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Chronology of late quaternary glaciations in Indian Himalaya: A critical review

  • Research Article
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Journal of the Geological Society of India

Abstract

The timing of glaciation is an important parameter that helps in the understanding of past climate change and provides valuable information for developing the predictive futuristic models. There are evidences to suggest that during the late Quaternary, Himalayan glaciers fluctuated considerably thus implying their sensitivity to changes in past climatic conditions. Although the Himalayan region is fed by two major weather systems viz. the southwest summer monsoon and the mid-latitude westerlies, however, the existing chronology (mostly exposure ages) indicates that irrespective of the geographical position, glaciers seem to grow during increased insolation and enhanced southwest summer monsoon including the mid-latitude westerly dominated north-western Himalayan glaciers (Ladakh and Karakoram). Considering the limited geographical coverage and the dating uncertainty, the above inferences should be treated as tentative.

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References

  • Anderson, B. and Mackintosh, A. (2006) Temperature change is the major driver of late-glacial and Holocene glacier fluctuations in New Zealand. Geology, v.34, pp.121–124.

    Article  Google Scholar 

  • Arendt, A.A., Echelmeyer, K.A., Harrison, W.D., Lingle, C.S. and Valentine, V.B. (2002) Rapid wastage of Alaska glaciers and their contribution to rising sea level. Science, v.297, pp.82–386.

    Article  Google Scholar 

  • Barnard, P.L., Owen, L.A. and Finkel, R.C. (2004) Style and timing of glacial and paraglacial sedimentation in a monsooninfluenced high Himalayan environment, the upper Bhagirathi Valley, Garhwal Himalaya. Sediment. Geol., v.165, pp.199–221.

    Article  Google Scholar 

  • Barnard, P.L., Owen, L.A., Sharma, M.C. and Finkel, R.C. (2004) Late Quaternary (Holocene) landscape evolution of a monsoon-influenced high Himalayan valley, Gori Ganga, Nanda Devi, NE Garhwal. Geomorphology, v.61, pp.91–110.

    Article  Google Scholar 

  • Benn, D.I. and Owen, L.A. (1998) The role of the Indian summer monsoon and the mid-latitude westerlies in Himalayan glaciation: Review and speculative discussion. Jour. Geol. Soc. London, v.155, pp.353–363.

    Article  Google Scholar 

  • Benn, D.I., Owen, L.A., Osmaston, H.A., Seltzer, G.O., Porter, S.C. and Mark, B. (2005) Reconstruction of equilibrium-line altitudes for tropical and sub-tropical glaciers. Quaternary Int. v.138–139, pp.8–21.

    Article  Google Scholar 

  • Beukema, S.P., Krishnamurthy, R.V., Juyal N., Basavaiah, N. and Singhvi, A.K. (2011) Monsoon variability and chemical weathering during the late Pleistocene in the Goriganga basin, higher central Himalaya, India. Quaternary Res., v.75, pp.597–604.

    Article  Google Scholar 

  • Bhutiyani, M.R., Kale, V.S. and Pawar, N.J. (2010) Climate change and the precipitation variations in the northwestern Himalaya: 1866–2006. Int. Jour. Climatology, v.30, pp.535–548.

    Google Scholar 

  • Bookhagen, B., Thiede, R.C. and Strecker, M.R. (2005) Abnormal monsoon years and their control on erosion and sediment flux in the high, arid northwest Himalaya. Earth Planet. Sci. Lett. v.231, pp.131–146.

    Article  Google Scholar 

  • Brown, E.T., Bendick, R., Bourlès, D.L., Gaur, V., Molnar, P., Raisbeck, G.M. and Yiou, F. (2002) Slip rates of the Karakorum fault, Ladakh, India, determined using cosmic ray exposure dating of debris flows and moraines. Jour. Geophy. Res. B: Solid Earth, v.107, pp.7–1.

    Google Scholar 

  • Corell, R., and 30 Others (2004) Impacts of a Warming Arctic, Arctic Climate Impact Assessment (ACIA report). Cambridge University Press, Cambridge.

    Google Scholar 

  • Ding, Z., Liu, T., Rutter, N.W., Yu, Z., Guo, Z. and Zhu, R. (1995) Ice-volume forcing of east Asian winter monsoon variations in the past 800,000 years. Quaternary Res., v.44, pp.149–159.

