As per my opinion generally computational modelling of Fluid Dynamical Equations used to simulate any important variable congaing equation like COZENY KARMAN , BLAKE PLUMMER , FANNINGS EQUATION etc . But we are talking some biophysical properties like RADIUS OF GYRATION , ROOT MEAN SQ
END TO END SEPARATION which are also properties of the BIO-POLYMERS in solution ie HYDRODYNAMICS . For simple example when ever a PROTEIN denatures in solution the the Entropy Changes which will definitely changing the
flow patters of the solution .So a computational regression analysis over the HYDRODYNAMIC properties may be so called CFD . But a real CFD requires a lot
Now a days looking at some numerical techniques using best fit regression in solving fluids using Lattice boltzman methods. Yeah still CFD --- Creative Fluid dynamics , not Computational. LBM are picking up at sub micron levels.
As per my opinion generally computational modelling of Fluid Dynamical Equations used to simulate any important variable congaing equation like COZENY KARMAN , BLAKE PLUMMER , FANNINGS EQUATION etc . But we are talking some biophysical properties like RADIUS OF GYRATION , ROOT MEAN SQ
END TO END SEPARATION which are also properties of the BIO-POLYMERS in solution ie HYDRODYNAMICS . For simple example when ever a PROTEIN denatures in solution the the Entropy Changes which will definitely changing the
flow patters of the solution .So a computational regression analysis over the HYDRODYNAMIC properties may be so called CFD . But a real CFD requires a lot