Category Archives: Computational Fluid Dynamics

SIMULIA XFlow/PowerFLOW

āļ‹āļ­āļŸāļ•āđŒāđāļ§āļĢāđŒāļŠāļģāļŦāļĢāļąāļšāļ§āļīāđ€āļ„āļĢāļēāļ°āļŦāđŒāļ”āđ‰āļēāļ™āļžāļĨāļĻāļēāļŠāļ•āļĢāđŒ (Computational Fluid Dynamics: CFD) āļĒāļļāļ„āđƒāļŦāļĄāđˆāļ—āļĩāđˆāđƒāļŠāđ‰āļāļēāļĢāļ„āļģāļ™āļ§āļ“āđāļšāļš Particle Base āļŦāļĢāļ·āļ­ Meshless āđ€āļ—āļ„āđ‚āļ™āđ‚āļĨāļĒāļĩāļ—āļĩāđˆāļ—āļģāđƒāļŦāđ‰āļāļēāļĢāļ„āļģāļ™āļ§āļ“āļ”āđ‰āļēāļ™āļāļēāļĢāđ„āļŦāļĨāļāđ‰āļēāļ§āļ‚āđ‰āļēāļĄāļ„āļ§āļēāļĄāļĒāļēāļāļĨāļģāļšāļēāļāđƒāļ™āļ”āđ‰āļēāļ™āļ‚āļ­āļ‡āļāļēāļĢāļŠāļĢāđ‰āļēāļ‡āđ€āļ­āļĨāļīāđ€āļĄāļ™āļ•āđŒāļ—āļĩāđˆāļĒāļļāđˆāļ‡āļĒāļēāļāđāļĨāļ°āđƒāļŠāđ‰āđ€āļ§āļĨāļēāļ™āļēāļ™ āļ›āļĢāļ°āļāļ­āļšāļāļąāļšāļāļēāļĢāļ„āļģāļ™āļ§āļ“āđāļšāļšāļāļēāļĢāđ€āļ„āļĨāļ·āđˆāļ­āļ™āļ—āļĩāđˆāļ‚āļ­āļ‡āļ­āļ™āļļāļ āļēāļ„āļ—āļģāđƒāļŦāđ‰āđ€āļ„āļĢāļ·āđˆāļ­āļ‡āļ„āļ­āļĄāļžāļīāļ§āđ€āļ•āļ­āļĢāđŒ Desktop āļ—āļąāđˆāļ§āđ„āļ› āļŠāļēāļĄāļēāļĢāļ–āļ„āļģāļ™āļ§āļ“āļ›āļąāļāļŦāļēāļ”āđ‰āļēāļ™āļāļēāļĢāđ„āļŦāļĨāļ‚āļ™āļēāļ”āđƒāļŦāļāđˆāđ„āļ”āđ‰ āđāļĨāļ°āļĄāļĩāļ„āļ§āļēāļĄāđāļĄāđˆāļ™āļĒāļģāļ‚āļ­āļ‡āļāļēāļĢāļ›āļĢāļ°āļĄāļ§āļĨāļœāļĨāļŠāļđāļ‡ āļ­āļĩāļāļ—āļąāđ‰āļ‡āļĒāļąāļ‡āļŠāļēāļĄāļēāļĢāļ–āļ„āļģāļ™āļ§āļ“āļ„āļ§āļšāļĢāļ§āļĄāļāļąāļ™āļāļąāļšāļāļēāļĢāđ€āļ„āļĨāļ·āđˆāļ­āļ™āļ—āļĩāđˆāļ‚āļ­āļ‡āļ§āļąāļ•āļ–āļļāđ€āļžāļ·āđˆāļ­āļ”āļđāļ›āļāļīāļŠāļąāļĄāļžāļąāļ™āļ˜āđŒāļĢāļ°āļŦāļ§āđˆāļēāļ‡āļāļēāļĢāđ€āļ„āļĨāļ·āđˆāļ­āļ™āļ—āļĩāđˆāļāļąāļšāļāļēāļĢāđ„āļŦāļĨāļŦāļĢāļ·āļ­āļĢāļ°āļŦāļ§āđˆāļēāļ‡āļāļēāļĢāđ„āļŦāļĨāļāļąāļšāđ‚āļ„āļĢāļ‡āļŠāļĢāđ‰āļēāļ‡āļ‚āļ­āļ‡āļ§āļąāļ•āļ–āļļ āļ‹āļķāđˆāļ‡āđ„āļĄāđˆāļŠāļēāļĄāļēāļĢāļ–āļ—āļģāđ„āļ”āđ‰āđƒāļ™āļ‹āļ­āļŸāļ•āđŒāđāļ§āļĢāđŒ CFD āļ—āļąāđˆāļ§āđ„āļ› Highlights

scSTREAM

Thermo-fluid software specializes in robust flow and heat simulation through structured mesh generation with self-equipped pre-processor, solver, and post-processor. Incorporated with Heat Designer, scStream is customized to be extremely user-friendly. The structured mesh allows high-speed computation via powerful meshing techniques.

scFLOW

Thermo-fluid software provides robust flow and heat simulations through un-structured meshing techniques, suitable for advance simulations of complex geometry components with precision and accuracy. The polyhedral hexagonal mesh geometry finely captures curved surface such as those of machinery parts where flows across the surface are often complex. The advance Octree-based mesh makes stable the simulations where near-wall phenomena are significant. The interaction of disjoint static component (e.g. machine frame) with moving constituent (e.g. rotating axial fan) can be simulated using moving element and discontinuous mesh.

NEWS