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1.
长江流域极端强降水分布特征的统计拟合   总被引:10,自引:5,他引:5  
苏布达  姜彤  董文杰 《气象科学》2008,28(6):625-629
基于长江流域147个气象站1960-2005年最大值降水序列(AM)与超门限峰值降水序列(POT),选取4大类20种分布函数,采用极大似然法和线性矩法估算了参数,经柯尔莫洛夫-斯米尔诺夫检验,确定了降水极值的最优概率模型.对AM与POT两套极端强降水序列的频率分析均表明,Wakeby分布函数能够较好的拟合长江流域降水极值的概率分布.同时指出了降水极值的拟合存在的不确定性.  相似文献   

2.
利用区域气候模式WRF对2003年夏季长江三角洲极端区域气候进行高分辨率模拟,通过与站点观测降水、TRMM反演降水的对比分析表明,模式较合理地模拟出2003年夏季长江三角洲降水的主要特征,模拟的夏季各月平均降水量和强降水中心位置及降水强度都与实况较接近;模拟和观测的江淮流域、长江流域及浙江南部的区域平均逐日降水序列的相关系数较高;模拟出小雨、中雨和暴雨三类不同等级的降水概率特征,对暴雨概率分布的模拟结果最好;还模拟出长江三角洲梅雨期的多次中尺度强暴雨事件,模拟的暴雨发生时间和发生区域及雨带南移、北跳与实况都很接近,但降水量略有偏差。模式合理模拟出2003年夏季高温天气较多以及受多次强降水冷却效应引起长江以南、以北地区温差较大的区域气候特征,模拟的最低、最高气温的空间分布及极大值中心与观测都较接近,最低气温模拟结果更好;还非常好地模拟出了区域平均的逐日最高、最低气温的时间演变特征,比降水更接近观测,并具有更高的时间相关系数。   相似文献   

3.
通过对1961—2010年中国540个气象站逐日降水观测数据和高精度区域气候模式CCLM(COSMO model in climate mode)3839个格点模拟值的对比,检验CCLM模式对中国日降水的模拟能力,揭示了1961—2010年日降水分布格局的变化特征;同时利用CCLM模式对中国地区2011—2050年的日降水预估值(SRES-A1B情景),运用概率统计和极值理论方法,分析了2011—2050年日降水序列及其极值的可能变化趋势。结果表明:除华南和青藏高原西部存在着较大的偏差以外,模式和观测日降水序列的峰度和偏度的分布格局较一致,空间相关系数达到0.75以上,CCLM能够很好地模拟中国日降水的分布特征。2011—2050年,峰度和偏度在江淮部分地区、东北与内蒙中东部等地区呈显著增加趋势,降水极端事件将会增多;最大日降水量和汛期最多无降水日数在上述地区的增加,进一步反映干旱和洪涝出现概率将升高。  相似文献   

4.
本文用Markov链、Polya分布等理论模式研究了西安近60年逐日降水序列干、湿日概率分布规律,得出西安逐日降水的气候概率,干、湿日演变的概率分布。以逐日降水气候概率为背景,用信息论方法对逐日降水天气信息做了研究。得到同一预报方法对不同气候背景的逐日降水天气做预报,所得的实际天气信息是不同的。  相似文献   

5.
中国20年一遇气温和降水极值变化的高分辨率模拟   总被引:1,自引:0,他引:1  
基于25 km高分辨率区域气候模式(RegCM3)嵌套MIROC3.2_hires全球气候模式结果,进行IPCC SRES A1B情景下21世纪气候变化的模拟,分析中国区域未来气温和降水极值重现期的变化。首先检验模式对当代(1981-2000年)极端事件重现期的模拟能力,结果表明,模式能够较好地再现中国地区20年一遇极端事件的基本分布型,但所模拟的数值与观测相比还有一定偏差,特别是在极端降水方面。21世纪中期(2041-2060年)和末期(2081-2100年)20年一遇的高温极值在整个区域内均将升高,东北地区增幅最大;低温极值将增大,中心位于内蒙古、新疆及青藏高原南麓;降水极值也将普遍增大。气温和降水极值在21世纪末期的增加幅度均比中期要大。在未来全球变暖背景下,中国地区极端高温事件将明显增多,面积增大;极端低温事件将大幅度减少,面积减少;强降水事件也将增多,面积不断扩大。  相似文献   

