Wang, Jiang-Sheng; Wang, Jin-Jun Wake-induced transition in the low-Reynolds-number flow over a multi-element airfoil. (English) Zbl 07331640 J. Fluid Mech. 915, Paper No. A28, 36 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{J.-S. Wang} and \textit{J.-J. Wang}, J. Fluid Mech. 915, Paper No. A28, 36 p. (2021; Zbl 07331640) Full Text: DOI
Moffatt, H. K. Some topological aspects of fluid dynamics. (English) Zbl 07331629 J. Fluid Mech. 914, Paper No. P1, 56 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{H. K. Moffatt}, J. Fluid Mech. 914, Paper No. P1, 56 p. (2021; Zbl 07331629) Full Text: DOI
Nagy, Péter Tamás; Szabó, András; Paál, György A feedback model of the edge tone, using the adjoint Orr-Sommerfeld equation. (English) Zbl 07328682 J. Fluid Mech. 915, Paper No. A13, 28 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{P. T. Nagy} et al., J. Fluid Mech. 915, Paper No. A13, 28 p. (2021; Zbl 07328682) Full Text: DOI
Gopalakrishnan Meena, Muralikrishnan; Taira, Kunihiko Identifying vortical network connectors for turbulent flow modification. (English) Zbl 07328679 J. Fluid Mech. 915, Paper No. A10, 27 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{M. Gopalakrishnan Meena} and \textit{K. Taira}, J. Fluid Mech. 915, Paper No. A10, 27 p. (2021; Zbl 07328679) Full Text: DOI
Liu, K.; Zhang, B. F.; Zhang, Y. C.; Zhou, Y. Flow structure around a low-drag Ahmed body. (English) Zbl 07319921 J. Fluid Mech. 913, Paper No. A21, 38 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{K. Liu} et al., J. Fluid Mech. 913, Paper No. A21, 38 p. (2021; Zbl 07319921) Full Text: DOI
Galantucci, Luca; Sciacca, Michele; Parker, Nick G.; Baggaley, Andrew W.; Barenghi, Carlo F. Classical and quantum vortex leapfrogging in two-dimensional channels. (English) Zbl 07310733 J. Fluid Mech. 912, Paper No. A9, 25 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{L. Galantucci} et al., J. Fluid Mech. 912, Paper No. A9, 25 p. (2021; Zbl 07310733) Full Text: DOI
Pasche, Simon; Avellan, F.; Gallaire, F. Vortex impingement onto an axisymmetric obstacle – subcritical bifurcation to vortex breakdown. (English) Zbl 07298986 J. Fluid Mech. 910, Paper No. A36, 32 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{S. Pasche} et al., J. Fluid Mech. 910, Paper No. A36, 32 p. (2021; Zbl 07298986) Full Text: DOI
Zhao, Xinran; Yu, Zongxin; Chapelier, Jean-Baptiste; Scalo, Carlo Direct numerical and large-eddy simulation of trefoil knotted vortices. (English) Zbl 07298981 J. Fluid Mech. 910, Paper No. A31, 42 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{X. Zhao} et al., J. Fluid Mech. 910, Paper No. A31, 42 p. (2021; Zbl 07298981) Full Text: DOI
Kalligeris, N.; Kim, Y.; Lynett, P. J. Wave-induced shallow-water monopolar vortex: large-scale experiments. (English) Zbl 07298966 J. Fluid Mech. 910, Paper No. A17, 35 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{N. Kalligeris} et al., J. Fluid Mech. 910, Paper No. A17, 35 p. (2021; Zbl 07298966) Full Text: DOI
Huertas-Cerdeira, Cecilia; Goza, Andres; Sader, John E.; Colonius, Tim; Gharib, Morteza Dynamics of an inverted cantilever plate at moderate angle of attack. (English) Zbl 07298861 J. Fluid Mech. 909, Paper No. A20, 34 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. Huertas-Cerdeira} et al., J. Fluid Mech. 909, Paper No. A20, 34 p. (2020; Zbl 07298861) Full Text: DOI
Menon, Karthik; Mittal, Rajat On the initiation and sustenance of flow-induced vibration of cylinders: insights from force partitioning. (English) Zbl 07297766 J. Fluid Mech. 907, Paper No. A37, 34 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{K. Menon} and \textit{R. Mittal}, J. Fluid Mech. 907, Paper No. A37, 34 p. (2020; Zbl 07297766) Full Text: DOI
Konstantinidis, Efstathios; Dorogi, Dániel; Baranyi, László Resonance in vortex-induced in-line vibration at low Reynolds numbers. (English) Zbl 07297690 J. Fluid Mech. 907, Paper No. A34, 35 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{E. Konstantinidis} et al., J. Fluid Mech. 907, Paper No. A34, 35 p. (2020; Zbl 07297690) Full Text: DOI
Nelson, R. B.; Krishnamurthy, V. S.; Crowdy, D. G. The corotating hollow vortex pair: steady merger and break-up via a topological singularity. (English) Zbl 07297489 J. Fluid Mech. 907, Paper No. A10, 21 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{R. B. Nelson} et al., J. Fluid Mech. 907, Paper No. A10, 21 p. (2020; Zbl 07297489) Full Text: DOI
