GRM4 - SIMULATION, VALIDATION, AND UTILIZATION OF EARTHQUAKE GROUND MOTIONS FOR ENGINEERING APPLICATIONS |
WEDNESDAY | ||||||||
BROWN 1 | Convenors: S. Rezaeian, M. Dabaghi, R. Paolucci | ||||||||
14:30 - 14:33 | INTRODUCTION | |||||||
14:33 - 14:45 | FINDINGS FROM A DECADE OF GROUND MOTION SIMULATION VALIDATION RESEARCH AND A PATH FORWARD S. Rezaeian, J. Stewart, N. Luco, C. Goulet | |||||||
14:45 - 14:57 | PHYSICS-BASED SIMULATED ACCELEROGRAMS FOR ENGINEERING APPLICATIONS: THE BB-SPEEDSET C. Smerzini, R. Paolucci, M. Vanini | |||||||
14:57 - 15:09 | CONSTRAINING NEAR-FAULT GROUND MOTION SIMULATIONS: THE POTENTIAL OF DISPLACED GRAVE SLABS M. Causse, C. Lachanas, D. Vamvatsikos, L. Baillet | |||||||
15:09 - 15:21 | EXPLANATORY STUDY OF SPECTRAL CORRELATION PATTERNS IN STOCHASTIC GROUND MOTION MODELS M. Su, M. Dabaghi, M. Broccardo | |||||||
15:21 - 15:33 | 3D PHYSICS-BASED SIMULATIONS OF GROUND MOTION DURING THE SOUTH ICELAND EARTHQUAKE ON 17 JUNE 2000 V.M. Hernández Aguirre, R. Rupakhety, S. Ólafsson, B. Bessason, S. Erlingsson, R. Paolucci, C. Smerzini | |||||||
15:33 - 15:45 | EFFECT OF SOIL NONLINEARITY ON PHYSICS-BASED GROUND MOTION SIMULATIONS W. Zhang, Y. Dong, J. Crempien, P. Arduino, E. Taciroglu | |||||||
THURSDAY | ||||||||
MONITOR 17 | Convenors: S. Rezaeian, M. Dabaghi, R. Paolucci | ||||||||
09:00 - 09:09 | GENERATING SYNTHETIC ACCELEROGRAMS VIA AN IMPROVED KANAI-TAJIMI MODEL E.P. Duque Yaguache, J.A. Inaudi | |||||||
09:09 - 09:18 | EFFICIENT CALCULATION FOR GROUND MOTIONS CONSIDERING UNCERTAINTIES IN SEISMIC SOURCE CHARACTERISTICS M. Nishimoto, Y. Yamamoto, S. Igarashi, Y. Uchiyama, T. Itoi | |||||||
09:18 - 09:27 | COUPLING SITE-CITY INTERACTION EFFECTS IN 3D PHYSICS-BASED SIMULATIONS: A CASE STUDY IN THE KUMAMOTO S. Sangaraju, R. Paolucci | |||||||
09:27 - 09:36 | COMPARING 1D/3D GROUND MOTION SIMULATIONS FOR EARTHQUAKES IN CENTRAL ITALY P. Artale Harris, A. Pitarka, A. Akinci | |||||||
09:36 - 09:45 | AN ALTERNATIVE APPROACH TO MODEL EARTHQUAKE GROUND MOTION IN LATERALLY INHOMOGENEOUS LAYERED MEDIUM J. Basu, B. Shree Rashmi, S.T.G. Raghukanth | |||||||
09:45 - 09:54 | BROADBAND GROUND MOTIONS FROM PHYSICS-BASED SIMULATION AND EMBEDDING-INTERPOLATION MACHINE LEARNING T. Okazaki, A. Iwaki, T. Maeda, H. Fujiwara, N. Ueda | |||||||
09:54 - 10:03 | EFFECT OF RESERVOIR ON SEISMIC GROUND-MOTIONS J. Yedulla, R. Stg | |||||||
10:03 - 10:12 | GENERATION OF SYNTHETIC GROUND MOTIONS FOR GEOTHERMALLY INDUCED EARTHQUAKES A. Kumawat, S. Keil, F. Taddei, G. Müller | |||||||
