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Improved Real–Time Estimation of Return Flow Rate of Drilling Fluids by Model Adaptation for Friction Parameter

机译:摩擦参数模型自适应改进的钻井液回流实时估计

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摘要

Early kick and loss detection is a major concern in any drilling operation. A real-time return flow rate measurement would be an added advantage for the early kick and loss detection for conventional drilling systems. In this paper, the real-time estimation of the return flow rate during drilling is studied, using a Venturi channel. A reduced order, 1D, mathematical equation for the shallow water flow/open flow in the Venturi channel is investigated with various non-Newtonian friction models. The volumetric fluid flow rate is estimated online using an unscented Kalman filter. In order to improve the fluid flow rate estimation, the model is adapted to some of the rheological parameters in real time. A simple and effective fit-for-purpase friction model is developed and compared with the other friction models from literature. The fit-fir-purpose model has the least estimation error (RMSE 1.465%) and requires less information as inputs. The proposed method exhibits promising potential to be used as an online return flow rate measurement for early kick and loss detection in conventional drilling.
机译:在任何钻井作业中,提早发现突跳和损失是一个主要问题。对于常规钻井系统的早期反冲和损失检测,实时回流流量测量将是一个额外的优势。在本文中,使用文丘里通道研究了钻井过程中回流流速的实时估算。利用各种非牛顿摩擦模型研究了文丘里河道浅水流/开水流的降阶一维数学方程式。使用无味卡尔曼滤波器在线估计体积流体流速。为了改善流体流速估计,该模型被实时地适配于一些流变参数。建立了一种简单有效的针对购买的摩擦模型,并将其与文献中的其他摩擦模型进行了比较。拟合目标模型具有最小的估计误差(RMSE 1.465%),并且需要较少的信息作为输入。所提出的方法显示出有希望的潜力,可以用作在线回流量测量,用于常规钻井中的早期反冲和损失检测。

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