基于CFD /案例二的开槽A4412风力机翼型空气动力学分析

Omar Elmosrati
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引用次数: 0

摘要

静压力、动压力和速度大小是影响翼型升力的重要参数。本文采用商业代码ANSYS-FLUENT 14.5®,在不同接近风速的进口边界条件下,对0?24吗?。重整化群(RNG) k-?由于增强壁面函数湍流模型在气动工业中的广泛应用,本文采用增强壁面函数湍流模型进行分析。物理性质的变化,如静压、动压和速度大小,以等高线和/或矢量的形式绘制。该研究的主要目的是找出一种方法,以提高效率的选定翼型和它的工作能力,在一个广泛的低和高风速范围内,这可能使它适合在不同的气候条件下安装和操作。这种提高升力和/或最小化阻力的可行性是通过CFD在一系列独立修改的NACA4412翼型上完成的。当前的情况称为情形2。案例2的分析结果并不令人鼓舞。它没有显示在NACA4412翼型效率的任何改进,因此它被归类为(过时)。
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Aerodynamics Analysis of a Slotted A4412 Wind Turbine Airfoil Using CFD / Case Two
The static pressure, dynamic pressure and velocity magnitude are important parameters and have a strong influence on airfoil lift force. In this paper a slotted NACA4412 airfoil profile is considered for analysis by using the commercial code ANSYS-FLUENT 14.5® at an inlet boundary condition of different approaching wind velocities for various airfoil angles of attack in the range 0?to 24?. Renormalized group (RNG) k-? turbulence model with enhanced wall function is used for the analysis due its’ wide usage in the aerodynamic industry. Variations of the physical properties like static pressure, dynamic pressure and velocity magnitude are plotted in form of contours and/or vectors. The main aim of the research is to find out a method to enhance the efficiency of the selected airfoil and its’ workability in a wide range of low and high wind speeds which might make it suitable for installation and operation in different climates.This feasibility of enhancing the lift is and/or minimizing the drag is done by CFD on a series of independently modified NACA4412 airfoils. The current one is called Case 2. The analysis output of Case 2 is not encouraging. It does not show any improvement in NACA4412 airfoil efficiency and therefore it is classified as (obsolete).
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