流体动力学在早期井涌检测中的最佳测量位置

Sun Hehui, Liyun Lao, Li Dengyue, Tao Qinglong, Hong Ma, Li Huaiyu, Song Changhong
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引用次数: 1

摘要

无论是陆上钻井还是海上钻井,越来越多的早期井涌/漏失检测(EKLD)设备被用于钻井作业中。在深水和海洋钻井领域,高精度电磁流量计和科里奥利流量计被用于测量钻井液的进出口流量。虽然取得了良好的效果,但受钻井液、井场空间限制和生产成本等因素的影响,在陆上钻井领域,工程师通常采用桨形流量计和超声波液位计来测量进出口流量。存在测量精度低、预警时间长等问题。为了提高测量精度和预警精度,对电磁流量计在陆上钻井出口流量测量方面进行了研究。研究发现,电磁流量计在v型试验管道中的安装位置是决定测量精度的关键因素。采用流体力学方法研究了不同流体类型对测量结果的影响。利用Ansys fluent软件建立流体模型,结合钻井液的相关参数设置边界条件。研究发现,v型管道的下降段适用于层流和分散流状态。是电动流量计的合适安装位置;对于段塞流,上升段是一个合适的安装位置。通过室内模拟和现场试验验证了理论结论。将理论研究成果用于试验管道的优化设计,解决了现场瞬态大流道和固相碎屑沉积问题,取得了较好的效果。根据准确的出口流量测量数据,开发了自动灌浆模块。自动注浆作业对钻井起下钻施工过程有很大帮助,提高了井控安全水平,为EKLD装置在岸钻领域的大规模应用奠定了良好的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Suitable Measurement Position Through Fluid Dynamics in Early Kick Detection
More and more early kick/loss detection (EKLD) devices are being used in drilling operations, whether in the field of onshore or offshore drilling. In the field of deepwater and offshore drilling, high-precision electromagnetic flowmeters and Coriolis flowmeters was used to measure the inlet and outlet flow rates of drilling fluids. Good effect was achieved, but are affected by drilling fluids, space limitation of the wellsite and production costs when in the field of shore drilling, engineers usually use the paddle- flowmeter and ultrasonic liquid level meter to measure the inlet and outlet flow. It exists the problem of low measurement accuracy and prolonged warning time. In order to improve the accuracy of measurement and the accuracy of early warning, the electromagnetic flowmeter has been studied in terms of flow measurement at the outlet of on-shore drilling. The study found that the installation position of the electromagnetic flowmeter in the V-shaped test pipeline is a key factor that determines the accuracy of measurements. The influence of different fluid types on the measurement was studied by fluid dynamics. The fluid model was established using Ansys fluent software, and the boundary conditions were set in conjunction with the relevant parameters of the drilling fluid. It was found that the descending segment of the V-shaped pipeline was suitable in the state of laminar and dispersed flow. It is an appropriate mounting position for the electric flow meter; for the slug flow, the rising section is a suitable installation position. The theoretical conclusion is verified by laboratory simulation and field tests. The results of theoretical research were used to optimize the design of the test pipeline, and the problems of transient large flow passage and solid-phase debris deposition in the field were solved, and good results were achieved. An automatic grouting module was developed based on the accurate measured outlet flow data. The automatic grouting operation is very helpful for the construction process of drilling and triping, improved the safety level of well control, and laid a good foundation for the large-scale application of EKLD devices in the field of shore drilling.
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