Fluid Mechanics and Fluid Power, Volume 6

Fluid Mechanics and Fluid Power, Volume 6 portes grátis

Fluid Mechanics and Fluid Power, Volume 6

Select Proceedings of FMFP 2022

Singh, Krishna Mohan; Dutta, Sushanta; Singh, Nikhil Kumar; Subudhi, Sudhakar

Springer Verlag, Singapore

02/2024

673

Mole

Inglês

9789819957545

15 a 20 dias

Descrição não disponível.
Part 1: Miscellaneous.- Chapter 1. Linear and nonlinear simulations of magnetorotational instability for the upcoming DRESDYN-MRI experiment.- Chapter 2. Estimation of inlet conditions of fluid flow in a thick pipe using inverse technique.- Chapter 3. Effect of Hierarchical Porous Media on Specific Capacity and Energy Density of Li-O2 Battery.- Chapter 4. Velocity measurement for low Hartmann magneto-convection on a vertical wall using UDV.- Chapter 5. Novel Tree-Branching Microchannel Heat Sink Under Variable and Constant Fluid Volume Approaches.- Chapter 6. Effect of flexible flap length on flow generation by an airfoil pitching in quiescent fluid.- Chapter 7. Aerodynamic Characterisation of a Winged Re Entry Vehicle at Select Mach Numbers and Angles of Attack through CFD Simulations.- Chapter 8. Large Eddy Simulations (LES) of Supercritical Nitrogen Jets.- Chapter 9. Design of Rolling Road for Wind Tunnel Simulation.- Chapter 10. Multi-Needle Ionic Wind Generator for Thermal Management.- Chapter 11. Entrainment characteristics of a swirling liquid jet.- Chapter 12. Estimation of drag behind a tapered cylinder using Direct Drag Measurement.- Chapter 13. Effect of damping on bifurcation and synchronization behaviour of an aeroelastic system under dynamic stall.- Chapter 14. Development of a Coupled RANS-LES Solver for Numerical Simulation of Turbulent Wall Bounded Flows.- Chapter 15. Computational and Experimental study of particle dispersion in the turbulent wake of a simplified car model (Ahmed body). etc.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Gas dynamics;Instability and transition;Fluid-structure interaction;Microfluidics;Aerodynamics;Turbomachinery;FMFP22