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青藏高原西北部河流提取及季节变化差异分析
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作者 王国峰 王纪征 +2 位作者 肖逸 赵慧慧 乔宝晋 《遥感技术与应用》 CSCD 北大核心 2024年第2期447-458,共12页
河流是地球水循环的一个重要环节,准确获取山区河流信息对于区域内的水资源评价和生态修复方面都有重要作用。基于2019~2021年Sentinel-2影像,利用多光谱指数法自动区分河流、湖泊及冰川,结合随机森林方法,并以MERIT DEM为地形条件,自... 河流是地球水循环的一个重要环节,准确获取山区河流信息对于区域内的水资源评价和生态修复方面都有重要作用。基于2019~2021年Sentinel-2影像,利用多光谱指数法自动区分河流、湖泊及冰川,结合随机森林方法,并以MERIT DEM为地形条件,自动提取青藏高原西北部多时态、高分辨率的河网,结合第二次冰川编目划分了不同补给类型的集水区,进一步计算了河流面积和宽度的季节变化。结果表明,在这3 a内丰水期和枯水期的河流平均面积分别达到了7161.64±22.73 km2和4066.02±35.19 km2,Kappa系数和总体精度均达到了0.8以上,冰川补给类型和非冰川补给类型的河流平均面积季节变化率分别为0.34和0.23,冰川补给类型平均宽度季节变化大部分比非冰川补给类型变化大。冰川补给类型的河流宽度和面积变化比非冰川补给类型的河流变化整体更加明显,该研究表明冰川融水对河流径流的变化有重要的影响。 展开更多
关键词 河流提取 季节变化差异 冰川融水
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近55年来黄河河源区径流的变化及区域差异 被引量:12
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作者 蓝永超 刘根生 +3 位作者 喇承芳 朱云通 马全杰 石明星 《山地学报》 CSCD 北大核心 2017年第3期257-265,共9页
基于黄河源区有关水文、气象台站的观测数据,对该区及黄河沿水文站以上、黄河沿水文站-吉迈水文站区间、吉迈水文站-玛曲水文站区间、玛曲水文站-唐乃亥水文站区间各区域1960—2014年期间径流变化的季节特征、趋势及其对气候变化响应的... 基于黄河源区有关水文、气象台站的观测数据,对该区及黄河沿水文站以上、黄河沿水文站-吉迈水文站区间、吉迈水文站-玛曲水文站区间、玛曲水文站-唐乃亥水文站区间各区域1960—2014年期间径流变化的季节特征、趋势及其对气候变化响应的区域差异进行了分析。结果表明:近55 a来黄河源区径流及其各分区径流总体上呈减少的态势,但减少幅度各区有所不同;但在2000年代中期后径流量回升比较明显。在上述分析的基础上,基于周期外延叠加方法对黄河河源区径流未来30 a的可能变化进行了预测。预测显示,未来30 a内,黄河源区径流的变化为先增后减,但总体变化平稳,其均值与目前55 a实测系列均值没有显著差异。 展开更多
关键词 黄河源区 子区 季节变化特征 区域差异 趋势预测
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Trends in Temperature and Precipitation Extremes over Circum-Bohai-Sea Region,China 被引量:7
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作者 JIANG Dejuan LI Zhi WANG Qiuxian 《Chinese Geographical Science》 SCIE CSCD 2012年第1期75-87,共13页
Trends in temperature and precipitation extremes from 1961 to 2008 have been investigated over Circum-Bohai-Sea region, China using daily temperature and precipitation data of 63 meteorological stations. The re- suits... Trends in temperature and precipitation extremes from 1961 to 2008 have been investigated over Circum-Bohai-Sea region, China using daily temperature and precipitation data of 63 meteorological stations. The re- suits show that at most stations, there is a significant increase in the annual frequency of warm days and warm nights, as well as a significant decrease in the annual frequency of cold days, cold nights, frost days, and annual diurnal tem- perature range (DTR). Their regional averaged changes are 2.06 d/1 0yr, 3.95 d/10yr, -1.88 d/10yr, -4.27 d/10yr, -4.21 d/10yr and -0.20℃/10yr, respectively. Seasonal changes display similar patterns to the annual results, but there is a large seasonal difference. A significant warming trend is detected at both annual and seasonal scales, which is more contributed by changes of indices defined by daily minimum temperature than those defined by daily maximum tem- perature. For precipitation indices, the regional annual extreme precipitation displays a weak decrease in terms of magnitude and frequency, i.e. extreme precipitation days (RD95p), intensity (RINTEN), proportion (RPROP) and maximum consecutive wet days (CWD), but a slight increase in the maximum consecutive dry days (CDD), which are consistent with changes of annual total precipitation (PRCPTOT). Seasonally, PRCPTOT and RD95p both exhibit an increase in spring and a decrease in other seasons with the largest decrease in summer, but generally not significant. In summary, this study shows a pronounced warming tendency at the less rainy period over Circum-Bohai-Sea region, which may affect regional economic development and ecological protection to some extent. 展开更多
关键词 temperature precipitation climate extreme trend analysis Circum-Bohai-Sea region
