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1.
热带平流层与对流层之间相互作用的研究进展   总被引:7,自引:1,他引:6  
以热带平流层和对流层大气中的准两年振荡和ENSO现象,以及热带平流层和对流层交换(STE)过程为主轴,介绍了热带平流层和对流层大气相互作用方面的一些研究进展。众多的研究结果表明,平流层准两年振荡(QBO)和对流层准两年振荡(TBO)存在潜在联系,但二者之间相互作用的物理机制还不是很清晰。QBO对平流层大气中化学成分的空间分布具有显著的影响,但其中的化学-辐射-动力反馈作用目前还未得到充分的研究。以往的研究提供了ENSO影响热带平流层大气令人信服的证据,但影响的程度和范围还未形成一个共识,其中一个原因是平流层内的ENSO信号受到火山喷发和太阳活动的干扰。一些研究指出ENSO事件通过改变行星波的强度和传播对极地平流层大气产生影响,而平流层过程也会对ENSO的发生、发展和演变产生影响,但其可靠性需要进一步的确证。目前,一个较一致的结论是全球变暖会导致热带上涌增强,STE加快。然而,影响热带STE的大气过程较多,特别是季风系统和热带深对流系统对STE的贡献还需要深入的分析研究。   相似文献   

2.
球面斜压大气中上传行星波与纬向平均气流的相互作用   总被引:8,自引:3,他引:8  
黄荣辉  邹捍 《大气科学》1989,13(4):383-392
本文指出在球面斜压大气中的行星尺度扰动与纬向平均气流相互作用中必须考虑非地转风分量对位涡度南北方向输送的作用,从而证明了球面大气中行星尺度运动的波作用守恒,并求得球面大气中的行星尺度扰动与纬向平均气流相互作用的欧拉平均运动方程组。 本义利用1979年2月的实际天气观测资料分析了北半球一次对流层阻塞形势建立与平流层爆发性增温过程的行星波与纬向平均气流的相互作用。从分析结果可以看到:由于行星波向上传播,使得在高纬度对流层中、上层出现行星波的波作用通量(也称E-P通量)辐合,使得西风气流减速,因而在高纬度对流层中、上层形成阻塞形势。并且,随着行星波的继续向上传播,使得平流层下、中层的基本气流相继减速并出现东风,因而在平流层下、中层出现爆发性增温。然而,由于高纬度对流层低层出现东风,行星波不能往上传播,在上层波的E-P通量矢量变成辐散,气流由东风又变成西风。  相似文献   

3.
平流层对对流层的作用是准确评估、预测对流层气候变化的一个重要方面。其中平流层成分尤其是臭氧的变化,可以改变平流层乃至对流层的辐射平衡,从而影响平流层、对流层的热动力过程。本文从辐射、动力2个角度介绍了平流层臭氧影响对流层气候变化的若干研究进展。平流层臭氧可以通过长短波辐射的方式对对流层大气造成辐射强迫,利用大气化学气候模式可以定量计算平流层臭氧变化引起的辐射强迫,但是辐射强迫的估算受模式中辐射传输模块本身缺陷的影响存在不确定性。动力方面,平流层臭氧变化产生的辐射效应可以改变温度的垂直和经向梯度,造成波折射指数的变化,进而影响平流层甚至对流层内波的折射与反射,通过上对流层下平流层区域内的波—流相互作用,对对流层气候产生影响。另外,南极臭氧损耗可通过大气环状模影响冬春季中高纬度对流层的天气气候,但是其影响的强度大小以及物理机制仍需进一步的确认。值得注意的是,北极平流层臭氧的变化与北半球中高纬度气候变化之间的关系相比南半球要更加复杂,需要更为深入的研究。  相似文献   

4.
极涡研究进展   总被引:15,自引:1,他引:14  
张恒德  高守亭  刘毅 《高原气象》2008,27(2):452-461
极涡是北极地区的一个深厚系统,它以极地为活动中心,最能体现高纬大气活动特征,属大气环流最主要的系统之一,通常与副热带高压、阻塞高压、季风等环流系统相互配合,在全球天气气候变化中起着至关重要的作用。本文就极涡的气候特征、对天气气候的影响、变化机理及数值模拟等几方面的研究进展进行综述。在行星波破碎、平流层爆发性增温、平流层对流层的动力耦合等过程中,极涡也扮演着重要角色;极涡对HNO3、臭氧等大气化学成分渗吸和输送过程的影响显著,而这些化学成分的再分布对极涡有较强的反馈作用;极涡还受到海温、冰雪、植被甚至太阳活动等的影响。前人已经关于极涡做了不少研究,但在气候动力学方面,还存在一些问题,有待进一步加强研究。  相似文献   

