All Stories

  1. Impact of a Two-Dimensional Steep Hill on Wind Turbine Noise Propagation
  2. Toward Understanding Polar Heat Transport Enhancement in Subglacial Oceans on Icy Moons
  3. Wind turbine sound propagation: Comparison of a linearized Euler equations model with parabolic equation methods
  4. Optimal heat transport in rotating Rayleigh-Bénard convection at large Rayleigh numbers
  5. Towards understanding polar heat transport enhancement in sub-glacial oceans on icy moons
  6. The Mean Wind and Potential Temperature Flux Profiles in Convective Boundary Layers
  7. Understanding wind farm power densities
  8. Polar heat transport enhancement in sub-glacial oceans on icy moons
  9. Impact of Negative Geostrophic Wind Shear on Wind Farm Performance
  10. Analytical model of fully developed wind farms in conventionally neutral atmospheric boundary layers
  11. Wind farm blockage in a stable atmospheric boundary layer
  12. How small-scale flow structures affect the heat transport in sheared thermal convection
  13. Effect of a 2D Hill on the Propagation of Wind Turbine Noise
  14. Passive scalar transport in Couette flow
  15. Vertical structure of conventionally neutral atmospheric boundary layers
  16. Off-centre gravity induces large-scale flow patterns in spherical Rayleigh–Bénard convection
  17. Investigating wind farm blockage in a neutral boundary layer using large-eddy simulations
  18. A three-dimensional dynamic mode decomposition analysis of wind farm flow aerodynamics
  19. Multiple heat transport maxima in confined-rotating Rayleigh–Bénard convection
  20. Evaluating the accuracy of the actuator line model against blade element momentum theory in uniform inflow
  21. Aspect Ratio Dependence of Heat Transfer in a Cylindrical Rayleigh-Bénard Cell
  22. Strong alignment of prolate ellipsoids in Taylor–Couette flow
  23. Impact of wind farm wakes on flow structures in and around downstream wind farms
  24. Diffusion‐Free Scaling in Rotating Spherical Rayleigh‐Bénard Convection
  25. Effects of atmospheric stability on the performance of a wind turbine located behind a three-dimensional hill
  26. Enhanced wind-farm performance using windbreaks
  27. Heat transport enhancement in confined Rayleigh-Bénard convection feels the shape of the container (a)
  28. Modeling dynamic wind direction changes in large eddy simulations of wind farms
  29. Effect of low-level jet on turbine aerodynamic blade loading using large-eddy simulations
  30. Evaluating wind farm wakes in large eddy simulations and engineering models
  31. Universal Wind Profile for Conventionally Neutral Atmospheric Boundary Layers
  32. The effect of Prandtl number on turbulent sheared thermal convection
  33. Interaction between low-level jets and wind farms in a stable atmospheric boundary layer
  34. Effect of low-level jet height on wind farm performance
  35. Geostrophic drag law for conventionally neutral atmospheric boundary layers revisited
  36. Flow organisation in laterally unconfined Rayleigh–Bénard turbulence
  37. From zonal flow to convection rolls in Rayleigh–Bénard convection with free-slip plates
  38. Calculation of the mean velocity profile for strongly turbulent Taylor–Couette flow at arbitrary radius ratios
  39. Distinct Turbulent Regions in the Wake of a Wind Turbine and Their Inflow-Dependent Locations: The Creation of a Wake Map
  40. Large-Eddy Simulations of Stratified Atmospheric Boundary Layers: Comparison of Different Subgrid Models
  41. Effect of thrust coefficient on the flow blockage effects in closely-spaced spanwise-infinite turbine arrays
  42. Large eddy simulation study of extended wind farms with large inter turbine spacing
  43. Wall modeled immersed boundary method for high Reynolds number flow over complex terrain
  44. Flow organization and heat transfer in turbulent wall sheared thermal convection
  45. Effects of Two-Dimensional Steep Hills on the Performance of Wind Turbines and Wind Farms
  46. From Rayleigh–Bénard convection to porous-media convection: how porosity affects heat transfer and flow structure
  47. What rotation rate maximizes heat transport in rotating Rayleigh-Bénard convection with Prandtl number larger than one?
