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1.
朱珺 《河南科学》2022,(10):1584-1591
利用1981—2020年河南夏季114站降水资料和欧洲中心第五代再分析资料,通过合成分析、t检验等气候诊断方法,对河南汛期降水异常大气环流特征及其早期驱动因子进行分析.合成分析结果表明:河南汛期降水偏多年,强盛的南亚高压与低层气旋性异常环流配合,利于高空风场辐散及大气的上升运动;河南上游的气旋性异常环流不断输送冷空气,并与西伸偏强的西太平洋副热带高压配合,使得南海、孟加拉湾和西太平洋有水汽输送至河南,而汛期降水偏少年仅有西太平洋的水汽输送至河南;汛期降水偏多年对应太平洋海温从厄尔尼诺转为拉尼娜和冬季到夏季持续的北大西洋三极子负位相.经波作用通量诊断结果表明:大西洋和太平洋的海温异常上空向西太平洋输送波通量,使得西太平洋副热带高压加强西伸北抬,进而形成有利于河南汛期降水的水汽输送异常和大气环流.  相似文献   

2.
利用柴达木盆地气象台站逐日降水资料和国际卫星云气候学计划D2资料分析了柴达木盆地夏季极端强降水、云量及云水资源的时空分布特征,结合NCEP/NCAR再分析资料对夏季极端强降水事件发生时的大气环流进行了分析.结果表明,夏季极端降水阈值和极端降水日数在柴达木盆地东部大于西部,极端降水量也明显增加.柴达木盆地各种云量的空间分布形态不一,云量上升趋势不明显.云水路径、固态云水和液态云水的空间分布形态一致,具有"南低北高"的特征,三者的线性趋势在年和四季尺度均明显上升.环流分析显示,极端强降水事件发生时,对流层上层,西风急流向北移动,柴达木盆地位于急流南侧,有异常反气旋式环流,对应高空辐散区;对流层中层,柴达木盆地位于异常偏强的槽区及槽前;对流层低层,柴达木盆地东部位势高度异常偏低,出现异常气旋式环流,对应低空辐合,这种高层辐散低层辐合的环流配置为极端强降水提供了良好的动力条件.柴达木盆地极端强降水的水汽来源为印度夏季风对热带海洋的水汽经青藏高原东侧输送;西风带对欧亚大陆的水汽输送;西北太平洋异常气旋式环流西北侧的异常偏北风的水汽输送.  相似文献   

3.
利用耦合的气候模式CESM, 定量研究青藏高原对全球大气温度和水汽分布的影响。通过对比采用真实地形的参考实验(Real)和去掉青藏高原的敏感性实验(NoTibet)发现, 去掉青藏高原会使北半球大气变冷、变干, 对南半球的影响不明显。北半球中高纬度从地表至平流层均有强烈降温, 地表的降温中心在北大西洋, 年平均降温幅度达5ºC, 高空的降温中心在100 hPa的平流层, 年平均降温幅度达2ºC。北大西洋和南亚地区湿度减少, 南大西洋和东非地区湿度增加。北半球变冷主要是海洋向北经向热量输送减少的结果, 一方面增强了北半球的经向温度梯度, 导致Hadley环流增强, 加强了中低纬地区向北的大气热量输送, 部分补偿了海洋向北减少的热量输送, 维持了北半球中低纬度的能量平衡; 另一方面, 使得北半球中高纬度蒸发作用减弱, 大气中水汽含量减少, 北半球变得寒冷干燥。初步的研究表明, 青藏高原对北半球气候有重大影响, 影响范围可达北半球高纬度地区。  相似文献   

4.
对1951-1999年中国夏季江淮流域降水异常与海温异常关系的分析表明,前期及同期各季节三大洋海表温度异常(SSTA)与长江流域降水异常的关系是非常显著的,而对淮河流域降水异常总体上的影响较小,前期冬季SSTA的影响显著区主要有:热带印度洋、黑潮、热带中东太平洋和大西洋,各关键区海温异常对亚洲夏季风的影响特征为:当前期冬季赤道印度洋、黑潮、赤道大西洋和热带东太平洋海表温度异常升高(降低),当年夏季印度西南季风和东亚热带辐合带减弱(加强),副热带高压位置偏南(北),副热带辐合带加强(减弱),长江流域易发生洪涝(干旱),相关显著性分析表明,前冬赤道印度洋和黑潮区的海温异常对中国夏季降水的影响更为显著。  相似文献   

