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1.
利用1974—2015年河北邯郸地区16个观测站逐日降水与最高、最低气温资料,分析了邯郸地区极端降水指数的时空变化特征,探讨了极端降水对年降水量和气温的响应关系。结果表明:近42 a来,河北邯郸地区极端降水指数中除中雨日数呈轻微上升趋势、大雨日数及连续湿日整体无明显变化趋势外,其他指数均呈下降趋势,其中最大1 d降水量、最大5 d降水量、极强降水量下降趋势显著,且分别于2004、1992、2006年发生显著突变。各极端降水指数的变化幅度区域性差异明显,极值指数以邱县、曲周县减少最显著,绝对指数以峰峰矿区减少最显著,而相对指数则以曲周县减少最显著。除连续干旱日数呈微弱的负相关外,其他极端降水指数与年降水量呈显著正相关;除最低气温与中雨日数、连续湿日呈微弱正相关外,最高、最低气温与极端降水指数均呈负相关,极端降水对最高气温的响应比最低气温更敏感。  相似文献   

2.
中国降水极值变化趋势检测   总被引:215,自引:9,他引:206  
翟盘茂  任福民  张强 《气象学报》1999,57(2):208-216
利用中国296个分布均匀的测站的逐日降水资料,研究了中国过去45a中降水量、降水频率、降水强度等方面的极值变化趋势。结果表明,总体上讲,中国年降水量、1日和3日最大降水量以及不同级别的强降水总量没有发现明显的极端化倾向,但伴随着降水日数极端偏多的区域范围越来越小的变化趋势,平均降水强度极端偏高的区域范围表现为扩大的趋势。中国降水极值变化还反映出明显的区域性特点。在中国东部,平均降水强度极值出现的范围趋于扩大。如华北地区在年降水量明显趋于减少的同时,年降水量极端偏多的范围减少,1日和3日最大降水量、日降水≥50mm和100mm的暴雨日数极端偏多的情况也趋于减少,而平均降水强度极值显著增加。在年降水明显趋于增多的西北西部地区,降水日数的极值变化趋势不明显,但年降水量、1日和3日最大降水量以及日降水≥10mm的降水总量极端偏多的区域范围均反映出趋于增加的变化趋势。  相似文献   

3.
西南地区极端降水变化趋势   总被引:7,自引:3,他引:4  
利用西南地区90个气象台站1970-2010年逐日降水量资料,依据世界气象组织(WMO)定义的连续5d最大降水量、总降水量、强降水比等6种极端降水指数,采用F检验、11a滑动平均等统计方法,研究了西南地区极端强降水变化趋势的时空变化特征。在时间上,西南地区近41年来冬、春、夏季连续5d最大降水量缓慢波动上升,秋季连续5d最大降水量呈下降趋势;强降水、降水强度及强降水比呈上升趋势,但总降水量和最长持续无降水日数呈减少趋势;另外,各极端降水指数还存在明显的年际、年代际变化。在空间上,西南地区极端降水变化趋势具有显著的地域差异,呈东西或西北东南向梯度变化特征。其中冬季连续5d最大降水量、降水强度、强降水比及最长持续无降水日数,在西南大部分地区呈增加趋势。秋季连续5d最大降水量与总降水量在西南大部分地区呈减少趋势。而春、夏季连续5d最大降水量和强降水的增减区域大致相当。  相似文献   

4.
近40年华南前汛期极端降水时空演变特征   总被引:13,自引:1,他引:13  
利用国家气象信息中心提供的华南89个代表站1969~2008年逐日降水资料,研究了近40年我国华南前汛期(4~6月)极端降水时空演变特征,主要结论是:(1)华南前汛期降水强度、强降水量和暴雨日数的空间分布与总降水量的空间分布基本一致;(2)极端降水指数随时间的变化对华南整个区域前汛期总降水量的变化有很好的指示意义,特别是强降水量、强降水频率和暴雨日数;90年代以来华南前汛期总降水量的显著增加与强降水量、强降水频率以及暴雨日数显著增加密切相关,且极端强降水量异常程度明显增强。  相似文献   

5.
利用内蒙古东部48个国家气象观测站1961—2017年逐日降水量资料,对内蒙古东部夏季降水变化特征进行分析。结果表明,57a来内蒙古东部平均夏季降水量增减趋势并不显著,1998年之后降水量处于偏少时期;88%的站点降水减少,其中仅兴安盟高力板和赤峰市翁牛特旗减少趋势显著;夏季降水量空间分布不均匀,特别是呼伦贝尔市降水量等值线受大兴安岭山脉影响呈径向分布;雨季结束日期提前的变化趋势显著,雨季雨量在1998年之后明显减小;降水量历史极值和极端降水阈值呼伦贝尔市西部最小,大值区在通辽市南部、赤峰市东南部;大部分单站超阈值极端降水事件日数较少,仅通辽市东部及赤峰市中部较多;超阈值极端降水事件总日数增减趋势不显著,1998年之前呈显著的增加趋势,1998年之后明显减小。  相似文献   

