Precipitation and snow cover in the Himalaya: from reanalysis to regional climate simulations - Laboratoire de glaciologie et géophysique de l'environnement
Article Dans Une Revue Hydrology and Earth System Sciences Année : 2013

Precipitation and snow cover in the Himalaya: from reanalysis to regional climate simulations

Résumé

Abstract. We applied a Regional Climate Model (RCM) to simulate precipitation and snow cover over the Himalaya, between March 2000 and December 2002. Due to its higher resolution, our model simulates a more realistic spatial variability of wind and precipitation than those of the reanalysis of the European Centre of Medium range Weather Forecast (ECMWF) used as lateral boundaries. In this region, we found very large discrepancies between the estimations of precipitation provided by reanalysis, rain gauges networks, satellite observations, and our RCM simulation. Our model clearly underestimates precipitation at the foothills of the Himalaya and in its eastern part. However, our simulation provides a first estimation of liquid and solid precipitation in high altitude areas, where satellite and rain gauge networks are not very reliable. During the two years of simulation, our model resembles the snow cover extent and duration quite accurately in these areas. Both snow accumulation and snow cover duration differ widely along the Himalaya: snowfall can occur during the whole year in western Himalaya, due to both summer monsoon and mid-latitude low pressure systems bringing moisture into this region. In Central Himalaya and on the Tibetan Plateau, a much more marked dry season occurs from October to March. Snow cover does not have a pronounced seasonal cycle in these regions, since it depends both on the quite variable duration of the monsoon and on the rare but possible occurrence of snowfall during the extra-monsoon period.
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hal-04702966 , version 1 (24-09-2024)

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M. Ménégoz, H. Gallée, Hans-Werner Jacobi. Precipitation and snow cover in the Himalaya: from reanalysis to regional climate simulations. Hydrology and Earth System Sciences, 2013, 17 (10), pp.3921-3936. ⟨10.5194/hess-17-3921-2013⟩. ⟨hal-04702966⟩
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