    Article  Google Scholar 

  • Dortch, J.M., Owen, L.A. and Caffee, M.W. (2010) Quaternary glaciation in the Nubra and Shyok valley confluence, northernmost Ladakh, India. Quaternary Res., v.74, pp.132–144.

    Article  Google Scholar 

  • Dyurgerov, M.B. and Meier, M.F. (2000) Twentieth century climate change: Evidence from small glaciers; Proc. Natl. Acad. Sci. USA, v.97, pp.1406–1411.

    Article  Google Scholar 

  • Finkel, R.C., Owen, L.A., Barnard, P.L. and Caffee, M.W. (2003) Beryllium-10 dating of Mount Everest moraines indicates a strong monsoon influence and glacial synchroneity throughout the Himalaya. Geology, v.31, pp.561–564.

    Article  Google Scholar 

  • Gayer, E., Lavé, J., Pik, R. and France-Lanord, C. (2006) Monsoonal forcing of Holocene glacier fluctuations in Ganesh Himal (Central Nepal) constrained by cosmogenic 3He exposure ages of garnets. Earth Planet. Sci. Lett., v.252, pp.275–288.

    Article  Google Scholar 

  • Grove, A.T. (2008) A brief consideration of climate forcing factors in view of the Holocene glacier record. Global and Planetary Change, v.60, pp.141–147.

    Article  Google Scholar 

  • Holmes, J.A. (1993) Pliocene and Quaternary environmental Change in Kashmir Northwest Himalaya, unpublished Ph. D. Thesis, University of Oxford, U.K.

    Google Scholar 

  • Hughton, J.T., Ding, Y., Griggs, D.J., Noguer, M., Van Der Linden, P.J., Dai, X., Maskell, K. and Johnson, C.A. (2001) (Eds.), (2001) Climate Change 2001: The Scientific Basis. Cambridge University Press, Cambridge, UK.

    Google Scholar 

  • Juyal, N., Pant, R.K., Basavaiah, N., Bhushan, R., Jain, M., Saini, N.K., Yadava, M.G. and Singhvi, A.K. (2009) Reconstruction of Last Glacial to early Holocene monsoon variability from relict lake sediments of the Higher Central Himalaya, Uttrakhand, India. Jour. Asian Earth Sci. v.34, pp.437–449.

    Article  Google Scholar 

  • Juyal, N., Pant, R.K., Basavaiah, N., Yadava, M.G., Saini, N.K. and Singhvi, A.K. (2004) Climate and seismicity in the higher Central Himalaya during 20–10 ka: Evidence from the Garbayang basin, Uttaranchal, India. Palaeogeo. Palaeoclim. Palaeoeco., v.213, pp.315–330.

    Google Scholar 

  • Kääb, A., Chiarle, M., Raup, B. and Schneider, C. (2007) Climate change impacts on mountain glaciers and permafrost. Global and Planet. Change, v.56(1–2), pp.7–9.

    Google Scholar 

  • Lehmkuhl, F., Owen, L.A. and Derbyshire, E. (1998) Late quaternary glacial history of northeast Tibet. Jour. Quaternary Sci., v.13, pp.121–142.

    Google Scholar 

  • Mehta, M., Majeed, Z., Dobhal, D.P. and Srivastava, P. (2012) Geomorphological evidences of post-LGM glacial advancements in the Himalaya: A study from Chorabari Glacier, Garhwal Himalaya, India. Jour. Earth Syst. Sci., v.121, pp.149–163.

    Article  Google Scholar 

  • Nainwal, H.C., Chaudhary, M., Rana, N., Negi, B.D.S., Negi, R.S., Juyal, N. and Singhvi, A.K. (2007) Chronology of the Late Quaternary glaciation around Badrinath (Upper Alaknanda Basin): Preliminary observations. Curr. Sci., v.93, pp.90–96.

    Google Scholar 

  • Oerlemans, J. (2005) Atmospheric science: Extracting a climate signal from 169 glacier records. Science, v.308, pp.675–677.

    Article  Google Scholar 

  • Osmaston, H. (1994) The geology, geomorphology and Quaternary history of Zangskar. In: J. Crook and H. Osmaston (Eds.), Himalayan Buddhist villages: Bristol, University of Bristol, pp.1–36.

