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2001, ISBN 9781873936900, 400
Construction | Habitations | Énergie solaire | Architecture et rayonnement solaire | Architecture and climate | Buildings | Energy conservation | Aspect de l'environnement | Solar energy | Passive systems | Systèmes passifs | Built Environment | Building and Construction | Architecture | Energy | Climate Change | City and Urban Planning | Cities & Infrastructure (Urban Studies) | Environmental aspects
Book
Chemical engineering science, ISSN 0009-2509, 07/2016, Volume 149, pp. 156 - 168
Journal Article
International journal for numerical methods in engineering, ISSN 0029-5981, 07/2011, Volume 87, Issue 1-5, pp. 232 - 261
Low reynolds number | Transition to turbulence | Implicit large eddy simulation | Laminar separation bubble | Discontinuous galerkin method | Mathematics, Interdisciplinary Applications | Engineering | Physical Sciences | Technology | Engineering, Multidisciplinary | Mathematics | Science & Technology | Fundamental areas of phenomenology (including applications) | Fluid dynamics | Turbulent flows, convection, and heat transfer | Exact sciences and technology | Partial differential equations, initial value problems and time-dependant initial-boundary value problems | Physics | Turbulence simulation and modeling | Sciences and techniques of general use | Numerical analysis. Scientific computation | Computational methods in fluid dynamics | Laminar boundary layers | Numerical analysis | Laminar flows | Low Reynolds number | Turbulence | Turbulent flow | Computational fluid dynamics | Reynolds number | Fluid flow | Galerkin methods | Laminar
Journal Article
International journal of heat and mass transfer, ISSN 0017-9310, 02/2018, Volume 117, pp. 1251 - 1273
Transitional | Forced convection | Constant heat flux | Mixed convection | Heat transfer | Developing flow | Laminar | Thermodynamics | Engineering | Physical Sciences | Technology | Mechanics | Engineering, Mechanical | Science & Technology | Laminar mixing | Turbulence | Turbulent flow | Fluid dynamics | Reynolds number | Fluid flow | Boundary conditions | Free convection | Heat flux | Studies | Prandtl number | Mass flow rate | Laminar flow | Laminar heat transfer | Circular tubes | Heat transfer coefficients
Journal Article
Journal of fluid mechanics, ISSN 0022-1120, 11/2012, Volume 711, pp. 1 - 26
Papers | boundary layer stability | transition to turbulence | boundary layer separation | Mechanics | Physical Sciences | Physics, Fluids & Plasmas | Technology | Physics | Science & Technology | Laminar flows | Fundamental areas of phenomenology (including applications) | Fluid dynamics | Turbulent flows, convection, and heat transfer | Exact sciences and technology | Transition to turbulence | Stability of laminar flows | Fluid mechanics | Flow velocity | Bubbles | Turbulent flow | Boundary layer | Separation | Stability | Upstream | Acceleration | Three dimensional | Laminar | Pressure gradients
Journal Article
AIAA journal, ISSN 0001-1452, 06/2012, Volume 50, Issue 6, pp. 1245 - 1256
Laminar boundary layers | Supersonic and hypersonic flows | Laminar flows | Fundamental areas of phenomenology (including applications) | Fluid dynamics | Instrumentation for fluid dynamics | Exact sciences and technology | Stability of laminar flows | Physics | Compressible flows; shock and detonation phenomena | Measurement | Usage | Analysis | Reynolds number | Surface roughness | Sensors | Boundary layer | Aircraft | Pressure sensors | Laminar boundary layer | Stability | Roughness | Wakes | Hypersonic flow | Instability | Laminar
Journal Article
Experimental thermal and fluid science, ISSN 0894-1777, 12/2019, Volume 109, p. 109848
TSP | UFD | Discrete roughness elements | Stationary crossflow instability | Upstream flow deformation | DRE | Swept-wing wind-tunnel model design | Temperature-sensitive paint method | Laminar-turbulent transition | Transition delay | Thermodynamics | Engineering | Physical Sciences | Physics, Fluids & Plasmas | Technology | Engineering, Mechanical | Physics | Science & Technology | Temperature-sensitive paints | Temperature | Data points | Turbulent flow | Skin friction | Wind tunnels | Computational fluid dynamics | Roughness | Fluid flow | Spatial discrimination | Aerodynamics | Wedges | Flow stability | Wavelengths | Laminar flow | Swept wings | Laminar flow airfoils | Temperature effects | Instability | Wind tunnel models | Spatial resolution | Cross flow
Journal Article
Soft matter, ISSN 1744-683X, 5/2019, Volume 15, Issue 18, pp. 3835 - 3836
Journal Article
AIAA journal, ISSN 0001-1452, 05/2020, Volume 58, Issue 11, pp. AU14 - AU14
Journal Article
2009, ISBN 184407787X, xxx, 290 p., [4] p. of plates
Prevention | Buildings | Architecture as Topic | Environment Design | Sick building syndrome | prevention & control | Environment, Controlled | Environmental engineering | Health Geography | Built Environment | Building and Construction | Architecture | Cities & Infrastructure (Urban Studies) | Handbooks, manuals, etc | Interior architecture
Book
Combustion science and technology, ISSN 0010-2202, 2018, pp. 1 - 12
Journal Article
Energy & fuels, ISSN 0887-0624, 04/2013, Volume 27, Issue 4, pp. 2226 - 2245
Journal Article
Experimental thermal and fluid science, ISSN 0894-1777, 12/2019, Volume 109, p. 109890
Vertical | Forced convection | Horizontal | Pressure drop | Buoyancy | Transition | Mixed convection | Inclination | Heat transfer | Laminar | Thermodynamics | Engineering | Physical Sciences | Physics, Fluids & Plasmas | Technology | Engineering, Mechanical | Physics | Science & Technology | Convective heat transfer | Turbulent flow | Grashof number | Fluid flow | Experiments | Convection | Heat flux | Coefficient of friction | Horizontal orientation | Tubes | Laminar mixing | Inclination angle | Fluid dynamics | Vertical orientation | Pressure | Flow | Friction | Simulation | Laminar flow | Laminar heat transfer | Heat transfer coefficients
Journal Article
Journal of thermal analysis and calorimetry, ISSN 1388-6150, 9/2017, Volume 129, Issue 3, pp. 1911 - 1922
Polymer Sciences | Chemistry | Analytical Chemistry | Twisted ratios | Turbulent flow | Measurement Science and Instrumentation | Physical Chemistry | Twisted tapes | Inorganic Chemistry | Water/Al 2 O 3 nanofluid | Heat transfer | Water/Al | nanofluid | Nanoparticles | Turbulence | Models | Investigations | Computational fluid dynamics | Nanofluids | Aspect ratio | Velocity | Aluminum oxide | Concentration (composition) | Laminar flow | Laminar heat transfer
Journal Article