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1.
文章利用1979 2005年Nino3区海温时间序列资料和中国雪深时间序列资料,分析了Nino3区海温与青藏高原积雪之间的关系,两者对我国夏季降水的影响以及两者共同作用下对我国夏季降水的影响。分析结果表明:当前期冬春季Nino3区SST为强暖(强冷)事件与高原积雪显著偏多(显著偏少)共同作用的配置下,我国东部夏季雨带往往偏南(偏北)。从月时间尺度方面,揭示了前期冬春季ENSO和冬春季青藏高原积雪对我国长江以南地区降水异常的影响在夏季各月是不一致的,前期冬春季逐月Nino3区SST和冬春季逐月高原积雪对长江以南地区6月的降水都为正相关,而对8月的降水都为反相关,并且春季逐月Nino3区SST和冬春季逐月高原积雪对长江以南地区7月的降水也都为正相关,另外,春季Nino3区SST和春季高原积雪对长江以南地区6月和7月降水更为重要。  相似文献   

2.
海温与中国黔东南季降水的相关分析   总被引:1,自引:0,他引:1  
采用相关分析法分析了1960—2006年黔东南各季降水与海表温度SST的关系。结果表明:不同区域SST与不同季节降水的相关时间、相关程度有较大差异。印度洋B区和NINO W区SST对中国黔东南地区降水影响显著的月份较多,中、东太平洋SST与秋、冬季降水影响显著。春、冬季降水与印度洋B区和NINO W区SST相关最为显著;夏季降水与黑潮A区SST相关最为显著;秋季降水与中、东太平洋的NINO 3.4区和NINO综合区SST相关最显著。ENSO暖事件与发生年冬季和结束年秋、冬季以及结束年的翌年春、夏季降水关系较为密切,ENSO冷事件与发生年的冬季和结束年的秋季降水关系较为密切。  相似文献   

3.
耦合模式FGOALS_s 模拟的亚澳季风年际变率及ENSO   总被引:10,自引:7,他引:3  
吴波  周天军  Tim Li  et al 《大气科学》2009,33(2):285-299
本文评估了中国科学院大气物理研究所大气科学和地球流体力学数值模拟国家重点实验室 (LASG/IAP) 新一代耦合气候模式FGOALS_s对亚澳季风和ENSO的模拟。结果表明, FGOALS_s可以模拟出亚澳季风的主要气候态特征。FGOALS_s模拟的ENSO事件振幅为观测值的70%, 同时它合理再现了ENSO周期的非规则性。FGOALS_s可以定性模拟出ENSO的主要空间特征。当赤道东太平洋SST升高时, 印度洋和西太平洋海表面气压升高, 而东太平洋海表面气压降低。FGOALS_s的主要缺陷在于模拟的ENSO峰值多出现在春季和夏季。与ENSO振幅偏小相反, FGOALS_s模拟的亚澳季风年际变率振幅大于观测。但是观测中亚澳季风年际变率与ENSO暖位相的显著负相关关系, 在模式中没有得到合理再现, 原因部分可归之于耦合模式在ENSO锁相模拟上的缺陷。由于模式模拟的ENSO峰值出现在北半球春季和夏季, Walker环流异常下沉支移动到西北太平洋, 其激发出的异常反气旋位置较之观测要偏东, 导致印度季风降水和El Niño的负相关关系不显著; 在北半球冬季, 由于模式中的赤道东太平洋SST暖异常较弱, 亚澳季风响应也偏弱。此外, 由于赤道东太平洋SST异常向西伸展, 观测中位于澳洲季风区的辐散中心向西偏移, 最终导致模式中澳洲季风降水与ENSO的负相关同样不显著。  相似文献   

4.
淮河流域夏季降水异常与若干气候因子的关系   总被引:5,自引:2,他引:3       下载免费PDF全文
基于旋转经验正交函数分解 (REOF) 方法探讨淮河流域1961—2010年夏季降水与厄尔尼诺/南方涛动 (ENSO)、北大西洋涛动 (NAO)、印度洋偶极子 (IOD)、太平洋年代际振荡 (PDO) 之间的关系,并进一步分析各气候因子不同位相单独以及联合对淮河流域夏季降水的影响。结果表明:淮河流域夏季降水与ENSO,PDO,NAO,IOD等气候因子具有较稳定的相关性,其中,PDO和IOD是影响淮河流域夏季降水的关键因子,且PDO与夏季降水呈显著负相关关系;各气候因子的冷暖位相单独及联合对淮河流域夏季降水的影响不同,PDO的冷期以及NAO,IOD冷位相使流域北部的夏季降水量呈显著增加趋势,PDO分别联合ENSO,NAO和IOD的冷、暖位相对流域北部地区和淮河上游地区的夏季降水影响显著。  相似文献   

