A new implementation of the geometric method for solving the Eady slice equations

03/09/2022
by   Charlie P. Egan, et al.
0

We present a new implementation of the geometric method of Cullen Purser (1984) for solving the semi-geostrophic Eady slice equations which model large scale atmospheric flows and frontogenesis. The geometric method is a Lagrangian discretisation, where the PDE is approximated by a particle system. An important property of the discretisation is that it is energy conserving. We restate the geometric method in the language of semi-discrete optimal transport theory and exploit this to develop a fast implementation that combines the latest results from numerical optimal transport theory with a novel adaptive time-stepping scheme. Our results enable a controlled comparison between the Eady-Boussinesq vertical slice equations and their semi-geostrophic approximation. We provide further evidence that weak solutions of the Eady-Boussinesq vertical slice equations converge to weak solutions of the semi-geostrophic Eady slice equations as the Rossby number tends to zero.

READ FULL TEXT

page 22

page 24

research
04/18/2023

Sliced Optimal Transport on the Sphere

Sliced optimal transport reduces optimal transport on multi-dimensional ...
research
10/14/2022

A compatible finite element discretisation for the nonhydrostatic vertical slice equations

We present a compatible finite element discretisation for the vertical s...
research
01/20/2021

A Damped Newton Algorithm for Generated Jacobian Equations

Generated Jacobian Equations have been introduced by Trudinger [Disc. co...
research
04/28/2023

A registration method for reduced basis problems using linear optimal transport

We present a registration method for model reduction of parametric parti...
research
11/11/2019

Optimal partitions and Semi-discrete optimal transport

In the current book I suggest an off-road path to the subject of optimal...
research
04/19/2014

Geometric Abstraction from Noisy Image-Based 3D Reconstructions

Creating geometric abstracted models from image-based scene reconstructi...
research
05/16/2022

An Effective Transformer-based Solution for RSNA Intracranial Hemorrhage Detection Competition

We present an effective method for Intracranial Hemorrhage Detection (IH...

Please sign up or login with your details

Forgot password? Click here to reset