Liu Naipeng, Zhang Di, Gao Hui, Hu Yule, Duan Longchen
School of Automation, China University of Geosciences, Wuhan 430074, China.
Hubei Key Laboratory of Advanced Control and Intelligent Automation for Complex Systems, Wuhan 430074, China.
Sensors (Basel). 2021 May 21;21(11):3592. doi: 10.3390/s21113592.
The accurate and frequent measurement of the drilling fluid's rheological properties is essential for proper hydraulic management. It is also important for intelligent drilling, providing drilling fluid data to establish the optimization model of the rate of penetration. Appropriate drilling fluid properties can improve drilling efficiency and prevent accidents. However, the drilling fluid properties are mainly measured in the laboratory. This hinders the real-time optimization of drilling fluid performance and the decision-making process. If the drilling fluid's properties cannot be detected and the decision-making process does not respond in time, the rate of penetration will slow, potentially causing accidents and serious economic losses. Therefore, it is important to measure the drilling fluid's properties for drilling engineering in real time. This paper summarizes the real-time measurement methods for rheological properties. The main methods include the following four types: an online rotational Couette viscometer, pipe viscometer, mathematical and physical model or artificial intelligence model based on a Marsh funnel, and acoustic technology. This paper elaborates on the principle, advantages, limitations, and usage of each method. It prospects the real-time measurement of drilling fluid rheological properties and promotes the development of the real-time measurement of drilling rheological properties.
准确且频繁地测量钻井液的流变特性对于正确的水力管理至关重要。对于智能钻井而言,它也很重要,因为提供钻井液数据以建立钻速优化模型。合适的钻井液性能可以提高钻井效率并预防事故。然而,钻井液性能主要在实验室中测量。这阻碍了钻井液性能的实时优化以及决策过程。如果无法检测钻井液的性能且决策过程不能及时响应,钻速将会减慢,可能导致事故和严重的经济损失。因此,实时测量钻井液性能对于钻井工程很重要。本文总结了流变特性的实时测量方法。主要方法包括以下四种类型:在线旋转库埃特粘度计、管道粘度计、基于马氏漏斗的数学物理模型或人工智能模型以及声学技术。本文详细阐述了每种方法的原理、优点、局限性及使用方法。展望了钻井液流变特性的实时测量,并推动钻井流变特性实时测量的发展。