6.
利用锦州地区的逐日降水量观测资料对逐日降水量的概率分布进行了统计分析,采用最大似然估计法得到Gamma函数分布的形状参数α和尺度参数β,通过Gamma概率分布模拟观测站点逐日降水的概率分布。结果表明:锦州地区逐日降水频率整体趋势先上升后下降,基本呈对称式分布,降水概率有一定的振荡,个别日会出现远超相邻日期的降水频率,7月21日降水频率最高,在不计微量降水的情况下,最低逐日降水概率有多个日期为0。各季降水频率偏低是造成义县地区干旱的原因之一;北镇夏季平均降水频率最低,但其夏季平均降水量却为锦州地区最高,说明北镇可能易出现较大量级降水或易出现极端降水天气。清明期间降水频率在50%以上、高考期间降水频率在80%以上,符合大众日常对特殊日期降水情况的认知;逐日降水频率可以为公众气象服务提供新的思路。凌海、北镇更容易出现极端降水天气;锦州地区日降水出现小雨天气概率最高,暴雨以上降水概率较低,锦州地区各站极少出现大暴雨以上量级降水,对锦州降水量级预报,尤其是暴雨或大暴雨以上降水量级的预报起到一定的指示作用。  相似文献   

7.
未来极端降水对气候平均变暖敏感性的蒙特卡罗模拟试验   总被引:6,自引:1,他引:5  
江志红  丁裕国  蔡敏 《气象学报》2009,67(2):272-279
利用Weibull分布拟合逐日降水的原始分布模式,并基于统计降尺度和蒙特卡罗随机模拟方法,对中国东部区域各站逐日极端降水量在未来气候变暖条件下的响应特征进行统计数值试验.结果表明,在全球变暖背景下,区域平均温度的改变即可导致区域极端降水概率分布特征的变动.从两个典型代表区域的预估结果中可见,长江中下游南部平均降水量对平均温度升高有正响应,模拟得到的区域极端降水概率分布曲线有明显的向右平移,导致大量级的极端降水的再现期缩短即概率增大.山东及渤海湾区域平均降水量对平均温度升高有负响应,模拟得到的区域极端降水概率密度分布尺度参数变小更明显,即方差增大,表现为左右两侧概率密度增加,同样导致大量级的极端降水再现期缩短即概率增大.本文仅考察了气候均值改变条件下,未来区域气候极端值的概率预估的可行性方案.对于未来气候方差的变化并未作试验,但理论上已经证明,未来气候极端值的概率对于气候方差变化的敏感性可能更大.由于目前尚未整卵出考察方差变化的较为完整的实际观测资料,该问题还有待进一步深入研究.  相似文献   

8.
江苏省最大日降水量时空分布特征及其统计拟合   总被引:1,自引:2,他引:1  
肖卉  姜爱军  沈瑱  彭海燕 《气象科学》2006,26(2):177-182
本文根据江苏省内60个观测站1961~2000年的逐日降水资料,分析省域日最大降水的空间分布特征及年度变化,建立了省内日最大降水的概率分布模式,从而推算分析出现大降水的概率。研究结果表明皮尔逊Ⅲ型概率分布模式能够较好的拟合大暴雨的分布特征。  相似文献   

9.
利用广义帕雷托分布拟合中国东部日极端降水的试验   总被引:12,自引:2,他引:10       下载免费PDF全文
引进广义帕雷托分布拟合我国东部地区78个测站夏季(5~9月)逐日极端降水量.结果表明,不同门限值条件下的逐日降水量所拟合的降水极值概率分布均符合广义帕雷托分布,与其它极值分布如广义极值(下称GEV)分布模式相比,以GPD模式为最优.根据现代气候条件,分别计算了50年一遇和100年一遇的极端降水量分位数并分析其空间分布特征,两者基本一致,总体上都呈现出由东南向西北方减小的趋势,且南北差异较大,南方的极端降水量值可能达到北方地区的两倍以上.此外,资料年份越长,拟合效果越好.  相似文献   

