Artículos con órdenes de acceso público - Charles DoeringMás información
No disponibles en ningún lugar: 2
Modeling complex systems: Stochastic processes, stochastic differential equations, and Fokker-Planck equations
CR Doering
1990 Lectures in Complex Systems, 3-52, 2018
Órdenes: US National Science Foundation
Lectures on stirring, mixing and transport
CR Doering, C Nobili
Transport, Fluids, and Mixing, 8-34, 2017
Órdenes: US National Science Foundation
Disponibles en algún lugar: 31
Bounds on vertical heat transport for infinite-Prandtl-number Rayleigh–Bénard convection
CR Doering, F Otto, MG Reznikoff
Journal of fluid mechanics 560, 229-241, 2006
Órdenes: German Research Foundation
Long time behavior of the two-dimensional Boussinesq equations without buoyancy diffusion
CR Doering, J Wu, K Zhao, X Zheng
Physica D: Nonlinear Phenomena 376, 144-159, 2018
Órdenes: US National Science Foundation
Gene expression dynamics with stochastic bursts: Construction and exact results for a coarse-grained model
YT Lin, CR Doering
Physical Review E 93 (2), 022409, 2016
Órdenes: US National Science Foundation, UK Engineering and Physical Sciences …
Optimal bounds and extremal trajectories for time averages in nonlinear dynamical systems
I Tobasco, D Goluskin, CR Doering
Physics Letters A 382 (6), 382-386, 2018
Órdenes: US National Science Foundation
Bounds for convection between rough boundaries
D Goluskin, CR Doering
Journal of Fluid Mechanics 804, 370-386, 2016
Órdenes: US National Science Foundation
Failure of energy stability in Oldroyd-B fluids at arbitrarily low Reynolds numbers
CR Doering, B Eckhardt, J Schumacher
Journal of non-newtonian fluid mechanics 135 (2-3), 92-96, 2006
Órdenes: German Research Foundation
Nucleation pressure threshold in acoustic droplet vaporization
CJ Miles, CR Doering, OD Kripfgans
Journal of Applied Physics 120 (3), 2016
Órdenes: US National Science Foundation
Turning up the heat in turbulent thermal convection
CR Doering
Proceedings of the National Academy of Sciences 117 (18), 9671-9673, 2020
Órdenes: US National Science Foundation
Steady Rayleigh–Bénard convection between stress-free boundaries
B Wen, D Goluskin, M LeDuc, GP Chini, CR Doering
Journal of Fluid Mechanics 905, R4, 2020
Órdenes: US National Science Foundation, Natural Sciences and Engineering Research …
Optimal wall-to-wall transport by incompressible flows
I Tobasco, CR Doering
Physical review letters 118 (26), 264502, 2017
Órdenes: US National Science Foundation
Extreme vorticity growth in Navier–Stokes turbulence
J Schumacher, B Eckhardt, CR Doering
Physics Letters A 374 (6), 861-865, 2010
Órdenes: German Research Foundation
Absence of evidence for the ultimate regime in two-dimensional Rayleigh-Bénard convection
CR Doering, S Toppaladoddi, JS Wettlaufer
Physical review letters 123 (25), 259401, 2019
Órdenes: US National Science Foundation, Swedish Research Council
Steady Rayleigh–Bénard convection between no-slip boundaries
B Wen, D Goluskin, CR Doering
Journal of Fluid Mechanics 933, R4, 2022
Órdenes: US National Science Foundation, Natural Sciences and Engineering Research …
Diffusion-limited mixing by incompressible flows
CJ Miles, CR Doering
Nonlinearity 31 (5), 2346, 2018
Órdenes: US National Science Foundation
Links between dissipation, intermittency, and helicity in the GOY model revisited
JC Bowman, CR Doering, B Eckhardt, J Davoudi, M Roberts, ...
Physica D: Nonlinear Phenomena 218 (1), 1-10, 2006
Órdenes: German Research Foundation
Thermal convection over fractal surfaces
S Toppaladoddi, AJ Wells, CR Doering, JS Wettlaufer
Journal of Fluid Mechanics 907, A12, 2021
Órdenes: US National Science Foundation, US National Aeronautics and Space …
On the optimal design of wall‐to‐wall heat transport
CR Doering, I Tobasco
Communications on Pure and Applied Mathematics 72 (11), 2385-2448, 2019
Órdenes: US National Science Foundation
Wall-to-wall optimal transport in two dimensions
AN Souza, I Tobasco, CR Doering
Journal of Fluid Mechanics 889, A34, 2020
Órdenes: US National Science Foundation
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