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On the recirculation zone suppression behind HUMP profile using the DBD actuator

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    SYSNO ASEP0483221
    Document TypeC - Proceedings Paper (int. conf.)
    R&D Document TypeConference Paper
    TitleOn the recirculation zone suppression behind HUMP profile using the DBD actuator
    Author(s) Procházka, Pavel P. (UT-L) RID, ORCID, SAI
    Uruba, Václav (UT-L) RID, ORCID
    Article numberUNSP 02095
    Source TitleEPJ Web of Conferences, EXPERIMENTAL FLUID MECHANICS 2016 (EFM16 ), 143. - CEDEX : E D P SCIENCES, 2017 - ISSN 2100-014X
    Number of pages6 s.
    Publication formOnline - E
    ActionEFM16 – Experimental Fluid Mechanics 2016
    Event date15.11.2016 - 18.11.2016
    VEvent locationMariánské Lázně
    CountryCZ - Czech Republic
    Event typeWRD
    Languageeng - English
    CountryFR - France
    KeywordsDBD actuator ; Hump profile ; flow control ; PIV
    Subject RIVBK - Fluid Dynamics
    OECD categoryFluids and plasma physics (including surface physics)
    R&D ProjectsGP14-25354P GA ČR - Czech Science Foundation (CSF)
    TA04020129 GA TA ČR - Technology Agency of the Czech Republic (TA ČR)
    TA04011437 GA TA ČR - Technology Agency of the Czech Republic (TA ČR)
    Institutional supportUT-L - RVO:61388998
    UT WOS000407743800097
    EID SCOPUS85020075993
    DOI https://doi.org/10.1051/epjconf/201714302095
    AnnotationPreviously, the DBD (dielectric barrier discharge) plasma actuator was used in rectangular channel to modify the properties of the boundary layer in spanwise and in streamwise orientation. The actuator was redesigned for using on the surface of the Glauert-Goldschmied body in different position to influence the point of the separation and the reattachment point as well as the total extent of the separation bubble. The most intensive effect occurs when the actuator takes effect in the point of separation. Further downstream, the ionic wind produced by DBD causes complex coherent structures in the wake for spanwise orientation in both direction. The effect of streamwise orientation is studied also. Actuator is operated in steady regime to produces continuous ionic wind as well as in unsteady regime when the vortex street is generated. The properties of vortex street is given by modulation parameters (frequency and duty cycle). The effect of these parameters on the wake is evaluated. This experiment is realized in the perspex channel connected to the blow-down wind tunnel. The HUMP profile is flush-mounted to the bottom side. The wire electrode of the actuator is situated in x/L = 0.63, 0.66, 0.69 and 0.72 of the chord length. The time-resolved PIV (Particle Image Velocimetry) is used as a main measurement technique. The flow field behind the profile is captured in longitudinal plane as well as in cross-section planes using 3D PIV. The results based on statistical quantities will be presented in this paper. More, next part will be devoted to the decomposition analysis of the flow dynamics (BOD, OPD).
    WorkplaceInstitute of Thermomechanics
    ContactMarie Kajprová, kajprova@it.cas.cz, Tel.: 266 053 154 ; Jana Lahovská, jaja@it.cas.cz, Tel.: 266 053 823
    Year of Publishing2018
Number of the records: 1  

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