5.
利用1961-2011年NCEP/NCAR再分析资料和黄河流域54站降水资料,通过讨论印度洋偶极子IOD独立发生时及IOD与ENSO联合发生时黄河流域秋季降水的差异,研究了秋季降水及环流对ENSO和IOD的响应情况.结果表明:1)仅有IOD发生时,其正位相年使得黄河流域的秋季降水相应为正异常.2)当IOD与ENSO伴随出现时,无论IOD是正位相年还是负位相年,只要和El Nino同时发生,黄河流域秋季降水都表现为负异常;和La Ni-na同时发生时,黄河流域秋季降水都表现为正异常.有无ENSO发生,IOD与秋季降水的关系有很大差异.3)欧亚中纬度地区500 hPa高度东高西低距平场形势和850 hPa黄河流域中下游南风距平异常,是黄河流域秋季降水正异常的主要环流成因.4)依据秋季海温与夏季海温相关性,可以把夏季ENSO和IOD异常信号特征作为先兆信号之一来预测秋季降水趋势.  相似文献   

6.
我国四季极端雨日数时空变化及其与海表温度异常的关系   总被引:3,自引:0,他引:3  
利用1960—2004年我国586个气象站的逐日降水观测资料,对每个季节和每个站点,以雨日降水量升序排列的第90个百分位值定义极端日降水阈值,分析揭示了我国四季极端雨日数的时空变化特征、与海表温度异常的关系以及相联系的大气环流异常型。结果表明,我国长江流域极端雨日数在冬季和夏季呈显著增加趋势,华北地区极端雨日数在冬季显著增加、而在夏季显著减少,华南地区极端雨日数在春季显著增加,东北地区极端雨日数在冬季和春季显著增加,而西北地区极端雨日数在四季均显著增加。各季极端雨日数在线性趋势变化之上表现年际和年代际变化特征,并且其典型异常型明显不同,春、秋季表现为长江以南与以北地区反位相的"偶极型"变化,夏季表现为长江流域与华南、华北地区反位相的"三极型"变化,冬季表现为全国大部分地区同位相的"单极型"变化。我国季节极端雨日数与印度洋-太平洋海表温度异常的关系主要表现为与ENSO的关系,而ENSO影响我国极端降水异常是通过相应的大气环流异常型来实现的。  相似文献   

7.
本研究利用日本人文与自然研究所和日本气象厅气象研究所发布的0.25°×0.25°亚洲区域高解析度观测集成降水数据(APHRODITE),并结合NOAA发布的Niño3.4区海温指数和美国国家环境预报中心NCEP再分析数据,分析了广西地区不同极端降水事件的气候平均态和气候倾向率的时空分布,并通过快速傅里叶变换方法分析了不同极端降水逐月区域平均值的气候变率。在此基础上,对ENSO不同位相的周期交替对广西不同极端降水的逐月区域平均值周期的影响及其滞后性进行交叉相关分析,并得出不同极端指标对不同ENSO位相的潜在响应及其显著性特征。结果表明1951-2007年广西全区除无雨日数呈现增加趋势外,暴雨日数、连续干期和湿期均呈减少趋势。不同极端指标在3~7 a的傅里叶谱周期内均呈现显著的周期性变率,说明其与ENSO的潜在联系。交叉相关分析表明Niño3.4指数与无雨日数(暴雨日数)和连续干(湿)期具有显著的负(正)相关特征,其滞后期约为6~18个月,但不同极端指标与ENSO相关程度具有差异。通过滞后6~18个月的平均Ni?o3.4指数所确定的不同ENSO位相,发现相对于拉尼娜冷位相,广西无雨日数(暴雨日数)和连续干(湿)期在厄尔尼诺暖位相下总体呈现减少(增多),但该响应的统计显著性在全区分布不普遍。这可能与湿静力稳定度、低层温度露点差与中层湿位涡正压项等热力因子的响应不利于极端降水增加有关。  相似文献   

