Simulation of underground gravity gradients from stochastic seismic fields
Abstract
We present results obtained from a finite-element simulation of seismic displacement fields and of gravity gradients generated by those fields. The displacement field is constructed by a plane wave model with a 3D isotropic stochastic field and a 2D fundamental Rayleigh field. The plane wave model provides an accurate representation of stationary fields from distant sources. Underground gravity gradients are calculated as acceleration of a free test mass inside a cavity. The results are discussed in the context of gravity-gradient noise subtraction in third generation gravitational-wave detectors. Error analysis with respect to the density of the simulated grid leads to a derivation of an improved seismometer placement inside a 3D array which would be used in practice to monitor the seismic field.
Keywords
Cite
@article{arxiv.0909.3341,
title = {Simulation of underground gravity gradients from stochastic seismic fields},
author = {Jan Harms and Riccardo DeSalvo and Steven Dorsher and Vuk Mandic},
journal= {arXiv preprint arXiv:0909.3341},
year = {2013}
}
Comments
24 pages, 12 figures