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Decadal Variability of Global Ocean Significant Wave Height 被引量:1
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作者 ZHENG Chongwei ZHOU Lin +2 位作者 SHI Weilai LI Xin HUANG Chaofan 《Journal of Ocean University of China》 SCIE CAS 2015年第5期778-782,共5页
This paper presents the long-term climate changes of significant wave height(Hs) in 1958–2001 over the entire global ocean using the 45-year European Centre for Medium-Range Weather Forecasts(ECMWF) Reanalysis(ERA-40... This paper presents the long-term climate changes of significant wave height(Hs) in 1958–2001 over the entire global ocean using the 45-year European Centre for Medium-Range Weather Forecasts(ECMWF) Reanalysis(ERA-40) wave data. The linear trends in Hs and regional and seasonal differences of the linear trends for Hs were calculated. Results show that the Hs exhibits a significant increasing trend of about 4.6 cm decade-1 in the global ocean as a whole over the last 44 years. The Hs changes slowly during the periods 1958–1974 and 1980–1991, while it increases consistently during the periods 1975–1980 and 1995–1998. The Hs reaches its lowest magnitude in 1975, with annual average wave height about 2 m. In 1992, the Hs has the maximum value of nearly 2.60 m. The Hs in most ocean waters has a significant increasing trend of 2–14 cm decade-1 over the last 44 years. The linear trend exhibits great regional differences. Areas with strong increasing trend of Hs are mainly distributed in the westerlies of the southern Hemisphere and the northern Hemisphere. Only some small areas show obvious decreasing in Hs. The long-term trend of Hs in DJF(December, January, February) and MAM(March, April, May) is much more stronger than that in JJA(June, July, August) and SON(September, October, November). The linear trends of the Hs in different areas are different in different seasons; for instance, the increasing trend of Hs in the westerlies of the Pacific Ocean mainly appears in MAM and DJF. 展开更多
关键词 global ocean significant wave height long-term trend regional differences seasonal differences dominant season
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Variability of Surface Sensible Heat Flux over Northwest China 被引量:6
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作者 ZHOU Lian-Tong WU Ren-Guang HUANG Rong-Hui 《Atmospheric and Oceanic Science Letters》 2010年第2期75-80,共6页
The present study documents the variability of surface sensible heat flux over Northwest China using station observations for the period 1961 2000.It is found that the afternoon and nighttime sensible heat flux variat... The present study documents the variability of surface sensible heat flux over Northwest China using station observations for the period 1961 2000.It is found that the afternoon and nighttime sensible heat flux variations are remarkably different.The variability of the instant flux in the afternoon is much larger than in the nighttime.The afternoon and nighttime flux anomalies tend to be opposite.The diurnal and seasonal dependence of sensible heat flux variations is closely related to the diurnal cycle of mean land-air temperature difference.The relationship of sensible heat flux with land-air temperature difference based on the instant value differs from that based on the daily mean.The present study indicates the importance for the models to properly simulate mean land-air temperature difference and its diurnal and seasonal variations in order to capture surface sensible heat flux variability over Northwest China and predicts its plausible impacts on climate. 展开更多
关键词 sensible heat flux land-air temperature difference wind speed
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