    Google Scholar 

  • Owen, L.A. (2009) Latest Pleistocene and Holocene glacier fluctuations in the Himalaya and Tibet. Quaternary Sci. Rev., v.28, pp.2150–2164.

    Article  Google Scholar 

  • Owen, L.A., Bailey, R.M., Rhodes, E.J., Mitchell, W.A. and Coxon, P. (1997) Style and timing of glaciation in the Lahul Himalaya, northern India: A framework for reconstructing late Quaternary palaeoclimatic change in the western Himalayas. Jour. Quaternary Sci., v.12, pp.83–109.

    Article  Google Scholar 

  • Owen, L.A. and Benn, D.I. (2005) Equilibrium-line altitudes of the Last Glacial Maximum for the Himalaya and Tibet: An assessment and evaluation of results. Quaternary Internat., v.138–139, pp.55–78.

    Article  Google Scholar 

  • Owen, L.A., Caffee, M.W., Bovard, K.R., Finkel, R.C. and Sharma, M.C. (2006) Terrestrial cosmogenic nuclide surface exposure dating of the oldest glacial successions in the Himalayan orogen: Ladakh Range, northern India. Bull. Geol. Soc. Amer., v.118, pp.383–392.

    Article  Google Scholar 

  • Owen, L.A., Caffee, M.W., Finkel, R.C. and Seong, Y.B. (2008) Quaternary glaciation of the Himalayan-Tibetan orogen. Jour. Quaternary Sci., v.23, pp.513–531.

    Article  Google Scholar 

  • Owen, L.A., Derbyshire, E. and Fort, M. (1998) The quaternary glacial history of the Himalaya. Jour. Quaternary Sci., v.13, pp.91–120.

    Google Scholar 

  • Owen, L.A., Derbyshire, E., Richardson, S., Benn, D.I., Evans, D.J.A. and Mitchell, W.A. (1996) The quaternary glacial history of the Lahul Himalaya, northern India. Jour. Quaternary Sci., v.11, pp.25–42.

    Article  Google Scholar 

  • Owen, L.A., Finkel, R.C., Barnard, P.L., Haizhou, M., Asahi, K., Caffee, M.W. and Derbyshire, E. (2005) Climatic and topographic controls on the style and timing of Late Quaternary glaciation throughout Tibet and the Himalaya defined by 10Be cosmogenic radionuclide surface exposure dating. Quaternary Sci. Rev., v.24, pp.1391–1411.

    Article  Google Scholar 

  • Owen, L.A., Finkel, R.C. and Caffee, M.W. (2002) A note on the extent of glaciation throughout the Himalaya during the global Last Glacial Maximum. Quaternary Sci. Rev., v. 21, pp.147–157.

    Article  Google Scholar 

  • Owen, L.A., Gualtieri, L., Finkel, R.C., Caffee, M.W., Benn, D.I. and Sharma, M.C. (2001) Cosmogenic radionuclide dating of glacial landforms in the Lahul Himalaya, northern India: Defining the timing of Late Quarternary glaciation. Jour. Quaternary Sci., v.16, pp.555–563.

    Article  Google Scholar 

  • Pant, R.K., Juyal, N., Basavaiah, N. and Singhvi, A.K. (2006) Late Quaternary glaciation and seismicity in the Higher Central Himalaya: Evidence from Shalang basin (Goriganga), Uttaranchal. Curr. Sci., v.90, pp.1500–1505.

    Google Scholar 

  • PATERSON (1999) Physics of Glaciers. Pergamon/Elsevier Science Inc., 480p.

    Google Scholar 

  • Phillips, W.M., Sloan, V.F., Shroder, J.F., Jr., Sharma, P., Clarke, M.L. and Rendell, H.M. (2000) Asynchronous glaciation at Nanga Parbat, nortwestern Himalaya Mountains, Pakistan. Geology, v.28, pp.431–434.

    Article  Google Scholar 

  • Porter, S.C. (1975) Equilibrium-line altitudes of late Quaternary glaciers in the Southern Alps, New Zealand. Quaternary Research, v. 5, pp.27–47.

    Article  Google Scholar 

  • Pratt-Sitaula, B., Burbank, D.W., Heimsath, A.M., Humphrey, N.F., Oskin, M. and Putkonen, J. (2011) Topographic control of asynchronous glacial advances: A case study from Annapurna, Nepal. Geophys. Res. Lett., v.38, doi:10.1029/2011GL049940.

