基于MR多相流检测的人工举升智能决策与优化

Feng Deng, Shiwen Chen, Guanhong Chen, Meng-ying Wang
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引用次数: 1

摘要

井或管道中油、气、水多相流动的定量信息对指导人工举升参数的优化和工具的选择具有重要意义。目前,没有可靠的技术可以不分离油、气、水而精确测量多相流体的分离流量。目前,国际上普遍采用的多相流测量技术是采出液经管道进入集站后进行相分离,分别测量各组分的含量。间接测量方法效率低、成本高、交货延迟,难以真实反映井口或管道瞬时产液特性。因此,迫切需要寻找准确、可靠、能满足油气资源监测需求的多相流检测装置和方法。提出了一种用于多相流体检测的核磁共振装置及其分析方法。同时,提出了基于测量、云计算和自动控制的智能决策与优化技术。核磁共振可实现多相流各组分的在线测量,是一种绿色、高效、准确的油气检测方法。然后基于互联网和大数据分析技术实现人工起重参数的优化,同时基于自动控制技术实现人工起重设备的负反馈控制。这一进展有助于将核磁共振技术应用于石油工业,实现绿色、高效、实时、低成本的多相流测量。结合大数据、物联网(IOT)和自动控制技术,实现智能人工起重技术和系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intelligent Decision Making and Optimization of Artificial Lifting Based on MR Multi-Phase Flow Detection
Quantitative information regarding multi-phase flow of oil, gas and water in wells or pipelines are very important in guiding the artificial lifting parameters optimization and tool selection. At present, there is no reliable technology available which can accurately measure split flow of multi-phase fluids without separating oil, gas and water. So far, the multi-phase flow measurement technique commonly adopted globally is to carry out by phase separation after produced fluid entering the gathering station through the pipelines, where the content of each component is measured separately. The indirect measurement methods are usually with low-efficiency, high-cost and delay-delivery, and hard to reflect the real instantaneous fluid producing properties at wellheads or pipelines. Therefore, it is urgent to seek for accurate and reliable multi-phase flow detection devices and methods that can meet the monitoring demands for oil and gas resources. This paper proposed a nuclear magnetic resonance (NMR) device and analytical methods for detecting multi-phase fluid. At the same time, it puts forward the intelligent decision-making and optimization technology based on measurement, cloud computing and automatic control. As a green, efficient and accurate method for oil and gas detection, the NMR can realize online measurement for each component of multi-phase flow. Then based on the internet and large data analysis technology to achieve artificial lifting parameters optimization, while based on automatic control technology to achieve artificial lifting equipment negative feedback control. This progress helps to apply the NMR technique in petroleum industry to achieve green, efficient, real-time and low-cost multi-phase flow measurement. Combined with large data, Internet of Things (IOT) and automatic control technology to achieve intelligent artificial lifting technology and system.
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