Modeling and Wind Flow Analysis of an Eiffel (Open) Type Sub-Sonic Wind Tunnel

Zelieus Namirian, Shubham Mathure, B. Thorat, Surekha Khetree
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引用次数: 0

Abstract

Wind tunnel (WT) is a device that artificially produces airflow relative to a stationary body and measures aerodynamic force and pressure distribution, simulating the actual conditions with an important aspect of accurately feigning¬ the full complexity of fluid flow. The aim of the present study is to design the three dimensional geometry of a small, open-circuit (also known as Eiffel Type), and subsonic (low speed) wind tunnel (WT) capable of demonstrating or acting as a vital tool in aero-mechanics research. The project and fabrication itself, poses as an onerous task with the cynosure/central theme being the delineation/depiction of wind tunnel components such as Test Section, contraction cone, diffuser, drive system and settling chamber.
艾菲尔(开放式)型亚声速风洞建模及风流分析
风洞(WT)是一种人工产生相对于静止物体的气流并测量空气动力和压力分布的装置,模拟实际条件,具有准确模拟流体流动的全部复杂性的重要方面。本研究的目的是设计一个小型、开路(也称为艾菲尔型)和亚音速(低速)风洞(WT)的三维几何形状,该风洞能够展示或作为空气力学研究的重要工具。该项目和制造本身是一项繁重的任务,其核心主题是风洞组件的描绘/描述,如试验段、收缩锥、扩散器、驱动系统和沉降室。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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