Jiménez, Javier Dipoles and streams in two-dimensional turbulence. (English) Zbl 07270913 J. Fluid Mech. 904, Paper No. A39, 29 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{J. Jiménez}, J. Fluid Mech. 904, Paper No. A39, 29 p. (2020; Zbl 07270913) Full Text: DOI
Cheng, Zhengyang; Constantinescu, George Near- and far-field structure of shallow mixing layers between parallel streams. (English) Zbl 07270762 J. Fluid Mech. 904, Paper No. A21, 30 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{Z. Cheng} and \textit{G. Constantinescu}, J. Fluid Mech. 904, Paper No. A21, 30 p. (2020; Zbl 07270762) Full Text: DOI
Gazzola, Filippo; Sperone, Gianmarco Steady Navier-Stokes equations in planar domains with obstacle and explicit bounds for unique solvability. (English) Zbl 1451.35107 Arch. Ration. Mech. Anal. 238, No. 3, 1283-1347 (2020). MSC: 35Q30 35Q35 35D30 76D05 76D17 76G25 35B65 35B06 74F10 74B20 74K20 35A02 PDF BibTeX XML Cite \textit{F. Gazzola} and \textit{G. Sperone}, Arch. Ration. Mech. Anal. 238, No. 3, 1283--1347 (2020; Zbl 1451.35107) Full Text: DOI
Dehtyriov, Daniel; Hourigan, Kerry; Thompson, Mark C. Optimal growth of counter-rotating vortex pairs interacting with walls. (English) Zbl 07261495 J. Fluid Mech. 904, Paper No. A10, 33 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{D. Dehtyriov} et al., J. Fluid Mech. 904, Paper No. A10, 33 p. (2020; Zbl 07261495) Full Text: DOI
Lagopoulos, N. S.; Weymouth, G. D.; Ganapathisubramani, B. Deflected wake interaction of tandem flapping foils. (English) Zbl 07259554 J. Fluid Mech. 903, Paper No. A9, 13 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{N. S. Lagopoulos} et al., J. Fluid Mech. 903, Paper No. A9, 13 p. (2020; Zbl 07259554) Full Text: DOI
Song, Minho; Kim, Hyeonseong; Kim, Daegyoum Vortex ring formation coupled with a translating bluff body. (English) Zbl 07259553 J. Fluid Mech. 903, Paper No. A8, 26 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{M. Song} et al., J. Fluid Mech. 903, Paper No. A8, 26 p. (2020; Zbl 07259553) Full Text: DOI
Greco, Carlo Salvatore; Paolillo, Gerardo; Astarita, Tommaso; Cardone, Gennaro The von Kármán street behind a circular cylinder: flow control through synthetic jet placed at the rear stagnation point. (English) Zbl 07256877 J. Fluid Mech. 901, Paper No. A39, 47 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. S. Greco} et al., J. Fluid Mech. 901, Paper No. A39, 47 p. (2020; Zbl 07256877) Full Text: DOI
Gildersleeve, Samantha; Amitay, Michael Vortex dynamics of a low aspect ratio cantilevered cylinder immersed in a boundary layer. (English) Zbl 07256856 J. Fluid Mech. 901, Paper No. A18, 35 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{S. Gildersleeve} and \textit{M. Amitay}, J. Fluid Mech. 901, Paper No. A18, 35 p. (2020; Zbl 07256856) Full Text: DOI
Bourguet, Rémi Vortex-induced vibrations of a flexible cylinder at subcritical Reynolds number. (English) Zbl 07246486 J. Fluid Mech. 902, Paper No. R3, 12 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{R. Bourguet}, J. Fluid Mech. 902, Paper No. R3, 12 p. (2020; Zbl 07246486) Full Text: DOI
Yao, Jie; Hussain, Fazle Separation scaling for viscous vortex reconnection. (English) Zbl 07235810 J. Fluid Mech. 900, Paper No. R4, 12 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{J. Yao} and \textit{F. Hussain}, J. Fluid Mech. 900, Paper No. R4, 12 p. (2020; Zbl 07235810) Full Text: DOI
Zhu, Yuanhang; Su, Yunxing; Breuer, Kenneth Nonlinear flow-induced instability of an elastically mounted pitching wing. (English) Zbl 07235500 J. Fluid Mech. 899, Paper No. A35, 23 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{Y. Zhu} et al., J. Fluid Mech. 899, Paper No. A35, 23 p. (2020; Zbl 07235500) Full Text: DOI
New, T. H.; Long, J.; Zang, B.; Shi, Shengxian Collision of vortex rings upon V-walls. (English) Zbl 07228288 J. Fluid Mech. 899, Paper No. A2, 34 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{T. H. New} et al., J. Fluid Mech. 899, Paper No. A2, 34 p. (2020; Zbl 07228288) Full Text: DOI