8.
川渝地区降水变化与Nino3区SST的关系及其稳定性分析   总被引:3,自引:0,他引:3  
程炳岩  郭渠  孙卫国 《气象》2010,36(3):27-33
根据1960—2006年我国川渝地区120个观测站的月降水资料,分析了降水的空间分布特征,利用相关分析、小波分析和小波凝聚谱等方法,探讨了川渝地区降水与Nino3区SST的关系及其稳定性。结果表明:一致性异常分布是川渝地区降水变化的最主要空间模态,第一模态时间系数与Nino3区SST有着较好的相关关系。这种关系表明,在Nino3区SST暖状态,川渝地区降水偏少;在Nino3区SST冷状态时则情况相反。川渝地区降水和Nino3区SST关系的稳定性分析表明,降水和SST之间在准2 a,4~6 a变化周期上存着较好的相关关系,但这种相关关系并不稳定,存在着年代际变化:1960—1986年呈正相关关系,1987—2006年呈负相关关系。  相似文献   

9.
近半个世纪ENSO事件对长江三角洲地区气候的影响   总被引:2,自引:0,他引:2       下载免费PDF全文
刘春玲  张强  许有鹏  姜彤 《气象》2005,31(3):12-16
对上海、杭州和南京1951~2001年日降水和气温资料作χ^2检验,探讨ENSO事件与长江三角洲地区降水、气温的关系,结果表明ENSO事件与研究区年降水量、四季降水以及年最高气温关系远低于自由度为3的90%置信度水平,二者无显著相关性。将E1 Nino分为两类后研究其对研究区年降水量、夏季降水量以及高温天气的影响,结果显示,第Ⅰ类E1 Nino影响年中研究区年降水量比常年偏高约15.6%,不易出现高温天气;第Ⅱ类E1 Nino影响年的年降水量比常年偏少20%-30%,但高温天气出现几率大。  相似文献   

10.
通过合成分析指出包括雅鲁藏布江中西段在内的西藏高原中西部地区夏季(6~8月)降水在ENSO的不同位相期间存在着显著的差异.利用交叉谱和奇异值分解等方法,分析了高原夏季降水场与太平洋海温场在时间和空间上的联系,结果表明,ENSO的暖(冷)位相期,高原大部分地区夏季降水以偏少(多)为主.  相似文献   

11.
气候变化影响下林芝地区泥石流发育规律研究   总被引:5,自引:0,他引:5       下载免费PDF全文
从气候变化出发,介绍藏东南林芝地区泥石流类型、分布及活动特征,确定泥石流形成条件和临界指标,揭示林芝地区泥石流发育规律。温度和降水波动性变化以及不同水热组合影响林芝地区泥石流发育。冰川泥石流在温度升高或降雨增大情况下都有可能被激发。日降雨量<5 mm时,主要为温度激发的冰雪消融型泥石流;日降雨量5~10 mm时,主要为冰川降雨型泥石流;日降雨量>10 mm时,为降雨型泥石流。冰川泥石流在升温条件下发生次数占80%以上,降温条件下约占20%;降雨型泥石流在升温条件下发生次数占60%,降温条件下占40%。从激发泥石流的规模、次数和灾害大小看,高温多雨年代和低温多雨年代都有利于泥石流发生。  相似文献   

12.
根据野外考察和分析,利用模糊数学方法,定义了青油省玉树州结古镇泥石流沟固有危险度,并以分段函数的形式定义了夏季泥石流降水指数,初步建立了当地泥石流危险度的二级综合判别预警模型。对玉树州结古镇5条泥石流沟的危险度做了判别,对不同降水级别所对应的泥石流危险度进行预报,得出相应的预警等级。并以2003年7月29日结古镇北山泥石流为例,对该模型的有效性进行了初步检验。  相似文献   

13.
To assess the impacts of future climatic change, we need a better understanding of the relationships between debris flows dynamic and the climate. The subject of this paper is the variability in the response of debris flows to climatic change in recent decades in the Massif des Ecrins (French Alps). The climatic trend observed in the French Alps was characterized by analyzing data on extreme summer rainfall events recorded daily at nine stations located all over the Massif des Ecrins since 1960. According to the generalized Pareto law (GPD) our results showed that extreme summer rainfalls have increased significantly in the Massif des Ecrins since the 1980s. Statistical tests showed a significant increase in average annual air temperature. The response of 647 hill slope debris flows to this climatic change was investigated. Different types of hill slope debris flows were analyzed as a function of their lithology or the nature of the accumulated debris. A number of logistic regression based models were developed to characterize the relationship between climate and the occurrence of debris flows in a specific geomorphological context. Analysis of frequency and return period over the last two decades showed different patterns depending on the type of debris flow concerned. Hence, the response of hill slope debris flows to climatic change is not the same everywhere in the Massif des Ecrins.  相似文献   