6.
利用辽宁 51个台站的逐日降水资料 ,分别计算出 1961~2002年 51个台站的年降水量、年降水日数、年平均降水强度、年暴雨日数、年大暴雨日数、年最大连续降水量、年最长连续降水日数、年最长连续无降水日数的 8个时间序列 ,用极值法对上述时间序列极端偏多 (大)和极端偏少 (小) 2种极端情况的年际变化进行分析。结果表明 :辽宁年降水量极端偏小、降水日数极端偏少和连续无降水日数极端偏多均有增加的年际变化趋势。  相似文献   

7.
1981~2010年北京地区极端降水变化特征   总被引:6,自引:1,他引:5  
采用北京地区20个常规气象站1981~2010年逐日降水数据,对北京地区极端降水的空间分布特征进行了分析。得到以下主要结论:1981~2010年,北京地区极端降水百分位数(第90、95和99个百分位数)阈值表现出较一致的空间分布特征,以第95个百分位数阈值计算的极端降水日数与降水阈值和降水量的分布有较大差异,极端降水量对总降水量的贡献可达30%~37%,极端降水强度分布与极端降水阈值分布相似。近30年,北京地区多数站点的极端降水量、降水日数和降水强度呈下降趋势,极端降水量以上甸子、怀柔、平谷和观象台下降较为明显,可达到40 mm(10 a)–1以上,极端降水强度以顺义、海淀、观象台、大兴和上甸子等站下降较为显著,每10 a降水强度减小趋势可达4 mm d–1,极端降水日数变化分布与极端降水量变化分布类似,极端降水强度变化与降水量和降水日数变化的分布有明显不同。  相似文献   

8.
近42年辽宁极端降水事件分析   总被引:3,自引:0,他引:3  
利用辽宁51个台站的逐日降水资料,分别计算出1961~2002年51个台站的年降水量、年降水日数、年平均降水强度、年暴雨日数、年大暴雨日数、年最大连续降水量、年最长连续降水日数、年最长连续无降水日数的8个时间序列,用极值法对上述时间序列极端偏多(大)和极端偏少(小)2种极端情况的年际变化进行分析。结果表明:辽宁年降水量极端偏小、降水日数极端偏少和连续无降水日数极端偏多均有增加的年际变化趋势。  相似文献   

9.
近45年来河北省极端降水事件的变化研究   总被引:7,自引:1,他引:6  
高霞  王宏  于成文  戴新刚  史丽红 《气象》2009,35(7):10-15
利用河北省1961-2005年逐日降水资料,采用通用的极端气候指数,分析了近45年河北省极端降水事件频率变化的时空特征.结果表明,全省平均年最大日降水量呈下降趋势,1980年为由多向少的转折点;强降水日数和暴雨日数变化不大,但南部平原地区一般减少,北部山地区域多有增加,暴雨日数和强度在1990年代中后期显著增加;降水日数有较明显减少,南部和东南部平原减少更显著;降水日数的减少主要是中、小雨(雪)日数减少造成的.这些结果说明,河北省强降水日数和暴雨日数在降水日数中的比重有增大趋势,强降水量和暴雨降水量在总降水量中的比重可能增加了.这种相对增加趋势主要发生在1990年代中期以后.  相似文献   

10.
1918—2010年天津降水指数变化特征   总被引:5,自引:0,他引:5       下载免费PDF全文
利用天津1918—2010年逐日降水资料,分析了天津7个降水指数的长期变化趋势。结果发现:天津年降水量和降水日数年际差异较大,没有显著的趋势性变化。从1980年开始天津降水量和日数开始变小(少),方差也变小,四季中秋季降水量呈显著的增加趋势,夏季呈减少趋势,冬、春季变化较小。各极端降水指数中,均表现为线性趋势不明显,年际变化较大,20世纪90年代以来降水强度偏小,但呈缓慢的增加趋势,大雨日数也处于偏少阶段,大雨贡献率偏小,并呈减小趋势。四季中秋季连续5 d最大降水量呈显著的增加趋势,减少了秋季干旱的发生,最长连续无降水日数多发生在冬春季,近年来有增加的趋势。  相似文献   

