PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
Tytuł artykułu

Stress pattern in two seismogenic sources in Nepal-Himalaya and its vicinity

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The composite stereographic projection of orientations of the compression and tension axes using thirty-nine fault-plane solutions of earthquakes from two active seismogenic sources of Nepal and adjoining areas were examined and the nature of stress pattern and their influence on tectonics in the region have been studied. The seismogenic source located in Eastern Nepal region, which has been the site of 1934 Bihar-Nepal great earthquake of M 8.4, is presently experiencing N-S to NE-SW directed compressive stresses. The inferred pattern of compression axes in Western Nepal region suggests a shallow compressive stress, dipping N-S to NE-SW. Approximately similar nature of the stress regime is observed in Western and Eastern regions of Nepal, separated by nearly 700 km; it shows N-S to NNE-SSW direction of compression and underthrusting of the Indian Plate beneath the Himalaya at a shallow angle. Present study indicates that the stress is being released along the strikes of some of the transverse faults present in the region since the compressive stress exerted by the northward movement of the Indian Plate is approximately perpendicular to the Himalayan collision belt. Unilateral stress pattern generated by the northward movement of the Indian Plate in the central part of the Himalaya reveals that the present day collision occurs roughly perpendicular to the local strike of the Himalaya.
Czasopismo
Rocznik
Strony
313--323
Opis fizyczny
Twórcy
autor
autor
autor
autor
Bibliografia
  • Baranowski, J., J. Armbruster, L. Seeber, and P. Molnar (1984), Focal depths and fault plane solutions of earthquakes and active tectonics of the Himalaya, J. Geophys. Res. 89, 6918-6928.
  • Biswas, S. (1989), State of stress and its bearing on tectonics under Tibetan Plateau, Physics Earth Planet. Inter. 54, 4-9.
  • Chandra, U. (1978), Seismicity, earthquake mechanism and tectonics along the Himalayan range and vicinity, Physics Earth Planet. Inter. 16, 109-131.
  • Dasgupta, S., M. Mukhopadhaya, and D.R. Nandy (1987), Active transverse features of the central portion of the Himalaya, Tectonophysics 136, 255-264.
  • Fitch, T.J. (1970), Earthquake mechanism of the Himalayas, Burmese and Andaman regions and continental tectonics in Central Asia, J. Geophys. Res. 75, 2699-2709.
  • Gansser, A. (1964), Geology of the Himalaya, Wiley Interscience, London, 289 pp. Gupta, H.K., and D.D. Singh (1980), Spectral analysis of body waves for earthquakes in Nepal Himalaya and its vicinity: Their focal parameters and tectonic implications, Tectonophysics 62, 53-66.
  • Herrin, E., E.P. Arnold, B.A. Bolt, C.E. Clawson, E.R. Engdahl, H.W. Freedman, D.W. Gordon, A.L. Hales, J.L. Lobdell, O. Nuttli, C. Romney, J. Taggart, and W. Tucker (1968), Seismological tables for P-phases, Bull. Seism. Soc. Am. 58, 1193-1241.
  • Molnar, P., and W.P. Chen (1983), Focal depths and fault plane solutions of earthquakes under the Tibetan plateau, J. Geophys. Res. 88, 1180-1196.
  • Molnar, P., and H. Lyon-Caen (1989), Fault plane solutions of earthquakes and active tectonics of the Tibetan Plateau and its margin, Geophys. J. Intl. 99, 123-153.
  • Molnar, P., and P. Tapponnier (1975), Cenozoic tectonics of Asia: effects of continental collision, Science 189, 419-426.
  • Molnar, P., and P. Tapponnier (1978), Active tectonics of Tibet, J. Geophys. 83, 5361-5375.
  • Molnar, P., T.J. Fitch, and F.T. Wu (1973), Fault plane solutions of shallow earthquakes and contemporary tectonics in Asia, Earth Planet. Sci. Lett. 19, 101-112.
  • Molnar, P., W.P. Chen, T.J. Fitch, P. Tapponnier, W.E.K. Warsi, and F.T. Wu (1977), Structure and tectonics of the Himalaya: a brief summary of relevant geophysical observations. In: Himalaya: Sciences de la Terre, Paris, 269-294.
  • Ni, J., and M. Barazangi (1984), Seismotectonics of the Himalayan collision zone: geometry of the underthrusting Indian plate beneath the Himalaya, J. Geophys. Res. 89, 1147- 1163.
  • Rajendran, K., P. Talwani, and H.K. Gupta (1992), State of stress in the Indian subcontinent: A review, Current Science 62, 86-93.
  • Rastogi, B.K. (1974), Earthquake mechanism and plate tectonics in Himalayan region, Tectonophysics, 21, 47-56.
  • Shanker, D., N. Kapur, and B. Singh (2002), Thrust wedge mechanics and coeval development of normal and reverse fault in the Himalayas, J. Geol. Soc. London 159, 264-273.
  • Singh, D.D. (2000), Seismotectonics of the Himalaya and its vicinity from Centroid Moment Tensor (CMT) solution of earthquakes, J. Geodyn. 30, 507-537.
  • Singh, D.D., and H.K. Gupta (1980), Source dynamics of two great earthquakes of Indian subcontinent - the Bihar Jan. 15, 1934 and Quetta earthquake of May 30, 1935, Bull. Seism. Soc. Am. 70, 757-773.
  • Singh, V.P., and D. Shanker (1993), Flow of the Tibetan plateau and tectonics along the Burmese arc, Geophys. Transactions 38, 135-149.
  • Tandon, A.N., and H.N. Srivastava (1975), Focal Mechanism of some recent Himalayan earthquakes and regional plate tectonics, Bull. Seism. Soc. Am. 65, 963-969.
  • Verma, R.K., and G.V.R. Krishna Kumar (1987), Seismicity and the nature of plate movement along the Himalayan arc, Northeast India and Araken-Yoma: a review, Tectonophysics 134, 153-175.
  • Zhu, L., and D.V. Helmberger (1996), Intermediate depth earthquakes beneath the India-Tibet collision zone, Geophys. Res. Lett. 23, 5, 435-438.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0025-0008
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.