14.
亚澳季风与长江中游夏季降水的关联   总被引:1,自引:0,他引:1  
分别用850 hPa风场、200hPa风场、纬向风垂直切变、经向风垂直切变为左场,长江中游夏季(6-8月)降水场为右场,进行SVD分析.结果表明:亚澳季风环流与长江中游夏季降水密切相关,主导的亚澳季风环流与长江中游夏季降水的关系,依1月、4月、7月时间先后次序大致为亚洲冬季风偏弱(强),当年北澳夏季风偏弱(强)、北澳冬...  相似文献   

15.
This study uses a long dataset of past debris flows from eight high-elevation catchments in the Swiss Alps for which triggering conditions since AD 1864 have been reconstructed. The torrents under investigation have unlimited sediment supply and the triggering of debris flows is thus mainly controlled by climatic factors. Based on point-based downscaled climate scenarios for meteorological stations located next to the catchments and for the periods 2001–2050 and 2051–2100, we study the evolution of temperature and rainfall above specific thresholds (10, 20, 30, 40 and 50 mm) and durations (1, 2 or 3 days). We conclude that the drier conditions in future summers and the wetting of springs, falls and early winters are likely to have significant impacts on the behavior of debris flows. Based on the current understanding of debris-flow systems and their reaction to rainfall inputs, one might expect only slight changes in the overall frequency of events by the mid-21st century, but possibly an increase in the overall magnitude of debris flows due to larger volumes of sediment delivered to the channels and an increase in extreme precipitation events. In the second half of the 21st century, the number of days with conditions favorable for the release of debris flows will likely decrease, especially in summer. The anticipated increase of rainfall during the shoulder seasons (March, April, November, December) is not expected to compensate for the decrease in future heavy summer rainfall over 2 or 3 days.  相似文献   

16.
ENSO 与中国东部夏季降水的关联   总被引:8,自引:1,他引:7  
计算1 月减6 月El Niño 3.4 指数与6—8 月平均200、850 hPa 风场的相关矢量,分析中等或强ElNiño/La Niña 事件后的夏季(6—8 月)中国东部降水异常分布、西太平洋副热带高压异常特征。结果表明,对ENSO 的响应,无论高、底层大气环流还是西太平洋副热带高压,1970 年代中期气候突变后变为更敏感。主要表现在:对衰减的El Niño 的响应,夏季南亚高压偏东,西太平洋副热带高压偏强、偏西、偏南,印度季风、南海季风减弱,黄河下游以南副热带季风增强。黄河中下游及以南形成异常环流辐合带,由El Niño 导致的降水正异常最有可能出现在这一西南-东北的带状区域。对衰减的La Niña 响应大致相反。   相似文献   

17.
Abstract

A detailed examination has been made of the relationship between the space and time variations of the Indian summer monsoon rainfall and the equatorial eastern‐Pacific sea surface temperature (SST) anomaly in different seasons for the 108‐year period, 1871–1978. There is a strong inverse relationship between the two. The correlation coefficients between All‐India monsoon rainfall and the sea surface temperature anomaly for the concurrent season; June, July and August (JJA) and for the succeeding seasons; September, October and November (SON) and December, January and February (DJF) are consistently and highly significant. Even a random sample of 50 years gave values significant at the 0.1 percent level. The sliding window correlation analysis of 10‐, 20‐ and 30‐year widths indicates that the relationships between All‐India monsoon rainfall and the sea surface temperature anomaly for the concurrent JJA and the succeeding SON and DJF seasons exhibit stability and consistency in significance. For contiguous meteorological sub‐divisions west of longitude 80°E the relationship is highly significant for JJA and for succeeding SON and DJF seasons.  相似文献   

