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抽油机悬点与抽油杆柱运动协调及临界冲次研究
引用本文:陈德春,周淑娟,向刚,吴晓东.抽油机悬点与抽油杆柱运动协调及临界冲次研究[J].油气地质与采收率,2011,18(2).
作者姓名:陈德春  周淑娟  向刚  吴晓东
作者单位:1. 中国石油大学(北京)石油天然气工程学院,北京,102249;中国石油大学(华东)石油工程学院,山东东营,257061
2. 中国石油大学(华东)石油工程学院,山东东营,257061
3. 中国石油大学(北京)石油天然气工程学院,北京,102249
基金项目:中国石油化工股份有限公司导向项目"胜利油田机采系统技术经济政策界限研究"
摘    要:稠油粘度高,抽油杆柱在井筒流体中运动摩阻大,特别是下冲程,可能会造成抽油杆柱下不去或抽油杆柱滞后于抽油机悬点的运动而产生冲击载荷等,影响油井的正常生产.为此,基于常规游梁式抽油机与宽带式抽油机悬点运动特性及抽油杆柱受力分析,建立了宽带式抽油机悬点运动规律和抽油杆柱在井筒液体中自由下行运动规律的计算模型,分析了悬点运动与抽油杆柱下行运动的协调性,计算了临界冲次.研究结果表明,抽油杆柱在井筒流体中自由下行时,先做变加速运动,当速度增加、下行粘滞力增大到使抽油杆柱受力平衡时,速度达到最大值,开始做匀速运动;等值粘度越小,抽油杆柱达到匀速运动的时间越长,最大下行速度越大;抽油机悬点与抽油杆柱下行运动之间存在临界冲次,当油井生产冲次小于等于临界冲次时,抽油机悬点与抽油杆柱下行运动才能协调;临界冲次随井筒流体粘度的增加而降低,在相同等值粘度的条件下,长冲程、慢冲次有利于抽油机悬点与抽油杆柱下行运动的协调,从而保证稠油的高效开采.

关 键 词:杆柱运动模型  悬点运动模型  临界冲次  协调  稠油

Studies on coordination between suspension center's and rod string's movements and critical stroke frequency
Chen Dechun,Zhou Shujuan,Xiang Gang et al. Chen Dechun,College of Petroleum , Gas Engineering,China University of Petroleum ,Beijing City,China.Studies on coordination between suspension center's and rod string's movements and critical stroke frequency[J].Petroleum Geology and Recovery Efficiency,2011,18(2).
Authors:Chen Dechun  Zhou Shujuan  Xiang Gang Chen Dechun  College of Petroleum  Gas Engineering  China University of Petroleum  Beijing City    China
Affiliation:Chen Dechun,Zhou Shujuan,Xiang Gang et al. Chen Dechun,College of Petroleum and Gas Engineering,China University of Petroleum (Beijing),Beijing City,102249,China
Abstract:The rod string stands huge friction forces while moving in tubing fluids especially in the down stroke process due to high viscosity of heavy oil. This may cause the difficulty of rod string's downward moving or produce shock load because of rod string' s hysteresis to suspension center's motion which will affect oil wells' production. In view of this problem, the calculation models of wide-belt pumping unit's suspension center movement law as well as rod string's free movement law in tubing fluids are buil...
Keywords:movement model of rod string  movement model of suspension center  critical stroke frequency  coordination  heavy oil  
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