Source code for openquake.hazardlib.gsim.boore_atkinson_2011

# -*- coding: utf-8 -*-
# vim: tabstop=4 shiftwidth=4 softtabstop=4
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# Copyright (C) 2014-2019 GEM Foundation
#
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"""
Module exports :class:`BooreAtkinson2011`,
               :class:`Atkinson2008prime`
"""
import numpy as np

from openquake.hazardlib.gsim.boore_atkinson_2008 import BooreAtkinson2008
from openquake.hazardlib.gsim.base import CoeffsTable
from openquake.hazardlib import const


[docs]class BooreAtkinson2011(BooreAtkinson2008): """ Implements GMPE based on the corrections proposed by Gail M. Atkinson and D. Boore in 2011 and published as "Modifications to Existing Ground-Motion Prediction Equations in Light of New Data " (2011, Bulletin of the Seismological Society of America, Volume 101, No. 3, pages 1121-1135). """
[docs] def get_mean_and_stddevs(self, sites, rup, dists, imt, stddev_types): """ See :meth:`superclass method <.base.GroundShakingIntensityModel.get_mean_and_stddevs>` for spec of input and result values. """ # get mean and std using the superclass mean, stddevs = super().get_mean_and_stddevs( sites, rup, dists, imt, stddev_types) # correction factor (see Atkinson and Boore, 2011; equation 5 at # page 1126 and nga08_gm_tmr.for line 508 corr_fact = 10.0**(np.max([0, 3.888 - 0.674 * rup.mag]) - (np.max([0, 2.933 - 0.510 * rup.mag]) * np.log10(dists.rjb + 10.))) return np.log(np.exp(mean)*corr_fact), stddevs
[docs]class Atkinson2008prime(BooreAtkinson2011): """ Implements the Boore & Atkinson (2011) adjustment to the Atkinson (2008) GMPE (not itself implemented in OpenQuake) """ # GMPE is defined for application to Eastern North America (Stable Crust) DEFINED_FOR_TECTONIC_REGION_TYPE = const.TRT.STABLE_CONTINENTAL
[docs] def get_mean_and_stddevs(self, sites, rup, dists, imt, stddev_types): """ See :meth:`superclass method <.base.GroundShakingIntensityModel.get_mean_and_stddevs>` for spec of input and result values. """ # get mean and std using the superclass mean, stddevs = super().get_mean_and_stddevs( sites, rup, dists, imt, stddev_types) A08 = self.A08_COEFFS[imt] f_ena = 10.0 ** (A08["c"] + A08["d"] * dists.rjb) return np.log(np.exp(mean)*f_ena), stddevs
A08_COEFFS = CoeffsTable(sa_damping=5, table="""\ IMT c d pgv 0.450 0.00211 pga 0.419 0.00039 0.005 0.417 0.00192 0.050 0.417 0.00192 0.100 0.245 0.00273 0.200 0.042 0.00232 0.300 -0.078 0.00190 0.500 -0.180 0.00180 1.000 -0.248 0.00153 2.000 -0.214 0.00117 3.030 -0.084 0.00091 5.000 0.000 0.00000 10.00 0.000 0.00000 """)