Tailored meshing for parallel 3D electromagnetic modeling using high-order edge elements

08/01/2022
by   Octavio Castillo-Reyes, et al.
0

We present numerical experiments for geophysics electromagnetic (EM) modeling based upon high-order edge elements and supervised h+p refinement approaches on massively parallel computers. Our high-order h+p refinement strategy is based on and extends the PETGEM code. We focus on the performance study in terms of accuracy, convergence rate, and computational effort to solve real-life 3D setups based on synthetic and experimental data for energy reservoir characterization. These test cases show variable resolution discretization needs and realistic physical parameters. In general, our numerical results are consistent theoretically. The use of h-adapted meshes was efficient to achieve a certain accuracy level in the synthetic EM responses. Regarding global p-refinement, p=2 exhibits the best accuracy/performance trade-off. Selective p-refinement might offer a better compromise between accuracy and computational cost. However, for p-refinement at different entities, the best refinement scheme consists of using p=3 at the volume level with p=1 at faces and edges. Thus, p-refinement can be competitive if applied hierarchically. Nevertheless, we acknowledge that the performance of our supervised h+p refinement strategy depends on the input model (e.g., conductivity, frequency, domain decomposition strategy, among others). Whatever the chosen configuration, our numerical results provide an in-depth understanding of EM modeling's pros and cons when supervised h+p refinement schemes are applied.

READ FULL TEXT

page 10

page 11

page 12

page 13

research
05/10/2019

Non-Conforming Mesh Refinement for High-Order Finite Elements

We propose a general algorithm for non-conforming adaptive mesh refineme...
research
07/03/2018

Parallelization of the multi-level hp-adaptive finite cell method

The multi-level hp-refinement scheme is a powerful extension of the fini...
research
06/16/2023

High-order finite-volume integration schemes for subsonic magnetohydrodynamics

We present an efficient dimension-by-dimension finite-volume method whic...
research
03/09/2021

Conservative and accurate solution transfer between high-order and low-order refined finite element spaces

In this paper we introduce general transfer operators between high-order...
research
12/24/2019

Monotonicity-preserving finite element schemes with adaptive mesh refinement for hyperbolic problems

This work is focused on the extension and assessment of the monotonicity...
research
08/29/2023

High-order quasi-Helmholtz Projectors: Definition, Analyses, Algorithms

The accuracy of the electric field integral equation (EFIE) can be subst...
research
05/19/2021

High-Order Quadrature on Multi-Component Domains Implicitly Defined by Multivariate Polynomials

A high-order quadrature algorithm is presented for computing integrals o...

Please sign up or login with your details

Forgot password? Click here to reset