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1.
基于1960―2015年长江流域128个站点的月风速观测数据,结合地形特点将长江流域分成5个子区域,并运用一元线性回归、相关分析和修正的Mann-Kendall(MMK)检验对长江流域风速变化趋势的时空特征进行研究,结果表明:1)1960―2015年长江流域年平均风速以-0.006 5 m/s·a的速率显著下降,5个子区域中,区域中下游丘陵与平原区(R1)下降最显著,上游青藏高原区(R5)次之,上游盆地区(R3)变化最小。2)季节上,全区风速春季下降最快,夏季最慢。而子区域除R1冬季降幅最大外,其余区域季节风速变化速率也为春季降幅最大,夏季最小。逐月变化上,流域整体风速3月下降最快,8月最慢,各子区域风速最大降幅也集中在3月。3)空间分布上,长江流域年平均风速降幅呈现东部大、中部小、西部较大的特点,全区50%的站点下降趋势显著,且这些站点集中分布于R1地区。此外,4个季节风速与年风速的变化趋势呈现相似的空间分布特征。4)长江流域风速下降与北极涛动(AO)指数上升、区域气候变暖和城市化加速等有关。  相似文献   

2.
张仪辉  梁康  刘昌明  吕锦心  白鹏 《地理研究》2022,41(10):2808-2820
探究全球变暖下的尼洋河流域极端气候变化特征及原因,对于科学支撑西藏地区的极端气候灾害防治和生态安全保障等具有重要意义。本文基于尼洋河流域1960—2019年逐日降水及气温数据,采用极端气候指标法、Sen's斜率估计法、MK趋势及突变检验法、GIS空间分析法从降水、气温两个角度分析近60年尼洋河流域极端气候时空分布特征,并结合大气环流因子,使用地理探测器方法探讨时空分布特征的可能成因。结果表明:在时间上,尼洋河流域极端气候整体呈现暖湿化的变化趋势。极端降水的降水量、降水强度、降水日数均呈现增加趋势,极端气温的高温极值、低温极值均呈现增大趋势,低温日数呈现减少趋势。在空间上,尼洋河流域极端气候变化存在明显的空间分异性。极端降水整体自东向西逐渐减少、极端气温整体自东南向西北逐渐降低。尼洋河河道作为水汽通道,有一定的增温、保温作用,各极端气候指标沿着河道呈现出连续的极值点。副热带高压、青藏高压对尼洋河流域暖湿化的变化起到了正向增强作用,极涡、北大西洋涛动则相反。以坡度为代表的地形因子、以NDVI为代表的下垫面因子分别是影响极端降水、极端气温空间分布的最主要的环境因子,高程对极端降水、气温的空间分布均起到了重要的作用。  相似文献   

3.
近40a来长江流域≥10℃积温的时空变化特征   总被引:3,自引:0,他引:3  
时光训  丁明军 《热带地理》2016,36(4):682-691
基于1970―2013 年长江流域131 个气象站点的日平均气温数据,采用气候倾向率、累积距平、M-K 检验及滑动T 检验等方法分析了该区≥10℃积温的时空变化特征。结果表明:1)突变时间较早的区域主要有嘉陵江流域,中游干流区,太湖流域和下游干流区(1997 年);而岷江、沱江流域,鄱阳湖流域和洞庭湖流域较晚(2001年);长江源头的金沙江流域最晚(2002 年)。2)在区域尺度上,1970 年以来,北亚热带、中亚热带和高原气候区日平均气温≥10℃积温的初日分别以-1.25、-1.39、-0.8 d/10 a 提前,终日分别以1.52、1.43、1.47 d/10 a 推后,持续日数以2.97、2.92、4.62 d/10 a 幅度延长。积温总体上分别以113.5、88.8、77.3℃/10 a 增加。3)≥10℃积温的年际变化存在明显的空间差异,积温增加幅度较大的地区主要集中在汉中―奉节―五峰―吉首―武冈―道县以东的长江中下游地区以及四川盆地、云贵高原、青海高原的个别站点。  相似文献   

