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APPLICATION OF NEUTRON IMAGING TO INVESTIGATE FLOW THROUGH FRACTURES FOR EGS

机译:中子成像在防骨骨折上进行研究的应用

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There is an ongoing effort at Oak Ridge National Laboratory to develop a unique experimental capability for investigating flow through porous and fractured media using neutron imaging techniques. This capability is expected to support numerous areas of investigation associated with flow processes relevant to EGS including, but not limited to: experimental visualization and measurement of velocity profiles and other flow characteristics to better inform reduced-order modeling of flow through fractures; laboratory scale validation of flow models and simulators; and a 'real-time' tool for studying geochemical rock/fluid interactions by noninvasively measuring material effects such as precipitation and dissolution in EGS-representative conditions. Demonstrating the ability of the technique to generate useful quantitative data is the primary focus at this stage of the effort. Details of the experimental setup and neutron imaging technique will be discussed in this communication, including the description of a custom designed, high pressure, neutron scattering and imaging compatible triaxial flow cell.
机译:橡树岭国家实验室有持续努力,开发独特的实验能力,用于使用中子成像技术来研究通过多孔和裂缝介质的流动。预计这种能力将支持与与EGS相关的流程相关的许多调查领域,包括但不限于:实验性可视化和速度谱的测量和其他流动特性,以更好地通过骨折通知减少流量的流量建模;实验室规模验证流量模型和模拟器;和“实时”工具,用于通过非侵入性测量材料效应来研究地球化学岩/流体相互作用,例如在EGS代表性条件下的沉淀和溶解。展示技术生成有用的定量数据的能力是在努力的这个阶段的主要关注点。将在该通信中讨论实验设置和中子成像技术的细节,包括定制设计,高压,中子散射和成像兼容三轴流动细胞的描述。

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