NanoCommunication-based flow path mapping for NanoSensors in underground oil reservoirs

Liuyi Jin, Zhipei Yan, L. Zuo, R. Stoleru
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Abstract

Oil reservoir exploration is booming, given the increasing energy demand worldwide. The existence of Impermeable Regions (IR) in the oil reservoir (i.e., underground areas that allow only few hydrocarbons-collecting fluids to pass through) still hinders current production performance to a great extent. Research efforts have been invested into IR detection and mapping. The state of the art solution [1] leverages nanoscale sensor networks to approximately characterize the location of a single IR in the underground oil reservoir. However, the characterization accuracy is rather low. In addition, existing solutions are not applicable to more heterogeneous reservoirs, which reflects, in fact, a more realistic problem scenario. In this paper, we investigate and address the limitations of state of the art solutions in two aspects: 1) we provide a sub-terahertz (THz) communication channel to reflect realism of nanocommunication in the underground; 2) we develop a sensor path (i.e., simulated streamlines along which sensors are assumed to flow) reconstruction workflow to map a more heterogeneous reservoir with more IRs. Through simulations, we show that our proposed solution achieves an improvement of IRs mapping performance, when compared to the state of the art solution.
基于纳米通信的地下油藏纳米传感器流路映射
随着全球能源需求的不断增长,石油勘探正在蓬勃发展。油藏中存在不透水区域(即地下区域,仅允许少量含烃流体通过),这在很大程度上仍然阻碍了当前的生产性能。研究工作已投入到红外探测和测绘。最先进的解决方案[1]利用纳米级传感器网络来近似表征地下油藏中单个红外的位置。然而,表征精度较低。此外,现有的解决方案并不适用于更多的非均质油藏,这实际上反映了一个更现实的问题场景。在本文中,我们从两个方面研究并解决了现有解决方案的局限性:1)我们提供了一个亚太赫兹(THz)通信通道,以反映地下纳米通信的真实性;2)我们开发了一个传感器路径(即,假设传感器沿其流动的模拟流线)重建工作流程,以绘制具有更多ir的更非均质油藏。通过模拟,我们表明,与最先进的解决方案相比,我们提出的解决方案实现了IRs映射性能的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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