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Experimental and numerical study of transport phenomena in a simulated hydrothermal crystal growth system of fluid-saturated porous layer

机译:流体饱和多孔层模拟水热晶体生长系统中输运现象的实验和数值研究

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A simulated, non-pressurized hydrothermal system consisting of a fluid-superposed porous layer is fabricated and used for visualization and measurement of the temperature field using liquid crystal thermography. The system is used for various boundary conditions with pure glycerine as the working fluid and the porous layer is made of 3mm diameter glass beads. Experimental data is recorded using a color CCD camera and flow visualization is obtained through a long exposure video photography. A calibration is peformed to relate the temperature with scattered colors at an orthogonal angle to the incoming white light sheet. Quantitative temperature data is obtained through this calibration and compared with the numerical predictions. For numerical studies the system is modeled as a composite layer of fluid and porous charge using the Darcy-Brinkman-Forchheimer flow model. A two-dimensional curvilinear algorithm using finite volume technique with a non-staggered grid is used to simulate the temperature field and transport phenomena for various Rayleigh - Darcy number combinations of varying aspect ratio. The results, for the first time, make an attempt towards understading the transport process in hydrothermal system through both numericla simulation and experimetnal validation.
机译:制作了一个模拟的,无压力的热液系统,该系统由叠置的流体层组成,并用于使用液晶热成像技术对温度场进行可视化和测量。该系统用于纯甘油作为工作流体的各种边界条件,并且多孔层由直径3mm的玻璃珠制成。使用彩色CCD相机记录实验数据,并通过长时间曝光的视频摄影获得流量可视化。执行校准,以将温度与呈正交角度的散射色与入射的白光片相关联。通过此校准可以获得定量温度数据,并将其与数值预测值进行比较。为了进行数值研究,使用Darcy-Brinkman-Forchheimer流动模型将系统建模为流体和多孔电荷的复合层。使用有限体积技术和非交错网格的二维曲线算法用于模拟不同纵横比的各种Rayleigh-Darcy数组合的温度场和输运现象。该结果首次尝试通过数值模拟和实验验证来降低热液系统中的输运过程。

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