4.
刘洪兰  张强  郭俊琴  王胜  张浩文 《中国沙漠》2014,34(6):1633-1640
利用黑河流域13个气象站建站至2012年3—5月降水量资料和黑河莺落峡水文站流量资料,分析了黑河流域春季降水的基本气候特征;通过EOF、REOF、Morlet小波变换等方法,对黑河流域春季降水的时空特性进行了研究;用Mann-Kendall检验法检验黑河流域春季降水序列是否存在突变现象.结果表明:黑河流域春季降水空间分布极不均匀,其空间分布特征是南部为多雨区、北部为少雨区.黑河流域春季降水在第一空间尺度上为全区一致,在第二空间尺度上可分为2个自然气候区,在第三空间尺度上可分为3个自然气候区.从年代际变化来看,21世纪最初10年是近半个世纪来降水最多的10年,20世纪70年代是降水最少的10年;黑河流域春季降水的年际变率十分显著,降水最多的年份是最少年份的6倍多.1961—2012年间河西走廊春季降水发生了明显的突变:2001年出现了一次趋于增多的突变.最显著的周期是4年的短周期、14年和22年的长周期.黑河流域春季各月降水与黑河流量均呈正相关,尤其是春季各月降水滞后1个月的相关和5月份降水的同期相关性显著;春季气温与黑河流量也均呈正相关,特别是春季各月气温的同期相关和3月气温滞后1个月的相关性显著,说明黑河流量的增加取决于前期降水量的增加和同期气候的明显变暖.  相似文献   

5.
1998—2012年黄河流域植被覆盖变化时空分析   总被引:5,自引:0,他引:5  
利用黄河流域1998—2012年SPOT-NDVI数据及同期119个气象站的降水数据,计算每个像元的NDVI变化趋势,并结合植被降水利用效率来分析近15年来黄河流域植被覆盖的时空变化特征。结果表明:(1) 多年平均的植被指数有明显的空间差异性,随着纬度的增加,NDVI平均值呈降低趋势;(2) 从时间序列来看,黄河流域的植被覆盖呈逐年增加趋势,其中黄河上游NDVI值增长最为缓慢,中游保持稳定增长,下游增长最快;(3) 近15年来黄河流域植被覆盖的改善区域面积大于退化区域,植被恢复明显。最后,结合NDVI变化趋势和植被降水利用效率对上述结果进行了验证。  相似文献   

6.
The Yangtze River Watershed in China is a climate change hotspot featuring strong spatial and temporal variability;hence, it poses a certain threat to social development. Identifying the characteristics of and regions vulnerable to climate change is significantly important for formulating adaptive countermeasures. However, with regard to the Yangtze River Watershed, there is currently a lack of research on these aspects from the perspective of natural and anthropogenic factors. To address this issue, in this study, based on the temperature and precipitation records from 717 meteorological stations, the RClim Dex and random forest models were used to assess the spatiotemporal characteristics of climate change and identify mainly the natural and anthropogenic factors influencing climate change hotspots in the Yangtze River Watershed for the period 1958-2017. The results indicated a significant increasing trend in temperature, a trend of wet and dry polarization in the annual precipitation, and that the number of temperature indices with significant variations was 2.8 times greater than that of precipitation indices. Significant differences were also noted in the responses of the climate change characteristics of the sub-basins to anthropogenic and natural factors;the delta plain of the Yangtze River estuary exhibited the most significant climate changes, where 88.89% of the extreme climate indices varied considerably. Furthermore, the characteristics that were similar among the identified hotpots, including human activities(higher Gross Domestic Product and construction land proportions) and natural factors(high altitudes and large proportions of grassland and water bodies), were positively correlated with the rapid climate warming.  相似文献   

7.
1951-2002年长江流域降水特征   总被引:2,自引:0,他引:2  
The monthly, seasonal, and annual precipitation trends in the Yangtze river catchment have been detected through analysis of 51 meteorological stations‘ data between 1950-2002 provided by National Meteorological Administration. Results reveal that: 1) Summer precipitation in the Yangtze river catchment shows significant increasing tendency. The Poyanghu lake basin, Dongtinghu lake basin and Taihu lake basin in the middle and lower reaches are the places showing significant positive trends. Summer precipitation in the middle and lower reaches experienced an abrupt change in the year 1992; 2) The monthly precipitation in months just adjoining to summer shows decreasing tendency in the Yangtze river catchment. The upper and middle reaches in Jialingjiang river basin and Hanshui river basin are the places showing significant negative trends; 3) Extreme precipitation events show an increasing tendency in most places, especially in the middle and lower reaches of the Yangtze river catchment.  相似文献   