5.
2005年夏季亚洲季风区下平流层水汽的对流源区   总被引:1,自引:0,他引:1  
陈斌  徐祥德  施晓晖 《自然科学进展》2009,19(10):1094-1099
利用高分辨三维Lagrange输送模式的数值模拟,确定了2005年夏季亚洲季风区下平流层水汽的对流源区,并初步探讨了其可能机制.三维轨迹分析结果表明,虽然青藏高原及其周边区域不是对流层向平流层质量输送的主要源区,但却对下平流层水汽具有重要影响,该区域贡献占整个亚洲季风区水汽垂直输送的三分之一强.一方面,夏季高原上空深厚的湿对流系统为对流层向平流层水汽输送提供了基础条件.另一方面,和其他区域相比,高原区域上空对流层顶温度较高,使得大气穿越对流层顶附近时避免了类似于热带对流层顶附近“冷点”的“冻干”脱水过程,这是该区域成为对流源区的关键因素.  相似文献   

6.
利用气候系统模式(CESM1.0)研究陆地地形改变对大气?海洋经圈环流的影响。模式首先给出真实海陆分布及陆地地形情况下的大气?海洋气候态, 然后给出平板陆地情况下(陆地海拔均匀10 m)的气候态。与真实世界相比, 平板陆地情形下大气?海洋经圈环流发生重大改变: 首先, 年平均大气对流中心南移到赤道附近, 使得大气哈德雷环流相对于赤道对称; 其次, 海洋的经向翻转流变强, 大西洋经向翻转流完全消失, 取而代之的是在太平洋出现强大的经向翻转流及热盐环流。在平板陆地情形下, 北半球中高纬度大气抬升减弱, 向北的大气热量输送减少, 北半球温度降低, 大气对流中心因而向赤道迁移; 同时, 海洋向极地的热量输送也减弱, 中高纬度海洋变冷, 北太平洋海水密度增加很多, 北大西洋海水密度降低, 导致海洋经向翻转流从大西洋转移到太平洋。  相似文献   

7.
通过分析NCAR CCM3气候模式的15年积分结果,从形成降水的垂直运动和水汽供应条件的角度,试图揭示该模式在东亚季风区产生不合理虚假强降水的可能原因.与观测的降水分布相比,CCM3模拟的东亚季风区降水中心位置偏西,雨量偏强,其中对流降水占虚假降水中心总降水量的82%左右.进一步分析发现,对流层上层200 hPa副热带急流南侧的散度季节变化与110°E以西的虚假降水季节变化具有较好的对应关系,急流入口区附近的直接垂直环流上升支位于青藏高原东北部,同时由于急流南侧对流层上层辐散引起的抽吸作用,加强低层的垂直运动,从而为虚假的强对流降水形成提供上升运动条件.分析对流层低层的水汽(比湿)分布和水汽输送表明,模拟的青藏高原地区大气的水汽含量比NCEP/NCAR再分析的水汽含量高,经过高原从孟加拉湾输送到虚假降水中心地区的水汽偏强,从而为虚假的强对流降水形成提供了充足的水汽条件.因此,在改进气候模式对东亚季风区虚假降水的模拟性能时,除了对模式物理过程做改进外,在青藏高原附近地区的水汽分布和水汽输送以及对流层上层西风急流位置和强度模拟的合理性方面也需要引起足够的重视.  相似文献   

8.
利用一个完全耦合的海气模式, 通过对比分析两组试验中海表温度、盐度、风应力等气候态变化特征以及ENSO强度和频率的变化, 研究热带太平洋气候平均态及年际变率对热盐环流减弱的响应。在北大西洋高纬地区注入1 Sv淡水后, 大西洋经向翻转流(AMOC)减弱约90%, 这直接导致向北的经向热量输送减少, 使北大西洋有明显降温, 南大西洋略有升温。这些变化会经过大气和海洋的远程传播以及局地海气反馈作用, 影响热带太平洋气候平均态: 赤道东西太平洋的SST都略有增温, 但纬向温度梯度和纬向风应力并没有太大变化, 赤道太平洋温跃层的深度和倾斜度也基本保持不变。相应地, ENSO强度和频率也没有明显变化。由此得出结论: 热盐环流减弱会引起全球气候平均态的变化, 但对热带太平洋的年际变率没有太大影响。  相似文献   