18.
Based on observational meteorological data since A.D. 1864 and tree-ring records of debris-flow activity, this paper assesses changes in rainfall characteristics and their impact on the triggering of geomorphic events in a high-elevation watershed of the Swiss Alps since the end of the Little Ice Age. No trends are visible in the frequency of heavy rainfall events, but we observe a reduced number of heavy, short-lived rainfalls in summer and a concentration of advective storms is recorded in late summer and early fall since the late 1980s. These changes in triggering meteorological conditions resulted in a cluster of debris flows in the early decades of the twentieth century and a lowering of debris-flow activity since the mid 1990s, and may be mirroring the observed changes in persistent high-pressure systems over the Alps. We also observe intra-seasonal differences in debris-flow system response reflecting the state of the permafrost body in the source area of debris flows, allowing for very small debris flows to be released by limited rainfall inputs (<20 mm) in June and July. The same quantities of rain will not trigger debris flows in August or September, when a thick active layer of the permafrost body is capable of absorbing water. With the projected amplitude of climatic change, seasonality, return intervals and volumes of debris flows are likely to be altered. RCM projections based on the IPCC A2 scenario suggest a decrease in heavy summer rainfalls which will most likely result in a (further) reduction of the overall frequency of debris flows, leaving more time for sediment to accumulate in the channel. Such an increase of channel accumulation rates along with the projected destabilization of the steep rock-glacier body is likely, in turn, to exert control ultimately on sediment volumes released from the source areas during future events. Observations from adjacent catchments suggest that extremely large debris flows, beyond historical experience, could occur at the study site and in similar debris-flow systems of the Valais Alps originating from periglacial environments.  相似文献   

19.
本文探究了不同海表温度(SST)模态对6—8月和12月—次年2月全球陆地降水的趋势以及年代际变化的相对贡献。首先对热带地区陆地降水和SST进行SVD分析,得到影响陆地降水的趋势和年代际变化主要的海洋模态为:海洋中的全球变暖(Global Warming,GW)、大西洋多年代际振荡(Atlantic Multidecadal Oscillation,AMO)和太平洋多年代际振荡(Interdecadal Pacific Oscillation,IPO)。其次利用多元线性回归模型进一步定量评估了全球变暖、AMO和IPO对不同地区陆地降水的相对贡献大小。结果表明,全球变暖对陆地降水变化的贡献在冬夏季都是最大的,AMO在6—8月的贡献次之。IPO在12月—次年2月的贡献次之。不同纬度带,三者的贡献不同。GW的贡献在6—8月期间对10°N以北地区较大,南半球受GW的贡献相对较小,GW在12月—次年2月对40°N以北降水贡献异常显著;AMO主要在6—8月对10°~40°S和50°~60°S纬度带上的降水变化的贡献比较大;而IPO主要在12月—次年2月对北半球中纬度降水变化的贡献比较大。GW对许多地区降水变化的方差贡献都是最大的,例如6—8月期间,对北美洲东北部和亚洲降水变化贡献最大,12月—次年2月期间,对欧洲降水变化贡献最大。AMO对6—8月降水变化的方差贡献最大的区域为非洲萨赫勒、西伯利亚和南美洲。12月—次年2月期间,IPO对美国西南部的降水变化贡献最大,此外,北美洲东北部、南美洲西北部、非洲南部、澳大利亚东部、南亚季风区和我国北部的降水在12月—次年2月期间同样受IPO影响显著。进一步利用信息流的方法,探究了GW、AMO和IPO与陆地降水变化之间的因果关系,验证了上述结论。  相似文献   

20.
V. Misra  S. M. DiNapoli 《Climate Dynamics》2013,40(11-12):2637-2649
Using observations of rainfall and SST analysis it is shown that there is a robust relationship with two-season lag between the austral summer (December–January–February [DJF]) Equatorial Amazon (EA) rainfall and the following boreal summer season (June–July–August [JJA]) Intra-Americas Seas (IAS) Sea Surface Temperature Anomalies (SSTA). It is observed that in wetter than normal austral summer seasons over EA, the SSTA in the IAS are cooler than normal in the following JJA season. This teleconnection also manifests in the ocean heat content of the IAS region. Our analysis indicates that the net surface heat flux into the ocean (particularly the surface longwave and the shortwave radiative fluxes) dictates the strongest influence on the JJA Caribbean SSTA, the core region of the IAS where the observed teleconnection with EA rainfall is strongest. This study also finds that this teleconnection is in fact a manifestation of the remote ENSO forcing on the Caribbean SSTA through its modulation of the EA rainfall anomalies. In a wet DJF year over EA, the Atlantic Inter-Tropical Convergence Zone (ITCZ) moves further southward than climatology. This causes the dry limb of the associated overturning circulation of the Atlantic ITCZ to reside over the Caribbean Sea region in the subsequent March–April–May and JJA seasons. As a result of this large-scale descent in the wet DJF year over EA, there is a net decrease in the heat flux into the ocean from increased emission of surface longwave radiation in the presence of anomalously dry atmosphere. In a dry DJF year over EA the Atlantic ITCZ is nearly co-located in the core region of the IAS, which is northward than the climatological location, resulting in the descending limb of the overturning location to be located further south of the Caribbean Sea leading to warmer SSTA.  相似文献   

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