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1.
20世纪印度洋气候变率特征   总被引:28,自引:3,他引:28  
利用时间连续性相对较为理想的 GISST资料 ,分析了 2 0世纪印度洋气候变率的基本特征 ,探讨了它与赤道中、东太平洋和西太平洋暖池区气候变化之间的联系 ,结果表明 :(1 )北印度洋 SST的季节变化具有鲜明的季风特征 ,在西南季风爆发期 ,海温达到全年最冷 ;南印度洋 SST的季节循环特征较为合乎常规 ,大致落后太阳辐射季节循环 2个月左右 ;赤道印度洋沿着非洲东海岸 ,SST的季节变化受季风带影响显著 ,但在赤道中东印度洋 ,SST的季节循环特征不明显。(2 )印度洋 ,特别是 2 0°S以北的热带印度洋 SST的变化 ,具有显著的整体一致性 ,自 2 0世纪 50年代中期以来持续变暖 ,赤道印度洋增暖了大约 0 .6℃。当赤道中东太平洋出现暖异常时 ,2 0°S以北的热带印度洋海域同样出现暖异常 ;赤道印度洋 SST与 Nino3区指数的相关系数 ,在滞后 Nino 3区指数 4~ 5个月左右达到最大。 (3)西太平洋暖池区 SST的变化 ,与南印度洋西风漂流区、赤道北印度洋存在显著的正相关。在年代际的时间尺度上 ,赤道印度洋和西太平洋暖池区 SST的变率特征极为一致。 (4)南印度洋 SST的年际振荡幅度 ,远强于热带印度洋 ;南印度洋的 SST演变特征 ,从统计上看 ,更多地与西太平洋暖池 SST变化相协调。  相似文献   

2.
铜仁西部不同时间尺度温度降水变率分析   总被引:1,自引:0,他引:1  
采用气候统计方法,从年、季、月、旬、候时间尺度分析了铜仁西部近地面平均温度和降水绝对变率及相对变率,结果显示:年平均温度绝对变率在0.3-0.4℃之间,相对变率在1.5%-2.3%之间,年降水绝对变率在120.1-170.5mm之间,相对变率在10.8%-16.1%之间。气温在旬、月尺度上的变率大小与该地区春节前后要么持续低温雨雪,要么持续艳阳高照以及7月下旬一8月上旬间常年持续高温热浪的实际相吻合;降水在月、旬、候尺度上的绝对变率年内变化曲线与多年平均降水量年内变化曲线升降趋势大体一致,呈显著的正相关,而相对变率则与降水量呈反相关。  相似文献   

3.
BCC_CSM模式对热带降水年循环模态的模拟   总被引:5,自引:2,他引:5  
本文评估了国家气候中心发展的两个不同分辨率海—陆—气—冰多圈层耦合气候系统模式BCC_CSM1.1和BCC_CSM1.1 (m) 对热带降水两个年循环模态——揭示降水冬夏季节差异的季风模态和揭示过渡季节春季和秋季非对称特征的春秋非对称模态的模拟能力,讨论了模拟偏差产生的可能原因。分析结果表明,BCC_CSM1.1和BCC_CSM1.1 (m) 均能合理再现全球年平均降水的基本分布特征,也能较合理再现热带降水年循环模态的基本分布特征,尤其季风模态中降水与环流关于赤道反对称的特征;能够较合理再现春秋非对称模态与热带海洋表面温度(SST)年循环之间的关系。大气温度场、环流场以及热带SST的模拟偏差对降水季风模态有影响;热带SST年循环的偏差对降水春秋非对称模态的模拟偏差有贡献;模式分辨率对降水年循环模态的模拟也有一定影响。对比分析显示,大气模式和陆面模式水平分辨率提高之后模式在某些模拟性能上有所提高,这表现在:BCC_CSM1.1 (m) 模拟的1~12月降水气候态的空间变率更接近观测;热带海表温度年循环总体上更接近观测;模拟的热带降水年循环模态的部分特征更合理。但BCC_CSM1.1 (m) 的模拟结果相对观测仍存在较大偏差,有待进一步改进。  相似文献   

4.
气候模式的年际变率和可预测性   总被引:5,自引:1,他引:5  
王会军  薛峰 《应用气象学报》1997,8(A00):217-222
该文研究了大气物理研究所9层格点大气环流模式模拟的年际气候变率,一种试验采用多年平均的观测海温作为下边界条件,另一种试验是有年际变化的实测海温作为下边界条件,两种试验的年际变率分别为记为V1和V2,其比值R(V2/V1)则可代表以实测海温为边界条件的模式可预测性,研究结果显示:两种试验的年际变率差异主要热带区,V2一般大于V1,并且更接近实际变率,气温和高度场的可预测性在热带区较高,在热带以外区域  相似文献   

5.
衢州地区降水变率与降水变化规律分析   总被引:6,自引:0,他引:6  
李明秀 《浙江气象》2006,27(3):10-12
采用1971~2000年的衢州地区降水资料,通过对年、季降水相对变率和年、季、月的降水变化规律分析,为衢州地区合理蓄水和用水提供科学依据。  相似文献   