8.
The monthly, seasonal, and annual precipitation trends in the Yangtze river catchment have been detected through analysis of 51 meteorological stations' data between 1950-2002 provided by National Meteorological Administration. Results reveal that: 1) Summer precipitation in the Yangtze river catchment shows significant increasing tendency. The Poyanghu lake basin, Dongtinghu lake basin and Taihu lake basin in the middle and lower reaches are the places showing significant positive trends. Summer precipitation in the middle and lower reaches experienced an abrupt change in the year 1992; 2) The monthly precipitation in months just adjoining to summer shows decreasing tendency in the Yangtze river catchment. The upper and middle reaches in Jialingjiang river basin and Hanshui river basin are the places showing significant negative trends; 3) Extreme precipitation events show an increasing tendency in most places, especially in the middle and lower reaches of the Yangtze river catchment.  相似文献   

9.
1960~2014年淮河流域极端气温和降水时空变化特征   总被引:4,自引:1,他引:3  
王怀军  潘莹萍  陈忠升 《地理科学》2017,37(12):1900-1908
基于淮河流域33个气象站点1960~2014年逐日气温和降水数据,利用Mann-Kendall检验和克里金插值法分析了极端气温、降水指数的时空变化规律。结果表明: 近55 a来,冷极值呈显著下降趋势,暖极值表现为波动上升趋势;日较差(DTR)呈显著下降趋势,这与最低气温的增加幅度比最高气温大有关;总降水量(PRCPTOT)和强降水日数(R10,R20)表现为缓慢下降趋势,1 d最大降水量(RX1day)、连续5 d最大降水(RX5day)以及降水强度(SDII)呈缓慢上升趋势,但变化趋势均不显著; 空间变化上来看,霜冻日数(FD0)、冷夜日数(TN10p)、热夜日数(TR20)和暖夜日数(TN90p)在流域大部分地区变化趋势显著,而降水极值在全流域未表现出一致上升或下降趋势,且变化趋势在全流域均不显著; 基于流域当前气象站点数据,极端气温、降水指数变化趋势未表现出高程相依性; 流域大部分极端气温、降水指数变化趋势介于中国南北方流域之间,表现出一定的南北过渡带特色。  相似文献   

10.
黄河流域近50年降水变化趋势分析   总被引:100,自引:5,他引:95  
徐宗学  张楠 《地理研究》2006,25(1):27-34
本文简要分析了黄河流域降水空间分布规律,用非参数检验方法(Mann-Kendall法)对流域内77个气象站近50年的降水资料进行了年月降水序列趋势检验,并用线性回归方法与其进行了比较。结果表明,对于年降水序列,有65个气象台站呈现下降趋势,典型月(包括1月、4月、7月、10月)中4月、7月和10月对年降水下降趋势贡献较大,但其趋势空间分布情况存在差异。对于所有月降水序列,全年45月以及712月降水呈现下降趋势。而其趋势空间分布,黄河上游北纬35°以南地区除79月外其余月份降水呈现增长趋势。渭河上游及呼和浩特地区降水趋势随月份时有变化,流域内其他地区降水则呈减少趋势。对比两种方法,Mann-Kendall方法在冬季(12月至次年2月)的检验结果中无变化趋势气象站数明显多于线性回归方法,且后者估计出的趋势变化幅度略大于Mann-Kendall方法所估计出的结果。  相似文献   

11.
The total precipitation of the highest 1 day, 3 day, 5 day and 7 day precipitation amount (R1D, R3D, R5D and R7D) in the Yangtze River basin was analyzed with the help of linear trend analysis and continuous wavelet transform method. The research results indi-cated that: 1) Spatial distribution of R1D is similar in comparison with that of R3D, R5D and R7D. The Jialingjiang and Hanjiang river basins are dominated by decreasing trend, which is significant at >95% confidence level in Jialingjiang River basin and insignificant at >95% con-fidence level in Hanjiang River basin. The southern part of the Yangtze River basin and the western part of the upper Yangtze River basin are dominated by significant increasing trend of R1D extreme precipitation at >95% confidence level. 2) As for the R3D, R5D and R7D, the western part of the upper Yangtze River basin is dominated by significant increasing trend at >95% confidence level. The eastern part of the upper Yangtze River basin is dominated by decreasing trend, but is insignificant at >95% confidence level. The middle and lower Yangtze River basin is dominated by increasing trend, but insignificant at >95% confidence level. 3) The frequency and intensity of extreme precipitation events are intensified over time. Pre-cipitation anomalies indicated that the southeastern part, southern part and southwestern part of the Yangtze River basin are dominated by positive extreme precipitation anomalies be-tween 1993–2002 and 1961–1992. The research results of this text indicate that the occurrence probability of flash flood is higher in the western part of the upper Yangtze River basin and the middle and lower Yangtze River  相似文献   

