Simulation of Active Flow Control on a Stalled Airfoil

被引:1
|
作者
Philippe Spalart
Linda Hedges
Michael Shur
Andrey Travin
机构
[1] Boeing Commercial Airplanes,
[2] Federal Scientific Center “Applied Chemistry”,undefined
来源
关键词
flow control; separation; simulation; turbulence;
D O I
暂无
中图分类号
学科分类号
摘要
An Active-Flow-Control (AFC) device, designed to unload the wing of the V-22 tilt-rotor aircraft in hover when the rotors blow down on it, is studied by Detached-Eddy Simulation (DES). The device is a zero-net-flux jet through a slot on the flap shoulder, designed to help the flow turn and follow the highly-deflected flap more closely. The details of the DES are presented, including boundary conditions, grid, slot rendition, and algorithm. Meaningful grid-refinement studies were not possible. As AFC is applied, the flow pattern is altered, the response of the pressure distribution is qualitatively correct, and a drag reduction results. However the agreement on drag is poor if the boundary layers are treated as turbulent in the DES; discrepancies are in the 15–20% range. The boundary layers were tripped in the experiment and therefore expected to be turbulent. However the Reynolds numbers, pressure gradients, and shape of the pressure distributions (experimental and computed) at the leading edge all argue that the tripping failed. If the boundary layers are treated as laminar, the agreement is considerably improved with AFC off, but the response to AFC still differs from that in the wind tunnel, and is not monotonic with respect to the blowing level. Other issues related to the numerical and experimental approaches are discussed, particularly the nature of the simulation in the neighborhood of the slot, transition, and two-dimensionality.
引用
收藏
页码:361 / 373
页数:12
相关论文
共 50 条
  • [21] Feedback-Controlled Forcefully Attached Flow on a Stalled Airfoil
    Tewes, Philipp
    Wygnanski, Israel
    Washburn, Anthony E.
    JOURNAL OF AIRCRAFT, 2011, 48 (03): : 940 - 951
  • [22] The simulation of airfoil flutter characteristic based on active control strategy
    Liu C.
    Liu Z.
    Song H.
    Lixue Xuebao/Chinese Journal of Theoretical and Applied Mechanics, 2019, 51 (02): : 333 - 340
  • [23] IMPLICIT LARGE EDDY SIMULATION OF A STALLED LOW PRESSURE TURBINE AIRFOIL
    Memory, C. L.
    Chen, J. P.
    Bons, J. P.
    ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2015, VOL 2A, 2015,
  • [24] Active Flow Control of a Supercritical Airfoil and Flap with Sweeping Jets
    Luo, Shuai
    Li, Linkai
    Cheng, Keming
    Gu, Yunsong
    Fang, Ruishan
    Wang, Wanbo
    APPLIED SCIENCES-BASEL, 2023, 13 (18):
  • [25] Active control of separated flow on a symmetric airfoil by pitching oscillation
    Viknesh, S. Siva
    Poddar, Kamal
    PHYSICS OF FLUIDS, 2021, 33 (08)
  • [26] Experimental study on an airfoil equipped with an active flow control element
    Hochhaeusler, Dominik
    Erfort, Gareth
    WIND ENGINEERING, 2022, 46 (04) : 1080 - 1093
  • [27] Parameter study of active flow control on a high lift airfoil
    1600, Politechnica University of Bucharest (76):
  • [28] Role of actuation frequency in controlled flow reattachment over a stalled airfoil
    Amitay, M
    Glezer, A
    AIAA JOURNAL, 2002, 40 (02) : 209 - 216
  • [29] Numerical simulation for feedback control of airfoil oscillation in incompressible flow
    Maeda, Daisuke
    Morishita, Etsuo
    TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, 2006, 49 (164) : 117 - 124
  • [30] Numerical simulation for feedback control of airfoil oscillation in incompressible flow
    Maeda, Daisuke
    Morishita, Etsuo
    Transactions of the Japan Society for Aeronautical and Space Sciences, 2006, 49 (164): : 117 - 124