9.
文中采用非静力MM5(3.5)中尺度数值模式对2006年7月14-15日强热带风暴Bilis台风暴雨天气过程进行了数值模拟与诊断分析,结果发现中尺度地形对暴雨的落区和强度有重要影响。主要表现在地形迎风坡作用、特殊地形辐合抬升作用、地形中尺度系统影响。初始湿度场的改变在模拟雨区和雨强时,对于水汽输送弱的地方,形成降水的水汽对初始时大气中的水汽含量依赖很强;对于有强水汽输送的区域,水汽初值并不是强降水的决定因子。  相似文献   

10.
文中采用非静力MM5(3.5)中尺度数值模式对2006年7月14-15日强热带风暴Bilis台风暴雨天气过程进行了数值模拟与诊断分析,结果发现中尺度地形对暴雨的落区和强度有重要影响。主要表现在地形迎风坡作用、特殊地形辐合抬升作用、地形中尺度系统影响。初始湿度场的改变在模拟雨区和雨强时,对于水汽输送弱的地方,形成降水的水汽对初始时大气中的水汽含量依赖很强;对于有强水汽输送的区域,水汽初值并不是强降水的决定因子。  相似文献   

11.
Schefuss E  Schouten S  Schneider RR 《Nature》2005,437(7061):1003-1006
Past hydrological changes in Africa have been linked to various climatic processes, depending on region and timescale. Long-term precipitation changes in the regions of northern and southern Africa influenced by the monsoons are thought to have been governed by precessional variations in summer insolation. Conversely, short-term precipitation changes in the northern African tropics have been linked to North Atlantic sea surface temperature anomalies, affecting the northward extension of the Intertropical Convergence Zone and its associated rainbelt. Our knowledge of large-scale hydrological changes in equatorial Africa and their forcing factors is, however, limited. Here we analyse the isotopic composition of terrigenous plant lipids, extracted from a marine sediment core close to the Congo River mouth, in order to reconstruct past central African rainfall variations and compare this record to sea surface temperature changes in the South Atlantic Ocean. We find that central African precipitation during the past 20,000 years was mainly controlled by the difference in sea surface temperatures between the tropics and subtropics of the South Atlantic Ocean, whereas we find no evidence that changes in the position of the Intertropical Convergence Zone had a significant influence on the overall moisture availability in central Africa. We conclude that changes in ocean circulation, and hence sea surface temperature patterns, were important in modulating atmospheric moisture transport onto the central African continent.  相似文献   

12.
Using the NCEP/NCAR and JRA-25 monthly analysis data from 1979 to 2011, this paper analyzes the interdecadal variations of winter (Dec.–Feb.) mean surface air temperature (SAT) over East Asia by means of the empirical orthogonal function (EOF) analysis method. Two dominant modes were extracted, with the leading mode basically depicting a sign consistent SAT variation and the second mode describing a meridional dipole structure between the northern and southern parts of East Asia. These two modes can explain more than 60% of the variance. The leading mode is closely related to the intensity of Siberian high and the East Asian winter monsoon. The second mode exhibits a notable interdecadal shift in the late 1990s, with a turning point around 1996/1997. Winter SAT in the northern (southern) part of East Asia tends to be cooler (warmer) since the late 1990. Winter sea level pressure (SLP) differences between 1997–2011 and 1979–1996 show negative (positive) anomalies over southern (northern) Eurasia. At 500-hPa, an anomalous blocking high occurs over northern Eurasia, while a cyclone anomaly appears over northern East Asia. In addition, the upper-level East Asian jet stream tends to shift northward and become stronger after the late 1990. Indeed, the interdecadal shift of winter SAT over East Asia is dynamical consistent with changes of the large-scale atmospheric circulation in the late 1990s. The result indicates that previous autumn sea surface temperature (SST) in the North Atlantic Ocean, the Northern Indian Ocean and the western North Pacific Ocean, as well as sea ice concentration (SIC) in the northern Eurasia marginal seas and the Beaufort Sea also experienced obvious changes in the late 1990s. In particular, the interdecadal shifts of both SST in the North Atlantic Ocean and SIC in the Arctic Ocean and its marginal seas are well coherent with that of the winter SAT over East Asia. The results indicate that the interdecadal shift of East Asian winter SAT may be related to changes in the North Atlantic SST and the Arctic SIC in the late 1990s.  相似文献   

