Cas2d Fortran Program For Nonrotating Blade To Blade Steady Potential Transonic Cascade Flows


Download Cas2d Fortran Program For Nonrotating Blade To Blade Steady Potential Transonic Cascade Flows PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get Cas2d Fortran Program For Nonrotating Blade To Blade Steady Potential Transonic Cascade Flows book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages.

Download

CAS2D: FORTRAN Program for Nonrotating Blade-to-blade, Steady, Potential Transonic Cascade Flows


CAS2D: FORTRAN Program for Nonrotating Blade-to-blade, Steady, Potential Transonic Cascade Flows

Author: Djordje S. Dulikravich

language: en

Publisher:

Release Date: 1980


DOWNLOAD





CAS2D - FORTRAN Program for Nonrotating Blade-to-blade, Steady Potential Transonic Cascade Flows


CAS2D - FORTRAN Program for Nonrotating Blade-to-blade, Steady Potential Transonic Cascade Flows

Author: George S. Dulikravich

language: en

Publisher:

Release Date: 1981


DOWNLOAD





Cas2d


Cas2d

Author: National Aeronautics and Space Administration (NASA)

language: en

Publisher: Createspace Independent Publishing Platform

Release Date: 2018-08-13


DOWNLOAD





An exact, full-potential-equation (FPE) model for the steady, irrotational, homentropic and homoenergetic flow of a compressible, homocompositional, inviscid fluid through two dimensional planar cascades of airfoils was derived, together with its appropriate boundary conditions. A computer program, CAS2D, was developed that numerically solves an artificially time-dependent form of the actual FPE. The governing equation was discretized by using type-dependent, rotated finite differencing and the finite area technique. The flow field was discretized by providing a boundary-fitted, nonuniform computational mesh. The mesh was generated by using a sequence of conforming mapping, nonorthogonal coordinate stretching, and local, isoparametric, bilinear mapping functions. The discretized form of the FPE was solved iteratively by using successive line overrelaxation. The possible isentropic shocks were correctly captured by adding explicitly an artificial viscosity in a conservative form. In addition, a three-level consecutive, mesh refinement feature makes CAS2D a reliable and fast algorithm for the analysis of transonic, two dimensional cascade flows. Dulikravich, D. S. Glenn Research Center NASA-TP-1705, E-253 RTOP 505-32...