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McLaughlin, K.L.; Stevens, J.L.; Barker, T.G.; Shkoller, B.; Day, S.M.
Proceedings of the Numerical Modeling for Underground Nuclear Test Monitoring Symposium1993
Proceedings of the Numerical Modeling for Underground Nuclear Test Monitoring Symposium1993
AbstractAbstract
[en] Over the last decade, nonlinear and linear 2D axisymmetric finite difference codes have been used in conjunction with far-field seismic Green's functions to simulate seismic waves from a variety of sources. In this paper we briefly review some of the results and conclusions that have resulted from numerical simulations and explosion modeling in support of treaty verification research at S-CUBED in the last decade. We then describe in more detail the results from two recent projects. Our goal is to provide a flavor for the kinds of problems that can be examined with numerical methods for modeling excitation of seismic waves from explosions. Two classes of problems have been addressed; nonlinear and linear near-source interactions. In both classes of problems displacements and tractions are saved on a closed surface in the linear region and the representation theorem is used to propagate the seismic waves to the far-field
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Taylor, S.R.; Kamm, J.R. (eds.); Los Alamos National Lab., NM (United States); 404 p; Nov 1993; p. 299-309; Numerical modeling for underground nuclear test monitoring symposium; Durango, CO (United States); 23-25 Mar 1993; Also available from OSTI as DE95003509; NTIS; US Govt. Printing Office Dep
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