Publications of Detlef Lohse

Journal Article (280)

81.
Journal Article
Sepahi, F.; Pande, N.; Chong, K. L.; Mul, G.; Verzicco, R.; Lohse, D.; Mei, B. T.; Krug, D.: The effect of buoyancy driven convection on the growth and dissolution of bubbles on electrodes. Electrochimica Acta 403, 139616 (2022)
82.
Journal Article
Seyfert, C.; Rodríguez-Rodríguez, J.; Lohse, D.; Marin, A.: Stability of respiratory-like droplets under evaporation. Physical Review Fluids 7, 023603 (2022)
83.
Journal Article
Wang, G.; Santelli, L.; Verzicco, R.; Lohse, D.; Stevens, R. J.A.M.: Off-centre gravity induces large-scale flow patterns in spherical Rayleigh–Bénard convection. Journal of Fluid Mechanics 942, A21 (2022)
84.
Journal Article
Yang, R.; Ng, C. S.; Chong, K. L.; Verzicco, R.; Lohse, D.: Do increased flow rates in displacement ventilation always lead to better results? Journal of Fluid Mechanics 932, A3 (2022)
85.
Journal Article
Yang, Y.; Verzicco, R.; Lohse, D.; Caulfield, C.P.: Layering and vertical transport in sheared double-diffusive convection in the diffusive regime. Journal of Fluid Mechanics 933, A30 (2022)
86.
Journal Article
Yerragolam, G. S.; Stevens, R. J.A.M.; Verzicco, R.; Lohse, D.; Shishkina, O.: Passive scalar transport in Couette flow. Journal of Fluid Mechanics 943, A17 (2022)
87.
Journal Article
Yi, L.; Wang, C.; van Vuren, T.; Lohse, D.; Risso, F.; Toschi, F.; Sun, C.: Physical mechanisms for droplet size and effective viscosity asymmetries in turbulent emulsions. Journal of Fluid Mechanics 951, A39 (2022)
88.
Journal Article
Zeng, B.; Wang, Y.; Diddens, C.; Zandvliet, H. J. W.; Lohse, D.: Droplet dissolution driven by emerging thermal gradients and Marangoni flow. Physical Review Fluids 7, 064006 (2022)
89.
Journal Article
Zhang, B.; Sanjay, V.; Shi, S.; Zhao, Y.; Lv, C.; Feng, X.-Q.; Lohse, D.: Impact Forces of Water Drops Falling on Superhydrophobic Surfaces. Physical Review Letters 129, 104501 (2022)
90.
Journal Article
Wang, Q.; Reiter, P.; Lohse, D.; Shishkina, O.: Universal properties of penetrative turbulent Rayleigh-Bénard convection. Physical Review Fluids 6, 063502 (2021)
91.
Journal Article
Bakhuis, D.; Ezeta, R.; Bullee, P. A.; Marin, A.; Lohse, D.; Sun, C.; Huisman, S. G.: Catastrophic Phase Inversion in High-Reynolds-Number Turbulent Taylor-Couette Flow. Physical Review Letters 126, 064501 (2021)
92.
Journal Article
Berghout, P.; Bullee, P. A.; Fuchs, T.; Scharnowski, S.; Kähler, C. J.; Chung, D.; Lohse, D.; Huisman, S. G.: Characterizing the turbulent drag properties of rough surfaces with a Taylor–Couette set-up. Journal of Fluid Mechanics 919, A45 (2021)
93.
Journal Article
Blass, A.; Tabak, P.; Verzicco, R.; Stevens, R. J.A.M.; Lohse, D.: The effect of Prandtl number on turbulent sheared thermal convection. Journal of Fluid Mechanics 910, A37 (2021)
94.
Journal Article
Blass, A.; Verzicco, R.; Lohse, D.; Stevens, R. J. A. M.; Krug, D.: Flow organisation in laterally unconfined Rayleigh–Bénard turbulence. Journal of Fluid Mechanics 906, A26 (2021)
95.
Journal Article
Chantelot, P.; Lohse, D.: Leidenfrost Effect as a Directed Percolation Phase Transition. Physical Review Letters 127, 124502 (2021)
96.
Journal Article
Chantelot, P.; Lohse, D.: Drop impact on superheated surfaces: short-time dynamics and transition to contact. Journal of Fluid Mechanics 928, A36 (2021)
97.
Journal Article
Chen, Y.; Chong, K. L.; Liu, L.; Verzicco, R.; Lohse, D.: Instabilities driven by diffusiophoretic flow on catalytic surfaces. Journal of Fluid Mechanics 919, A10 (2021)
98.
Journal Article
Chong, K. L.; Ng, C. S.; Hori, N.; Yang, R.; Verzicco, R.; Lohse, D.: Extended Lifetime of Respiratory Droplets in a Turbulent Vapor Puff and Its Implications on Airborne Disease Transmission. Physical Review Letters 126, 034502 (2021)
99.
Journal Article
Diddens, C.; Li, Y.; Lohse, D.: Competing Marangoni and Rayleigh convection in evaporating binary droplets. Journal of Fluid Mechanics 914, A23 (2021)
100.
Journal Article
Hack, M. A.; Vondeling, P.; Cornelissen, M.; Lohse, D.; Snoeijer, J. H.; Diddens, C.; Segers, T.: Asymmetric coalescence of two droplets with different surface tensions is caused by capillary waves. Physical Review Fluids 6, 104002 (2021)
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