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Computational Analysis of Compressor Blade

机译:压气机叶片的计算分析

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This computational work aims at analyzing the flow behavior through a linear cascade of compressor blades with the help of Computational Fluid Dynamics using the FLUENT software. An attempt has been made to study the boundary layer behavior on the blades at various flow incidence angles and Reynolds numbers, based on flow inlet velocity and blade chord. A Computational Fluid Dynamics based computational model is created with the reference to an experimental work already carried out. This study will bring out the methodology for solving the problem using Computational Fluid Dynamics tools. Particularly, the capability of turbulence model to predict laminar, turbulent and transition in the boundary layer flows has been made. The geometric modeling and meshing of the flow domain has been carried out using the software’s CATIA and GAMBIT respectively.Development of boundary layer, point of flow separation, flow reattachment and pressure coefficient over the blade surfaces have been found and compared with the experimental results.
机译:这项计算工作旨在借助使用FLUENT软件的“计算流体动力学”来分析压缩机叶片线性级联的流动行为。已经尝试基于流入口速度和叶片弦,研究在各种流入射角和雷诺数下叶片上的边界层行为。参照已经进行的实验工作,创建了基于计算流体动力学的计算模型。这项研究将提出使用计算流体动力学工具解决问题的方法。特别地,湍流模型具有预测边界层流中的层流,湍流和过渡的能力。分别使用该软件的CATIA和GAMBIT进行了流域的几何建模和网格划分。发现了边界层的发展,流分离点,流重新附着和叶片表面的压力系数,并与实验结果进行了比较。

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