Search NASASearch

NASA NTRS · 19920049038

The relationship between pressure-based and density-based algorithms

Abstract

The PISO, pressure-based algorithm, is compared with implicit time-marching systems to ascertain their similarities and differences. Both methods are expressed in vector form for comparison purposes. The vector form of the PISO method is triangular, allowing an uncoupled solution procedure, while the Euler implicit method requires the simultaneous solution of all equations. Upwind differencing is performed according to the direction of the eigenvalues in both systems, but this is the particle velocity in the PISO method and the acoustic velocity in the Euler method. Vector stability calculations show that the PISO method is conditionally stable depending on the time step, but that it provides adequate damping at small time steps to enable good convergence. Unconditional stability can be provided by retaining the energy coupling terms in the time derivative. Transforming the Euler implicit equations to the PISO variables along with a modification of the time derivatives gives the density-based method the same amplification factors at low speeds as the pressure-based method without affecting their behavior at high speeds.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Merkle, Charles L., Venkateswaran, Sankaran, Buelow, Philip E. O.. 1992-01-01. The relationship between pressure-based and density-based algorithms. https://ntrs.nasa.gov/citations/19920049038

Cite the original work for its findings. Save a collection to share your selection of sources.