首页> 外文会议>Education Technology and Training, 2008. and 2008 International Workshop on Geoscience and Remote Sensing. ETT and GRS 2008 >Long Term Analyses on Spatial and Temporal Evaluation of Snow Covers in Northern China by Using RS and Meteorological data
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Long Term Analyses on Spatial and Temporal Evaluation of Snow Covers in Northern China by Using RS and Meteorological data

机译:利用遥感和气象资料对中国北方积雪的时空评价进行长期分析

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Piling and melting of snow cover is a dynamic process which has important effect on the radiation balance, and water circulation over the land surface. Accurate information on snow depth is essential for the study of hydrology and climatology. However, it is almost impossible to obtain any long-term and annual variability characteristics of snow covers by means of conventional field observations. Passive microwave remote sensing has the advantage to penetrate the cloud, and its all-weather capability for snow cover monitoring makes it superior to the optical sensor and near-infrared remote sensing techniques. By means of daily snow cover monitoring data derived from SMMR and SSM/I during the period from 1979 to 2005, snow depth and snow cover days over the northern China were quantitatively analyzed. Spatio-temporal variations of snow covers were evaluated in terms of spatial-temporal distribution and the significant level by the Mann-Kendall rank statistical test. The results suggested that the snow-cover periods became notably shorten and the snow depth turned to decrease obviously with the significant level of alpha<0.01 in the desert of northwest arid region under the significant warming trend. In contrast, the snow depth tended to increase notably with the significant level of alpha<0.001 in the northwest alpine region and Xiaoxing'an Mountain, where the climate tended to be much warm and humid at the same period.
机译:积雪的堆积和融化是一个动态过程,对辐射平衡和陆地表面的水循环具有重要影响。关于积雪深度的准确信息对于水文学和气候学的研究至关重要。但是,通过常规的野外观测几乎不可能获得积雪的任何长期和年度变化特征。无源微波遥感具有穿透云层的优势,其全天候的积雪监测能力使其优于光学传感器和近红外遥感技术。利用1979-2005年期间SMMR和SSM / I的每日积雪监测数据,对中国北方的积雪深度和积雪天数进行了定量分析。通过Mann-Kendall秩统计检验,根据时空分布和显着性水平评估了积雪的时空变化。结果表明,在明显变暖趋势下,西北干旱区荒漠地区的积雪期明显缩短,积雪深度明显减少,且α<0.01。相反,西北高寒地区和小兴安岭的雪深有明显的增加,α<0.001,而同期的气候趋向于温暖多湿。

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