12.
中国日降水量小于不同阈值日数时空分布特征   总被引:6,自引:0,他引:6  
廖要明  陈德亮  谢云 《地理学报》2012,67(3):321-336
利用中国672 个站点1951-2010 年的逐日降水资料,系统分析了全国各地日降水量小于0.1 mm、1 mm、5 mm和10 mm不同阈值的日数、平均持续日数、最长持续日数和持续10 天以上过程出现频次等要素的时空分布特征,并分别选择齐齐哈尔、乌鲁木齐、北京、昆明、常德、南京、汕头和海口8 个代表站点,分析了各变量的历史演变趋势。结果表明,全国日降水量小于0.1 mm、1 mm、5 mm和10 mm日数、平均持续日数、平均最长持续日数、极端最长持续日数以及日降水量小于0.1 m持续10 天以上过程发生频次的时空分布特征基本相似,空间上自西北向东南方向递减,时间上冬、秋季多,春、夏季少,这与我国气候干旱的时空分布特点基本一致;而全国日降水量小于1 mm、5 mm和10 mm持续10 天以上过程出现频次的时空分布特征,与我国实际干旱灾害的发生规律基本一致,高值中心出现在华北、黄淮、江淮、江南等地,发生时间集中在春、夏季。全国主要区域代表站点日降水量小于0.1 mm日数、平均持续日数、最长持续日数基本都呈增加趋势,且南方强于北方;日降水量小于1mm、5 mm和10 mm日数、平均持续日数和最长持续日数在西部地区,特别是西北地区表现出较为明显的减少趋势,其中乌鲁木齐日降水量小于5 mm和10 mm平均持续日数线性减少趋势分别达2.0 d/10a 和7.5 d/10a,最长持续日数线性减少趋势分别达9.3 d/10a 和11.8 d/10a,呈现出明显的湿润化趋势。  相似文献   

13.
1961- 2005 年中国霾日气候特征及变化分析   总被引:37,自引:1,他引:36  
高歌 《地理学报》2008,63(7):761-768
利用1961-2005 年中国霾日统计资料, 对中国霾的时空气候分布特征、变化趋势进行了详细分析, 并探讨了霾变化的可能原因及其与太阳总辐射、日照时数变化的关系。结果表明: 近45 年来, 中国年和四季霾日的空间分布特征均呈现东多西少的空间分布态势, 东部地区集中在三个多发区, 分别为长江中下游、华北和华南; 季节变化, 除东北地区、青藏高原、西北西部四季霾日均很少且变化不明显外, 其余大部分地区均呈现为冬季多, 夏季少, 春秋 季居中的特点。近45 年, 全国平均年霾日数呈现明显的增加趋势, 2004 年为最高值。我国东部大部地区主要呈现增加趋势, 尤其霾多发地区, 如长江中下游、珠江流域及河南西部等 地, 霾日增加幅度大, 趋势显著, 人类活动造成的大气污染物增加及天气气候变化是这些地区霾日呈现增加趋势的可能原因, 我国西部地区和东北大部地区则以减少趋势为主。华北、长江中下游地区、华南地区霾日变化趋势与日照时数变化趋势相反, 霾的增加是造成太阳总 辐射减少的主要原因之一。东北地区、西北地区、西南地区、青藏高原霾日变化和日照时数变化均呈现不明显的减少趋势, 但由于这些地区霾日发生少, 其变化不会对日照时数和太阳总辐射变化造成很大的影响。  相似文献   

14.
杨蓉华  李佳佳  贺新光 《热带地理》2022,42(12):2098-2109
基于长江流域148个气象站1980—2017年的蒸发皿观测数据,将旋转经验正交函数(REOF)和模糊C均值聚类(FCM)相结合,对流域蒸发皿蒸发量(PE)进行分区,然后运用Modified Mann-Kendall检验和多元逐步回归等方法,分析各子区域PE的变化特征并识别其主要影响因子。结果表明:1)REOF的前4个空间模态显示流域PE存在5个主要的异常敏感区,基于这4个空间模态,流域PE在空间上可划分为9个子区域。2)在年尺度上,各区PE呈不同程度的增加趋势,其中中部盆地区上升速率最大(111.28 mm/10 a),西部高原区上升速率最小(12.5 mm/10 a);而在季节尺度上,秋、冬季流域PE呈显著上升趋势,春、夏季PE的变化具有明显的区域差异性,部分地区PE为下降趋势。3)影响PE变化的主要因子因地而异,但大多子区域的PE变化与平均气温和饱和水汽压差的变化显著相关。  相似文献   