13.
The relationship between sea surface temperature (SST) east of Australia and tropical cyclone frequency over the western North Pacific (WNPTCF) is analyzed by use of observation data.The WNPTCF from June to October is correlated negatively to spring SST east of Australia.When the spring SST is in the positive phase,a cyclonic circulation anomaly in the upper troposphere and an anticyclonic circulation anomaly in the lower troposphere prevail over the western North Pacific from June to October,concurrent with an anomalous atmospheric subsidence and an enlarged vertical zonal wind shear.These conditions are unfavorable for tropical cyclone genesis,and thus WNPTCF decreases.The negative phase of the spring SST east of Australia leads to more tropical cyclones over the western North Pacific.The spring SST east of Australia may give rise to simultaneous change in tropical atmospheric circulation via the teleconnection wave train,and then subsequently affect atmospheric circulation variation over the western North Pacific.  相似文献   

14.
Cane MA  Molnar P 《Nature》2001,411(6834):157-162
Global climate change around 3-4 Myr ago is thought to have influenced the evolution of hominids, via the aridification of Africa, and may have been the precursor to Pleistocene glaciation about 2.75 Myr ago. Most explanations of these climatic events involve changes in circulation of the North Atlantic Ocean due to the closing of the Isthmus of Panama. Here we suggest, instead, that closure of the Indonesian seaway 3-4 Myr ago could be responsible for these climate changes, in particular the aridification of Africa. We use simple theory and results from an ocean circulation model to show that the northward displacement of New Guinea, about 5 Myr ago, may have switched the source of flow through Indonesia-from warm South Pacific to relatively cold North Pacific waters. This would have decreased sea surface temperatures in the Indian Ocean, leading to reduced rainfall over eastern Africa. We further suggest that the changes in the equatorial Pacific may have reduced atmospheric heat transport from the tropics to higher latitudes, stimulating global cooling and the eventual growth of ice sheets.  相似文献   

15.
Response of the Atlantic thermohaline circulation (THC) to global warming is examined by using the climate system model developed at IAP/LASG. The evidence indicates that the gradually warming climate associated with the increased atmospheric carbon dioxide leads to a warmer and fresher sea surface water at the high latitudes of the North Atlantic Ocean, which prevents the down-welling of the surface water. The succedent reduction of the pole-toequator meridional potential density gradient finally results in the decrease of the THC in intensity. When the atmospheric carbon dioxide is doubled, the maximum value of the Atlantic THC decreases approximately by 8%. The associated poleward oceanic heat transport also becomes weaker. This kind of THC weakening centralizes mainly in the northern part of the North Atlantic basin, indicating briefly a local scale adjustment rather than a loop oscillation with the whole Atlantic “conveyor belt” decelerating.  相似文献   

16.
On the role of the Agulhas system in ocean circulation and climate   总被引:3,自引:0,他引:3  
The Atlantic Ocean receives warm, saline water from the Indo-Pacific Ocean through Agulhas leakage around the southern tip of Africa. Recent findings suggest that Agulhas leakage is a crucial component of the climate system and that ongoing increases in leakage under anthropogenic warming could strengthen the Atlantic overturning circulation at a time when warming and accelerated meltwater input in the North Atlantic is predicted to weaken it. Yet in comparison with processes in the North Atlantic, the overall Agulhas system is largely overlooked as a potential climate trigger or feedback mechanism. Detailed modelling experiments--backed by palaeoceanographic and sustained modern observations--are required to establish firmly the role of the Agulhas system in a warming climate.  相似文献   

17.
Advancing decadal-scale climate prediction in the North Atlantic sector   总被引:12,自引:0,他引:12  
The climate of the North Atlantic region exhibits fluctuations on decadal timescales that have large societal consequences. Prominent examples include hurricane activity in the Atlantic, and surface-temperature and rainfall variations over North America, Europe and northern Africa. Although these multidecadal variations are potentially predictable if the current state of the ocean is known, the lack of subsurface ocean observations that constrain this state has been a limiting factor for realizing the full skill potential of such predictions. Here we apply a simple approach-that uses only sea surface temperature (SST) observations-to partly overcome this difficulty and perform retrospective decadal predictions with a climate model. Skill is improved significantly relative to predictions made with incomplete knowledge of the ocean state, particularly in the North Atlantic and tropical Pacific oceans. Thus these results point towards the possibility of routine decadal climate predictions. Using this method, and by considering both internal natural climate variations and projected future anthropogenic forcing, we make the following forecast: over the next decade, the current Atlantic meridional overturning circulation will weaken to its long-term mean; moreover, North Atlantic SST and European and North American surface temperatures will cool slightly, whereas tropical Pacific SST will remain almost unchanged. Our results suggest that global surface temperature may not increase over the next decade, as natural climate variations in the North Atlantic and tropical Pacific temporarily offset the projected anthropogenic warming.  相似文献   

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