Shear flow: general studies. 1965-October, 1980 (citations from the NTIS Data Base). Report for 1965-Oct 80
Technical Report
·
OSTI ID:6284750
General aspects of fluid shear in laminar and turbulent flow are discussed. Companion bibliographies contain materials on shear flows in specific gases and liquids. The present discussions cover boundary layer dynamics, layers, stratified flow, stresses, ducts, pipes, channels, mixing, bursts, magnetohydrodynamics, viscosity, and oscillation. References are made to separation and reattachment. Wind tunnel modeling and flat plate characteristics are described, including mathematical models, computerized simulation, theory, equations of motion, anemometry, numerical analysis, and stability. Data are given on wall flow, wake, heat transfer, pressure gradients, and similar topics. Wind shear has been excluded. (This updated bibliography contains 300 citations, 15 of which are new entries to the previous edition.)
- Research Organization:
- National Technical Information Service, Springfield, VA (USA)
- OSTI ID:
- 6284750
- Report Number(s):
- PB-81-801185
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
42 ENGINEERING
420400* -- Engineering-- Heat Transfer & Fluid Flow
BIBLIOGRAPHIES
BOUNDARY LAYERS
COMPUTERIZED SIMULATION
DIFFERENTIAL EQUATIONS
DOCUMENT TYPES
ENERGY TRANSFER
EQUATIONS
EQUATIONS OF MOTION
FLUID FLOW
FLUID MECHANICS
HEAT TRANSFER
HYDRODYNAMICS
LAMINAR FLOW
LAYERS
MAGNETOHYDRODYNAMICS
MATHEMATICAL MODELS
MECHANICS
MIXING
OSCILLATIONS
PARTIAL DIFFERENTIAL EQUATIONS
SHEAR
SIMULATION
STRESSES
TURBULENT FLOW
VISCOUS FLOW
WALLS
420400* -- Engineering-- Heat Transfer & Fluid Flow
BIBLIOGRAPHIES
BOUNDARY LAYERS
COMPUTERIZED SIMULATION
DIFFERENTIAL EQUATIONS
DOCUMENT TYPES
ENERGY TRANSFER
EQUATIONS
EQUATIONS OF MOTION
FLUID FLOW
FLUID MECHANICS
HEAT TRANSFER
HYDRODYNAMICS
LAMINAR FLOW
LAYERS
MAGNETOHYDRODYNAMICS
MATHEMATICAL MODELS
MECHANICS
MIXING
OSCILLATIONS
PARTIAL DIFFERENTIAL EQUATIONS
SHEAR
SIMULATION
STRESSES
TURBULENT FLOW
VISCOUS FLOW
WALLS