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Quantifying Uncertainties in Fault Slip Distribution during the T\=ohoku Tsunami using Polynomial Chaos

Authors :
Sraj, Ihab
Mandli, Kyle T.
Knio, Omar M.
Dawson, Clint N.
Hoteit, Ibrahim
Publication Year :
2016

Abstract

An efficient method for inferring Manning's $n$ coefficients using water surface elevation data was presented in Sraj et al. (2014) focusing on a test case based on data collected during the $T\=ohoku$ earthquake and tsunami. Polynomial chaos expansions were used to build an inexpensive surrogate for the numerical model Geoclaw, which were then used to perform a sensitivity analysis in addition to the inversion. In this paper, a new analysis is performed with the goal of inferring the fault slip distribution of the $T\=ohoku$ earthquake using a similar problem setup. The same approach to constructing the PC surrogate did not lead to a converging expansion, however an alternative approach based on Basis-Pursuit DeNoising was found to be suitable. Our result shows that the fault slip distribution can be inferred using water surface elevation data whereas the inferred values minimizes the error between observations and the numerical model. The numerical approach and the resulting inversion are presented in this work.

Subjects

Subjects :
Statistics - Methodology

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1607.07414
Document Type :
Working Paper
Full Text :
https://doi.org/10.1007/s10236-017-1105-9