Bourguet, Rémi Two-degree-of-freedom flow-induced vibrations of a rotating cylinder. (English) Zbl 07213732 J. Fluid Mech. 897, Paper No. A31, 42 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{R. Bourguet}, J. Fluid Mech. 897, Paper No. A31, 42 p. (2020; Zbl 07213732) Full Text: DOI
Chen, Robin Ming; Hu, Jilong; Wang, Dehua; Wang, Tao; Yuan, Difan Nonlinear stability and existence of compressible vortex sheets in 2D elastodynamics. (English) Zbl 1442.35314 J. Differ. Equations 269, No. 9, 6899-6940 (2020). MSC: 35Q31 35Q35 76N15 76B47 76G25 35L65 35L67 74F10 74J40 74B99 35Q74 35R35 PDF BibTeX XML Cite \textit{R. M. Chen} et al., J. Differ. Equations 269, No. 9, 6899--6940 (2020; Zbl 1442.35314) Full Text: DOI
Pfister, Jean-Lou; Marquet, O. Fluid-structure stability analyses and nonlinear dynamics of flexible splitter plates interacting with a circular cylinder flow. (English) Zbl 07210542 J. Fluid Mech. 896, Paper No. A24, 38 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{J.-L. Pfister} and \textit{O. Marquet}, J. Fluid Mech. 896, Paper No. A24, 38 p. (2020; Zbl 07210542) Full Text: DOI
Brøns, M.; Thompson, M. C.; Leweke, T.; Hourigan, K. Erratum to: “Vorticity generation and conservation for two-dimensional interfaces and boundaries”. (English) Zbl 07207850 J. Fluid Mech. 896, Paper No. E1, 2 p. (2020). MSC: 76D17 PDF BibTeX XML Cite \textit{M. Brøns} et al., J. Fluid Mech. 896, Paper No. E1, 2 p. (2020; Zbl 07207850) Full Text: DOI
Morris, Sarah E.; Williamson, C. H. K. Impingement of a counter-rotating vortex pair on a wavy wall. (English) Zbl 07203522 J. Fluid Mech. 895, Paper No. A25, 31 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{S. E. Morris} and \textit{C. H. K. Williamson}, J. Fluid Mech. 895, Paper No. A25, 31 p. (2020; Zbl 07203522) Full Text: DOI
Kang, Di; Yun, Dongfang; Protas, Bartosz Maximum amplification of enstrophy in three-dimensional Navier-Stokes flows. (English) Zbl 07193510 J. Fluid Mech. 893, Paper No. A22, 35 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{D. Kang} et al., J. Fluid Mech. 893, Paper No. A22, 35 p. (2020; Zbl 07193510) Full Text: DOI
Terrington, Stephen J.; Hourigan, K.; Thompson, M. C. The generation and conservation of vorticity: deforming interfaces and boundaries in two-dimensional flows. (English) Zbl 07193486 J. Fluid Mech. 890, Paper No. A5, 43 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{S. J. Terrington} et al., J. Fluid Mech. 890, Paper No. A5, 43 p. (2020; Zbl 07193486) Full Text: DOI
Sabino, D.; Fabre, D.; Leontini, J. S.; Jacono, D. Lo Vortex-induced vibration prediction via an impedance criterion. (English) Zbl 07193484 J. Fluid Mech. 890, Paper No. A4, 22 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{D. Sabino} et al., J. Fluid Mech. 890, Paper No. A4, 22 p. (2020; Zbl 07193484) Full Text: DOI
Boujleben, Abir; Ibrahimbegovic, Adnan; Lefrançois, Emmanuel An efficient computational model for fluid-structure interaction in application to large overall motion of wind turbine with flexible blades. (English) Zbl 1452.74105 Appl. Math. Modelling 77, Part 1, 392-407 (2020). MSC: 74S05 74F10 74S99 74K10 PDF BibTeX XML Cite \textit{A. Boujleben} et al., Appl. Math. Modelling 77, Part 1, 392--407 (2020; Zbl 1452.74105) Full Text: DOI
Zigunov, Fernando; Sellappan, Prabu; Alvi, Farrukh Reynolds number and slant angle effects on the flow over a slanted cylinder afterbody. (English) Zbl 07192804 J. Fluid Mech. 893, Paper No. A11, 24 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{F. Zigunov} et al., J. Fluid Mech. 893, Paper No. A11, 24 p. (2020; Zbl 07192804) Full Text: DOI
Ju, Xiaoying; An, Hongwei; Cheng, Liang; Tong, Feifei Modes of synchronisation around a near-wall oscillating cylinder in streamwise directions. (English) Zbl 07192801 J. Fluid Mech. 893, Paper No. A8, 39 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{X. Ju} et al., J. Fluid Mech. 893, Paper No. A8, 39 p. (2020; Zbl 07192801) Full Text: DOI
Cheng, Liang; Ju, Xiaoying; Tong, Feifei; An, Hongwei Transition to chaos through period doublings of a forced oscillating cylinder in steady current. (English) Zbl 07191115 J. Fluid Mech. 887, Paper No. A5, 18 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{L. Cheng} et al., J. Fluid Mech. 887, Paper No. A5, 18 p. (2020; Zbl 07191115) Full Text: DOI
