Pressure-sensitive paint measurements with temperature correction on the wing of AGARD-B under transonic flow conditions

Author:

Huang Chih-YungORCID,Lin Yun-Fang,Huang Yi-Xuan,Chung Kung-MingORCID

Abstract

Abstract This study experimentally examined the flow phenomena and pressure distribution on the wing of Advisory Group for Aerospace Research and Development Model B (AGARD-B) at a Mach number of 0.83. For simultaneous pressure and temperature measurement, a mesoporous pressure-sensitive paint (PSP) sensor was applied to one of the wings of AGARD-B at an angle of attack (AOA) of 0°–8° and a temperature-sensitive paint sensor was applied to the other wing. The collected temperature data were used for pixel-by-pixel temperature correction in a PSP experiment. The pressure distribution obtained on the AGARD-B wing through the PSP experiment with temperature correction agreed well with that obtained through computational flow dynamics (CFD) simulation and accurately indicated the low-pressure regions introduced by the vortex generated from the leading edge at an AOA larger than 4°. The lift coefficient calculated using the PSP data agreed well with that calculated using CFD.

Funder

Ministry of Science and Technology, Taiwan

Publisher

IOP Publishing

Subject

Applied Mathematics,Instrumentation,Engineering (miscellaneous)

Reference25 articles.

1. A review of measurements on AGARD calibration models;Hills;Report AGARD-OGRAPH-64,1961

2. An investigation of the aerodynamic characteristics of the AGARD model B for Mach numbers from 0.2–1.0;Anderson,1970

3. Investigation of aerodynamic coefficient correction of AGARD model with static pressure measurement in tri-sonic wind tunnel;Chou,2017

4. Determination of base pressure for the AGARD-B calibration model and comparison with an experiment in the T-38 wind tunnel;Akgul;Sci. Tech. Rev.,2009

5. Validation of the CFD code used for determination of aerodynamic characteristics of nonstandard AGARD-B calibration model;Vidanovic;Thermal Sci.,2014

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