耐震ガイドライン2章

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11 ) 6.5 5%450gal 1200gal 100cm/s 20cm 2000 = ) 6.5 1), URL 2) Shimazaki, K.Small and large earthquakes : The effect of the thickness of seismogenic layer and the free surface, Earthquake Source Mechanics, Am. Geophys. Union, Geopyhs. Monogr.37, Maurice Ewing 6, pp , ),, 51, No.2, pp , ) M ,, Vol.57, pp , ), 25, pp.61-64, ) 2000,,77, pp.35-56,

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13 1) Vs 3km/s 2) Vs Vs i) ii) Vs 300m/s iii) Vs Vs i) ii) iii) Vs Vs 22

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15 1),2) 3)5) 1) 6) 7) 2) 1)3) 8) 9),10) 3) 1) Haskell, N. : The dispersion of surface waves in multilayered media, Bull. Seism. Soc. Am., 88, 17-34, ) Schnabel, P. B., J. Lysmer and H. B. Seed : SHAKE a computer program for earthquake response analysis of horisontally layered sites, EERC, 72-12, ), ) Aki, K. and P. G. Richards : Quantitative seismology, Theory and methods, Freeman, ) 51 pp , ) Irikura, K. : Prediction of strong acceleration motion using empirical Green's function, 7th Jpn. Earthq. Eng. Symp., , ) Boore, D. M. : Stochastic simulation of high-frequency ground motions based on seismological models of the radiation spectra, Bull. Seism. Soc. Am., Vol. 73, No. 6, , ) Kamae, K., K. Irikura and A. Pitarka : A technique for simulating strong ground motion using hybrid 24

16 Green's function, Bull. Seism. Soc. Am., 88, , ) FukushimaY and T. Tanaka: A new attenuation relation for peak horizontal acceleration of strong earthquake ground motion, Bull. Seism. Soc. Am., 80, ),,,,, 10, , ) 1) ),2),3) 1) FukushimaY and T. Tanaka: A new attenuation relation for peak horizontal acceleration of strong 25

17 earthquake ground motion,bull. Seism. Soc. Am., 80, ) :,, ) P.Somerville, K.Irikura, R.Graves, S.Sawada, D.Wald and N.Abrahamson, Y.Iwasaki, T.Kagawa, N.Smith and A.Kowada: Characterizing Crustl Earthquake Slip Models for the Prediction of Strong Ground Motion, Seismological Research Letters, Vol.70, No.1, pp.59-80, ),2) 1),, No.612/I-46, , ),,,, 10, Vol.1, pp ,

18 1) 1 2) 1)2) 3)4) 3) GSHAP(GlobalSeismic Hazard Assessment Project) ) USGS 6) USGS 1997 NEHRP 7) MCE: Maximum Considered Earthquake USGS 8) 27

19 4) 9) 10) 11) 5) 2 1) Senior Seismic Hazard Analysis Committee (SSHAC): Recommendations for probabilistic seismic hazard analysis: Guidance on uncertainty and use of experts, U.S. Nuclear Regulatory Commission, NUREG/CR-6372, Washington, DC., ) Toro, G. R.: Probabilistic seismic-hazard analysis: a review of the state of the art, Proceedings of the Fifth International Conference on Seismic Zonation, , ) Pacific Gas and Electric Company: Long Term Seismic Program Final Report, PGE Letter No. DCL , ) Youngs, R., K. Coppersmith, K. Hanson, L. DiSilvestro, and D. Wells: Regional probabilistic seismic hazard mapping with uncertainty an example from the State of Oregon, USA, Proceedings of the Fifth International Conference on Seismic Zonation, , ) Shedlock, K. M., D. Giardini, G. Grunthal, and P. Zhang: The GSHAP global seismic hazard map, Seismological Research Letters, 71, 6, pp , ) Frankel, A. D., C. S. Mueller, T. P. Barnhard, E. V. Leyendecker, R. L. Wesson, S. C. Harmsen, F. W. Klein, D. M. Perkins, N. C. Dickman, S. L. Hanson, and M. G. Hopper: USGS national seismic hazard maps, Earthquake Spectra, 16, 1, pp.1-19, ) Building Seismic Safety Council: 1997 Edition NEHRP recommended provisions for seismic regulations for new buildings and other structures, Part 1 (provisions), FEMA302, ) Leyendecker, E. V., R. J. Hunt, A. D. Frankel, and K. S. Rukstales: Development of maximum considered earthquake ground motion maps, Earthquake Spectra, 16, 1, pp.21-40, ) U.S. Nuclear Regulatory Commission: Identification and characterization of seismic sources and determination of safe shutdown earthquake ground motion, Regulatory Guide 1.165, ) )

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