Zhu, Wenbo; Mccrink, Matthew H.; Bons, Jeffrey P.; Gregory, James W. The unsteady Kutta condition on an airfoil in a surging flow. (English) Zbl 07190279 J. Fluid Mech. 893, Paper No. R2, 12 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{W. Zhu} et al., J. Fluid Mech. 893, Paper No. R2, 12 p. (2020; Zbl 07190279) Full Text: DOI
Perrot-Minot, Clement; Mignot, E.; Perkins, R.; Lopez, D.; Riviere, N. Vortex shedding frequency in open-channel lateral cavity. (English) Zbl 07190260 J. Fluid Mech. 892, Paper No. A25, 11 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. Perrot-Minot} et al., J. Fluid Mech. 892, Paper No. A25, 11 p. (2020; Zbl 07190260) Full Text: DOI
Tian, Cai; Jiang, Fengjian; Pettersen, Bjørnar; Andersson, Helge I. Vortex dislocation mechanisms in the near wake of a step cylinder. (English) Zbl 07186411 J. Fluid Mech. 891, Paper No. A24, 31 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. Tian} et al., J. Fluid Mech. 891, Paper No. A24, 31 p. (2020; Zbl 07186411) Full Text: DOI
Mavroyiakoumou, C.; Alben, S. Large-amplitude membrane flutter in inviscid flow. (English) Zbl 07186410 J. Fluid Mech. 891, Paper No. A23, 34 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. Mavroyiakoumou} and \textit{S. Alben}, J. Fluid Mech. 891, Paper No. A23, 34 p. (2020; Zbl 07186410) Full Text: DOI
Chen, Xin; Wang, Dong-Pu; Xi, Heng-Dong Reduced flow reversals in turbulent convection in the absence of corner vortices. (English) Zbl 07186407 J. Fluid Mech. 891, Paper No. R5, 14 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{X. Chen} et al., J. Fluid Mech. 891, Paper No. R5, 14 p. (2020; Zbl 07186407) Full Text: DOI
Chen, Robin Ming; Hu, Jilong; Wang, Dehua Linear stability of compressible vortex sheets in 2D elastodynamics: variable coefficients. (English) Zbl 1440.35254 Math. Ann. 376, No. 3-4, 863-912 (2020). MSC: 35Q31 35Q35 74F10 76E17 76N15 76G25 76B47 35B35 35R35 PDF BibTeX XML Cite \textit{R. M. Chen} et al., Math. Ann. 376, No. 3--4, 863--912 (2020; Zbl 1440.35254) Full Text: DOI
Chen, Weilin; Ji, Chunning; Alam, Md. Mahbub; Williams, John; Xu, Dong Numerical simulations of flow past three circular cylinders in equilateral-triangular arrangements. (English) Zbl 07182291 J. Fluid Mech. 891, Paper No. A14, 44 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{W. Chen} et al., J. Fluid Mech. 891, Paper No. A14, 44 p. (2020; Zbl 07182291) Full Text: DOI
Yao, Jie; Hussain, Fazle On singularity formation via viscous vortex reconnection. (English) Zbl 07173488 J. Fluid Mech. 888, Paper No. R2, 12 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{J. Yao} and \textit{F. Hussain}, J. Fluid Mech. 888, Paper No. R2, 12 p. (2020; Zbl 07173488) Full Text: DOI
Moffatt, H. K.; Kimura, Yoshifumi Corrigendum to: “Towards a finite-time singularity of the Navier-Stokes equations. Part 2. Vortex reconnection and singularity evasion”. (English) Zbl 07173477 J. Fluid Mech. 887, Paper No. E2, 2 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{H. K. Moffatt} and \textit{Y. Kimura}, J. Fluid Mech. 887, Paper No. E2, 2 p. (2020; Zbl 07173477) Full Text: DOI
Wang, Z.; Du, L.; Zhao, J.; Thompson, M. C.; Sun, X. Flow-induced vibrations of a pitching and plunging airfoil. (English) Zbl 07154370 J. Fluid Mech. 885, Paper No. A36, 34 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{Z. Wang} et al., J. Fluid Mech. 885, Paper No. A36, 34 p. (2020; Zbl 07154370) Full Text: DOI
Shaabani-Ardali, Léopold; Sipp, Denis; Lesshafft, Lutz Optimal triggering of jet bifurcation: an example of optimal forcing applied to a time-periodic base flow. (English) Zbl 07154368 J. Fluid Mech. 885, Paper No. A34, 37 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{L. Shaabani-Ardali} et al., J. Fluid Mech. 885, Paper No. A34, 37 p. (2020; Zbl 07154368) Full Text: DOI
Dehtyriov, Daniel; Hourigan, Kerry; Thompson, Mark C. Direct numerical simulation of a counter-rotating vortex pair interacting with a wall. (English) Zbl 07150085 J. Fluid Mech. 884, Paper No. A36, 41 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{D. Dehtyriov} et al., J. Fluid Mech. 884, Paper No. A36, 41 p. (2020; Zbl 07150085) Full Text: DOI
