首页> 外文会议>ASME international mechanical engineering congress and exposition >IMPORTANT EDUCATIONAL FACTORS FOR COMPUTATIONAL FLUID DYNAMICS WHEN TEACHING NEW USERS HOW TO APPLY COMMONLY EMPLOYED INITIAL SET-UP CONFIGURATION PARAMETERS FOR AIRFOILS
【24h】

IMPORTANT EDUCATIONAL FACTORS FOR COMPUTATIONAL FLUID DYNAMICS WHEN TEACHING NEW USERS HOW TO APPLY COMMONLY EMPLOYED INITIAL SET-UP CONFIGURATION PARAMETERS FOR AIRFOILS

机译:在教学新用户时如何计算流体动力学的重要教育因素如何应用机翼的初始使用的初始配置配置参数

获取原文

摘要

Inflowing turbulence influences aerodynamic behaviors of the impacted geometries, and are important considerations for systems such as sailing vessels, wind turbines, ground vehicles, and aircraft. It is important to understand and evaluate the characteristic nature of this turbulence. Computational Fluid Dynamics (CFD) is now a foundational analytical instructional tool used to help educate both undergraduate and graduate engineering students on how predict and describe both boundary layer behavior and the resulting downstream turbulence. Increasing the predication accuracy of turbulence models, particularly at higher Reynolds number regimes remains a fundamental consideration in CFD analysis. The work discussed here focuses on understanding how CFD simulations can be impacted by basic CFD approaches and configurations. Commonly use unstructured grids and incremental positive angles of attack around the well-studied NACA0012 airfoil were used to assess how these basic set-up parameters can influence CFD turbulence results. Navier-Stokes equations were solved for incompressible flow to assess downstream turbulence using the SST k-ω (two equation) turbulence model within ANSYS Fluent (SIMPLE solution method). Two airfoil configurations with respect to angle of attack (α) were of interested and studied, with one configuration defined as "fixed-position" and the second configuration defined as "changed-position". Fixed-position refers to a single common airfoil/grid configuration and changing incoming U_x, V_y velocity vectors to yield different angle of attack (α) values. Changed-position refers to a utilizing a single U_x velocity vector and physically rotating the impacted airfoil in the computational field to yield different angles of attack. A two-dimensional unsteady state SST k-ω turbulence model was used at a Reynolds number of 3.0 × 10~6. The resulting data from the system setup models studied here (fixed and changed-positions) were successfully validated by comparing the computed lift and drag coefficients at these varying a values to common values found in literature. Downstream pressure contours, along with U_x and V_y net-velocity contours at various distances from 1.5 cord lengths up to 12.0 cord lengths from the leading edge of the airfoil at incremental angles of attack were studied. The authors review how such variations in rudimentary approaches can impact the CFD downstream output results.
机译:流入的湍流会影响受影响的几何形状的空气动力学行为,并且是诸如帆船,风力涡轮机,地面车辆和飞机等系统的重要考虑因素。重要的是要了解和评估这种湍流的特征。计算流体动力学(CFD)现在是一种基础分析教学工具,用于帮助本科生和工程学专业的学生学习如何预测和描述边界层行为以及由此产生的下游湍流。提高湍流模型的预测精度,尤其是在更高的雷诺数体系下,仍然是CFD分析中的基本考虑因素。这里讨论的工作着重于了解CFD模拟如何受到基本CFD方法和配置的影响。常用的非结构化网格和经过精心研究的NACA0012机翼周围的增量正攻角用于评估这些基本设置参数如何影响CFD湍流结果。使用ANSYS Fluent中的SSTk-ω(两个方程)湍流模型(简单解法),求解了不可压缩流的Navier-Stokes方程,以评估下游湍流。相对于攻角(α)的两种机翼构型受到关注和研究,其中一种构型定义为“固定位置”,第二种构型定义为“改变位置”。固定位置是指单个常见的机翼/格栅配置,并且更改传入的U_x,V_y速度矢量以产生不同的迎角(α)值。改变位置是指利用单个U_x速度矢量并在计算场中物理旋转受冲击的机翼以产生不同的迎角。使用二维非稳态SSTk-ω湍流模型,其雷诺数为3.0×10〜6。通过将在这些变化值下计算出的升力和阻力系数与文献中常见的值进行比较,可以成功地验证此处研究的系统设置模型(固定位置和更改位置)产生的数据。研究了下游压力等高线以及U_x和V_y净速度等高线,这些线在从1.5线长到从机翼前缘到攻角增加的距离的12.0线长的不同距离处。作者回顾了这种基本方法的变化如何影响CFD下游输出结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号