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Measuring miscible fluid displacement in porous media with magnetic resonance imaging

机译:利用磁共振成像测量多孔介质中的混相流体位移

摘要

The development of new quantitative magnetic resonance imaging (MRI) technologies open new opportunities for measurements of mass transport in porous media. The current work examines a simple miscible displacement process of H2O and D2O in porous media samples. Laboratory measurements of dispersion in porous media traditionally monitor the effluent intensity of an injected tracer. We employ MRI to obtain quantitative water saturation profiles, and to measure dispersion in rock core plugs. The saturation profiles are modeled with PHREEQC, a fluid transport modeling program. We demonstrate how independent magnetic resonance measurements can be employed to estimate three important input parameters for PHREEQC, mobile porosity, immobile porosity, and dispersivity. Bulk Carr Purcell Meiboom Gill (CPMG) T2 distribution measurements were undertaken to estimate mobile and immobile porosity. Bulk alternating-pulsed-gradient-stimulated-echo (APGSTE) measurements were undertaken to measure dispersivity. The imaging method employed, T2 mapping Spin Echo Single Point Imaging (SE-SPI), also provides information about the pore size distributions in the rock cores, and how the fluid occupancy of the pores changes during the displacement process.
机译:新的定量磁共振成像(MRI)技术的发展为多孔介质中质量传输的测量提供了新的机会。当前的工作研究了多孔介质样品中H2O和D2O的简单混溶置换过程。传统上,实验室在多孔介质中的分散度测量会监控注入的示踪剂的流出强度。我们使用MRI来获得定量的水饱和度曲线,并测量岩心塞中的分散度。用PHREEQC(流体传输建模程序)对饱和度剖面进行建模。我们演示了如何利用独立的磁共振测量来估算PHREEQC的三个重要输入参数,移动孔隙率,固定孔隙率和分散性。进行了Bulk Carr Purcell Meiboom Gill(CPMG)T2分布测量,以估算可移动和不可移动的孔隙率。进行体积交替脉冲梯度刺激回波(APGSTE)测量以测量分散度。所采用的成像方法T2映射自旋回波单点成像(SE-SPI),还提供了有关岩心中孔隙尺寸分布以及在驱替过程中孔隙的流体占有率如何变化的信息。

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