  48. Direct numerical simulations of spiral Taylor–Couette turbulence
  49. Coherence of temperature and velocity superstructures in turbulent Rayleigh–Bénard flow
  50. Toward DNS of the Ultimate Regime of Rayleigh–Bénard Convection
  51. Zhu et al. Reply:
  52. Effect of sidewall on heat transfer and flow structure in Rayleigh–Bénard convection
  53. Characterizing the Coherent Structures Within and Above Large Wind Farms
  54. Sharp transitions in rotating turbulent convection: Lagrangian acceleration statistics reveal a second critical Rossby number
  55. Effect of Coriolis force on a wind farm wake
  56. Direct numerical simulations of Taylor–Couette turbulence: the effects of sand grain roughness
  57. scaling enabled by multiscale wall roughness in Rayleigh–Bénard turbulence
  58. Large eddy simulations of the effect of vertical staggering in large wind farms
  59. AFiD-GPU: A versatile Navier–Stokes solver for wall-bounded turbulent flows on GPU clusters
  60. Exploring a better turbine layout in vertically staggered wind farms
  61. Transition to the Ultimate Regime in Two-Dimensional Rayleigh-Bénard Convection
  62. Turbulent thermal superstructures in Rayleigh-Bénard convection
  63. Comparison of computational codes for direct numerical simulations of turbulent Rayleigh–Bénard convection
  64. Modeling space-time correlations of velocity fluctuations in wind farms
  65. Comparison of wind farm large eddy simulations using actuator disk and actuator line models with wind tunnel experiments
  66. Roughness-Facilitated Local 1/2 Scaling Does Not Imply the Onset of the Ultimate Regime of Thermal Convection
  67. Confined Rayleigh-Bénard, Rotating Rayleigh-Bénard, and Double Diffusive Convection: A Unifying View on Turbulent Transport Enhancement through Coherent Structure Manipulation
  68. Characterizing the coherent structures in large eddy simulations of aligned windfarms
  69. Flow Structure and Turbulence in Wind Farms
  70. Combining economic and fluid dynamic models to determine the optimal spacing in very large wind farms
  71. Validation of four LES and a vortex model against stereo-PIV measurements in the near wake of an actuator disc and a wind turbine
  72. Generalized coupled wake boundary layer model: applications and comparisons with field and LES data for two wind farms
  73. Turbulent Rayleigh–Bénard convection described by projected dynamics in phase space
  74. Using the coupled wake boundary layer model to evaluate the effect of turbulence intensity on wind farm performance
  75. Height-dependence of spatio-temporal spectra of wall-bounded turbulence – LES results and model predictions
  76. Dependence of optimal wind turbine spacing on wind farm length
  77. Spatio-temporal spectra in the logarithmic layer of wall turbulence: large-eddy simulations and simple models
  78. Effects of turbine spacing on the power output of extended wind-farms
  79. Coupled wake boundary layer model of wind-farms
  80. Large-eddy simulation study of the logarithmic law for second- and higher-order moments in turbulent wall-bounded flow
  81. A concurrent precursor inflow method for Large Eddy Simulations and applications to finite length wind farms
  82. Temporal structure of aggregate power fluctuations in large-eddy simulations of extended wind-farms
  83. A wavenumber-frequency spectral model for atmospheric boundary layers
  84. Meteorology for Coastal/Offshore Wind Energy in the United States: Recommendations and Research Needs for the Next 10 Years
  85. Large eddy simulation studies of the effects of alignment and wind farm length
  86. Sidewall effects in Rayleigh–Bénard convection
  87. Comparison between two- and three-dimensional Rayleigh–Bénard convection
  88. The unifying theory of scaling in thermal convection: the updated prefactors
  89. Heat transport and flow structure in rotating Rayleigh–Bénard convection
  90. Heat transport in bubbling turbulent convection
  91. Optimal Taylor–Couette flow: direct numerical simulations
  92. Spatial distribution of heat flux and fluctuations in turbulent Rayleigh-Bénard convection
  93. Breakdown of the large-scale circulation in Γ = 1 / 2 rotating Rayleigh-Bénard flow
  94. Logarithmic Temperature Profiles in Turbulent Rayleigh-Bénard Convection
  95. Flow states in two-dimensional Rayleigh-Bénard convection as a function of aspect-ratio and Rayleigh number
  96. Thermal boundary layer profiles in turbulent Rayleigh-Bénard convection in a cylindrical sample
  97. Effect of aspect-ratio on vortex distribution and heat transfer in rotating Rayleigh-Bénard convection
  98. Horizontal structures of velocity and temperature boundary layers in two-dimensional numerical turbulent Rayleigh-Bénard convection
  99. Effect of aspect ratio on vortex distribution and heat transfer in rotating Rayleigh-Bénard convection
  100. Prandtl and Rayleigh number dependence of heat transport in high Rayleigh number thermal convection
  101. The role of Stewartson and Ekman layers in turbulent rotating Rayleigh–Bénard convection
  102. Connecting flow structures and heat flux in turbulent Rayleigh-Bénard convection
  103. Effect of plumes on measuring the large scale circulation in turbulent Rayleigh-Bénard convection
  104. Numerical simulations of rotating Rayleigh-Bénard convection
  105. Finite-Size Effects Lead to Supercritical Bifurcations in Turbulent Rotating Rayleigh-Bénard Convection
  106. Prandtl–Blasius temperature and velocity boundary-layer profiles in turbulent Rayleigh–Bénard convection
  107. Boundary layers in rotating weakly turbulent Rayleigh–Bénard convection
  108. Boundary layer structure in turbulent thermal convection and its consequences for the required numerical resolution
  109. Flow Reversals in Thermally Driven Turbulence
  110. Optimal Prandtl number for heat transfer in rotating Rayleigh–Bénard convection
  111. Radial boundary layer structure and Nusselt number in Rayleigh–Bénard convection
  112. Transitions between Turbulent States in Rotating Rayleigh-Bénard Convection
  113. Prandtl-, Rayleigh-, and Rossby-Number Dependence of Heat Transport in Turbulent Rotating Rayleigh-Bénard Convection
  114. Prandtl-, Rayleigh-, and Rossby-number dependence of heat transport in turbulent Rotating Rayleigh-Bénard convection