HR: 09:30h
AN: T51C-07 [PDF]
TI: Determination of Stress From Fault-slip Data: New Models, Algorithms and Accuracy Evaluation
AU: * Xu, P
EM: pxu@rcep.dpri.kyoto-u.ac.jp
AF: Dissater Prevention Research Institute, Kyoto University, Gokasho, Uji, Kyoto, 611-0011
Japan
AB:
Stress tensors are regularly determined from fault-slip and/or earthquake focal mechanism data in structural geology and
seismotectonics. The inverse problem is nonlinear, unless empirical rules of rupture and friction are employed. All the
methods used to date to determine the stress tensor to this nonlinear inverse problem are of local nature, and thus cannot
guarantee that the global optimal stress tensor has been obtained. We apply a hybrid global optimization method developed by
Xu (J comput appl Math, 147, 301-314, 2002; J comput appl Math, 155, 423-446, 2003; J comput appl Math, 156, 201-219, 2003)
to find the global optimal stress tensor. Although the inverse problem is nonlinear, the effect of nonlinearity on the biases
of stress tensors has not been investigated. We will examine the biases of inverted stress tensors and their effect on the
principal orientations of stress and the shape parameter of the stress ellipsoid. The biases of stress parameters have been
shown to be comparable with the estimated stress parameters numerically. We compare the accuracy of the four stress
parameters, with and without taking the errors in fault planes into account. If the errors in fault planes are not taken into
account, the stress parameters are too optimistically estimated by a factor of $4\sim9$ in the example. We will also
mathematically reformulate the assumption that the directions of maximum shear stress represent those of slips on fault
planes as two functionally independent but equivalent constraints of equality. The new formulation is computationally more
effective and provides a correct method for calculating the accuracy of stress parameters.
DE: 3200 MATHEMATICAL GEOPHYSICS (New field)
DE: 3230 Numerical solutions
DE: 3260 Inverse theory
DE: 8168 Stresses--general
SC: Tectonophysics [T]
MN: 2003 Fall Meeting