10:12 - 10:15 | DISCUSSION | |||||||
MONITOR 18 | Convenors: S. Rezaeian, M. Dabaghi, R. Paolucci | ||||||||
09:00 - 09:09 | CONSTRUCTION AND VALIDATION OF A SIMULATED GROUND MOTION DATASET FOR TURKEY A. Altindal, A. Askan | |||||||
09:09 - 09:18 | BROADBAND GROUND MOTION MODEL BASED ON THE FULL PHYSICS OF WAVE PROPAGATION FOR THE KOREAN PENINSULA L.A. Dalguer, S.G. Song | |||||||
09:18 - 09:27 | CONSTRAINING LARGE MAGNITUDE EVENT SOURCE AND PATH EFFECTS USING GROUND MOTION SIMULATIONS X. Meng, R. Graves, C. Goulet, G. Parker | |||||||
09:27 - 09:36 | 3D FINITE-ELEMENT GROUND MOTION SIMULATION ENHANCED WITH HIGH-PERFORMANCE COMPUTING K. Fujita, T. Ichimura, M. Hori, L. Maddegedara | |||||||
09:36 - 09:45 | ALEATORY VARIABILITY AND EPISTEMIC UNCERTAINTY FOR UTILIZATION OF SIMULATIONS IN PSHA I. Liou, N. Abrahamson | |||||||
09:45 - 09:54 | SEISMIC SOURCE CHARACTERIZATION FOR PROBABILISTIC AND SCENARIO SEISMIC HAZARD ANALYSIS IN JAPAN H. Miyake, N. Morikawa | |||||||
09:54 - 10:03 | EVALUATION OF SECONDARY FAULT OCCURRENCE BY KINEMATIC GROUND MOTION ANALYSIS USING PARALLEL FEM K. Haba, M. Sawada, K. Watanabe, M. Hori | |||||||
10:03 - 10:12 | ASPECTS REGARDING SITE RESPONSE ANALYSIS CONSIDERING INDUCED SEISMICITY IN THE MUNICH REGION A. Csuka, S. Keil, S. Yuan, S. Vogt, R. Cudmani, J. Wassermann | |||||||
10:12 - 10:15 | DISCUSSION | |||||||
MONITOR 19 | Convenors: S. Rezaeian, M. Dabaghi, R. Paolucci | ||||||||
09:00 - 09:09 | A NOVEL FREQUENCY-WAVENUMBER METHOD FOR THE MARINE GREEN'S FUNCTION S. Chen, J. Shen | |||||||
09:09 - 09:18 | ESTIMATION OF RUPTURE PROCESS OF THE 2023 NOTO, JAPAN, EARTHQUAKE USING STRONG MOTION RECORDS S. Yoshida, K. Miyakoshi, T. Kagawa, K. Tsuda | |||||||
09:18 - 09:27 | CONTINUOUS WAVELET TRANSFORM-BASED STOCHASTIC MODEL FOR THE GENERATION OF ARTIFICIAL ACCELEROGRAMS H. Yanni, M. Fragiadakis | |||||||
09:27 - 09:36 | EARTHQUAKE GROUND MOTION PREDICTION MODEL FOR SOUTHWEST IBERIA A. Taherian, V. Silva, P. Kalakonas, R. Vicente | |||||||
09:36 - 09:45 | PRACTICAL IMPLEMENTATION OF HYBRID GROUND MOTION SIMULATION IN SOUTH KOREA S. Jeong, J. Kim, S.E. Bae, B.A. Bradley | |||||||
09:45 - 09:54 | MULTISCALE FINITE ELEMENT ANALYSIS FOR EVALUATING SURFACE FAULT DISPLACEMENT AND GROUND MOTION M. Sawada, K. Haba, K. Fujita, T. Ichimura, M. Hori | |||||||
09:54 - 10:03 | EXTENDED FINITE-FAULT GROUND MOTION MODELING FRAMEWORK: SENSITIVITY ANALYSIS AND OPTIMISATION OF STRESS DROP AND KAPPA PARAMETER Omkar, S. Sharma, S. Bora, U. Mannu | |||||||
