首页> 外文期刊>Journal of Energy Resources Technology >Hydraulics of Drilling With Aerated Muds Under Simulated Borehole Conditions
【24h】

Hydraulics of Drilling With Aerated Muds Under Simulated Borehole Conditions

机译:在模拟钻孔条件下用充气泥浆钻井的液压系统

获取原文
获取原文并翻译 | 示例
       

摘要

Maintaining optimum circulation rates is. important in aerated mud drilling operations. However, reliable predictions of the optimum rates require accurate modeling of the factional pressure loss at bottom-hole conditions. This paper presents a mechanistic model for underbalanced drilling with aerated muds. Extensive experiments in a unique field-scale high pressure and high temperature flow loop were performed to verify the predictions of the model. This flow loop has a 150×89 mm~2 (6" × 3.5") horizontal annular geometry and is 22 m long. In the experiments, cuttings were introduced at a rate of 7.5 kg/min, representing a penetration rate of 15 m/h in the annular test section. The liquid phase flow rates were in the range of 0.30-0.57 m~3/min, representing superficial liquid velocities in the range of 0.47-0.90 m/s. The gas liquid ratio (gas volume fraction under in situ condition) was varied from 0.0 to 0.38. Test pressures and temperatures ranged from 1.28 to 3.45 MPa, and 27℃ to 80℃, respectively. Gas liquid ratios were chosen to simulate practical gas liquid ratios under downhole conditions. For all the test runs, pressure drop and cuttings bed height over the entire annular section were measured. Flow patterns were identified by visual observations through a view port. The hydraulic model determines the flow pattern and predicts frictional pressure losses in a horizontal concentric annulus. The influences of the gas liquid ratio and other flow parameters on the frictional pressure loss are analyzed using this model. Comparisons between the model predictions and experimental measurements show a satisfactory-agreement. The present model is useful for the design of underbalanced drilling applications in a horizontal wellborn.
机译:保持最佳循环速度是。在充气泥浆钻井作业中很重要。但是,对最佳速率的可靠预测需要对井底条件下的分压损失进行精确建模。本文提出了一种用充气泥浆进行不平衡钻进的力学模型。在独特的现场规模的高压和高温流动回路中进行了广泛的实验,以验证模型的预测。该流动回路具有150×89 mm〜2(6“×3.5”)的水平环形几何形状,长22 m。在实验中,以7.5 kg / min的速度引入切屑,这表示在环形测试区的穿透速度为15 m / h。液相流速在0.30-0.57m〜3 / min的范围内,表示表观液体速度在0.47-0.90m / s的范围内。气液比(原位条件下的气体体积分数)从0.0变化到0.38。测试压力和温度分别为1.28至3.45 MPa和27℃至80℃。选择气液比以模拟井下条件下的实际气液比。对于所有测试运行,都测量了整个环形截面上的压降和切屑床高度。通过观察口通过视觉观察来识别流动模式。水力模型确定流量模式并预测水平同心环空中的摩擦压力损失。利用该模型分析了气液比和其他流量参数对摩擦压力损失的影响。模型预测与实验测量之间的比较显示出令人满意的协议。本模型对于水平井中欠平衡钻井应用的设计很有用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号