Lithological and structural control of Hattian Bala rock avalanche triggered by the Kashmir earthquake 2005, sub-Himalayas, northern Pakistan

Muhammad Basharat, Joachim Rohn, Dominik Ehret, Mirza Shahid Baig

Journal of Earth Science ›› 2012, Vol. 23 ›› Issue (2) : 213-224.

Journal of Earth Science ›› 2012, Vol. 23 ›› Issue (2) : 213-224. DOI: 10.1007/s12583-012-0248-3
Article

Lithological and structural control of Hattian Bala rock avalanche triggered by the Kashmir earthquake 2005, sub-Himalayas, northern Pakistan

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Abstract

The Kashmir earthquake 2005 (magnitude M W 7.6) triggered thousands of mass movements in northern Pakistan. These mass movements were mainly rock falls, debris falls, rockslides and rock avalanches. The mass movements vary in size from a few hundred cubic meters up to about 100 million cubic meters estimated for the Hattian Bala rock avalanche, the biggest one associated with this earthquake. This mass movement, which moved in southeastern direction, created two natural dams on the valley bottom and blocked the water ways of the Karli and Tung tributaries of the Jhelum River. Topographic, lithologic and structural information were used to investigate the Hattian Bala rock avalanche. Geotechnical and structural maps were prepared to understand relationship between geology and structure of Hattian Bala rock avalanche. The geometry and failure mode of this rock avalanche are controlled by southeast plunging synclinal structures, lithology, a bedding parallel slip surface and a pre-existing old rockslide. The structural map shows that the mass movement failure was due to Danna and Dandbeh synclinal structures plunging southeast on the hanging wall block of the reactivated Muzaffarabad fault. The slip surface of the mass movement followed the bedding planes along mudstone, claystone and sandstone surfaces. The mass movement perfectly followed the pre-existing synclinal morphology of the Danna and Dandbeh synclines.

Keywords

Kashmir earthquake 2005 / mass movement / rock avalanche / Muzaffarabad fault / northern Pakistan

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Muhammad Basharat, Joachim Rohn, Dominik Ehret, Mirza Shahid Baig. Lithological and structural control of Hattian Bala rock avalanche triggered by the Kashmir earthquake 2005, sub-Himalayas, northern Pakistan. Journal of Earth Science, 2012, 23(2): 213‒224 https://doi.org/10.1007/s12583-012-0248-3