10.
选择适宜的极值分布模型有助于提高极值序列再现期极值的准确度。基于1981—2010年湖南省97个地面气象观测站逐时降水观测资料,构建逐站年和季1 h、3 h、12 h最大降水量序列,运用Pearson-Ⅲ型、Gumbel、对数正态、Cauchy和Weibull 5种分布函数对湖南省3种短历时最大降水量序列进行极值分布拟合。结果表明:1981—2010年湖南省中北部地区3种短历时降水极值分布符合Gumbel分布模型,Weibull分布次之;湖南省南部地区3种短历时降水极值分布则仅符合Gumbel分布模型。在此基础上,应用Gumbel分布模型估算湖南省各站重现期为百年的降水极值,结果表明1 h、3 h、12 h的年降水极值高值中心分别位于湘东南地区、湖南省西部地区和湘西北地区;各季降水极值中心与年极值中心略有不同。  相似文献   

11.
 Based on the daily observational precipitation data of 147 stations in the Yangtze River basin for 1960-2005, and the projected daily data of 79 grids from ECHAM5/MPI-OM in the 20th century, time series of precipitation extremes which contain annual maximum (AM) and Munger index (MI) were constructed. The distribution feature of precipitation extremes was analyzed based on the two index series. Research results show that (1) the intensity and probability of extreme heavy precipitation are higher in the middle Mintuo River sub-catchment, the Dongting Lake area, the mid-lower main stream section of the Yangtze River, and the southeastern Poyang Lake sub-catchment; whereas, the intensity and probability of drought events are higher in the mid-lower Jinsha River sub-catchment and the Jialing River sub-catchment; (2) compared with observational data, the averaged value of AM is higher but the deviation coefficient is lower in projected data, and the center of precipitation extremes moves northwards; (3) in spite of certain differences in the spatial distributions of observed and projected precipitation extremes, by applying General Extreme Value (GEV) and Wakeby (WAK) models with the method of L-Moment Estimator (LME) to the precipitation extremes, it is proved that WAK can simulate the probability distribution of precipitation extremes calculated from both observed and projected data quite well. The WAK could be an important function for estimating the precipitation extreme events in the Yangtze River basin under future climatic scenarios.  相似文献   

12.
1960-2005年长江流域降水极值概率分布特征   总被引:1,自引:1,他引:0  
Based on the daily observational precipitation data of 147 stations in the Yangtze River basin for 1960-2005,and the projected daily data of 79 grids from ECHAM5/MPI-OM in the 20th century,time series of precipitation extremes which contain annual maximum(AM)and Munger index(MI)were constructed.The distribution feature of precipitation extremes was analyzed based on the two index series.Research results show that(1)the intensity and probability of extreme heavy precipitation are higher in the middle Mintuo River sub-catchment,the Dongting Lake area,the mid-lower main stream section of the Yangtze River,and the southeastern Poyang Lake sub-catchment;whereas,the intensity and probability of drought events are higher in the mid-lower Jinsha River sub-catchment and the Jialing River sub-catchment;(2)compared with observational data,the averaged value of AM is higher but the deviation coefficient is lower in projected data,and the center of precipitation extremes moves northwards;(3)in spite of certain differences in the spatial distributions of observed and projected precipitation extremes,by applying General Extreme Value(GEV)and Wakeby(WAK)models with the method of L-Moment Estimator(LME)to the precipitation extremes,it is proved that WAK can simulate the probability distribution of precipitation extremes calculated from both observed and projected data quite well.The WAK could be an important function for estimating the precipitation extreme events in the Yangtze River basin under future climatic scenarios.  相似文献   