10:03 - 10:12 | HIGH-PROBABILITY HORIZONTAL GROUND MOTION SIMULATION CONSIDERING SOURCE PARAMETER UNCERTAINTY Z. Li, Z. Ji, H. Miyake, J. Sun, M. Gao, Y. Ding | |||||||
10:12 - 10:15 | DISCUSSION | |||||||
BROWN 1 | Convenors: S. Rezaeian, M. Dabaghi, R. Paolucci | ||||||||
10:30 - 10:33 | INTRODUCTION | |||||||
10:33 - 10:45 | PHYSICS-BASED GROUND MOTION SIMULATIONS AS A TOOL FOR EARTHQUAKE ENGINEERING J. Baker | |||||||
10:45 - 10:57 | DEVELOPING INTERNATIONAL STANDARDS AND GUIDELINES FOR DISSEMINATING AND VALIDATING SIMULATED MOTIONS A. Askan, B. Aagaard, S. Rezaeian, S.K. Ahdi, A. Yong | |||||||
10:57 - 11:09 | SIMULATED GROUND MOTION RECORDS FOR THE SEISMIC ASSESSMENT OF MONUMENTAL MASONRY STRUCTURES S. Karimzadeh, M.F. Funari, S. Szabó, S.M.S. Hussaini, S. Rezaeian, P.B. Lourenço | |||||||
11:09 - 11:21 | CHALLENGES IN DIFFERENTIATING P AND SV WAVES WITHIN VERTICAL GROUND MOTIONS USING 3D SIMULATIONS R. Kamai, M. Frid | |||||||
11:21 - 11:33 | DYNAMIC RUPTURE SIMULATION OF THE EFFECT OF SEDIMENTARY LAYERS ON FAULT RUPTURE A. Nakatsuji, H. Goto | |||||||
11:33 - 11:45 | FROM SEISMOLOGY RESEARCH TO ENGINEERING PRACTICE: ADVANCES AND CHALLENGES IN EARTHQUAKE SIMULATIONS F. Petrone | |||||||
MONITOR 15 | Convenors: S. Rezaeian, M. Dabaghi, R. Paolucci | ||||||||
14:30 - 14:39 | INFLUENCE OF BASIN EDGE DIP ANGLE AND FOCAL LOCATION ON GROUND MOTION OF 3D SEDIMENTARY BASIN Y. Zhang, J. Yi, Y. Zhang, H. You, S. Wang, F. Zhao, P. Liu | |||||||
14:39 - 14:48 | INFLUENCE OF STRONG-MOTION SEQUENCES ON STRUCTURAL RESPONSE E. Reinoso, P. Quinde, A. Lopez | |||||||
14:48 - 14:57 | NEAR-FAULT VELOCITY PULSE SIMULATION FOR A NORTHERN TAIWAN SITE BY A STOCHASTIC FINITE-FAULT METHOD J.Y. Huang, S.H. Chao, C.M. Lin, C.C. Chou | |||||||
14:57 - 15:06 | NOVEL HYBRID ANN-BASED BROADBAND RESPONSE SPECTRA GENERATING MODEL FOR HIMALAYAN REGION V. Sharma, M. Gade, J. Dhanya | |||||||
15:06 - 15:15 | PHYSICS-BASED GROUND MOTION SIMULATION FOR BETTER KNOWLEDGE OF PAST EARTHQUAKES C. El Khoury, S. Hok, H. Jomard, C. Gélis, H. Lyon-Caen, M. Lancieri | |||||||
15:15 - 15:24 | STRONG GROUND MOTIONS USING THE STOCHASTIC SUMMATION OF EGF CONSIDERING FINITE-FAULT HYPOTHESIS M. González-Sandoval, M. Nino, C. González | |||||||
15:24 - 15:33 | SLIP CHARACTERISTICS IN SHALLOW AREAS ABOVE SEISMOGENIC ZONE FOR THE INLAND CRUSTAL EARTHQUAKES K. Miyakoshi, N. Inoue, Y. Matsumoto, T. Kumamoto, K. Kamae, K. Irikura | |||||||
