4.6 Article

Regional climate model application at subgrid scale on Indian winter monsoon over the western Himalayas

Journal

INTERNATIONAL JOURNAL OF CLIMATOLOGY
Volume 33, Issue 9, Pages 2185-2205

Publisher

WILEY
DOI: 10.1002/joc.3584

Keywords

regional climate model; Indian winter monsoon; western Himalayas

Funding

  1. NSF [ATM-0847472]
  2. Div Atmospheric & Geospace Sciences
  3. Directorate For Geosciences [0847472] Funding Source: National Science Foundation

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The western Himalayas (WH) is characterized by heterogeneous land surface characteristics and topography. During winter (December, January, and FebruaryDJF), eastward moving low-pressure synoptic weather systems, called Western Disturbances (WDs) in Indian parlance, cause the majority of the precipitation mostly in the form of snow. The interplay between land surface/topography and WDs greatly controls precipitation distribution over the region. This study seeks to evaluate this using a mosaic-type parameterization of subgrid-scale topography and land use (sub-BATS) for regional climate simulation with a regional climate model (RegCM3). The model coarse grid cell size in the control simulation is 60 km while the subgrid cell size is 10 km. This study compares two 22 year simulations (1980-2001) during winter (DJF). The first simulation is without (CONT) and the second is with (SUB) the fine scale subgrid scheme. Representing the fine scale processes using the subgrid scheme SUB experiment simulates reduced precipitation by approximately 2 mm d(-1) with comparison to CONT experiment. This estimation of reduced and closer to the corresponding observed precipitation is important for regional water budget over the WH which is primarily governed by topographic and land surface disaggregation. Validation with corresponding observations over similar elevations shows that SUB displays an improvement over CONT experiment. This relevant decrease of precipitation in SUB using disaggregation-reaggregation methodology for initial model input fields in subBATS scheme is due to better representation of the WH topography. In case of temperature, SUB experiment displays colder bias (approximate to 2-4 degrees C) than the CONT over the Himalayas. This preliminary finding is important for studying regional water balance, snow melt accumulation in following summer period.

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