In our latest note in JCP @ElsevierPhysics we present 3D FFT for turbulent flows on unstructured meshes. Collaborative work with @linf1017 and Xesus Nogueira through the support of @EPSRC@UKRI_News@ARCHER2_HPC @ukturbulence using @ucns3d.
https://t.co/hj7PqGM9SD
Progressing with the @EPSRC project for adaptive turbulence modelling for iLES. Expanding the technique to full aircraft stall prediction with the support of @ukturbulence @EPSRC@ARCHER2_HPC using @ucns3d. Stay tuned for upcoming publication and animations.
I could not wait to share the first couple of animations (grid is still coarse) from the adaptive turbulence modelling using iLES and high-order FV methods on unstructured meshes with @ucns3d. Supported by @EPSRC @ukturbulence and @ARCHER2_HPC
Further advancing high-order methods for CFD, hybridising high-order FV and DG in open-source @ucns3d for compressible flows . Supported by @EPSRC@innovateuk@ARCHER2_HPC @ukturbulence @cranfieldaero, latest JCP (@ElsevierPhysics) article at the link.
https://t.co/086tDCQWZZ
“This strong set of results confirms that Cranfield is a place where exciting research is shaping the future."
Chief Executive and Vice-Chancellor, Professor @KarenHolford, shares her pride, recognising the collective effort in achieving our #REFResults:
https://t.co/M42ikHXHIS
A new collaborative work with Michael Dumbser on high order central schemes on unstructured meshes is now available at https://t.co/zRX1HMG8QP and on the freely available open source @ucns3d with the support of @PRACE_RI @ukturbulence @HPCEuropa3@EPSRC@ARCHER2_HPC@Cineca1969
Dr @TTsoutsanis joins us for our next #ISCFD webinar to present the exciting @ucns3d compressible flow software.
Sign up and join us on Friday 30 April at 16:00 BST to learn more!
Registration: https://t.co/A0JxeN64Lu
Out of Ground Effect (OGE) and In Ground Effect (IGE) investigations using a multiple reference frame (MRF), and a high-order finite volume framework through the support of @EPSRC, @ARCHER2_HPC, @ukturbulence article https://t.co/oAlN0taPtp
iLES of square cylinder (45 degrees incidence) at Re=3900 using a 5th order CWENOZ on 27Million cells unstructured mesh on @ARCHER2_HPC through @ukturbulence @EPSRC support. #cfd#HPC
@HolgerFoysi MacOS still not supported, but for Linux you can still compile with the provided libraries and you can also export your results in vtk output that can be loaded in paraview/visit etc. Instructions are found at the github.