15:33 - 15:42 | PHYSICS-BASED 3-D GROUND MOTION SIMULATIONS USING SPECTRAL ELEMENTS: AN EXAMPLE OF THE RHONE VALLEY M. Koroni, L.A. Ermert, P. Bergamo, D. Faeh, A. Imtiaz | |||||||
15:42 - 15:45 | DISCUSSION | |||||||
MONITOR 16 | Convenors: S. Rezaeian, M. Dabaghi, R. Paolucci | ||||||||
14:30 - 14:39 | JOINT EFFORTS BETWEEN COSMOS SITE CHARACTERIZATION PROJECT & GROUND-MOTION SIMULATION WORKING GROUPS S. Ahdi, B. Aagaard, A. Askan, S. Rezaeian, M. Pilz, S. D Amico, J. Steidl, A. Yong | |||||||
14:39 - 14:48 | NONSTATIONARY GROUND MOTION MODEL BASED ON THE SHORT-TIME FOURIER TRANSFORM AND ITS APPLICATIONS S. Matsuda | |||||||
14:48 - 14:57 | SIMULATION OF SEISMIC MOTION CONSIDERING PROPAGATION PATH ATTENUATION DEPENDING ON INCIDENT ANGLE Y. Sato | |||||||
14:57 - 15:06 | SOURCE SPECTRUM FOR LARGE CRUSTAL EARTHQUAKE AND ITS IMPLICATION WITH THE HETEROGENOUS SOURCE MODEL K. Somei, K. Miyakoshi | |||||||
15:06 - 15:15 | STRONG MOTION GENERATION AREA FOR LARGE CRUSTAL EARTHQUAKES BY THE EMPIRICAL GREEN'S FUNCTION METHOD S. Kurahashi, K. Miyakoshi, K. Yoshida, K. Somei, Y. Guo, K. Irikura | |||||||
15:15 - 15:24 | STRONG MOTION GENERATION AREA MODEL OF THE 2021 MS6.4 YANGBI EARTHQUAKE, YUNNAN, CHINA H. Wu, K. Irikura, S. Kurahashi, G. Lin | |||||||
15:24 - 15:33 | STUDY OF THE CHARACTERISTICS OF RESERVOIR-INDUCED EARTHQUAKES BY USING DYNAMIC FAULT RUPTURE SIMULATION M. Yamada, K. Hada, R. Imai, H. Fujiwara | |||||||
15:33 - 15:45 | DISCUSSION | |||||||
FRIDAY | ||||||||
AMBER 4 | Convenors: S. Rezaeian, M. Dabaghi, R. Paolucci | ||||||||
10:30 - 10:33 | INTRODUCTION | |||||||
10:33 - 10:45 | PHYSICS AND BUILDING CODE-BASED SEISMIC HAZARD AND RISK IN MEXICO CITY L. Ramirez-Guzman, M. Leonardo Suarez, M.G. Contreras Ruiz Esparza, M.A. Carrillo Lucia, F.A. Sanabria Hernandez | |||||||
10:45 - 10:57 | LESSONS LEARNT FROM NUMERICAL SIMULATION OF GROUND MOTION IN LOW MAGNITUDE SHALLOW EARTHQUAKES M. Vanini, R. Paolucci, C. Smerzini, I. Mazzieri | |||||||
10:57 - 11:09 | NUMERICAL VERIFICATION OF 3D SITE RESPONSE ANALYSIS BASED ON OBTAINED SEISMIC RECORDS IN ISTANBUL S. Sadeghzadeh, A. Ansal | |||||||
11:09 - 11:21 | EFFECTS OF STOCHASTICALLY-SIMULATED NEAR-FAULT GROUND MOTIONS ON SOIL LIQUEFACTION A.J. Makdisi, M. Dabaghi, L. Brito, S. Rezaeian, K.L. Haynie, H.B. Mason | |||||||
11:21 - 11:33 | SEISMIC RESPONSE COMPARISON OF A HISTORICAL MASONRY CHURCH SUBJECT TO REAL AND SIMULATED GROUND MOTI S.M.S. Hussaini, C. Sebastiani, M. Capasso, V. Sabbatini, S. Karimzadeh, S. Rezaeian, S. Santini, P.B. Lourenço | |||||||
11:33 - 11:45 | DISCUSSION |