Enhancing heat transport in multiphase Rayleigh–Bénard turbulence by changing the plate–liquid contact angles
暂无分享,去创建一个
D. Lohse | R. Verzicco | K. Chong | C. S. Ng | Hao-Ran Liu
[1] O. Shishkina. Rayleigh-Bénard convection: The container shape matters , 2021, Physical Review Fluids.
[2] Kai Leong Chong,et al. An efficient phase-field method for turbulent multiphase flows , 2021, J. Comput. Phys..
[3] A. Soldati,et al. Turbulent Flows With Drops and Bubbles: What Numerical Simulations Can Tell Us—Freeman Scholar Lecture , 2021, Journal of Fluids Engineering.
[4] A. Soldati,et al. Energy balance in lubricated drag-reduced turbulent channel flow , 2021, Journal of Fluid Mechanics.
[5] M. Schultz,et al. Predicting the Drag of Rough Surfaces , 2021 .
[6] M. Graham,et al. Exact Coherent States and the Nonlinear Dynamics of Wall-Bounded Turbulent Flows , 2021 .
[7] F. Toschi,et al. Global and local statistics in turbulent emulsions , 2020, Journal of Fluid Mechanics.
[8] D. Lohse,et al. Catastrophic Phase Inversion in High-Reynolds-Number Turbulent Taylor-Couette Flow. , 2020, Physical review letters.
[9] D. Lohse,et al. Two-layer thermally driven turbulence: mechanisms for interface breakup , 2020, Journal of Fluid Mechanics.
[10] D. Lohse,et al. Non-monotonic transport mechanisms in vertical natural convection with dispersed light droplets , 2020, Journal of Fluid Mechanics.
[11] Quan Zhou,et al. Vibration-induced boundary-layer destabilization achieves massive heat-transport enhancement , 2020, Science Advances.
[12] Chao Sun,et al. Experimental study of the heat transfer properties of self-sustained biphasic thermally driven turbulence , 2020 .
[13] D. Lohse,et al. Flow organization and heat transfer in turbulent wall sheared thermal convection , 2019, Journal of Fluid Mechanics.
[14] Chao Sun,et al. Self-sustained biphasic catalytic particle turbulence , 2019, Nature Communications.
[15] D. Lohse,et al. Physical mechanisms governing drag reduction in turbulent Taylor–Couette flow with finite-size deformable bubbles , 2018, Journal of Fluid Mechanics.
[16] D. Lohse,et al. Experimental investigation of heat transport in homogeneous bubbly flow , 2018, Journal of Fluid Mechanics.
[17] D. Lohse,et al. Controlling Heat Transport and Flow Structures in Thermal Turbulence Using Ratchet Surfaces. , 2017, Physical review letters.
[18] Guang Pan,et al. Significant and stable drag reduction with air rings confined by alternated superhydrophobic and hydrophilic strips , 2017, Science Advances.
[19] D. Lohse,et al. Roughness-Facilitated Local 1/2 Scaling Does Not Imply the Onset of the Ultimate Regime of Thermal Convection. , 2017, Physical review letters.
[20] K. Xia,et al. Turbulent thermal convection over rough plates with varying roughness geometries , 2017, Journal of Fluid Mechanics.
[21] D. Lohse,et al. Confined Rayleigh-Bénard, Rotating Rayleigh-Bénard, and Double Diffusive Convection: A Unifying View on Turbulent Transport Enhancement through Coherent Structure Manipulation. , 2017, Physical review letters.
[22] R. Verzicco,et al. Mixed convection in turbulent channels with unstable stratification , 2016, Journal of Fluid Mechanics.
[23] K. Xia,et al. Condensation of Coherent Structures in Turbulent Flows. , 2015, Physical review letters.
[24] D. Lohse,et al. Heat-flux enhancement by vapour-bubble nucleation in Rayleigh–Bénard turbulence , 2015, Journal of Fluid Mechanics.
[25] Hao-Ran Liu,et al. A diffuse-interface immersed-boundary method for two-dimensional simulation of flows with moving contact lines on curved substrates , 2015, J. Comput. Phys..
[26] Y. Wang,et al. A mass-conserved diffuse interface method and its application for incompressible multiphase flows with large density ratio , 2015, J. Comput. Phys..
[27] Gareth H McKinley,et al. Sustainable drag reduction in turbulent Taylor-Couette flows by depositing sprayable superhydrophobic surfaces. , 2015, Physical review letters.
[28] Roberto Verzicco,et al. A pencil distributed finite difference code for strongly turbulent wall-bounded flows , 2015, 1501.01247.
[29] G. Haller. Lagrangian Coherent Structures , 2015 .
