- Solution of viscous flow in a rectangular region by using the hybrid finite volume scheme
Object's details: Solution of viscous flow in a rectangular region by using the hybrid finite volume scheme
PDF
Structure
Prace Naukowe Instytutu Matematyki i Informatyki=Scientific Research of the Institute of Mathematics and Computer Science.
Description
- Title:
- Group title:
- Creator: ;
- Subject and Keywords: ; ; ; ; ; ; ; ;
- Publisher:
- Place of publishing:
- Date:
- Resource Type:
- Resource Identifier: oai:www.sbc.org.pl:457856
- Language:
- Coverage:
- Oryginal in:
Object is located in the collections:
Additional information
- Creation date: 2021-03-30
- Last modification date: 2021-03-30
- Content object's number of views: 22
- You could also download the object's description in these formats: ;
- Historical Text Recognition:
See also
Skutki ciśnienia powietrza pod względem fizyologicznym i patologicznym
Creator:Majer, Józef (1808-1899)
Date:1844
Type:opracowanie naukowe
Effect of ply angle on the burst pressure of composite pressure vessels by filament winding
Creator:Saif Tamara; Al-Zubiedy Ali; Idzikowski, Adam
Date:2022
Type:artykuł
The four-sided lid driven square cavity using stream function-vorticity formulation
Creator:Bagai Shobha; Kumar Manoj; Patel Arvind
Date:2020
Type:artykuł
A numerical method for viscous flow in a driven cavity with heat and concentration sources placed on its side wall
Creator:Ambethkar Vusala; Basumatary Lakshmi Rani
Type:czasopismo
Numerical solutions of steady free convective flow in a rectangular region with discrete wall heat and concentration sources
Creator:Ambethkar Vusala; Basumatary Lakshmi Rani
Date:2019
Type:artykuł
Research of deformation of valve throttling characteristics under gravitational influence in hydraulic systems
Creator:Mileikovskyi Viktor
Date:2019
Type:artykuł
O rozszerzalności i ściśliwości powietrza
Creator:Witkowski, August Wiktor (1854-1913)
Date:1891
Type:literatura fachowa
Numerical solutions of a steady 2-d incompressible flow in a rectangular domain with wall slip boundary conditions using the finite volume
Creator:Ambethkar Vusala; Srivastava Mohit Kumar
Date:2017
Type:artykuł