Yao, Jie; Hussain, Fazle A physical model of turbulence cascade via vortex reconnection sequence and avalanche. (English) Zbl 1430.76323 J. Fluid Mech. 883, Paper No. A51, 36 p. (2020). MSC: 76F65 76D17 PDF BibTeX XML Cite \textit{J. Yao} and \textit{F. Hussain}, J. Fluid Mech. 883, Paper No. A51, 36 p. (2020; Zbl 1430.76323) Full Text: DOI
Wang, Han; Bühler, Oliver Ageostrophic corrections for power spectra and wave-vortex decomposition. (English) Zbl 1430.76396 J. Fluid Mech. 882, Paper No. A16, 22 p. (2020). MSC: 76M23 76M22 86A05 86A10 76U05 PDF BibTeX XML Cite \textit{H. Wang} and \textit{O. Bühler}, J. Fluid Mech. 882, Paper No. A16, 22 p. (2020; Zbl 1430.76396) Full Text: DOI
Bernier, Caroline; Gazzola, Mattia; Ronsse, Renaud; Chatelain, Philippe Simulations of propelling and energy harvesting articulated bodies via vortex particle-mesh methods. (English) Zbl 1452.74034 J. Comput. Phys. 392, 34-55 (2019). MSC: 74F10 76M28 76Z10 PDF BibTeX XML Cite \textit{C. Bernier} et al., J. Comput. Phys. 392, 34--55 (2019; Zbl 1452.74034) Full Text: DOI
Wang, Yuancen; Wu, Zhiqiang; Zhang, Xiangyun Research on bifurcation response for vortex-induced vibration of top tension riser in shear flow. (English) Zbl 1435.74044 Math. Probl. Eng. 2019, Article ID 1564194, 13 p. (2019). MSC: 74H60 76D17 74F10 PDF BibTeX XML Cite \textit{Y. Wang} et al., Math. Probl. Eng. 2019, Article ID 1564194, 13 p. (2019; Zbl 1435.74044) Full Text: DOI
Ilie, Marcel A fully-coupled CFD/CSD computational approach for aeroelastic studies of helicopter blade-vortex interaction. (English) Zbl 1428.76170 Appl. Math. Comput. 347, 122-142 (2019). MSC: 76M99 74F10 76D17 PDF BibTeX XML Cite \textit{M. Ilie}, Appl. Math. Comput. 347, 122--142 (2019; Zbl 1428.76170) Full Text: DOI
Ilie, Marcel Fluid-structure interaction in turbulent flows; a CFD based aeroelastic algorithm using LES. (English) Zbl 1428.76121 Appl. Math. Comput. 342, 309-321 (2019). MSC: 76M12 76M10 65M08 65M60 74F10 76D05 PDF BibTeX XML Cite \textit{M. Ilie}, Appl. Math. Comput. 342, 309--321 (2019; Zbl 1428.76121) Full Text: DOI
Graham, W. R. Decomposition of the forces on a body moving in an incompressible fluid. (English) Zbl 1430.76137 J. Fluid Mech. 881, 1097-1122 (2019). MSC: 76D09 76D17 PDF BibTeX XML Cite \textit{W. R. Graham}, J. Fluid Mech. 881, 1097--1122 (2019; Zbl 1430.76137) Full Text: DOI
Fan, Dixia; Wang, Zhicheng; Triantafyllou, Michael S.; Karniadakis, George Em Mapping the properties of the vortex-induced vibrations of flexible cylinders in uniform oncoming flow. (English) Zbl 1430.76091 J. Fluid Mech. 881, 815-858 (2019). MSC: 76B47 74F10 76-05 PDF BibTeX XML Cite \textit{D. Fan} et al., J. Fluid Mech. 881, 815--858 (2019; Zbl 1430.76091) Full Text: DOI
Bai, Xu; Le, Zhibin; Qin, Wei Effect of traveling waves on a long slender cylinder in vortex-induced vibration with two degrees of freedom. (English) Zbl 07124623 Comput. Fluids 193, Article ID 104270, 14 p. (2019). MSC: 76D25 76D17 76D33 76M20 74F10 PDF BibTeX XML Cite \textit{X. Bai} et al., Comput. Fluids 193, Article ID 104270, 14 p. (2019; Zbl 07124623) Full Text: DOI
Qu, Yuan; Wang, Jinjun; Feng, Lihao; He, Xi Effect of excitation frequency on flow characteristics around a square cylinder with a synthetic jet positioned at front surface. (English) Zbl 1430.76065 J. Fluid Mech. 880, 764-798 (2019). MSC: 76B10 PDF BibTeX XML Cite \textit{Y. Qu} et al., J. Fluid Mech. 880, 764--798 (2019; Zbl 1430.76065) Full Text: DOI
Sahu, Tulsi Ram; Furquan, Mohd; Mittal, Sanjay Numerical study of flow-induced vibration of a circular cylinder with attached flexible splitter plate at low \(Re\). (English) Zbl 1430.74060 J. Fluid Mech. 880, 551-593 (2019). MSC: 74H45 74F10 76G25 PDF BibTeX XML Cite \textit{T. R. Sahu} et al., J. Fluid Mech. 880, 551--593 (2019; Zbl 1430.74060) Full Text: DOI
Dolci, Daiane I.; Carmo, Bruno S. Bifurcation analysis of the primary instability in the flow around a flexibly mounted circular cylinder. (English) Zbl 1430.76143 J. Fluid Mech. 880, Paper No. R5, 11 p. (2019). MSC: 76D17 76D25 76D05 74F10 37N10 PDF BibTeX XML Cite \textit{D. I. Dolci} and \textit{B. S. Carmo}, J. Fluid Mech. 880, Paper No. R5, 11 p. (2019; Zbl 1430.76143) Full Text: DOI
Viúdez, A. A stable tripole vortex model in two-dimensional Euler flows. (English) Zbl 1430.76097 J. Fluid Mech. 878, Paper No. R5, 11 p. (2019). MSC: 76B47 76E07 PDF BibTeX XML Cite \textit{A. Viúdez}, J. Fluid Mech. 878, Paper No. R5, 11 p. (2019; Zbl 1430.76097) Full Text: DOI
