Experimental and theoretical study of swept-wing boundary-layer instabilities. Unsteady crossflow instability. Borodulin, V. I., Ivanov, A. V., Kachanov, Y. S., Mischenko, D. A., Örlü, R., Hanifi, A., & Hein, S. Physics of Fluids, 31(6):064101, 2019. Paper doi abstract bibtex Extensive combined experimental and theoretical investigations of the linear evolution of unsteady (in general) Cross-Flow (CF) and threedimensional (3D) Tollmien-Schlichting (TS) instability modes of 3D boundary layers developing on a swept airfoil section have been carried out. CF-instability characteristics are investigated in detail at an angle of attack of −5○ when this kind of instability dominates in the laminarturbulent transition process, while the 3D TS-instability characteristics are studied at an angle of attack of +1.5○ when this kind of instability is predominant in the transition process. All experimental results are deeply processed and compared with results of calculations based on several theoretical approaches. For the first time, very good quantitative agreement of all measured and calculated stability characteristics of swept-wing boundary layers is achieved both for unsteady CF- and 3D TS-instability modes for the case of a boundary layer developing on a real swept airfoil. The first part of the present study (this paper) is devoted to the description of the case of CF-dominated transition, while the TS-dominated case will be described in detail in a subsequent second part of this investigation.
@article{borodulin_experimental_2019-1,
title = {Experimental and theoretical study of swept-wing boundary-layer instabilities. {Unsteady} crossflow instability},
volume = {31},
copyright = {All rights reserved},
issn = {1070-6631, 1089-7666},
url = {https://pubs.aip.org/aip/pof/article/1068276},
doi = {10.1063/1.5094609},
abstract = {Extensive combined experimental and theoretical investigations of the linear evolution of unsteady (in general) Cross-Flow (CF) and threedimensional (3D) Tollmien-Schlichting (TS) instability modes of 3D boundary layers developing on a swept airfoil section have been carried out. CF-instability characteristics are investigated in detail at an angle of attack of −5○ when this kind of instability dominates in the laminarturbulent transition process, while the 3D TS-instability characteristics are studied at an angle of attack of +1.5○ when this kind of instability is predominant in the transition process. All experimental results are deeply processed and compared with results of calculations based on several theoretical approaches. For the first time, very good quantitative agreement of all measured and calculated stability characteristics of swept-wing boundary layers is achieved both for unsteady CF- and 3D TS-instability modes for the case of a boundary layer developing on a real swept airfoil. The first part of the present study (this paper) is devoted to the description of the case of CF-dominated transition, while the TS-dominated case will be described in detail in a subsequent second part of this investigation.},
language = {en},
number = {6},
urldate = {2023-07-29},
journal = {Physics of Fluids},
author = {Borodulin, V. I. and Ivanov, A. V. and Kachanov, Y. S. and Mischenko, D. A. and Örlü, R. and Hanifi, A. and Hein, S.},
year = {2019},
pages = {064101},
file = {Borodulin et al. - 2019 - Experimental and theoretical study of swept-wing b.pdf:files/2587/Borodulin et al. - 2019 - Experimental and theoretical study of swept-wing b.pdf:application/pdf},
}
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CF-instability characteristics are investigated in detail at an angle of attack of −5○ when this kind of instability dominates in the laminarturbulent transition process, while the 3D TS-instability characteristics are studied at an angle of attack of +1.5○ when this kind of instability is predominant in the transition process. All experimental results are deeply processed and compared with results of calculations based on several theoretical approaches. For the first time, very good quantitative agreement of all measured and calculated stability characteristics of swept-wing boundary layers is achieved both for unsteady CF- and 3D TS-instability modes for the case of a boundary layer developing on a real swept airfoil. The first part of the present study (this paper) is devoted to the description of the case of CF-dominated transition, while the TS-dominated case will be described in detail in a subsequent second part of this investigation.","language":"en","number":"6","urldate":"2023-07-29","journal":"Physics of Fluids","author":[{"propositions":[],"lastnames":["Borodulin"],"firstnames":["V.","I."],"suffixes":[]},{"propositions":[],"lastnames":["Ivanov"],"firstnames":["A.","V."],"suffixes":[]},{"propositions":[],"lastnames":["Kachanov"],"firstnames":["Y.","S."],"suffixes":[]},{"propositions":[],"lastnames":["Mischenko"],"firstnames":["D.","A."],"suffixes":[]},{"propositions":[],"lastnames":["Örlü"],"firstnames":["R."],"suffixes":[]},{"propositions":[],"lastnames":["Hanifi"],"firstnames":["A."],"suffixes":[]},{"propositions":[],"lastnames":["Hein"],"firstnames":["S."],"suffixes":[]}],"year":"2019","pages":"064101","file":"Borodulin et al. - 2019 - Experimental and theoretical study of swept-wing b.pdf:files/2587/Borodulin et al. - 2019 - Experimental and theoretical study of swept-wing b.pdf:application/pdf","bibtex":"@article{borodulin_experimental_2019-1,\n\ttitle = {Experimental and theoretical study of swept-wing boundary-layer instabilities. {Unsteady} crossflow instability},\n\tvolume = {31},\n\tcopyright = {All rights reserved},\n\tissn = {1070-6631, 1089-7666},\n\turl = {https://pubs.aip.org/aip/pof/article/1068276},\n\tdoi = {10.1063/1.5094609},\n\tabstract = {Extensive combined experimental and theoretical investigations of the linear evolution of unsteady (in general) Cross-Flow (CF) and threedimensional (3D) Tollmien-Schlichting (TS) instability modes of 3D boundary layers developing on a swept airfoil section have been carried out. CF-instability characteristics are investigated in detail at an angle of attack of −5○ when this kind of instability dominates in the laminarturbulent transition process, while the 3D TS-instability characteristics are studied at an angle of attack of +1.5○ when this kind of instability is predominant in the transition process. All experimental results are deeply processed and compared with results of calculations based on several theoretical approaches. For the first time, very good quantitative agreement of all measured and calculated stability characteristics of swept-wing boundary layers is achieved both for unsteady CF- and 3D TS-instability modes for the case of a boundary layer developing on a real swept airfoil. 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