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作 者:李秋敏[1] 刘白雁[1] 陈新元[1] 谢剑刚[1] 曾良才[1]
机构地区:[1]武汉科技大学机械自动化学院,武汉430081
出 处:《石油矿场机械》2008年第8期10-13,共4页Oil Field Equipment
基 金:国家自然科学基金项目(50574070);国家863重大专项(2006AA06A102);湖北省自然科学基金项目(2004ABA002)
摘 要:自动垂直钻井系统在工作时,导向套钻杆要有一个相对转速。导向套在与钻杆连接轴承的摩擦转矩的作用下随钻杆转动,而井下返程泥浆在通过导向套时也会产生阻碍导向套转动的反向扭矩,该反向扭矩是保证导向套与钻杆存在相对转速的一个关键因素。利用FLUENT软件包对导向套井下泥浆流场进行建模仿真,揭示了泥浆通过导向套时的流动特性。计算结果表明,泥浆对导向套的反向扭矩取决于泥浆的流量、导向套转速等多种因素,只要钻杆转速超过平衡钻杆与导向套的摩擦转矩的临界转速,该反向扭矩就可以使导向套与钻杆之间产生相应的转速差。When the automatic anti-deviation drilling system is in operation, a relative rotate speed is needed between the steerable sleeve and the drill string. The steerable sleeve rotates as a result of the friction torque exerted by the bearing connecting the sleeve and the drill string, while the backtracking mud pass through the sleeve and produce a reverse torque preventing the sleeve from rotating, which is a key factor to ensure a relative rotate speed between the sleeve and the drill string. The CFD software Fluent was used to model the flow field of the down-hole mud, and ex- plore the flow characteristics. The simulation results indicated that the value of the reverse torque depends on several factors such as the mud flux, the sleeve rotate speed and so on, and as long as the rotate speed of the drill string exceeds the critical rotate speed, the reverse torque by the mud to the sleeve is sufficient to produce a relative rotate speed between the sleeve and the drill string.
分 类 号:TE921.201[石油与天然气工程—石油机械设备]
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