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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Refractive-index-matched hydrogel materials for measuring flow-structure interactions
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Refractive-index-matched hydrogel materials for measuring flow-structure interactions

机译:折射率匹配的水凝胶材料,用于测量流-固相互作用

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摘要

In imaging-based studies of flow around solid objects, it is useful to have materials that are refractiveindex-matched to the surrounding fluid. However, materials currently in use are usually rigid and matched to liquids that are either expensive or highly viscous. This does not allow for measurements at high Reynolds number, nor accurate modeling of flexible structures. This work explores the use of two hydrogels (agarose and polyacrylamide) as refractive-index-matched models in water. These hydrogels are inexpensive, can be cast into desired shapes, and have flexibility that can be tuned to match biological materials. The use of water as the fluid phase allows this method to be implemented immediately in many experimental facilities and permits investigation of high-Reynolds-number phenomena. We explain fabrication methods and present a summary of the physical and optical properties of both gels, and then show measurements demonstrating the use of hydrogel models in quantitative imaging.
机译:在基于图像的固体周围流动研究中,使折射率与周围流体相匹配的材料很有用。然而,当前使用的材料通常是刚性的,并且与昂贵或高粘性的液体相匹配。这不允许在高雷诺数下进行测量,也不允许对柔性结构进行精确建模。这项工作探索了两种水凝胶(琼脂糖和聚丙烯酰胺)在水中与折射率匹配的模型的使用。这些水凝胶价格便宜,可以铸成所需的形状,并具有可以调节以匹配生物材料的柔韧性。使用水作为液相使得该方法可以在许多实验设备中立即实施,并可以研究高雷诺数现象。我们解释了制造方法,并给出了两种凝胶的物理和光学性质的摘要,然后显示了证明在定量成像中使用水凝胶模型的测量结果。

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