[30] Sebastian Wagner,et al. Heat flux enhancement by regular surface roughness in turbulent thermal convection , 2014, Journal of Fluid Mechanics.
[31] Y. Murai. Frictional drag reduction by bubble injection , 2014 .
[32] Julien Salort,et al. Thermal boundary layer near roughnesses in turbulent Rayleigh-Bénard convection: Flow structure and multistability , 2014 .
[33] B. R. Noack. Turbulence, Coherent Structures, Dynamical Systems and Symmetry , 2013 .
[34] Richard J. A. M. Stevens,et al. Comparison between two- and three-dimensional Rayleigh–Bénard convection , 2013, Journal of Fluid Mechanics.
[35] R. Ni,et al. Confinement-induced heat-transport enhancement in turbulent thermal convection. , 2013, Physical review letters.
[36] D. Lohse,et al. Heat transport in bubbling turbulent convection , 2013, Proceedings of the National Academy of Sciences.
[37] Simo A. Mäkiharju,et al. On the scaling of air layer drag reduction , 2013, Journal of Fluid Mechanics.
[38] Richard J. A. M. Stevens,et al. The unifying theory of scaling in thermal convection: the updated prefactors , 2013, Journal of Fluid Mechanics.
[39] Chao Sun,et al. The importance of bubble deformability for strong drag reduction in bubbly turbulent Taylor–Couette flow , 2011, Journal of Fluid Mechanics.
[40] F. Chillà,et al. New perspectives in turbulent Rayleigh-Bénard convection , 2012, The European Physical Journal E.
[41] F. Toschi,et al. Convection in multiphase fluid flows using lattice Boltzmann methods. , 2011, Physical Review Letters.
[42] Alexander Smits,et al. High–Reynolds Number Wall Turbulence , 2011 .
[43] A. Abdel-azim. Fundamentals of Heat and Mass Transfer , 2011 .
[44] Detlef Lohse,et al. Radial boundary layer structure and Nusselt number in Rayleigh–Bénard convection , 2009, Journal of Fluid Mechanics.
[45] D. Lohse,et al. Small-Scale Properties of Turbulent Rayleigh-Bénard Convection , 2010 .
[46] S. Ceccio. Friction Drag Reduction of External Flows with Bubble and Gas Injection , 2010 .
[47] J. Fourier. Théorie analytique de la chaleur , 2009 .
[48] D. Funfschilling,et al. Enhanced heat transport by turbulent two-phase Rayleigh-Bénard convection. , 2008, Physical review letters.
[49] Detlef Lohse,et al. Heat transfer and large scale dynamics in turbulent Rayleigh-Bénard convection , 2008, 0811.0471.
[50] Yasushi Takeda,et al. Frictional drag reduction in bubbly Couette–Taylor flow , 2008 .
[51] Chang Shu,et al. Diffuse interface model for incompressible two-phase flows with large density ratios , 2007, J. Comput. Phys..
[52] T. H. van den Berg,et al. Bubbly turbulent drag reduction is a boundary layer effect. , 2007, Physical review letters.
[53] David R. Dowling,et al. Bubble friction drag reduction in a high-Reynolds-number flat-plate turbulent boundary layer , 2006, Journal of Fluid Mechanics.
[54] Gretar Tryggvason,et al. The effect of bubbles on the wall drag in a turbulent channel flow , 2005 .
[55] D. Lohse,et al. Thermal convection for large Prandtl numbers. , 2000, Physical review letters.
[56] Penger Tong,et al. Turbulent thermal convection in a cell with ordered rough boundaries , 2000, Journal of Fluid Mechanics.
[57] D. Jacqmin. Regular Article: Calculation of Two-Phase Navier–Stokes Flows Using Phase-Field Modeling , 1999 .
[58] S. Ciliberto,et al. Random Roughness of Boundary Increases the Turbulent Convection Scaling Exponent , 1999, chao-dyn/9904046.
[59] V. Dhir. BOILING HEAT TRANSFER , 1998 .
[60] Tong,et al. Turbulent convection over rough surfaces. , 1996, Physical review letters.
[61] R. Verzicco,et al. A Finite-Difference Scheme for Three-Dimensional Incompressible Flows in Cylindrical Coordinates , 1996 .
[62] R. Pal. Pipeline flow of unstable and surfactant‐stabilized emulsions , 1993 .
[63] D. M. Bushnell,et al. DRAG REDUCTION IN NATURE , 1991 .
[64] P. Bergé,et al. Rayleigh-bénard convection , 1984 .
[65] A. Oberbeck,et al. Ueber die Wärmeleitung der Flüssigkeiten bei Berücksichtigung der Strömungen infolge von Temperaturdifferenzen , 1879 .
[66] S. Grossmann. Scaling in thermal convection: A unifying view , 2022 .