13.
Based on the daily observational precipitation data at 147 stations in the Yangtze River Basin during 1960–2005 and projected daily data of 79 grid cells from the ECHAM5/ MPI-OM model in the 20th and 21st century, time series of precipitation extremes which contain AM (Annual Maximum) and MI (Munger Index) are constructed. The distribution feature of precipitation extremes is analyzed based on the two index series. Three principal results were obtained, as stated in the sequel. (i) In the past half century, the intensity of extreme heavy precipitation and drought events was higher in the mid-lower Yangtze than in the upper Yangtze reaches. Although the ECHAM5 model still can’t capture the precipitation extremes over the Yangtze River Basin satisfactorily, spatial pattern of the observed and the simulated precipitation extremes are much similar to each other. (ii) For quantifying the characteristics of extremely high and extremely low precipitation over the Yangtze River Basin, four probability distributions are used, namely: General Extreme Value (GEV), General Pareto (GPA), General Logistic (GLO), and Wakeby (WAK). It was found that WAK can adequately describe the probability distribution of precipitation extremes calculated from both observational and projected data. (iii) Return period of precipitation extremes show spatially different changes under three greenhouse gas emission scenarios. The 50-year heavy precipitation and drought events from simulated data during 1951–2000 will become more frequent, with return period below 25 years, for the most mid-lower Yangtze region in 2001–2050. The changing character of return periods of precipitation extremes should be taken into account for the hydrological design and future water resources management.  相似文献   

14.
Changes of the frequency of precipitation extremes (the number of days with daily precipitation exceeding the 90th percentile of a daily climatology,referred to as R90N) in summer (June-August) over the mid-lower reaches of the Yangtze River are analyzed based on daily observations during 1961-2007.The first singular value decomposition (SVD) mode of R90N is linked to an ENSO-like mode of the sea surface temperature anomalies (SSTA) in the previous winter.Responses of different grades of precipitation events to the climatic mode are compared.It is notable that the frequency of summer precipitation extremes is significantly related with the SSTA in the Pacific,while those of light and moderate precipitation are not.It is suggested that the previously well-recognized impact of ENSO on summer rainfall along the Yangtze River is essentially due to a response in summer precipitation extremes in the region,in association with the East Asia-Pacific (EAP) teleconnection pattern.A negative relationship is found between the East Asian Summer Monsoon (EASM) and precipitation extremes over the mid-lower reaches of the Yangtze River.In contrast,light rainfall processes are independent from the SST and EASM variations.  相似文献   

15.
Regional frequency analysis and spatial–temporal patterns of precipitation extremes are investigated based on daily precipitation data covering 1960–2009 using the index-flood L-moments method together with some advanced statistical tests and spatial analysis techniques. The results indicate that: (1) the entire Yangtze River basin can be divided into six homogeneous regions in terms of extreme daily precipitation index. Goodness-of-fit test indicates that Pearson type III (PE3, three parameters), general extreme-value (GEV, three parameters), and general normal (GNO, three parameters) perform well in fitting regional precipitation extremes; (2) the regional growth curves for each homogeneous region with 99 % error bands show that the quantile estimates are reliable enough and can be used when return periods are less than 100 years, and the results indicate that extreme precipitation events are highly probable to occur in regions V and VI, and hence higher risk of floods and droughts; and (3) spatial patterns of annual extreme daily precipitation with return period of 20 years indicate that precipitation amount increases gradually from the upper to the lower Yangtze River basin, showing higher risks of floods and droughts in the middle and lower Yangtze River basin, and this result is in good agreement with those derived from regional growth curves.  相似文献   

16.
近50a华东地区夏季极端降水事件的年代际变化   总被引:4,自引:1,他引:3  
利用中国华东地区90站点1960--2009年夏季(6—8月)逐日降水资料,分析了近50a来华东地区各类极端降水事件的强度和发生频次的年代际变化。结果表明:华东地区极端降水事件年代际变化特征明显。近20a来,不论是极端降水事件的平均强度还是发生次数都要明显高于前30a;1990年代是极端事件多发且强度较强的年代;华东区域极端强降水过程事件的连续降水日数多在9d以下,而极端连续降水日数事件基本在9d以上;较之华东地区其他区域,福建地区存在更多的强度大、持续久的降水过程;华东地区最大极端降水量出现在江西北部与安徽南部的交界区域。极端降水事件频发带存在南北摆动的年代际变化,这一特征在极端日降水事件和极端强降水过程事件上表现得更为明显。同时,存在两个极端事件频发带,分别位于长江流域附近。在后3个年代,这两个频发带呈现出分一合一分的年代际变化特征。  相似文献   