  • Prell, W.L. and Kutzbach, J.E. (1987) Monsoon variability over the past 150 000 years. Jour. Geophy. Res., v. 92, pp.8411–8425.

    Article  Google Scholar 

  • Rühland, K., Phadtare, N.R., Pant, R.K., Sangode, S.J. and Smol, J.P. (2006) Accelerated melting of Himalayan snow and ice triggers pronounced changes in a valley peatland from northern India. Geophys. Res. Lett., v.33, doi:10.1029/2006GL026704.

  • Sachs, J.P. (2007) Cooling of Northwest Atlantic slope waters during the Holocene. Geophys. Res. Lett., v.34, L03609, doi:10.1029/2006GL028495.

    Google Scholar 

  • Schaefer, J.M., Oberholzer, P., Zhao, Z.Z., Ivy-Ochs, S., Wieler, R., Baur, H., Kubik, P.W. and Schlüchter, C. (2008) Cosmogenic beryllium-10 and neon-21 dating of late Pleistocene glaciations in Nyalam, monsoonal Himalayas. Quaternary Sci. Rev., v.27, pp.295–311.

    Article  Google Scholar 

  • Schäfer, J.M., Tschudi, S., Zhao, Z., Wu, X., Ivy-Ochs, S., Wieler, R., Baur, H., Kubik, P.W. and Schlüchter, C. (2002) The limited influence of glaciations in Tibet on global climate over the past 170 000 yr. Earth Planet. Sci. Lett., v.194, pp.287–297.

    Article  Google Scholar 

  • Scherler, D., Bookhagen, B., Strecker, M.R., Von Blanckenburg, F. and Rood, D. (2010) Timing and extent of late Quaternary glaciation in the western Himalaya constrained by 10Be moraine dating in Garhwal, India. Quaternary Sci. Rev., v.29, pp.815–831.

    Article  Google Scholar 

  • Sharma, M.C. and Owen, L.A. (1996) Quaternary glacial history of NW Garhwal, Central Himalayas. Quaternary Sci. Rev., v.15, pp.335–365.

    Article  Google Scholar 

  • Steiner, D., Pauling, A., Nussbaumer, S.U., Nesje, A., Luterbacher, J., Wanner, H. and Zumbühl, H.J. (2008) Sensitivity of European glaciers to precipitation and temperature — Two case studies. Climate Change, v.90, pp.413–441.

    Article  Google Scholar 

  • Taylor, P.J. and Mitchell, A.W. (2000) The Quaternary glacial history of the Zanskar range, north-west Indian Himalaya. Quaternary Internat., v.65, pp.81–99.

    Article  Google Scholar 

  • Tiwari, M., Ramesh, R., Bhushan, R., Sheshshayee, M., Somayajulu, B.L.K., Jull, A.J.T. and Burr, G.S. (2010) Did the Indo-Asian summer monsoon decrease during the Holocene following insolation? Jour. Quaternary Sci., v.25, pp.1179–1188.

    Article  Google Scholar 

  • Venkatesan, T.R. and Ramesh, R. (1993) Consideration of analytical uncertainties while plotting histograms. Geol. Soc. India, v.41, pp.313–317.

    Google Scholar 

  • Watson, R.T., Zinyower, M.C. and Moss, R.H. (1997) The regional impacts of climate change: an assessment of vulnerability. A Special Report of IPCC Working Group II. Cambridge University Press, Cambridge, UK, 517p.

    Google Scholar 

  • Yang, B., Bräuning, A., Dong, Z., Zhang, Z. and Keqing, J. (2008) Late Holocene monsoonal temperate glacier fluctuations on the Tibetan Plateau. Global and Planetary Change, v.60, pp.126–140.

    Article  Google Scholar 

  • Zech, R., Zech, M., Kubik, P.W., Kharki, K. and Zech, W. (2009) Deglaciation and landscape history around Annapurna, Nepal, based on 10Be surface exposure dating. Quaternary Sci. Rev., v.28, pp.1106–1118.

    Article  Google Scholar 

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Nawaz Ali, S., Juyal, N. Chronology of late quaternary glaciations in Indian Himalaya: A critical review. J Geol Soc India 82, 628–638 (2013). https://doi.org/10.1007/s12594-013-0201-9

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