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Studying contaminant transport and chemical reduction in subsurface sediment by modeling flow in porous media

机译:采用多孔介质流动研究污染物运输和化学降低

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This paper presents imaging and modeling aspects of an interdisciplinary study of subsurface pollution and environmental remediation. F18 -FDG PET and Tc99m NaTcO_4 SPECT studies were performed to follow dynamic changes in the radiotracer distribution in model systems. Radioisotope solution was pumped through the test columns filled with sand or sediment in order to reproduce subsurface conditions of groundwater flow through satu rated sediment layers. Dynamic sequences of the radiotracer distribution were acquired and analyzed. The ultimate goal was to measure porosity and parameters of the sediment and, in the future, to study radiotracer immobilization in the column through reductive precipitation. In order to extract the relevant information from the dynamic images, computational fluid dynamics model of the liquid flow in porous medium were designed and implemented. Qualitative similarities between the imaged and simulated radio tracer distributions were achieved with appropriate values of the computational mesh, the local medium permeability, and other model parameters.
机译:本文介绍了地下污染和环境修复的跨学科研究的成像和建模方面。进行F18 -FDG PET和TC99M NATCO_4 SPECT研究以遵循模型系统中放射性机构分布的动态变化。放射性同位素溶液通过填充有砂或沉积物的测试柱泵送,以通过Satu额定沉积物层再现地下水的地下条件。获得并分析了放射性反射液分布的动态序列。最终目标是测量沉积物的孔隙率和参数,并在将来,通过还原沉淀研究柱子中的放射性机构固定。为了从动态图像中提取相关信息,设计并实施了多孔介质中液体流的计算流体动力学模型。通过计算网格,局部中等渗透率和其他模型参数的适当值实现成像和模拟的无线电示踪分布之间的定性相似性。

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