A data assimilation algorithm for the subcritical surface quasi-geostrophic equation
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Abstract
In this article, we prove that data assimilation by feedback nudging can be achieved for the three-dimensional quasi-geostrophic equation in a simplified scenario using only large spatial scale observables on the dynamical boundary. On this boundary, a scalar unknown (buoyancy or surface temperature of the fluid) satisfies the surface quasi-geostrophic equation. The feedback nudging is done on this two-dimensional model, yet ultimately synchronizes the streamfunction of the three-dimensional flow. The main analytical difficulties are due to the presence of a nonlocal dissipative operator in the surface quasi-geostrophic equation. This is overcome by exploiting a suitable partition of unity, the modulus of continuity characterization of Sobolev space norms, and the Littlewood–Paley decomposition to ultimately establish various boundedness and approximation-of-identity properties for the observation operators.
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Jolly, Michael S., et al. "A data assimilation algorithm for the subcritical surface quasi-geostrophic equation." Advanced Nonlinear Studies, vol. 17, no. 1, pp. 167-192, 2017-1-13, https://doi.org/10.1515/ans-2016-6019.
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Advanced Nonlinear Studies