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Wintertime seasonal scale simulation over western himalaya using RegCM3

机译:使用RegCM3在喜马拉雅山西部冬季季节尺度模拟

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The Himalayan region of north India is composed of complex mountain ranges with different altitudes and orientations, causing prevailing weather conditions to be complex. Wintertime eastward moving synoptic weather systems `Western Disturbances' (WDs) yield large amounts of precipitation over this region. Numerous micro/mesoscale circulations become generated along with prevailing weather due to surface heterogeneity and land-use variability of the Himalayan region. WDs along with these circulations may give rise to very adverse weather conditions over the region. Intraseasonal variability of surface climate over the Himalayas is studied using regional climate model (RegCM3) with 60 km resolution. A 6-month (Oct. 1999-Mar. 2000) period, as this period has received an enormous amount of precipitation in the form of snow, is considered to study surface climate variability in terms of temperature, precipitation and snow amount. Model simulations show cold bias over the Himalayan region and warm bias over the northwest India. Average monthly distribution of temperature indicates that a controlled experiment could capture the areas of lowest temperature regime. Precipitation fields could be simulated only up to a certain degree of satisfaction and the influence of topographic elevation and valleys needs to be seen. RegCM3 provides a representation of resolvable atmospheric circulations that results in explaining mean variability during winter.
机译:印度北部的喜马拉雅地区由复杂的山脉组成,这些山脉具有不同的高度和方向,从而导致主要的天气条件复杂。冬季向东移动的天气天气系统“西部扰动”(WDs)在该地区产生大量降水。由于喜马拉雅地区的表面异质性和土地利用的可变性,大量的微/中尺度环流与盛行的天气一起产生。 WD和这些环流可能会在该地区引起非常不利的天气状况。使用分辨率为60 km的区域气候模型(RegCM3)研究了喜马拉雅山脉地表气候的季节内变化。考虑到六个月的时间(1999年10月至2000年3月),因为这一时期已收到大量的积雪形式的降水,因此考虑从温度,降水量和积雪量方面研究地表气候的变化性。模型模拟显示喜马拉雅地区的冷偏向和印度西北部的暖偏。平均每月温度分布表明,受控实验可以捕获最低温度区域。降水场只能模拟到一定程度的满意程度,并且需要查看地形高程和低谷的影响。 RegCM3提供了可解析的大气环流的表示,可以解释冬季的平均变化。

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