Guha, Anirban; Rahmani, Mona Predicting vortex merging and ensuing turbulence characteristics in shear layers from initial conditions. (English) Zbl 1430.76218 J. Fluid Mech. 878, Paper No. R4, 12 p. (2019). MSC: 76F06 76F10 76F25 PDF BibTeX XML Cite \textit{A. Guha} and \textit{M. Rahmani}, J. Fluid Mech. 878, Paper No. R4, 12 p. (2019; Zbl 1430.76218) Full Text: DOI
Zhong, Qiang; Dong, Haibo; Quinn, Daniel B. How dorsal fin sharpness affects swimming speed and economy. (English) Zbl 1430.76510 J. Fluid Mech. 878, 370-385 (2019). MSC: 76Z10 76B47 92C10 76G25 PDF BibTeX XML Cite \textit{Q. Zhong} et al., J. Fluid Mech. 878, 370--385 (2019; Zbl 1430.76510) Full Text: DOI
Zhang, Xiang; He, Guowei; Wang, Shizhao; Zhang, Xing Passive hovering of a flexible \(\Lambda \)-flyer in a vertically oscillating airflow. (English) Zbl 1430.76341 J. Fluid Mech. 878, 113-146 (2019). MSC: 76G25 76Z10 74F10 PDF BibTeX XML Cite \textit{X. Zhang} et al., J. Fluid Mech. 878, 113--146 (2019; Zbl 1430.76341) Full Text: DOI
Suzuki, K.; Okada, I.; Yoshino, M. Effect of wing mass on the free flight of a butterfly-like model using immersed boundary-lattice Boltzmann simulations. (English) Zbl 1430.76338 J. Fluid Mech. 877, 614-647 (2019). MSC: 76G25 76M28 PDF BibTeX XML Cite \textit{K. Suzuki} et al., J. Fluid Mech. 877, 614--647 (2019; Zbl 1430.76338) Full Text: DOI
Zandian, A.; Sirignano, W. A.; Hussain, F. Vorticity dynamics in a spatially developing liquid jet inside a co-flowing gas. (English) Zbl 1430.76462 J. Fluid Mech. 877, 429-470 (2019). MSC: 76T10 76D17 PDF BibTeX XML Cite \textit{A. Zandian} et al., J. Fluid Mech. 877, 429--470 (2019; Zbl 1430.76462) Full Text: DOI
Klettner, C. A.; Eames, I.; Hunt, J. C. R. The effect of an unsteady flow incident on an array of circular cylinders. (English) Zbl 1430.76145 J. Fluid Mech. 872, 560-593 (2019). MSC: 76D17 74F10 PDF BibTeX XML Cite \textit{C. A. Klettner} et al., J. Fluid Mech. 872, 560--593 (2019; Zbl 1430.76145) Full Text: DOI
Miyanawala, T. P.; Jaiman, R. K. Decomposition of wake dynamics in fluid-structure interaction via low-dimensional models. (English) Zbl 1430.76093 J. Fluid Mech. 867, 723-764 (2019). MSC: 76B47 74F10 PDF BibTeX XML Cite \textit{T. P. Miyanawala} and \textit{R. K. Jaiman}, J. Fluid Mech. 867, 723--764 (2019; Zbl 1430.76093) Full Text: DOI
Li, Xintao; Lyu, Zhen; Kou, Jiaqing; Zhang, Weiwei Mode competition in galloping of a square cylinder at low Reynolds number. (English) Zbl 1430.76414 J. Fluid Mech. 867, 516-555 (2019). MSC: 76N20 74F10 76D17 PDF BibTeX XML Cite \textit{X. Li} et al., J. Fluid Mech. 867, 516--555 (2019; Zbl 1430.76414) Full Text: DOI
Nuriev, Artem N.; Kamalutdinov, Airat M.; Egorov, Andrey G. A numerical investigation of fluid flows induced by the oscillations of thin plates and evaluation of the associated hydrodynamic forces. (English) Zbl 1419.76132 J. Fluid Mech. 874, 1057-1095 (2019). MSC: 76D05 74F10 76D17 PDF BibTeX XML Cite \textit{A. N. Nuriev} et al., J. Fluid Mech. 874, 1057--1095 (2019; Zbl 1419.76132) Full Text: DOI
Yasuda, Tatsuya; Kawahara, Genta; Van Veen, Lennaert; Kida, Shigeo A vortex interaction mechanism for generating energy and enstrophy fluctuations in high-symmetric turbulence. (English) Zbl 1419.76171 J. Fluid Mech. 874, 639-676 (2019). MSC: 76D17 76F05 76F65 PDF BibTeX XML Cite \textit{T. Yasuda} et al., J. Fluid Mech. 874, 639--676 (2019; Zbl 1419.76171) Full Text: DOI
Caillol, Philippe A singular vorticity wave packet within a rapidly rotating vortex: spiralling versus oscillating motions. (English) Zbl 1419.76159 J. Fluid Mech. 873, 688-741 (2019). MSC: 76D17 76U05 PDF BibTeX XML Cite \textit{P. Caillol}, J. Fluid Mech. 873, 688--741 (2019; Zbl 1419.76159) Full Text: DOI
Berk, Tim; Ganapathisubramani, Bharathram Effects of vortex-induced velocity on the development of a synthetic jet issuing into a turbulent boundary layer. (English) Zbl 1419.76302 J. Fluid Mech. 870, 651-679 (2019). MSC: 76F40 76D25 PDF BibTeX XML Cite \textit{T. Berk} and \textit{B. Ganapathisubramani}, J. Fluid Mech. 870, 651--679 (2019; Zbl 1419.76302) Full Text: DOI