15.
The seasonal variability and spatial distribution of precipitation are the main cause of flood and drought events. The study of spatial distribution and temporal trend of precipitation in river basins has been paid more and more attention. However, in China, the precipitation data are measured by weather stations (WS) of China Meteorological Administration and hydrological rain gauges (RG) of national and local hydrology bureau. The WS data usually have long record with fewer stations, while the RG data usually have short record with more stations. The consistency and correlation of these two data sets have not been well understood. In this paper, the precipitation data from 30 weather stations for 1958–2007 and 248 rain gauges for 1995–2004 in the Haihe River basin are examined and compared using linear regression, 5-year moving average, Mann-Kendall trend analysis, Kolmogorov-Smirnov test, Z test and F test methods. The results show that the annual precipitation from both WS and RG records are normally distributed with minor difference in the mean value and variance. It is statistically feasible to extend the precipitation of RG by WS data sets. Using the extended precipitation data, the detailed spatial distribution of the annual and seasonal precipitation amounts as well as their temporal trends are calculated and mapped. The various distribution maps produced in the study show that for the whole basin the precipitation of 1958–2007 has been decreasing except for spring season. The decline trend is significant in summer, and this trend is stronger after the 1980s. The annual and seasonal precipitation amounts and changing trends are different in different regions and seasons. The precipitation is decreasing from south to north, from coastal zone to inland area.  相似文献   

16.
2000-2015年石羊河流域植被覆盖度及其对气候变化的响应   总被引:1,自引:1,他引:0  
李丽丽  王大为  韩涛 《中国沙漠》2018,38(5):1108-1118
内陆河流域植被覆盖度的敏感性是预测未来生物多样性变化的重要指标,是植被应对气候变暖的重要反馈。分析了2000-2015年MODIS-NDVI数据反演的植被覆盖度时空动态变化趋势,结合平均气温、降水量、日照时数、相对湿度、地面温度和蒸发量数据,研究了流域及各生态功能区的植被覆盖度与气候因子的相关性,探讨植被覆盖度变化过程中的气候因素制约方式,了解不同时空尺度下内陆河流域植被覆盖度在全球暖湿化过程中对气候的响应。结果表明:(1)石羊河流域平均植被覆盖度较低,上游的植被覆盖度59.4%,下游13.6%;2000-2015年,流域植被呈现改善趋势的面积远远大于退化的面积,盆地绿洲区植被覆盖度增加趋势最明显。流域植被总体恢复较好,但高海拔地区、城市和民勤绿洲的周边地区植被有不同程度的退化。(2)2000-2015年,石羊河流域各气候因子对植被覆盖度表现为不显著的相关关系,其中与降水量呈正相关的面积最大,与蒸发量呈负相关的面积最大;从上游到下游,植被生长与热量的相关程度逐渐变弱,与水分的相关程度则逐渐增强。(3)石羊河流域的植被覆盖度与气候因子的样条函数存在极显著的线性相关,水原涵养区和荒漠区的植被覆盖度对气候因子的响应较高;绿洲区的植被覆盖度对气候因子的响应相对较低。地面温度的变化是影响石羊河流域植被覆盖度空间格局变化的主要气候制约因素。  相似文献   

17.
In this paper, the monthly precipitation and temperature data collected at 7 stations in the Ili River Basin from 1961 to 2007 were analyzed by means of simple regression analysis, running mean, db6 wavelet function and Mann-Kendall test. This study revealed the characteristics of climate change and abrupt change points of precipitation and temperature during different time scales in the Ili River Basin within the past 50 years. The results showed that the precipitation increased from the mid-1980s until 2000 and has continued to increase at a smaller magnitude since 2000. Over the studied period, the precipitation increased significantly during the summer and winter months. The temperature increased greatly in the late 1980s, and has continued to show an increasing trend from the year 2000 to present. The temperature increases were most significant during the summer, autumn and winter months. In terms of different geographies, the temperature increase was significant during the winter in the plains and hilly regions; the increase was also significant during autumn in the intermontane basins. The climate change trends in the Ili River Basin were consistent with the changing trends of the North Atlantic Oscillation and the plateau monsoon.  相似文献   

