基于光纤分布式声传感监测的水平井内电位开发新策略

Li Li, Qiyuan Luo, Qi Xiong
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引用次数: 1

摘要

利用光纤连续获取X油田水平井产液剖面。动态监测结果证实了高含水驱条件下剩余油物性的时变规律,可为高含水/高采收率油田剩余油潜力勘探提供指导。通常,声波在不同的介质中表现出不同的传播速度,这是本试验的基本原理。首先,利用光缆进行声波探测和信号解调。同时,采用一系列其他过程计算混合介质的声速;然后确定各相混合介质的体积、速度和含率。实现了整口水平井产液剖面的实时测量。最后,在岩心驱油室内实验的基础上,建立了考虑时变物性的数值模拟模型。该结果将为该井剩余油的勘探提供指导。近两年光纤监测系统的结果表明,502米水平井80%的产液主要集中在前90米水平段。过量水驱(2000孔隙体积)下岩心驱油实验结果表明,渗透率是原来的1.4倍。考虑时变物性的数值模拟结果表明,水平井段仍存在内部剩余油。因此,提出了采用精确定向堵水方法开发潜在油的策略,可降低含水10%,获得更高的可采储量。基于光纤动态监测结果,创新性地提出了水平井潜在剩余油的开发策略,为海上高含水期高产油田开发提供了有价值的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Strategy for Developing Horizontal Well Inner Potential Based on Fiber Optic Distributed Acoustic Sensing Monitoring
An optical fiber has been utilized to continuously acquire liquid production profiles in horizontal well in X oilfield. The results obtained from the dynamical monitoring system confirm the time-varying law of the physical property under the condition of high-water flooding, which can serve as the guidelines to explore the potential of remaining oil in high water-cut/high recovery factor oilfield. Usually, the sound wave shows different propagation speeds in different medium, which is the basic principle of this test. Firstly, optical cable is used for sound wave detection and signal demodulation.Meanwhile, a series of other processes are applied to calculate the sound velocity of mixed medium; Then the volume velocity and holdup of mixed medium for each phase are determined.The measure of liquid-producing profile along the whole horizontal well has been realized in real time. Finally, numerical simulation model considering the time-varying physical properties is established based on the core flooding laboratory experiment. This result will provide guidelines for the exploration of remaining oil in the well. The results obtained from optical fiber monitoring system during last two years show that 80% of the fluid produced from the 502-meter horizontal well is mainly contributed to the first 90-meter horizontal section. Experimental results of core flooding under excessive water flooding (2000 pore volume) indicate that the permeability is 1.4 times of the original. The results of numerical simulations considering the time-varying physical properties illustrate that there is still internal remaining oil along the horizontal well section. So, the strategy of exploiting potential oil is proposed using an accurate directional water plugging, which will decrease 10% water cut and obtain more recoverable reserves. Based on the dynamical monitoring results of optical fiber, this paper innovatively provides the strategy of exploiting potential remaining oil in the horizontal wells, which can provide a valuable suggestion for offshore oilfield with high productivity at high water-cut stage.
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