References

Armbruster J., Seeber L., Jacob K. B.. The Northwestern Termination of the Himalayan Mountain Front: Active Tectonics from Microearthquakes. J. Geophys. Res., 1978, 83(B1): 269-282.
CrossRef Google scholar
Asian Development Bank and World Bank, 2005. Preliminary Damage and Needs Assessment (Pakistan Earthquake 2005), 1–124
Avouac J. P., Ayoub F., Leprince S., . The 2005, M w 7.6 Kashmir Earthquake: Sub-Pixel Correlation of ASTER Images and Seismic Waveforms Analysis. Earth and Planetary Science Letters, 2006, 249: 514-528.
CrossRef Google scholar
Baig M. S., Lawrence R. D.. Precambrian to Early Paleozoic Orogenesis in the Himalaya. Kashmir Journal of Geology, 1987, 5: 1-22.
Baig, M. S., 2006. Active Faulting and Earthquake Deformation in Hazara-Kashmir Syntaxis, Azad Kashmir, Northwest Himalaya, Pakistan. In: Kausar, A. B., Karim, T., Khna, T., et al., eds., Extended Abstracts, International Conference on 8 October 2005 Earthquake in Pakistan: Its Implications and Hazard Mitigation. Geological Survey of Pakistan, Islamabad. 27–28
Bossart P., Dietrich D., Greco A., . The Tectonic Structure of Hazara Kashmir Syntaxis, Southern Himalayas, Pakistan. Tectonics, 1988, 7(2): 273-297.
CrossRef Google scholar
Calkins J. A., Offield T. W., Abdulla S. K. M., . Geology of the Southern Himalaya in Hazara, Pakistan, and Adjacent Areas. U.S. Geological Survey Professional Paper, 1975, 716-c 29
Dunning S. A., Mitchell W. A., Rosser N. J., . The Hattian Bala Rock Avalanche and Associated Landslides Triggered by the Kashmir Earthquake of 8 October 2005. Engineering Geology, 2007, 93(3–4): 130-144.
CrossRef Google scholar
EERI (Earthquake Engineering Research Institute), 2005. First Special Earthquake Report on the Kashmir Earthquake of October 8, 2005. 1–8
Greco A.. Stratigraphy, Metamorphism and Tectonics of the Hazara-Kashmir Syntaxis Area. Kashmir Journal of Geology, 1991, 8–9: 39-66.
Harp, E. L., Crone, A. J., 2006. Landslides Triggered by the October 8, 2005, Pakistan Earthquake and Associated Landslide-Dammed Reservoirs. U. S. Geological Survey Open-File Report, 1–13
Hussain, A., Iqbal, S., Nasir, S., 2004. Geological Maps of the Garhi Habibullah and Nauseri Area, District Muzaffarabad, AJK: Geol. Survey of Pakistan, Preliminary Map Series, VI (14), Sheet No. 43 F/7, 11, 1: 50 000
Jibson R. W., Harp E. L., Schulz W., . Large Rock Avalanches Triggered by the M 7.9 Denali Fault, Alaska, Earthquake of 3 November 2002. Eng. Geo., 2006, 83(1–3): 144-160.
CrossRef Google scholar
JSCE (Japan Society of Civil Engineers), 2006. Quick Report of the JSCE Mission for Geotechnical Survey along Jehlem and Kunhar Valleys (Ver. 1.1). 1–11
Kamp U., Growley B. J., Khattak G. A., . GIS-Based Landslide Susceptibility Mapping for the 2005 Kashmir Earthquake Region. Geomorphology, 2008, 101(4): 631-642.
CrossRef Google scholar
Kaneda H., Nakata T., Tsutsumi H., . Surface Rupture of the 2005 Kashmir, Pakistan Earthquake and Its Active Tectonic Implications. Bull. of the Seismol. Soc. America, 2008, 98(2): 521-557.
CrossRef Google scholar
Keefer D. K.. Landslides Caused by Earthquakes. Geological Society of America Bulletin, 1984, 95(4): 406-421.
CrossRef Google scholar
Land Use PlanningDevelopment Department Muzaffarabad Location Map of Muzaffarabad District AJ & K, Muzaffarabad, Pakistan. Scale 1: 50 000, 2007, Muzaffarabad: Government of AJ & K
Munir H. M., Baig M. S., Mirza K.. Upper Cretaceous of Hazara and Paleogene Biostratigraphy of Azad Kashmir, North-West Himalayas, Pakistan. Geol. Bull. of Punjab. Univ., 2006, 40–41: 69-87.
Nakata, T., Tsutsumi, H., Khan, S. H., et al., 1991. Active Faults of Pakistan: Map Sheets and Inventories. Special Publication 21, Hiroshima University, Hiroshima.141
Owen L. A., Kamp U., Khattak G. A., . Landslides Triggered by the 8 October 2005 Kashmir Earthquake. Geomorphology, 2008, 94(1–2): 1-9.
CrossRef Google scholar
Parsons T., Yeats R. S., Yagi Y., . Static Stress Change from the 8 October, 2005 M=7.6 Kashmir Earthquake. Geophys. Res. Lett., 2006, 33 L06304
CrossRef Google scholar
Peiris N., Rossetto T., Burton P.. EEFIT Mission: October 8, 2005 Kashmir Earthquake, 2006, London: The Institution of Structural Engineers 31
Petley D., Dunning S., Rosser N., . Marui H., . Incipient Landslides in the Jhelum Valley, Pakistan Following the 8th October 2005 Earthquake. Disaster Mitigation of Rock Flows, Slope Failures and Landslides. Disaster Mitigation of Debris Flows, Slope Failures and Landslides, 2006, Tokyo: Frontiers of Science Series, Universal Academy Press 47 56
Rao N. P., Kumar P., Kalpana T., . The Devastating Muzaffarabad Earthquake of 8 October 2005: New Insight into Himalayan Seismicity and Tectonics. Gondwana Research, 2006, 9(4): 365-378.
CrossRef Google scholar
Schneider J. F.. Seismically Reactivated Hattian Slide in Kashmir, Northern Pakistan. Journal of Seismology, 2008, 13(3): 387-398.
CrossRef Google scholar
Survey of Pakistan Location Map of Pakistan, 2005, Islamabad: Govt. of Pakistan
Thakur V. C.. Reassessment of Earthquake Hazard in the Himalaya and Implications from the 2004 Sumatra-Andaman Earthquake. Current Science, 2006, 90(8): 1070-1072.
USGS (United States Geological Survey), 2006. Magnitude M w 7.6 Pakistan Earthquake 2005 Summary. www.earthquake.usgs.gov.
Wadia D. N.. The Syntaxis of the North-West Himalaya-Its Rocks, Tectonics, and Orogeny. Rec. Geol. Surv. India., 1931, 65: 189-220.
Yeats, R. S., Parsons, T., Hussain, A., et al., 2006. Stress Changes with the 8 October 2005 Kashmir Earthquake, Lessons for the Future. In: Kausar, A. B., Karim, T., Khna, T., et al., eds., Extended Abstracts, International Conference on 8 October 2005 Earthquake in Pakistan: Its Implications and Hazard Mitigation. Geological Survey of Pakistan, Islamabad. 16–17

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