Published 2002 | Version v1
Journal article

Numerical investigation on compressible flow characteristics in axial compressors using a multi block finite-volume scheme

Description

An unsteady two-dimensional numerical investigation was performed on the viscous flow passing through a multi-blade cascade. A Cartesian finite-volume approach was linked to Van-Leer's and Roe's flux splitting schemes to evaluate inviscid flux terms. To prevent the oscillatory behavior of numerical results and to increase the accuracy, Mon tonic Upstream Scheme for Conservation Laws was added to flux splitting schemes. The Baldwin-Lo max (B L) turbulence model was implemented to solve the turbulent case studies. Implicit solution was also provided using Lower and Upper (L U) decomposition technique to compare with explicit solutions. To validate the numerical procedure, two test cases are prepared and flow over a Na Ca 0012 airfoil was investigated and the pressure coefficients were compared to the reference data. The numerical solver was implemented to study the flow passing over a compressor cascade. The results of various combinations of splitting schemes and the Mon tonic Upstream Scheme for Conventional Laws limiter were compared with each other to find the suitable methods in cascade problems. Finally the convergence histories of implemented schemes were compared to each other to show the behavior of the solver in using various methods before implementation of them in flow instability studies

Availability note (English)

Available from Atomic Energy Organization of Iran

Additional details

Publishing Information

Journal Title
International Journal of Engineering
Journal Volume
15
Journal Issue
1
Journal Page Range
p. 91-104
ISSN
1025-2495

INIS

Country of Publication
Iran, Islamic Republic of
Country of Input or Organization
Iran, Islamic Republic of
INIS RN
33036164
Subject category
S42: ENGINEERING;
Descriptors DEI
COMPRESSIBLE FLOW; COMPRESSORS; FLOW MODELS; IDEAL FLOW; NUMERICAL ANALYSIS; NUMERICAL SOLUTION; TRANSONIC FLOW; TWO-DIMENSIONAL CALCULATIONS; VALIDATION; VISCOUS FLOW
Descriptors DEC
FLUID FLOW; INCOMPRESSIBLE FLOW; MATHEMATICAL MODELS; MATHEMATICS; STEADY FLOW; TESTING