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The computer program used to estimate base flow was developed by the U.S. Bureau of Reclamation (Wahl and Wahl 1995) and is commonly referred to as the BFI Program.
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In this research, a new finite element (FE) based topology optimization (TO) for turbulent flow was developed using the Spalart Allmaras (S A) equation, which is one of the Reynolds-Averaged Navier Stokes (RANS) equations.
A numerical code based on potential flow is developed in this study to investigate the coupling interaction between 6 degrees of freedom (DOF) vessel motions and internal nonlinear sloshing.
2) By constructing an iterative process in calculating short circuit currents, the linearization method based on DC power flow is developed to reduce the nonlinearity brought on by short circuit currents.
Four possible criteria for use in the die design scheme (based on deviations from ideal flow) are developed.
A three-dimensional thermoacoustic model including the distributed non-uniform heat source and non-uniform flow is developed based on the domain decomposition spectral method.
Further, a constitutive model for granular flows is developed based on an objective version [Gao et al., Phys. Rev. E 71 021302), 2005] of the original OP concept proposed by Volfson et al. [Phys. Rev. E 68 021301), 2003], with the intention of capturing the transitional behavior in a continuum description of granular flows.
A new hybrid approach to model high Reynolds number wall-bounded turbulent flows is developed based on coupling a two-level simulation (TLS) approach (Kemenov and Menon, 2006 [1], 2007 [2] in the inner region with conventional large eddy simulation (LES) away from the wall.
A novel, bead-based flow cytometric assay was developed for simultaneous determination of antibody responses against Toxoplasma gondii and Trichinella spiralis in pig serum.
To explain the mechanism underlying this behavior, a control system called the optic flow regulator was developed, based on a feedback loop that consistently strives to maintain the perceived optic flow at a constant level [23], [12].
For theoretical analysis of its reverse pumping capacity, a mathematical model based on the hydrodynamic flow principle was developed.
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