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Non-Intrusive Telemetry Applications in the Oilsands: from visible light and x-ray video to acoustic imaging and spectroscopy

机译:油砂的非侵入式遥测应用:从可见光和X射线视频到声学成像和光谱学

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While the production, transport and refining of oils from the oilsands of Alberta, and comparable resources elsewhere is performed at industrial scales, numerous technical and technological challenges and opportunities persist due to the ill defined nature of the resource. For example, bitumen and heavy oil comprise multiple bulk phases, self-organizing constituents at the microscale (liquid crystals) and the nano scale. There are no quantitative measures available at the molecular level. Non-intrusive telemetry is providing promising paths toward solutions, be they enabling technologies targeting process design, development or optimization, or more prosaic process control or process monitoring applications. Operation examples include automated large object and poor quality ore during mining, and monitoring the thickness and location of oil water interfacial zones within separation vessels. These applications involve real-time video image processing. X-ray transmission video imaging is used to enumerate organic phases present within a vessel, and to detect individual phase volumes, densities and elemental compositions. This is an enabling technology that provides phase equilibrium and phase composition data for production and refining process development, and fluid property myth debunking. A high-resolution two-dimensional acoustic mapping technique now at the proof of concept stage is expected to provide simultaneous fluid flow and fluid composition data within porous inorganic media. Again this is an enabling technology targeting visualization of diverse oil production process fundamentals at the pore scale. Far infrared spectroscopy coupled with detailed quantum mechanical calculations, may provide characteristic molecular motifs and intermolecular association data required for fluid characterization and process modeling. X-ray scattering (SAXS/WAXS/USAXS) provides characteristic supramolecular structure information that impacts fluid rheology and process fouling. The intent of this contribution is to present some of the challenges and to provide an introduction grounded in current work on non-intrusive telemetry applications - from a mine or reservoir to a refinery!
机译:尽管从阿尔伯塔省的油砂中生产,运输和提炼石油以及其他地方的可比资源都是在工业规模上进行的,但由于资源的性质不明确,因此仍然存在许多技术和技术挑战和机遇。例如,沥青和重油包含多个本体相,在微观尺度(液晶)和纳米尺度上的自组织成分。在分子水平上没有定量方法。非侵入式遥测技术正在为解决方案提供有希望的途径,它们使针对过程设计,开发或优化的技术,或更平淡的过程控制或过程监控应用成为可能。操作示例包括在开采过程中自动处理大型物体和劣质矿石,并监控分离容器内油水界面区域的厚度和位置。这些应用涉及实时视频图像处理。 X射线透射视频成像用于枚举容器内存在的有机相,并检测各个相的体积,密度和元素组成。这是一项启用技术,可提供相平衡和相组成数据用于生产和精炼工艺开发以及流体特性神话的揭穿。现在,在概念验证阶段的高分辨率二维声学映射技术有望在多孔无机介质中提供同时的流体流量和流体成分数据。同样,这是一项使技术可视化的技术,可在孔隙规模上可视化各种采油工艺基础。远红外光谱结合详细的量子力学计算,可以提供流体表征和过程建模所需的特征性分子基序和分子间缔合数据。 X射线散射(SAXS / WAXS / USAXS)提供了特征性的超分子结构信息,这些信息会影响流体的流变性和过程结垢。做出此贡献的目的是提出一些挑战,并以当前在非侵入式遥测应用(从矿山或水库到炼油厂)中的工作为基础进行介绍!

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