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International journal of hydrogen energy, ISSN 0360-3199, 12/2016, Volume 41, Issue 48, pp. 23213 - 23228
Journal Article
Journal of fluid mechanics, ISSN 0022-1120, 01/2021, Volume 911
Mechanics | Physical Sciences | Physics, Fluids & Plasmas | Technology | Physics | Science & Technology | Turbulent flow | Deceleration | Buoyancy | Fluid flow | Fresh water | Fluorescence | Fountains | Velocity distribution | Plumes | Axisymmetric flow | Lasers | Inland water environment | Far fields | Entrainment | Buoyant jets | Turbulence intensity | Planar laser induced fluorescence | Turbulence | Computational fluid dynamics | Velocity profiles | Reynolds number | Momentum | Return flow | Froude number | Velocity | Investigations | Flow | Desalination | Particle image velocimetry | Jets
Journal Article
Journal of fluid mechanics, ISSN 0022-1120, 01/2018, Volume 835, pp. 654 - 673
JFM Papers | buoyancy-driven instability | plumes/thermals | jets | Mechanics | Physical Sciences | Physics, Fluids & Plasmas | Technology | Physics | Science & Technology | Torque | Sensitivity analysis | Approximation | Stability | Buoyancy | Helium | Experiments | Plumes | Flow stability | Base flow | Ratios | Fluids | Simulation | Shear instability | Dynamics | Dynamic stability | Jets | Instability | Buoyant jets | Perturbations | Richardson number | Gravity | Engineering Sciences | Fluids mechanics
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International journal of heat and mass transfer, ISSN 0017-9310, 04/2016, Volume 95, pp. 636 - 649
Journal Article
Fuel (Guildford), ISSN 0016-2361, 07/2013, Volume 109, pp. 234 - 240
Flame height | Lift-off | Reduced atmospheric pressure | Turbulent buoyant jet diffusion flame | Engineering | Engineering, Chemical | Technology | Energy & Fuels | Science & Technology | Applied sciences | Energy. Thermal use of fuels | Energy | Fuels | Exact sciences and technology | Correlation | Turbulence | Diffusion flames | Fluid dynamics | Atmospheric pressure | Barometric pressure | Buoyancy
Journal Article
Building and environment, ISSN 0360-1323, 01/2021, Volume 187, p. 1
Temperature field | High-temperature buoyant jets | Velocity field | Vortex structure characteristics | Installation | Temperature | Fluid flow | Buoyancy | Aerodynamics | Flow rates | High temperature | Vortex rings | Large eddy simulation | Energy conservation | Vortices | Canopies | Vorticity | Diffusion effects | Nozzles | Evolution | Jets | Attenuation | Buoyant jets | Flow velocity | Industrial plants | Diffusion | Exhaust hoods
Journal Article
International journal of heat and mass transfer, ISSN 0017-9310, 11/2019, Volume 143, p. 118466
DNS | Low-Prandtl number | Buoyant jets | Mixed convection | LMFR | Thermodynamics | Engineering | Physical Sciences | Technology | Mechanics | Engineering, Mechanical | Science & Technology | Turbulent flow | Direct numerical simulation | Atmospheric models | Fluid flow | Buoyancy | Liquid metals | Convection | Shear layers | Misalignment | Entrainment | Configurations | Computer simulation | Nuclear fuel elements | Computational fluid dynamics | Reynolds number | Temperature gradients | Momentum | Thermal energy | Coalescing | Nuclear fuels | Turbulence models | Nuclear reactors | Richardson number | Fast nuclear reactors
Journal Article
International journal of multiphase flow, ISSN 0301-9322, 01/2013, Volume 48, pp. 46 - 57
Interfacial stability | Submerged gas jet | Buoyant jet | Mechanics | Technology | Science & Technology | Fundamental areas of phenomenology (including applications) | Fluid dynamics | Hydrodynamic stability | Instrumentation for fluid dynamics | Exact sciences and technology | Interfacial instability | Physics | Mechanical engineering | Gas jets | Penetration | Buoyancy | Jets | Shadowgraphs | Jet boundaries | Sampling | Submerged
Journal Article
Ocean engineering, ISSN 0029-8018, 08/2018, Volume 161, pp. 154 - 167
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Turbulence, entrainment and low-order description of a transitional variable-density jet
Journal of fluid mechanics, ISSN 0022-1120, 02/2018, Volume 836, pp. 1009 - 1049
JFM Papers | wakes/jets | geophysical and geological flows | jets | Mechanics | Physical Sciences | Physics, Fluids & Plasmas | Technology | Physics | Science & Technology | Shear | Turbulent flow | Laboratories | Fluid flow | Velocity distribution | Reynolds stresses | Exhausting | Fluids | Entrainment | Buoyant jets | Velocity measurement | Eddies | Argon | Turbulent jets | Stresses | Turbulence | Fluid dynamics | Reynolds number | Energy distribution | Geophysics | Aerodynamics | Helium | Proper Orthogonal Decomposition | Velocity | Gases | Quadrants | Vortices | Jets | Particle image velocimetry | Volcanoes | Richardson number | Ejection
Journal Article
Applied thermal engineering, ISSN 1359-4311, 12/2014, Volume 73, Issue 1, pp. 15 - 22
Heat power | Temperature profile | Axisymmetric buoyant round jet | Thermal impinging flow | Flame extension length | Thermodynamics | Engineering | Physical Sciences | Technology | Mechanics | Energy & Fuels | Engineering, Mechanical | Science & Technology | Applied sciences | Theoretical studies. Data and constants. Metering | Energy. Thermal use of fuels | Energy | Heat transfer | Exact sciences and technology | Collapse | Horizontal | Thermal engineering | Correlation analysis | Impingement | Decay | Buoyancy | Temperature profiles
Journal Article
Journal of fluid mechanics, ISSN 0022-1120, 12/2020, Volume 909
Mean | Turbulent flow | Fluid flow | Fresh water | Buoyancy | Fluorescence | Fountains | Saline-freshwater interfaces | Probability density functions | Autocorrelation functions | Maps | Lasers | Inland water environment | Dimensional analysis | Measurement techniques | Buoyant jets | Planar laser induced fluorescence | Turbulence | Saline water | Decay rate | Statistical analysis | Fluid dynamics | Reynolds number | Probability theory | Momentum | Velocity | Froude number | Diameters | Statistics | Reynolds stress | Length | Decay | Particle image velocimetry | Scaling | Seafloor spreading | Autocorrelation | Inlets (waterways) | Self-similarity
Journal Article
International journal of heat and mass transfer, ISSN 0017-9310, 09/2017, Volume 112, pp. 354 - 365
Nuclear safety | Turbulent mass transport | POD | Buoyant jet | Gas mixing | Thermodynamics | Engineering | Physical Sciences | Technology | Mechanics | Engineering, Mechanical | Science & Technology | Turbulence | Turbulent flow | Loss of coolant | Computational fluid dynamics | Jet flow | Hydrogen | Fluid flow | Buoyancy | Nuclear engineering | Mass transport | Aerodynamics | Loss of coolant accidents | Helium | Proper Orthogonal Decomposition | Large eddy simulation | Nuclear reactors | Horseshoe vortices | Fast Fourier transformations | Erosion | Containment
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