Navrose; Mittal, Sanjay Intermittency in free vibration of a cylinder beyond the laminar regime. (English) Zbl 1415.76133 J. Fluid Mech. 870, Paper No. R2, 14 p. (2019). MSC: 76D05 74F10 76D17 76D25 74H45 PDF BibTeX XML Cite \textit{Navrose} and \textit{S. Mittal}, J. Fluid Mech. 870, Paper No. R2, 14 p. (2019; Zbl 1415.76133) Full Text: DOI
Ueda, Yoshiaki Numerical analysis of flow-induced rotation of an S-shaped rotor. (English) Zbl 1415.76740 J. Fluid Mech. 867, 77-113 (2019). MSC: 76U05 76D17 76M23 74F10 76M28 PDF BibTeX XML Cite \textit{Y. Ueda}, J. Fluid Mech. 867, 77--113 (2019; Zbl 1415.76740) Full Text: DOI
Chen, Sung-Hua; Ku, Yen; Lin, Chao-An Simulations of settling object using moving domain and immersed-boundary method. (English) Zbl 1411.76057 Comput. Fluids 179, 735-743 (2019). MSC: 76M10 74S05 65M60 74F10 76D99 PDF BibTeX XML Cite \textit{S.-H. Chen} et al., Comput. Fluids 179, 735--743 (2019; Zbl 1411.76057) Full Text: DOI
Durán Venegas, E.; Le Dizès, S. Generalized helical vortex pairs. (English) Zbl 1415.76098 J. Fluid Mech. 865, 523-545 (2019). MSC: 76B47 76E17 PDF BibTeX XML Cite \textit{E. Durán Venegas} and \textit{S. Le Dizès}, J. Fluid Mech. 865, 523--545 (2019; Zbl 1415.76098) Full Text: DOI
Zampoli, Vittorio; Sumbatyan, M. A. Flow-induced vortex field generated by a thin oscillating plate in an aeroacoustics framework. (English) Zbl 1448.76144 Z. Angew. Math. Phys. 70, No. 1, Paper No. 33, 21 p. (2019). MSC: 76Q05 74F10 PDF BibTeX XML Cite \textit{V. Zampoli} and \textit{M. A. Sumbatyan}, Z. Angew. Math. Phys. 70, No. 1, Paper No. 33, 21 p. (2019; Zbl 1448.76144) Full Text: DOI
Beckebanze, F.; Raja, K. J.; Maas, L. R. M. Mean flow generation by three-dimensional nonlinear internal wave beams. (English) Zbl 1415.76166 J. Fluid Mech. 864, 303-326 (2019). MSC: 76D17 76D33 PDF BibTeX XML Cite \textit{F. Beckebanze} et al., J. Fluid Mech. 864, 303--326 (2019; Zbl 1415.76166) Full Text: DOI
Quaranta, Hugo Umberto; Brynjell-Rahkola, Mattias; Leweke, Thomas; Henningson, Dan S. Local and global pairing instabilities of two interlaced helical vortices. (English) Zbl 1415.76176 J. Fluid Mech. 863, 927-955 (2019). MSC: 76D17 76E17 76E07 PDF BibTeX XML Cite \textit{H. U. Quaranta} et al., J. Fluid Mech. 863, 927--955 (2019; Zbl 1415.76176) Full Text: DOI
Reinaud, Jean N. Three-dimensional quasi-geostrophic vortex equilibria with \(m\)-fold symmetry. (English) Zbl 1415.86017 J. Fluid Mech. 863, 32-59 (2019). MSC: 86A05 76B47 76U05 PDF BibTeX XML Cite \textit{J. N. Reinaud}, J. Fluid Mech. 863, 32--59 (2019; Zbl 1415.86017) Full Text: DOI
Mathai, Varghese; Loeffen, Laura A. W. M.; Chan, Timothy T. K.; Wildeman, Sander Dynamics of heavy and buoyant underwater pendulums. (English) Zbl 1415.76172 J. Fluid Mech. 862, 348-363 (2019). MSC: 76D17 76T20 74F10 37N10 PDF BibTeX XML Cite \textit{V. Mathai} et al., J. Fluid Mech. 862, 348--363 (2019; Zbl 1415.76172) Full Text: DOI
Forster, Kyle J.; Diasinos, Sammy; Doig, Graham; Barber, Tracie J. Large eddy simulation of transient upstream/downstream vortex interactions. (English) Zbl 1415.76169 J. Fluid Mech. 862, 227-260 (2019). MSC: 76D17 76F65 PDF BibTeX XML Cite \textit{K. J. Forster} et al., J. Fluid Mech. 862, 227--260 (2019; Zbl 1415.76169) Full Text: DOI
Raissi, Maziar; Wang, Zhicheng; Triantafyllou, Michael S.; Karniadakis, George Em Deep learning of vortex-induced vibrations. (English) Zbl 1415.76177 J. Fluid Mech. 861, 119-137 (2019). MSC: 76D17 74F10 74H45 PDF BibTeX XML Cite \textit{M. Raissi} et al., J. Fluid Mech. 861, 119--137 (2019; Zbl 1415.76177) Full Text: DOI
Zandian, A.; Sirignano, W. A.; Hussain, F. Understanding liquid-jet atomization cascades via vortex dynamics. (English) Zbl 1430.76463 J. Fluid Mech. 843, 293-354 (2018). MSC: 76T10 76D05 76E17 PDF BibTeX XML Cite \textit{A. Zandian} et al., J. Fluid Mech. 843, 293--354 (2018; Zbl 1430.76463) Full Text: DOI
Kwiecinski, James A.; Van Gorder, Robert A. Dynamics of nearly parallel interacting vortex filaments. (English) Zbl 1421.76048 J. Fluid Mech. 835, 575-623 (2018). MSC: 76B47 35Q35 PDF BibTeX XML Cite \textit{J. A. Kwiecinski} and \textit{R. A. Van Gorder}, J. Fluid Mech. 835, 575--623 (2018; Zbl 1421.76048) Full Text: DOI
Semenov, Yuriy A.; Wu, G. X. Water entry of a wedge with rolled-up vortex sheet. (English) Zbl 1421.76049 J. Fluid Mech. 835, 512-539 (2018). MSC: 76B47 74F10 PDF BibTeX XML Cite \textit{Y. A. Semenov} and \textit{G. X. Wu}, J. Fluid Mech. 835, 512--539 (2018; Zbl 1421.76049) Full Text: DOI
