首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >CALCULATION OF FRICTION FACTORS AND DOWNHOLE WEIGHT ON BIT USING ANALYTICAL MODEL OF TORQUE AND DRAG
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CALCULATION OF FRICTION FACTORS AND DOWNHOLE WEIGHT ON BIT USING ANALYTICAL MODEL OF TORQUE AND DRAG

机译:用扭矩和阻力分析模型计算钻头的摩擦系数和井下重量。

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To maintain high rate of penetration (ROP) and to realize automatic drilling, it is necessary to monitor and control the weight on bit (WOB). Generally, the WOB is measured at the wellhead, and it is called surface WOB (SWOB). During directional drilling, there is big difference between the SWOB and downhole WOB (DWOB). In this paper, an analytical model for torque and drag of the drillstring is developed to calculate the DWOB. When building the model, the well profiles are separated to two categories, including straight section and curved section. Moreover, for the curved section, the azimuth and inclination of a well are considered while modeling, adequately. Based on a set of field tests, the friction factors and DWOB are calculated. The results indicate that there is a good match in value and trend between the data calculated and the one measured. In practice, the model can be used to predict and adjust the DWOB in autodriller system for real-time drilling monitoring. In addition, the model can also be applied to estimate downhole conditions and diagnose drilling status.
机译:为了保持较高的钻速(ROP)并实现自动钻探,有必要监视和控制钻压(WOB)。通常,WOB是在井口处测量的,称为地面WOB(SWOB)。在定向钻井过程中,SWOB和井下WOB(DWOB)之间存在很大差异。在本文中,建立了钻柱扭矩和阻力分析模型以计算DWOB。在构建模型时,井剖面分为两类,包括直截面和弯曲截面。此外,对于弯曲截面,在建模时要充分考虑井的方位角和倾斜度。基于一组现场测试,计算了摩擦系数和DWOB。结果表明,在计算出的数据和所测得的数据之间,值和趋势具有良好的匹配性。实际上,该模型可用于预测和调整自动钻探系统中的DWOB,以进行实时钻探监控。此外,该模型还可用于估算井下条件并诊断钻探状态。

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