Development of New Ground Motion Prediction Equation for the North and Central Himalayas Using Recorded Strong Motion Data

被引:25
作者
Ramkrishnan, R. [1 ]
Sreevalsa, Kolathayar [2 ]
Sitharam, T. G. [3 ]
机构
[1] Amrita Vishwa Vidyapeetham, Amrita Sch Engn, Dept Civil Engn, Coimbatore 641112, Tamil Nadu, India
[2] VIT, Sch Civil Engn, Vellore, Tamil Nadu, India
[3] Indian Inst Sci, Dept Civil Engn, Bangalore, Karnataka, India
关键词
GMPE; Attenuation Relations; Himalayas; Regression; Peak Ground Acceleration; SEISMIC HAZARD ANALYSIS; PEAK HORIZONTAL ACCELERATION; ATTENUATION RELATION; SIKKIM HIMALAYA; NW HIMALAYA; INDIA; PGV; EARTHQUAKES; SPECTRA; REGION;
D O I
10.1080/13632469.2019.1605318
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A new region-specific Ground Motion Prediction Equation (GMPE) was developed for the North and Central Himalayas purely based on recorded strong motion data. The GMPE was generated using multiple-regression, considering ground acceleration, magnitude, and hypocentral distance. An updated larger dataset was used in the present study, making the new equation applicable to a larger magnitude range of 4.1 to 7.8 and distance range up to 1560 kms, thus overcoming a major limitation of currently available region-specific GMPEs. The new GMPE was validated and observed to predict ground acceleration more accurately with noticeably less residuals as compared to existing GMPEs.
引用
收藏
页码:1903 / 1926
页数:24
相关论文
共 50 条
  • [41] Spectral Ground Motion Models for Himalayas Using Transfer Learning Technique
    Podili, Bhargavi
    Basu, Jahnabi
    Raghukanth, S. T. G.
    JOURNAL OF EARTHQUAKE ENGINEERING, 2024, 28 (13) : 3623 - 3647
  • [42] On the Testing of Ground-Motion Prediction Equations against Small-Magnitude Data
    Beauval, Celine
    Tasan, Hilal
    Laurendeau, Aurore
    Delavaud, Elise
    Cotton, Fabrice
    Gueguen, Philippe
    Kuehn, Nicolas
    BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 2012, 102 (05) : 1994 - 2007
  • [43] Empirical ground-motion relations using moderate earthquakes recorded by Medellín–Aburrá Valley (Colombia) strong-motion networks
    Gina P. Villalobos-Escobar
    Raúl R. Castro
    Bulletin of Earthquake Engineering, 2013, 11 : 863 - 884
  • [44] Ground motion prediction equation for inelastic spectral displacement in Iran
    Hassani, N.
    Amiri, G. Ghodrati
    Bararnia, M.
    Sinaeian, F.
    SCIENTIA IRANICA, 2017, 24 (01) : 164 - 182
  • [45] Global Ground Motion Prediction Equation for Shallow Crustal Regions
    Graizer, Vladimir
    Kalkan, Erol
    Lin, Kuo-Wan
    EARTHQUAKE SPECTRA, 2013, 29 (03) : 777 - 791
  • [46] Ground-Motion Prediction Equation for the Chilean Subduction Zone
    Montalva, Gonzalo A.
    Bastias, Nicolas
    Rodriguez-Marek, Adrian
    BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 2017, 107 (02) : 901 - 911
  • [47] Empirically Calibrated Ground-Motion Prediction Equation for Oklahoma
    Novakovic, Mark
    Atkinson, Gail M.
    Assatourians, Karen
    BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 2018, 108 (5A) : 2444 - 2461
  • [48] A Ground-Motion Prediction Equation for Vertical Spectra of the Strong-Motion Records from the Subduction Slab Events in Japan Using Site Class as the Site Term
    Jiang, Fei
    Zhao, John X.
    BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 2017, 107 (05) : 2328 - 2341
  • [49] Modifications to Existing Ground-Motion Prediction Equations in Light of New Data
    Atkinson, Gail M.
    Boore, David M.
    BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 2011, 101 (03) : 1121 - 1135
  • [50] Verification of attenuation models based on strong ground motion data in Northern Thailand
    Tanapalungkorn, Weeradetch
    Mase, Lindung Zalbuin
    Latcharote, Panon
    Likitlersuang, Suched
    SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2020, 133 (133)