5.
系统介绍了近年来应用等熵位涡理论研究平流层-对流层动力相互作用所发现的一些新的事实和机理,包括平流层冬季极涡振荡过程中平流层、对流层环流异常的时空传播特征,以及等熵质量理论框架下的平流层-对流层动力耦合机理,还介绍了影响平流层环流年际尺度异常的因子及影响过程。回顾了夏季青藏高原的热力作用所激发的负位涡强迫源对东亚及全球大气环流的影响。并基于对夏季高原周边等熵位涡经向输送垂直分布的诊断进一步说明,夏季青藏高原的存在使高原东缘及东亚地区成为平流层和对流层物质交换的独特区域,探讨了夏季青藏高原影响平流层-对流层动力耦合的一种重要途径及其影响全球气候的重要意义。  相似文献   

6.
全球热带气旋活动与全球气候变化相关特征   总被引:12,自引:11,他引:12  
阐述全球气候变化对全球热带气旋活动的影响在国际上取得的进展。从3方面进行综合分析:(1)气候变化特征对全球热带气旋的影响;(2)热带气旋活动的年际变化和年代际振荡以及影响因子;(3)热带气旋活动与全球气候变化方面的数值模拟进展。总结国际上在这一领域取得的研究进展,全球气候变化主要以全球大气环流、海气相互作用、全球海面温度以及温盐环流(Thermohaline Circulation)这4个方面相互影响及其共同作用,可对全球热带气旋活动的发生频率、强度、路径趋势和登陆地区产生影响。  相似文献   

7.
《高原气象》2021,40(3):590-602
大气重力波对全球大气的动力、热力结构具有重要影响,研究重力波参数气候特征是研制全球大气模式中重力波参数化的一个重要环节,通过引入重力波的影响,有利于提高大气模式的预报能力。本文利用2014-2017年太原地区(112.55°E,37.78°N)高垂直分辨率探空资料,对其对流层(2~9 km)、下平流层(17~24 km)大气重力波参数的气候特征及其之间差异特征进行研究。结果表明:(1)在1-12月,相对于对流层,下平流层的平均重力波水平波长、周期、固有相速、能量上传百分比均偏大,垂直波长均偏小,但群速在2月、5-9月偏大,其他月份偏小;(2)对流层与下平流层之间的重力波参数偏差、绝对差较大,相关性弱;(3)对流层、下平流层的重力波参数及其之间的偏差,在不同区间范围内的占有率分布特征存在明显差异;通过研究太原地区上空对流层、下平流层大气重力波参数的气候及其之间差异特征,进一步补充了中国区域的大气重力波参数气候特征,有利于研制更适合中国区域数值预报模式的重力波参数化方案。  相似文献   

8.
平流层和中层大气研究的进展   总被引:16,自引:4,他引:12  
吕达仁  陈洪滨 《大气科学》2003,27(4):750-769
平流层和中层大气研究是20世纪70年代以来持续得到大气科学界和日地物理界共同关注的研究前沿.中国科学界在文化大革命结束后立即抓住这一前沿作为发展重点之一.20多年来,中国科学院大气物理研究所等单位较为系统地开展了这一方向的研究,并在一些方面进行了前沿性的工作.作者着重介绍以下几方面的进展:(1)平流层和中层大气探测设施与探测方法;(2)大气臭氧、平流层气溶胶的监测与分析;(3)行星波在中层大气环流与大气臭氧分布中的作用;(4)重力波在中层大气的传播特征与作用;(5)平流层-对流层交换的动力物理与化学问题.  相似文献   

9.
田文寿  黄金龙  郄锴  王涛  徐勉 《气象科学》2020,40(5):628-638
随着大气探测技术以及计算机性能的不断提高,近年来平流层探测数据日渐丰富,中层大气模式也得到了快速发展,平流层中一些重要的物理、化学以及动力过程得以深入研究,对平流层大气环流的认识也进一步加深。本文分析了平流层准2 a振荡(Quasi-Biennial Oscillation,QBO)、平流层残余(Brewer-Dobson,BD)环流和平流层极地环流等主要的平流层大气环流系统和信号的气候态特征、形成机制、年际变率以及长期趋势等,阐述了它们的主要影响因子和过程,讨论并展望了与平流层环流有关的一些主要科学问题。  相似文献   