11.
东北地区降水日数、强度和持续时间的年代际变化   总被引:20,自引:4,他引:20       下载免费PDF全文
利用93站1951—2002年逐日降水资料,分析了东北地区不同强度降水事件的时空演变特征及其对旱涝的影响。结果表明:52年来,东北地区小雨事件对年降水量的贡献率呈显著增加趋势,中雨的贡献率略为减少,大雨和暴雨的贡献率变化不大;东北年总雨日减少趋势非常明显,雨日的减少主要体现在小雨日数的减少;年降水强度表现为明显的增强趋势,主要体现为小雨和暴雨强度增强;20世纪80年代中期之前多小雨事件,80年代中期之后多中雨以上强度的降水,特别是90年代中期之后多暴雨事件。在显著变暖的20世纪90年代,降水日数明显减少,但暴雨日数基本不变,强度明显增强。对东北地区降水量、降水变幅、降水事件的变化特征分析表明:该区域降水有向不均衡、极端化发展的趋势,旱涝灾害也有加重趋势。  相似文献   

12.
Based on daily precipitation records at 75 meteorological stations in Hunan Province, central south China, the spatial and temporal variability of precipitation indices is analyzed during 1961–2010. For precipitation extremes, most of precipitation indices suggest that both the amount and the intensity of extreme precipitation are increasing, especially the mean precipitation amount on a wet day, showing a significant positive trend. Meanwhile, both of the monthly rainfall heterogeneity and the contribution of the days with the greatest rainfall show an upward trend. When it comes to rainfall erosivity, most of this province is characterized by high values of annual rainfall erosivity. Although the directions of trends in annual rainfall erosivity at most stations are upward, only 6 of the 75 stations have significant trends. Furthermore, the spatial and temporal variation of dryness/wetness has been assessed by the standardized precipitation index (SPI). The principal component analysis (PCA) was applied to the SPI series computed on 24-month time scales. The results demonstrated a noticeable spatial variability with three subregions characterized by different trends: a remarkable wet tendency prevails in the central and southern areas, while the northern areas are dominated by a remarkable dry tendency.  相似文献   

13.
1956-2007年河南省降水和水资源变化及评估   总被引:2,自引:0,他引:2       下载免费PDF全文
利用河南省103个气象站的降水量和各省辖市的水资源资料,分析了河南省1956-2007年降水和水资源变化特点,对降水资源量和水资源量进行了丰枯评估;分别采用线性相关法和产水系数法以降水量估算水资源量,并对估算效果进行了对比分析。结果表明:1) 52年来河南省年降水资源量呈不明显的减少趋势,减少速率为2.32亿m3/10a;省内不同区域降水资源量的变化趋势不太一致,豫北、豫西和豫中为减少趋势,豫东、豫西南和豫南呈不同程度的增加趋势。2) 52年来全省水资源总量呈减少趋势,减少速率为10.85亿m3/10a,大于降水资源量的减少速率,省内各区域水资源量均呈弱减少趋势,减少速率为豫西最大,豫北次之,豫中最少;全省水资源总量的年代际变化特点与降水资源量基本一致。3) 水资源总量与降水量关系密切,用年降水量估算水资源总量,平均相对误差为10%~22%;将线性相关法和产水系数法两种估算模式分别用于不同丰枯程度年景的估算,可减小估算误差。  相似文献   

14.
利用山西省61个气象站点逐日最高温度、最低温度资料,采用百分位值定义法、Mann原Kendall突变检验法和Morlet小波变换等方法,分析了山西省近50 a极端温度事件年均发生频率的时空特征,结果表明:1961年以来,山西省极端高温事件年均发生频率呈显著增加趋势,趋势为6.1 d/10 a,与此同时,极端低温事件年均发生频率呈显著减少趋势,且极端气温事件的变化存在明显的区域差异;极端高温和极端低温年均发生频率均发生了突变现象,变化趋势均在20世纪90年代以来更加显著;极端高温和极端低温事件年均发生频率均呈显著波动变化,在整个研究期间极端高温存在5~6a、4~8a显著周期,极端低温存在4~5a显著周期。  相似文献   

15.
Spatial patterns of daily precipitation indices and their temporal trends over Iran are investigated using the APHRODITE gridded daily precipitation dataset for the period 1961–2004. The performance and limitations of the gridded dataset are checked against observations at ten rain-gauge stations that are representative of different climates in Iran. Results suggest that the spatial patterns of the indices reflect the role of orography and sea neighborhoods in differentiating central-southern arid and semi-arid regions from northern and western mountainous humid areas. It is also found that western Iran is impacted by the most extreme daily precipitation events occurring in the country, though the number of rainy days has its maximum in the Caspian Sea region. The time series of precipitation indices is checked for long-term trends using the least squares method and Mann-Kendall test. The maximum daily precipitation per year shows upward trends in most of Iran, though being statistically significant only in western regions. In the same regions, upward trends are also observed in the number of wet days and in the accumulated precipitation and intensity during wet days. Conversely, the contribution of precipitation events below the 75th percentile to the annual total precipitation is decreasing with time, suggesting that extreme events are responsible for the upward trend observed in the total annual precipitation and in the other indices. This tendency towards more severe/extreme precipitation events, if confirmed by other datasets and further analyses with longer records, would require the implementation of adequate water resources management plans in western Iran aimed at mitigating the increasing risk of intense precipitation and associated flash floods and soil erosion.  相似文献   