18.
新疆伊犁河流域气候变化(英文)   总被引:3,自引:0,他引:3  
In this paper, the monthly precipitation and temperature data collected at 7 stations in the Ili River Basin from 1961 to 2007 were analyzed by means of simple regression analysis, running mean, db6 wavelet function and Mann-Kendall test. This study revealed the characteristics of climate change and abrupt change points of precipitation and temperature during different time scales in the Ili River Basin within the past 50 years. The results showed that the precipitation increased from the mid-1980s until 2000 and has continued to increase at a smaller magnitude since 2000. Over the studied period, the precipitation increased significantly during the summer and winter months. The temperature increased greatly in the late 1980s, and has continued to show an increasing trend from the year 2000 to present. The temperature increases were most significant during the summer, autumn and winter months. In terms of different geographies, the temperature increase was significant during the winter in the plains and hilly regions; the increase was also significant during autumn in the intermontane basins. The climate change trends in the Ili River Basin were consistent with the changing trends of the North Atlantic Oscillation and the plateau monsoon.  相似文献   

19.
石羊河流域1961-2005年蒸发皿蒸发量变化趋势及原因初探   总被引:4,自引:0,他引:4  
 利用1961—2005年石羊河流域上、中、下游当地气象站的逐月20 cm口径蒸发皿蒸发量、平均气温、平均相对湿度、降水量、平均风速、日照时数、最高气温和最低气温资料,研究了近45 a石羊河流域蒸发皿蒸发量变化趋势及原因。结果表明,45 a来,石羊河流域及上、下游年蒸发皿蒸发量呈上升趋势,中游年蒸发皿蒸发量呈下降趋势,上游上升趋势最明显。四季中,春、秋、冬季蒸发皿蒸发量呈上升趋势,上升最明显的是冬季,其次为秋季,春季变化不明显,夏季蒸发皿蒸发量变化呈下降趋势。石羊河流域在不同时段不同区域年蒸发皿蒸发量都存在明显的6~7 a周期和1~2 a的短周期,并都发生了突变。相关系数法分析表明,影响石羊河流域及中、下游年蒸发皿蒸发量变化的主要影响因子是相对湿度和降水,上游的主要影响因子是相对湿度和气温。四季中,春季的主要影响因子是相对湿度和降水;夏季影响石羊河流域及上、中蒸发皿蒸发量变化的主要因子是相对湿度和气温,下游的主要影响因子是相对湿度和降水;秋季影响石羊河流域及中、下游蒸发皿蒸发量变化的主要影响因子是相对湿度和气温日较差,上游其主要影响因子是相对湿度和降水;冬季的主要影响因子是气温和相对湿度。影响年以及春、夏、秋最显著的因子是相对湿度,冬季最显著的影响因子是气温。  相似文献   

20.
The spatial distribution patterns of climatic changes in Yakutia are considered. For 26 meteorological stations of Yakutia we calculated the linear trend coefficients of climatic characteristics: air temperature (mean annual, January and July temperatures) and the mean annual amount of atmospheric precipitation from 1966 to 2016. Maps of climate change trends were compiled from linear trend coefficients. A spatial analysis of the zonal (regional) peculiarities of the climate of Yakutia has been carried out. An increase in air temperature was established for the 50-year period under consideration. It was found that the annual values of the air temperature trend are positive and, on average, a characteristic trend change interval is 0.3 to 0.6 °C/10 yr. Most of the meteorological stations recorded trends of air temperature with maximum values in winter and minimum values in summer. It was determined that the values of the trends in annual precipitation show different directions, and positive trends occur on more than 70% of the territory of Yakutia. Their maximum corresponds to the mountain-taiga regions of Southern Yakutia. Negative trends in precipitation with values of up to–15 mm/10 yr. are observed in tundra landscapes. The findings show that different regions of Yakutia respond differently to climate change. The trend of an increase in mean annual temperature is largely due to the rise in temperatures during the winter months. The rise in air temperature in Yakutia may be part of global warming. Over the last 50 years there has been an increase in the amount of precipitation in Yakutia as a whole.  相似文献   

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