Matches in SemOpenAlex for { <https://semopenalex.org/work/W590980045> ?p ?o ?g. }
Showing items 1 to 56 of
56
with 100 items per page.
- W590980045 abstract "Benchmark Definition.- 1. Finite Difference Methods.- Fine Mesh Solutions Using Stream Function-Vorticity Formulation.- A Comparison of Velocity-Vorticity and Stream Function-Vorticity Formulations for Pr=0.- Buoyancy-Driven Oscillatory Flows in Shallow Cavities Filled With Low-Prandtl Number Fluids.- A Finite-Difference Method With Direct Solvers for Thermally-Driven Cavity Problems.- Contribution to the GAMM Workshop.- Low Prandtl Number Convection in a Shallow Cavity.- Numerical Simulation of Oscillatory Convection in Low Prandtl Number Fluids With the TURBIT Code.- Marangoni Flows in a Cylindrical Liquid Bridge of Silicon.- Numerical Simulation of Oscillatory Convection in a Low Prandtl Fluid.- Steady-State Natural Convection in a Rectangular Cavity Filled With Low Prandtl Number Fluids.- Numerical Simulation of Oscillatory Convection in Low Prandtl Number Fluids Using AQUA Code.- Pressure Correction Splitting Methods for the Computation of Oscillatory Free Convection in Low Pr Fluids.- Influence of Thermocapillarity on the Oscillatory Convection in Low-Pr Fluids.- 2. Finite Volume Methods.- Numerical Simulation of Oscillatory Convection in Low-Pr Fluids.- An Implicit Pressure Velocity Algorithm Applied to Oscillatory Convection in Low Prandtl Fluid.- Oscillatory Natural Convection in a Long Horizontal Cavity.- Contribution of the Heat-Transfer Group at DELFT University.- Numerical Simulation of Oscillatory Convection in Low Prandtl Fluids.- 3. Finite Element Methods.- Application of the N3S Finite Element Code to Simulation of Oscillatory Convection in Low Prandtl Fluids.- Two- and Three-Dimensional Finite Element Simulations of Buoyancy-Driven Convection in a Confined Pr=0.015 Liquid Layer.- Two and Three-Dimensional Study of Convection in Low Prandtl Number Fluids.- Numerical Simulation of Oscillatory Convection in Low Prandtl Fluids.- The Solution of the Boussinesq Equations by the Finite Element Method.- Numerical Simulation of Oscillatory Convection in Low Pr Fluids by Using the Galerkin Finite Element Method.- 4. Spectral Methods.- Oscillatory Convection in Low Prandtl Fluids: A Chebyshev Solution With Special Treatment of the Pressure field.- Contribution to the GAMM Workshop With a Pseudo-Spectral Chebyshev Algorithm on a Staggered Grid.- Spectral Calculations of Convection in Low-Pr Fluids.- Spectral Method for Two-Dimensional Time-Dependent Pr?0 Convection.- Steady-State Solution of a Convection Benchmark Problem by Multidomain Chebyshev Collocation.- 5. Synthesis.- Synthesis of Finite Difference Methods.- Synthesis of the Results With the Finite-Volume Method.- Analysis of Finite Element Results.- Analysis of Spectral Results.- General Synthesis of the Numerical Results.- 6. Stability Results.- Linear and Non-Linear Analysis of the Hadley Circulation.- A Bifurcation Analysis of Oscillatory Convection in Liquid Metals.- 7. Experimental Results.- A Laboratory Study of Oscillations in Differentially Heated Layers of Mercury.- Subharmonic Transitions in Convection in a Moderately Shallow Cavity.- Convection in a Shallow Cavity.- Conclusions.- List of Participants.- Support and Sponsoring Acknowledgements." @default.
- W590980045 created "2016-06-24" @default.
- W590980045 creator A5076187430 @default.
- W590980045 date "1990-01-01" @default.
- W590980045 modified "2023-09-24" @default.
- W590980045 title "Numerical simulation of oscillatory convection in low-Pr fluids : a GAMM Workshop" @default.
- W590980045 hasPublicationYear "1990" @default.
- W590980045 type Work @default.
- W590980045 sameAs 590980045 @default.
- W590980045 citedByCount "5" @default.
- W590980045 countsByYear W5909800452015 @default.
- W590980045 crossrefType "book" @default.
- W590980045 hasAuthorship W590980045A5076187430 @default.
- W590980045 hasConcept C106836276 @default.
- W590980045 hasConcept C10899652 @default.
- W590980045 hasConcept C121332964 @default.
- W590980045 hasConcept C189234753 @default.
- W590980045 hasConcept C54791560 @default.
- W590980045 hasConcept C57879066 @default.
- W590980045 hasConcept C72687893 @default.
- W590980045 hasConcept C97355855 @default.
- W590980045 hasConceptScore W590980045C106836276 @default.
- W590980045 hasConceptScore W590980045C10899652 @default.
- W590980045 hasConceptScore W590980045C121332964 @default.
- W590980045 hasConceptScore W590980045C189234753 @default.
- W590980045 hasConceptScore W590980045C54791560 @default.
- W590980045 hasConceptScore W590980045C57879066 @default.
- W590980045 hasConceptScore W590980045C72687893 @default.
- W590980045 hasConceptScore W590980045C97355855 @default.
- W590980045 hasLocation W5909800451 @default.
- W590980045 hasOpenAccess W590980045 @default.
- W590980045 hasPrimaryLocation W5909800451 @default.
- W590980045 hasRelatedWork W118885712 @default.
- W590980045 hasRelatedWork W1568078418 @default.
- W590980045 hasRelatedWork W160423722 @default.
- W590980045 hasRelatedWork W1968254236 @default.
- W590980045 hasRelatedWork W1975009412 @default.
- W590980045 hasRelatedWork W1995948536 @default.
- W590980045 hasRelatedWork W2016747649 @default.
- W590980045 hasRelatedWork W2042854984 @default.
- W590980045 hasRelatedWork W2044754098 @default.
- W590980045 hasRelatedWork W2053576696 @default.
- W590980045 hasRelatedWork W2060710112 @default.
- W590980045 hasRelatedWork W2066018261 @default.
- W590980045 hasRelatedWork W2088850360 @default.
- W590980045 hasRelatedWork W2108559951 @default.
- W590980045 hasRelatedWork W2153300046 @default.
- W590980045 hasRelatedWork W2154058997 @default.
- W590980045 hasRelatedWork W2313547353 @default.
- W590980045 hasRelatedWork W3149162307 @default.
- W590980045 hasRelatedWork W368972046 @default.
- W590980045 hasRelatedWork W2469116427 @default.
- W590980045 isParatext "false" @default.
- W590980045 isRetracted "false" @default.
- W590980045 magId "590980045" @default.
- W590980045 workType "book" @default.