Mathematical Justification of the Hydrostatic Approximation in the Primitive Equations of Geophysical Fluid Dynamics
Pascal Azérad, Francisco Guillén
Université de Perpignan Universidad de Sevilla
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摘要与影响
Geophysical fluids all exhibit a common feature: their aspect ratio (depth to horizontal width) is very small. This leads to an asymptotic model widely used in meteorology, oceanography, and limnology, namely the hydrostatic approximation of the time-dependent incompressible Navier--Stokes equations. It relies on the hypothesis that pressure increases linearly in the vertical direction. In the following, we prove a convergence and existence theorem for this model by means of anisotropic estimates and a new time-compactness criterium.
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计算机 / AINavier-Stokes equation solutions
Advanced Mathematical Modeling in Engineering · Stability and Controllability of Differential Equations
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