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Special shock capturing method based on the upwind scheme with flux vector splitting is used, with explicit wave speeds, as a time space solver.
A new composite turbine control architecture that consists of feedforward and feedback parts based on the upwind speed measurements and wind speed measurements at the turbine site, respectively, is described.
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The numerical treatment of convection terms in governing equations is based on the quadratic upwind interpolation of convective kinematics (QUICK) scheme.
One of them, relativistic HLLE, is based on the HLLE upwind scheme, while the other is a relativistic adaptation of some kinds of flux corrected transport (FCT) algorithms.
The developed algorithm is based on the Streamline Upwind Petrov Galerkin finite element scheme (SUPG) for the solution of flow and convective dispersion equations in two dimensional domains with solid and porous walls.
Approximation of the advective flux is based on the second-order upwind method with a specially designed minimal nonlinear correction.
The developed method is based on the high-order upwind scheme, which is widely used for hyperbolic partial differential equations within a finite volume framework in order to prevent numerical oscillations near a discontinuity while preserving high-order accuracy.
A novel high-resolution numerical method is presented for one-dimensional hyperbolic problems based on the extension of the original Upwind Leapfrog scheme to quasi-linear conservation laws.
The scheme is second-order accurate and the temporal discretization is based on the dimensionally unsplit Corner Transport Upwind (CTU) method of Colella.
Specifically, the viscous flux, which is always co-current, is upwinded based on the direction of the total-velocity.
For this purpose, regression models were developed for predicting the critical wind speeds needed to uproot Scots pine, Norway spruce and birch trees at the downwind stand edges in Finnish conditions under unfrozen soil conditions, based on the characteristics of both downwind and upwind stand, and additional snow load on tree crowns.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com