Publication detail

Modeling and simulation of flow over a wavy surface

KNOTEK, S. JÍCHA, M.

Czech title

Modeling and simulation of flow over a wavy surface

English title

Modeling and simulation of flow over a wavy surface

Type

journal article - other

Language

cs

Original abstract

This paper presents an analytical method for calculating the physical characteristics of laminar flow using the theory of Orr-Sommerfeld equation. The assembled linear model is one of the approaches applied to the problem of gas flow over a wavy surface. Assumptions and results are compared with simulations results obtained using CFD software StarCCM+.

Czech abstract

This paper presents an analytical method for calculating the physical characteristics of laminar flow using the theory of Orr-Sommerfeld equation. The assembled linear model is one of the approaches applied to the problem of gas flow over a wavy surface. Assumptions and results are compared with simulations results obtained using CFD software StarCCM+.

English abstract

This paper presents an analytical method for calculating the physical characteristics of laminar flow using the theory of Orr-Sommerfeld equation. The assembled linear model is one of the approaches applied to the problem of gas flow over a wavy surface. Assumptions and results are compared with simulations results obtained using CFD software StarCCM+.

Keywords in Czech

laminar flow, Orr-Sommerfeld equation, wavy surface, CFD

Keywords in English

laminar flow, Orr-Sommerfeld equation, wavy surface, CFD

RIV year

2011

Released

22.02.2011

Publisher

VŠB - Technická univerzita Ostrava

ISSN

1210-0471

Journal

Transaction of the VŠB-Technical university of Ostrava, Mechanical series

Volume

61

Number

3/2010

Pages from–to

79–84

Pages count

6

BIBTEX


@article{BUT48024,
  author="Stanislav {Knotek} and Miroslav {Jícha},
  title="Modeling and simulation of flow over a wavy surface",
  journal="Transaction of the VŠB-Technical university of Ostrava, Mechanical series",
  year="2011",
  volume="61",
  number="3/2010",
  month="February",
  pages="79--84",
  publisher="VŠB - Technická univerzita Ostrava",
  issn="1210-0471"
}