与自动化和数字化技术相结合的增产举措在中东深层天然气项目中的应用,超越并打破了所有现有记录

Andrés Núñez, Mauricio Corona, B. Goodkey, G. Hernandez, Shamlan Gabriel, Mahmoud Elghoneimy, E. Brahmanto, F. Moretti, Arnott Evert Dorantes Garcia, Ahmad Kojo, Kamal Atriby, E. Barrera
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引用次数: 1

摘要

随着油气行业的发展,并迅速向自动化和数字化“时代”迈进,为了提高业绩,已经推出了一系列广泛的举措。在中东的一个要求苛刻的深层碳酸气井项目中,经过7年的不断改进,已经实现了各种技术的应用,这些技术极大地影响了作业效率和钻井性能。及时选择和实施新技术和优化实践,大大提高了项目团队的能力,超过了作业者的主要关键绩效指标之一:油井交付。本文将概述数字化和自动化解决方案的实施,这些解决方案旨在标准化钻井程序、钻杆连接、优化钻速、减少井下冲击和振动,同时最大限度地减少钻柱故障。在不影响井作业的前提下,采用了新技术来优化作业。通过实施不同的数字技术,包括井眼清洁监测、钻井液性质控制、固井作业监测以及用于推断井内位移桥塞位置的算法,增强了可用的实时监测资源,这在一定程度上减少了故障和不良事件的发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Enhancing Performance Initiatives in Conjunction with Automation & Digitalization Technlogies in Deep Gas Project in the Middle East, Outperforming and Breaking All Existent Records
As the oil and gas business progresses and rapidly moves to an Automation and Digital "ERA", a wide array of initiatives have been launched in pursuit of increased performance. In a demanding Deep Gas Carbonate well project in the Middle East, seven years of continuous improvement has led to a variety of technology implementations which have dramatically affected operational efficiency and drilling performance. The opportune selection and implementation of new technology and optimized practices has contributed to a significant increase in the project team's ability to exceed one of the Operator's main key performance indicators: well delivery. In this paper, a summary will be provided of the digital and automation solutions implemented to standardize drilling procedures, drill pipe connections, optimize the rate of penetration, reduce downhole shocks and vibrations, all while minimizing drill string failures. New technologies were implemented to optimize the operation without compromising well operations. Part of the success in reducing failures and non-desirable events, has resulted from the enhancement of the Real Time Monitoring resources available, through the implementation of different digital technologies, including hole cleaning monitoring, drilling fluid property controls, cementing operations monitoring, and algorithms utilized to infer the displacement plug position over the well.
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