17.
2050年前长江流域极端降水预估   总被引:3,自引:0,他引:3  
20世纪90年代长江流域日最大降水增加主要出现在长江以南地区和金沙江流域,ECHAM5/MPI-OM模型也大致模拟出了这种趋势。在IPCC给出的3种不同的排放情景下,2000-2050年长江上游日最大降水均有上升趋势,2020年前A2情景下日最大降水最大,A1B最小;长江中下游日最大降水在2025年之前均有明显上升趋势,之后略有下降,波动较大。长江流域未来日最大降水增多的区域可能主要出现在长江以南地区,而极端降水减少的区域可能出现在长江以北地区。  相似文献   

18.
长江流域1960-2004年极端强降水时空变化趋势   总被引:15,自引:0,他引:15  
Recent trends of the rainfall, intensity and frequency of extreme precipitation (EP) over the Yangtze River Basin are analyzed in this paper. Since the mid-1980s the rainfall of EP in the basin has significantly increased, and the most significant increment occurred in the southeast mid-lower reaches, and southwest parts of the basin. Summer witnessed the most remarkable increase in EP amount. Both the intensity and frequency of EP events have contributed to the rising of EP amount, but increase in frequency contributed more to the increasing trend of EP than that in intensity. The average intervals between adjacent two EP events have been shortened. It is also interesting to note that the monthly distribution of EP events in the upper basin has changed, and the maximum frequency is more likely to occur in June rather than in July. The synchronization of the maximum frequency month between the upper and mid-lower reaches might have also increased the risk of heavy floods in the mid-lower reaches of the Yangtze River.  相似文献   

19.
Daily precipitation amounts and frequencies from the CMORPH (Climate Prediction Center Morphing Technique) and TRMM (Tropical Rainfall Measuring Mission) 3B42 precipitation products are validated against warm season in-situ precipitation observations from 2003 to 2008 over the Tibetan Plateau and the regions to its east. The results indicate that these two satellite datasets can better detect daily precipitation frequency than daily precipitation amount. The ability of CMORPH and TRMM 3B42 to accurately detect daily precipitation amount is dependent on the underlying terrain. Both datasets are more reliable over the relatively flat terrain of the northeastern Tibetan Plateau, the Sichuan basin, and the mid-lower reaches of the Yangtze River than over the complex terrain of the Tibetan Plateau. Both satellite products are able to detect the occurrence of daily rainfall events; however, their performance is worse in regions of complex topography, such as the Tibetan Plateau. Regional distributions of precipitation amount by precipitation intensity based on TRMM 3B42 are close to those based on rain gauge data. By contrast, similar distributions based on CMORPH differ substantially. CMORPH overestimates the amount of rain associated with the most intense precipitation events over the mid-lower reaches of the Yangtze River while underestimating the amount of rain associated with lighter precipitation events. CMORPH underestimates the amount of intense precipitation and overestimates the amount of lighter precipitation over the other analyzed regions. TRMM 3B42 underestimates the frequency of light precipitation over the Sichuan basin and the mid-lower reaches of the Yangtze River. CMORPH overestimates the frequencies of weak and intense precipitation over the mid-lower reaches of the Yangtze River, and underestimates the frequencies of moderate and heavy precipitation. CMORPH also overestimates the frequency of light precipitation and underestimates the frequency of intense precipitation over the other three regions. The TRMM 3B42 product provides better characterizations of the regional gamma distributions of daily precipitation amount than the CMORPH product, for which the cumulative distribution functions are biased toward lighter precipitation events.  相似文献   

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