16.
In this study, satellite-based daily precipitation estimation data from precipitation estimation from remotely sensed information using artificial neural networks (PERSIANN)-climate data record (CDR) are being evaluated in Iran. This dataset (0.25°, daily), which covers over three decades of continuous observation beginning in 1983, is evaluated using rain-gauge data for the period of 1998–2007. In addition to categorical statistics and mean annual amount and number of rainy days, ten standard extreme indices were calculated to observe the behavior of daily extremes. The results show that PERSIANN-CDR exhibits reasonable performance associated with the probability of detection and false-alarm ratio, but it overestimates precipitation in the area. Although PERSIANN-CDR mostly underestimates extreme indices, it shows relatively high correlations (between 0.6316–0.7797) for intensity indices. PERSIANN-CDR data are also used to calculate the trend in annual amounts of precipitation, the number of rainy days, and precipitation extremes over Iran covering the period of 1983–2012. Our analysis shows that, although annual precipitation decreased in the western and eastern regions of Iran, the annual number of rainy days increased in the northern and northwestern areas. Statistically significant negative trends are identified in the 90th percentile daily precipitation, as well as the mean daily precipitation from wet days in the northern part of the study area. The positive trends of the maximum annual number of consecutive dry days in the eastern regions indicate that the dry periods became longer in these arid areas.  相似文献   

17.
本文基于1979~2016年西南地区25个站点的逐日降水资料分析了西南地区夏季降水和持续性降水的变化特征,得到的结论如下:(1)西南地区夏季降水总天数总体呈减少趋势,无雨时段平均持续天数总体呈增加趋势,有雨时段平均持续天数仅川内呈增加趋势。(2)长、短持续性降水平均持续天数均呈减少趋势,其中长持续性降水平均持续天数减少趋势显著。各站长、短持续降水事件的总降水天数占持续性降水总天数的比例呈南北反向的变化趋势,长(短)持续降水事件的总天数占持续性降水总天数的比例呈北增(减)南减(增)。(3)长、短持续性降水异常年差值合成环流的相似之处:在对流层低层,我国东南部存在气旋性环流异常,与我国北方反气旋性环流在西南地区产生辐合。垂直速度场均为负异常(< -0.015Pa/s)-上升运动。上述结论可为气象灾害预测、预警提供线索。   相似文献   

18.
The spatial–temporal variability of the precipitation extremes defined by eight precipitation indices based on daily precipitation dataset was analyzed using the linear regression method and the Mann–Kendall test. The results indicate that increasing trends in the precipitation amount, rainy days, and the intensity of the extreme precipitation were identified at above 70 % of the total rain stations considered in this study, with more than 30 % of them were significant, while most stations show notable decreasing trend in the annual maximum consecutive no-rain days. Significantly increasing trends of the precipitation extremes are observed mainly in the northern Xinjiang and the north of the southern Xinjiang. Most extreme precipitation indices show a potential regime shift starting from the middle of 1980s. The magnitude of the trends is compatible with their pattern of spatial stability. The generally increasing trends in precipitation extremes are found in this study.  相似文献   

19.
Regional trends in recent precipitation indices in China   总被引:20,自引:0,他引:20  
Summary Regional characteristics of recent precipitation indices in China were analyzed from a daily rainfall dataset based on 494 stations during 1961 to 2000. Some indices such as precipitation percentiles, precipitation intensity, and precipitation persistence were used and their inter-decadal differences were shown in this study. Over the last 40 years, precipitation indices in China showed increasing and decreasing trends separated into three main regions. A decreasing trend of annual precipitation and summer precipitation was observed from the southern part of northeast China to the mid-low Yellow River valley and the upper Yangtze River valley. This region also showed a decreasing trend in precipitation intensity and a decreasing trend in the frequency of persistent wet days. On the other hand, increasing trends in precipitation intensity were found in the Xinjiang region (northwest China), the northern part of northeast China, and southeast China, mainly to the south of the mid-low Yangtze River. The indices of persistent wet days and strong rainfall have contributed to the increasing frequency of floods in southeast China and the Xinjiang region in the last two decades. Persistent dry days and weakening rainfall have resulted in the increasing frequency of drought along the Yellow River valley including North China. Regional precipitation characteristics and trends in precipitation indices indicate the climate state variations in the last four decades. A warm-wet climate state was found in northwest China and in the northern part of northeast China. A warm-dry climate state extends from the southern part of northeast China to the Yellow River valley, while a cool-wet summer was found in southeast China, particularly in the mid-low Yangtze River valley over the last two decades.  相似文献   

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