Simha, A.; Mo, J.; Morrison, P. J. Unsteady Stokes flow near boundaries: the point-particle approximation and the method of reflections. (English) Zbl 1419.76140 J. Fluid Mech. 841, 883-924 (2018). MSC: 76D07 76D17 74F10 PDF BibTeX XML Cite \textit{A. Simha} et al., J. Fluid Mech. 841, 883--924 (2018; Zbl 1419.76140) Full Text: DOI
Park, Sung Goon; Sung, Hyung Jin Hydrodynamics of flexible fins propelled in tandem, diagonal, triangular and diamond configurations. (English) Zbl 1419.76753 J. Fluid Mech. 840, 154-189 (2018). MSC: 76Z10 74F10 92C10 PDF BibTeX XML Cite \textit{S. G. Park} and \textit{H. J. Sung}, J. Fluid Mech. 840, 154--189 (2018; Zbl 1419.76753) Full Text: DOI
Huang, Haibo; Wei, Heng; Lu, Xi-Yun Coupling performance of tandem flexible inverted flags in a uniform flow. (English) Zbl 1419.76749 J. Fluid Mech. 837, 461-476 (2018). MSC: 76Z10 74F10 76G25 PDF BibTeX XML Cite \textit{H. Huang} et al., J. Fluid Mech. 837, 461--476 (2018; Zbl 1419.76749) Full Text: DOI
Sareen, A.; Zhao, J.; Lo Jacono, D.; Sheridan, J.; Hourigan, K.; Thompson, M. C. Vortex-induced vibration of a rotating sphere. (English) Zbl 1419.76167 J. Fluid Mech. 837, 258-292 (2018). MSC: 76D17 74F10 76-05 PDF BibTeX XML Cite \textit{A. Sareen} et al., J. Fluid Mech. 837, 258--292 (2018; Zbl 1419.76167) Full Text: DOI
Li, Juan; Wu, Zi-Niu Vortex force map method for viscous flows of general airfoils. (English) Zbl 1419.76165 J. Fluid Mech. 836, 145-166 (2018). MSC: 76D17 74F10 76Z10 PDF BibTeX XML Cite \textit{J. Li} and \textit{Z.-N. Wu}, J. Fluid Mech. 836, 145--166 (2018; Zbl 1419.76165) Full Text: DOI
Kimura, Yoshifumi; Moffatt, H. K. A tent model of vortex reconnection under Biot-Savart evolution. (English) Zbl 1419.76164 J. Fluid Mech. 834, Paper No. R1, 12 p. (2018). MSC: 76D17 76A02 76M25 PDF BibTeX XML Cite \textit{Y. Kimura} and \textit{H. K. Moffatt}, J. Fluid Mech. 834, Paper No. R1, 12 p. (2018; Zbl 1419.76164) Full Text: DOI
Chen, Gui-Qiang G.; Rigby, Matthew Stability of steady multi-wave configurations for the full Euler equations of compressible fluid flow. (English) Zbl 1438.35257 Acta Math. Sci., Ser. B, Engl. Ed. 38, No. 5, 1485-1514 (2018). MSC: 35L03 35L67 35L65 35B35 35Q31 76N15 76L05 35B30 35Q35 PDF BibTeX XML Cite \textit{G.-Q. G. Chen} and \textit{M. Rigby}, Acta Math. Sci., Ser. B, Engl. Ed. 38, No. 5, 1485--1514 (2018; Zbl 1438.35257) Full Text: DOI arXiv
Bourguet, Rémi Flow-induced vibrations of a rotating cylinder in an arbitrary direction. (English) Zbl 1415.76167 J. Fluid Mech. 860, 739-766 (2018). MSC: 76D17 74F10 76D25 76U05 PDF BibTeX XML Cite \textit{R. Bourguet}, J. Fluid Mech. 860, 739--766 (2018; Zbl 1415.76167) Full Text: DOI
Adhikari, Prabal; Choi, Jaehong Magnetic vortices in the abelian Higgs model with derivative interactions. (English) Zbl 1405.81161 Int. J. Mod. Phys. A 33, No. 36, Article ID 1850215, 14 p. (2018). MSC: 81V05 81T25 78A30 81T15 82D55 PDF BibTeX XML Cite \textit{P. Adhikari} and \textit{J. Choi}, Int. J. Mod. Phys. A 33, No. 36, Article ID 1850215, 14 p. (2018; Zbl 1405.81161) Full Text: DOI
Liu, B.; Jaiman, R. K. Dynamics and stability of gap-flow interference in a vibrating side-by-side arrangement of two circular cylinders. (English) Zbl 1415.76193 J. Fluid Mech. 855, 804-838 (2018). MSC: 76D25 74F10 76D17 76D05 PDF BibTeX XML Cite \textit{B. Liu} and \textit{R. K. Jaiman}, J. Fluid Mech. 855, 804--838 (2018; Zbl 1415.76193) Full Text: DOI
Pastrana, D.; Cajas, J. C.; Lehmkuhl, O.; Rodríguez, I.; Houzeaux, G. Large-eddy simulations of the vortex-induced vibration of a low mass ratio two-degree-of-freedom circular cylinder at subcritical Reynolds numbers. (English) Zbl 1410.76111 Comput. Fluids 173, 118-132 (2018). MSC: 76F65 76M10 65M60 76D17 PDF BibTeX XML Cite \textit{D. Pastrana} et al., Comput. Fluids 173, 118--132 (2018; Zbl 1410.76111) Full Text: DOI
Priovolos, A. K.; Filippas, E. S.; Belibassakis, K. A. A vortex-based method for improved flexible flapping-foil thruster performance. (English) Zbl 1403.76144 Eng. Anal. Bound. Elem. 95, 69-84 (2018). MSC: 76M23 74F10 76Z10 PDF BibTeX XML Cite \textit{A. K. Priovolos} et al., Eng. Anal. Bound. Elem. 95, 69--84 (2018; Zbl 1403.76144) Full Text: DOI