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CFD analysis of the Ahmed Glaucoma Valve and design of an alternative device

机译:Ahmed青光眼瓣膜的CFD分析和替代装置的设计

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摘要

Computational fluid dynamics (CFD) modelling based on a commercial package, FLUENT, has been used in the present study. The primary aim of this study is to develop a novel implant by employing CFD techniques. Firstly, CFD analyses on the best design commercially available, which is the Ahmed Glaucoma Valve (AGV®), are accomplished. In the light of the results, the new design focus is selected as the valve. The new design is analysed using GAMBIT and FLUENT software. CFD analyses of the new design and the AGV® are compared and the strengths of the new design are revealed. The results are also compared with the experimental studies AGV in the literature. It is deduced that the proposed model shows a nonlinear pressure drop response, which is quite similar to that of AGV®. The optimum combination would be a flow rate of 2.5 μl/min and a pressure drop of 1054.58 Pa for the proposed model.
机译:本研究使用基于商业软件包FLUENT的计算流体动力学(CFD)建模。这项研究的主要目的是通过采用CFD技术开发一种新型植入物。首先,完成了对市售最佳设计Ahmed青光眼瓣膜(AGV®)的CFD分析。根据结果​​,选择新的设计重点作为阀门。使用GAMBIT和FLUENT软件对新设计进行了分析。比较了新设计和AGV®的CFD分析,并揭示了新设计的优势。还将结果与文献中的AGV实验研究进行比较。可以推断,所提出的模型显示出非线性压降响应,这与AGV®非常相似。对于建议的模型,最佳组合将是流速为2.5μl/ min,压降为1054.58 Pa。

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