10.
平流层爆发性增温及其影响研究进展   总被引:4,自引:3,他引:1  
杨光  李崇银  李琳 《气象科学》2012,32(6):694-708
平流层爆发性增温(stratospheric sudden warming,SSW)是冬季平流层大气环流结构的一种突变现象,在短时间内平流层中高纬度的温度、风和极涡都会发生剧烈变化。因此,SSW也就成为平流层大气环流及其变化研究的重要方面之一。在强SSW期间,高纬地区温度急剧升高,西风被东风取代,极涡几乎全部崩溃。SSW极大地影响着北半球对流层大气,甚至整个中高层大气,包括对平流层乃至中层大气微量气体分布的重要影响。随着临近空间飞行平台的研究应用,以及由此而提出的临近空间环境条件的保障问题,作为临近空间重要组成部分的平流层环流变化将更加引起人们的关注。本文就SSW的特征、发生机制、对上下层相互作用的重要影响,以及SSW与准两年振荡、ENSO等的密切关系和SSW的数值模拟等方面的研究工作,进行了回顾和总结。  相似文献   

11.
北半球冬季行星波的传播及其输运作用   总被引:20,自引:0,他引:20  
利用变换欧拉平均方程讨论了行星波动力学。观测和模拟结果都表明,在北半球冬季准定常行星波的经向传播存在两支波导。一支为高纬度波导,另一支则为低纬度波导。这些结果与理论分析相当一致。通过对EP通量进一步的研究表明,平流层爆发性增温是沿高纬度波导传播的异常行星波与平均气流相互作用的结果。而热带风场的准两年周期振荡(QBO)是低纬度平流层下层大气纬向平均流的一个重要年际变化,它可以影响行星波沿低纬度波导的传播;此外,由一个行星波一平均流耦合模式模拟的结果表明,这个热带风场的变化还可以通过波流相互作用调制行星波沿高纬度波导的传播。 行星波对臭氧的输运作用在文中也进行了分析。行星波强迫出的剩余平均环流表明,耗散的行星波有强的输运作用;向北的涡动热量输送可以强迫出一个正的输运环流,其在低纬度上升并在高纬度下沉。同时研究还表明,热带风场的QBO对行星波传播的调制对输运环流也有重要影响,模式结果表明,在QBO的东风位相期间行星波引起的输运作用明显增强,其结果可用于解释平流层高纬度臭氧的年际变化。  相似文献   

12.
This paper reviews recent progress in understanding isentropic potential vorticity (PV) dynamics during interactions between the stratosphere and troposphere, including the spatial and temporal propagation of circulation anomalies associated with the winter polar vortex oscillation and the mechanisms of stratosphere- troposphere coupling in the global mass circulation framework. The origins and mechanisms of interannual variability in the stratospheric circulation are also reviewed. Particular attention is paid to the role of the Tibetan Plateau as a PV source (via its thermal forcing) in the global and East Asian atmospheric circulation. Diagnosis of meridional isentropic PV advection over tile Tibetan Plateau and East Asia indicates that the distributions of potential temperature and PV over the east flank of the Tibetan Plateau and East Asia favor a downward and southward isentropic transport of high PV from the stratosphere to the troposphere. This transport manifests the possible influence of the Tibetan Plateau on the dynamic coupling between the stratosphere and troposphere during summer, and may provide a new framework for understanding the climatic effects of the Tibetan Plateau.  相似文献   

13.
The Northern Hemisphere stratospheric polar vortex is linked to surface weather. After Stratospheric Sudden Warmings in winter, the tropospheric circulation is often nudged towards the negative phase of the Northern Annular Mode (NAM) and the North Atlantic Oscillation (NAO). A strong stratospheric vortex is often associated with subsequent positive NAM/NAO conditions. For stratosphere?Ctroposphere associations to be useful for forecasting purposes it is crucial that changes to the stratospheric vortex can be understood and predicted. Recent studies have proposed that there exist tropospheric precursors to anomalous vortex events in the stratosphere and that these precursors may be understood by considering the relationship between stationary wave patterns and regional variability. Another important factor is the extent to which the inherent variability of the stratosphere in an atmospheric model influences its ability to simulate stratosphere?Ctroposphere links. Here we examine the lower stratosphere variability in 300-year pre-industrial control integrations from 13 coupled climate models. We show that robust precursors to stratospheric polar vortex anomalies are evident across the multi-model ensemble. The most significant tropospheric component of these precursors consists of a height anomaly dipole across northern Eurasia and large anomalies in upward stationary wave fluxes in the lower stratosphere over the continent. The strength of the stratospheric variability in the models was found to depend on the variability of the upward stationary wave fluxes and the amplitude of the stationary waves.  相似文献   

