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General climatic controls and topoclimatic variations in Central and High Asia

机译:中亚和高级亚洲的一般气候控制和地形气候变化

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摘要

Basic features of current spatial and seasonal climate variations in Central and High Asia are presented. Large-scale circulation modes were inferred from NCAR/CDAS General Circulation Model (GCM) data and interpreted with particular emphasis on the Asian Monsoon circulation. Using spatial high-resolution estimates of radiation, temperature and precipitation covering Central and High Asia in a regular grid network with a grid-cell spacing of 1 km 2, topoclimatic variations are investigated and discussed with respect to their major barometric and topographic controls. In general, weather patterns of Central and High Asia are determined by tropical monsoon as well as extratropical circulation modes. Associated synoptic conditions and processes, in particular the alternation of tropical and polar air masses, lead to distinct large-scale variations valid for all climatic parameters in all seasons. The regional analysis and discussion of climatic gradients and environmental lapse rates stress the significant role of Asia's marked orography and its influence on advective processes, flow currents and topoclimatic settings. Preliminary estimations of the annual water balance, however, are still afflicted with major uncertainties owing to methodical limits in the spatial estimation of precipitation rates and widely lacking evapotranspiration records, particularly in the Tibetan Plateau and adjacent high mountain systems. Given the importance of the mountainous water resources for the affected economies, further regional investigations on the water cycle and its components are vital future tasks for climate research.
机译:介绍了中亚和高级亚洲当前空间和季节气候变化的基本特征。从NCAR / CDAS通用环流模型(GCM)数据推断出大规模的环流模式,并特别强调了亚洲季风环流。在一个栅格单元间距为1 km 2的常规栅格网络中,使用空间高分辨率的辐射,温度和降水的覆盖率对中亚和高亚洲的覆盖范围进行了调查,并讨论了主要气候和地形控制方面的地形气候变化。一般而言,中亚和高亚的天气模式取决于热带季风和温带环流模式。相关的天气条件和过程,尤其是热带气团和极地气团的交替,导致明显的大范围变化,这些变化对所有季节的所有气候参数均有效。气候梯度和环境衰减率的区域分析和讨论强调了亚洲显着地形的重要作用及其对平流过程,水流和地形气候环境的影响。然而,由于降水量的空间估算方法上的局限性以及广泛缺乏蒸散记录,特别是在青藏高原和邻近的高山系统中,对年度水平衡的初步估算仍然受到重大不确定性的困扰。考虑到山区水资源对受灾经济的重要性,对水循环及其组成部分进行进一步的区域调查是气候研究的重要未来任务。

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