Photoacoustic Nanotracers for Subsurface Applications: Opportunities and Challenges

J. M. Servin, Hala A. Al-Sadeg, A. Abdel-Fattah
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Abstract

Tracers are practical tools to gather information about the subsurface fluid flow in hydrocarbon reservoirs. Typical interwell tracer tests involve injecting and producing tracers from multiple wells to evaluate important parameters such as connectivity, flow paths, fluid-fluid and fluid-rock interactions, and reservoir heterogeneity, among others. The upcoming of nanotechnology enables the development of novel nanoparticle-based tracers to overcome many of the challenges faced by conventional tracers. Among the advantages of nanoparticle-based tracers is the capability to functionalize their surface to yield stability and transportability through the subsurface. In addition, nanoparticles can be engineered to respond to a wide variety of stimuli, including light. The photoacoustic effect is the formation of sound waves following light absorption in a material sample. The medical community has successfully employed photoacoustic nanotracers as contrast agents for photoacoustic tomography imaging. We propose that properly engineered photoacoustic nanoparticles can be used as tracers in oil reservoirs. Our analysis begins by investigating the parameters controlling the conversion of light to acoustic waves, and strategies to optimize such parameters. Next, we analyze different kind of nanoparticles that we deem potential candidates for our subsurface operations. Then, we briefly discuss the excitation sources and make a comparison between continuous wave and pulsed sources. We finish by discussing the research gaps and challenges that must be addressed to incorporate these agents into our operations. At the time of this writing, no other study investigating the feasibility of using photoacoustic nanoparticles for tracer applications was found. Our work paves the way for a new class of passive tracers for oil reservoirs. Photoacoustic nanotracers are easy to detect and quantify and are therefore suitable for continuous in-line monitoring, contributing to the ongoing real-time data efforts in the oil and gas industry.
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光声纳米示踪剂在地下的应用:机遇与挑战
示踪剂是收集油气藏地下流体流动信息的实用工具。典型的井间示踪剂测试包括从多口井中注入和开采示踪剂,以评估重要参数,如连通性、流动路径、流体-流体和流体-岩石相互作用以及储层非均质性等。纳米技术的发展使新型纳米颗粒示踪剂的开发能够克服传统示踪剂面临的许多挑战。纳米颗粒示踪剂的优点之一是其表面功能化能力,从而使其在地下具有稳定性和可移植性。此外,纳米颗粒可以被设计成对各种各样的刺激做出反应,包括光。光声效应是指在材料样品中吸收光后形成的声波。医学界已经成功地将光声纳米示踪剂用作光声断层成像的造影剂。我们提出适当设计的光声纳米颗粒可以作为油藏的示踪剂。我们的分析从研究控制光到声波转换的参数开始,以及优化这些参数的策略。接下来,我们分析了不同种类的纳米颗粒,我们认为这些纳米颗粒可能用于地下作业。然后简要讨论了激发源,并对连续波源和脉冲源进行了比较。最后,我们将讨论必须解决的研究差距和挑战,以便将这些代理纳入我们的操作中。在撰写本文时,没有发现其他研究调查使用光声纳米颗粒示踪剂应用的可行性。我们的工作为一种新型的油藏被动示踪剂铺平了道路。光声纳米示踪剂易于检测和量化,因此适用于连续在线监测,为油气行业的实时数据工作做出了贡献。
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