14.
The interactively coupled chemistry-climate model ECHAM4.L39(DLR)/CHEM is employed in sensitivity calculations to investigate feedback mechanisms of dynamic, chemical, and radiative processes. Two multi-year model simulations are carried out, which represent recent atmospheric conditions. It is shown that the model is able to reproduce observed features and trends with respect to dynamics and chemistry of the troposphere and lower stratosphere. In polar regions it is demonstrated that an increased persistence of the winter vortices is mainly due to enhanced greenhouse gas mixing ratios and to reduced ozone concentration in the lower stratosphere. An additional sensitivity simulation is investigated, concerning a possible future development of the chemical composition of the atmosphere and climate. The model results in the Southern Hemisphere indicate that the adopted further increase of greenhouse gas mixing ratios leads to an intensified radiative cooling in the lower stratosphere. Therefore, Antarctic ozone depletion slightly increases due to a larger PSC activity, although stratospheric chlorine is reduced. Interestingly, the behavior in the Northern Hemisphere is different. During winter, an enhanced activity of planetary waves yields a more disturbed stratospheric vortex. This "dynamical heating" compensates the additional radiative cooling due to enhanced greenhouse gas concentrations in the polar region. In connection with reduced stratospheric chlorine loading, the ozone layer clearly recovers.  相似文献   

15.
This paper examines the dominant submonthly variability of zonally symmetrical atmospheric circula- tion in the Northern Hemisphere (NH) winter within the context of the Northern Annular Mode (NAM), with particular emphasis on interactive stratosphere-troposphere processes. The submonthly variability is identified and measured using a daily NAM index, which concentrates primarily on zonally symmetrical circulation. A schematic lifecycle of submonthly variability is developed that reveals a two-way coupling pro- cess between the stratosphere and troposphere in the NH polar region. Specifically, anomalous tropospheric zonal winds in the Atlantic and Pacific sectors of the Arctic propagate upwards to the low stratosphere, disturbing the polar vortex, and resulting in an anomalous stratospheric geopotential height (HGT) that subsequently propagates down into the troposphere and changes the sign of the surface circulations. From the standpoint of planetary-scale wave activities, a feedback loop is also evident when the anoma- lous planetary-scale waves (with wavenumbers 2 and 3) propagate upwards, which disturbs the anomalous zonally symmetrical flow in the low stratosphere, and induces the anomalous HGT to move poleward in the low stratosphere, and then propagates down into the troposphere. This increases the energy of waves at wavenumbers 2 and 3 in the low troposphere in middle latitudes by enhancing the land-sea contrast of the anomalous HGT field. Thus, this study supports the viewpoint that the downward propagation of stratospheric NAM signals may not originate in the stratosphere.  相似文献   

16.
采用北京气候中心大气辐射模式(BCC-RAD)、日本气象厅JRA-55月平均再分析资料,研究了北半球冬季低纬度平流层上、下两个温度异常区对太阳周期的响应及其机制。结果表明,太阳活动偏强年,低纬度的上平流层温度暖异常是由臭氧短波加热异常引起的,它在中纬度的上平流层激发出异常强西风,阻碍行星波正常上传,由波破碎驱动的Brewer-Dobson环流也减弱,该环流上升支减弱的动力加热作用导致了低纬度的下平流层暖异常。  相似文献   

17.
Summary The variability of the horizontal circulation in the stratosphere and troposphere of the Northern Hemisphere (NH) is compared by using various approaches. Spatial degrees of freedom (dof) on different time scales were derived. Modes of variability were computed in geopotential height fields at the tropospheric and stratospheric pressure levels by applying multivariate statistical approaches. Features of the spatial and temporal variability of the winterly zonal wind were studied with the help of recurrence and persistence analyses. The geopotential height and zonally-averaged zonal wind at the 50-, 500- and 1000-hPa level are used to investigate the behavior of the horizontal circulation in the lower stratosphere, mid-troposphere and at the near surface level, respectively. It is illustrated that the features of the variability of the horizontal circulation are very similar in the mid-troposphere and at the near surface level. Due to the filtering of tropospheric disturbances by the stratospheric and upper tropospheric zonal mean flow, the variability of the stratospheric circulation exhibits less spatial complexity than the circulation at tropospheric pressure levels. There exist enormous differences in the number of degrees of freedom (or free variability modes) between both atmospheric layers. Results of the analyses clearly show that the concept of a zonally symmetric AO with a simple structure in the troposphere similar to the one in the stratosphere is not valid. It is concluded that the spatially filtered climate change signal can be detected earlier in the stratosphere than in the mid-troposphere or at the near surface level. Received June 28, 2000/Revised March 10, 2001  相似文献   

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