然气工程—油气储运工程]
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