6.
王铭昊  李焕连  孙小婷 《气象》2018,44(5):634-644
本文利用美国全球降水气候中心(GPCC)的降水资料和中国参加国际第五阶段耦合模式比较计划(CMIP5)的6个气候模式[BCC_CSM1.1、BCC_CSM1.1(m)、BNU-ESM、FGOALS-s2、FGOALS-g2和FIO-ESM]的历史模拟试验的降水数据,采用可以表征降水变率相对和绝对量级的方法,定量评估了6个模式对降水年际-年代际变率的模拟能力。研究表明,观测降水的年际变率一般占总方差的65%~80%,年代际变率占总方差的10%~35%。在CMIP5历史试验中,6个模式平均的降水年际分量方差对总方差的贡献(超过70%)较观测偏强,模拟降水年代际分量的方差对总方差的贡献较小(约为10%~20%)。模式总体低估了全球平均总降水、年际降水和年代际降水的变率,但是高估了年际降水对总降水的贡献、低估了年代际降水对总降水的贡献。与观测相比,6个模式对东亚和澳大利亚地区的年代际降水的模拟都比较好,模拟与观测年代际降水方差的比值为1左右。在非洲、南美洲和海洋性大陆,BCC_CSM1.1模式模拟的降水年代际变率最接近观测;在欧亚和北美,BNU-ESM模式模拟的降水年代际变率与观测最接近。在欧亚大陆上,BCC_CSM1.1模式模拟的降水年际分量与年代际分量的方差比最接近观测;在非洲和美洲,FGOALS-s2模式模拟的降水年际分量与年代际分量的方差比最接近观测。本文的研究结果有助于理解中国当前气候模式对降水年际-年代际变率的模拟能力,以及未来改进模式。  相似文献   

7.
区域气候模式对华北夏季降水的气候模拟   总被引:18,自引:8,他引:18  
吕世华  陈玉春 《高原气象》1999,18(4):632-640
使用美国NCAR区域气候模式RegCM2对1991和1994年我国华北夏季降水进行了气候模拟研究,以检验NCAR区域气候模式对华北夏季降水的气候预测能力。模拟结果表明,该模式能较好地模拟华北夏季降水的主要分布特征,对华北少水年(1991年)和我水年(1994年)夏季降水的模拟都比较成功。模式还能罗好地模拟夏季季风的发展过程,地环流场的模拟也与分析场比较一致,因而该模式可以用于研究物预测华北夏季降水  相似文献   

8.
亚非季风区夏季降水变率   总被引:2,自引:1,他引:2  
本文利用比较完整的格点资料,采用Gamma分布百分位数的降水量指标系统分析了亚非季风区夏季降水变率及其与赤道东太平洋冷水区SST的关系。首先根据REOF分析,指出亚非季风区里有五个关键地区,分别为萨赫勒地区、日本南部到中国长江流域、中国华南到印度半岛东部、热带非洲地区和东亚地区。然后利用子波分析等方法对这五个中心地区的降水变化进行了较深入的研究  相似文献   

9.
中国降水场QBO分布型态及其长期变率特征   总被引:13,自引:4,他引:13  
采用带通滤波法,奇异谱分析(SSA)和小波分析(WTA)综合研究了近50年中国降水场的准两年周期振荡(QBO)的分布型态及其长期变率特征。结果表明,QBO分量在中国降水场年际振荡中举足轻重,具有显著而稳定的特征:50年代到60年代初期,QBO分量振幅较大,频率较小;60年代中后期到70年代初,振幅有所衰减,频率有所加大;70年代中后期到80年代直至90年代初,频率再次减小,振幅也相对较小;90年代中期,振幅和频率都有增大的趋势。准两年振荡在不同季节主型态中表现有所不同,在冬、夏季表现较强、秋季次之,春季最弱。  相似文献   

10.
利用1979—2012年Hadley中心海表温度、中国2 474个台站逐日降水和NCEP/NCAR全球再分析资料,分析了不同类型ENSO事件秋冬季和次年春季中国南方地区10~30 d降水低频变率的变化特征。结果表明,中国南方地区10~30 d降水低频变率对不同类型ENSO事件的响应存在显著的季节差异。EP型El Ni1o的冬季和次年春季,低频降水变率显著增强; CP型El Ni1o秋冬季低频降水强度呈现相反的异常,秋季低频降水偏弱,而冬季则偏强; La Ni1a事件期间中国南方低频降水变率的变化较小且不稳定。进一步分析发现,ENSO对南方地区10~30 d低频降水变率的影响与西北太平洋地区季节平均大气环流背景场对ENSO的响应密切相关。相比正常年份,EP型El Ni1o冬春季菲律宾反气旋性异常环流的强度较强且范围较大,其西侧的异常西南风向中国南方地区输送了大量水汽,从而有利于低频降水的增强; CP型El Ni1o年秋季西北太平洋表现为气旋性环流异常,抑制了热带水汽向东亚大陆的输送,而冬季却产生了与EP型El Ni1o年类似的异常反气旋环流,只是强度有所减弱,因此中国南方地区低频降水强度在秋冬季呈相反异常。La Ni1a年菲律宾附近虽然存在气旋性环流异常,但强度较弱,因而我国南方地区低频降水变率的响应也较弱。  相似文献   

11.
Evaluating the projection capability of climate models is an important task in climate model developmentand climate change studies. The projection capability of the Beijing Climate Center (BCC) Climate SystemModel BCC_CSM1.0 is analyzed in this study. We focus on evaluating the projected annual mean airtemperature and precipitation during the 21st century under three emission scenarios (Special Report onEmission Scenarios (SRES) B1, A1B, and A2) of the BCC_CSM1.0 model, along with comparisons with22 CMIP3 (Coupled Model Intercomparison Project Phase 3) climate models. Air temperature averagedboth globally and within China is projected to increase continuously throughout the 21st century, whileprecipitation increases intermittently under each of the three emission scenarios, with some specific temporaland spatial characteristics. The changes in globally-averaged and China-averaged air temperature andprecipitation simulated by the BCC_CSM1.0 model are within the range of CMIP3 model results. Onaverage, the changes of precipitation and temperature are more pronounced over China than over the globe,which is also in agreement with the CMIP3 models. The projection capability of the BCC_CSM1.0 model iscomparable to that of other climate system models. Furthermore, the results reveal that the climate changeresponse to greenhouse gas emissions is stronger over China than in the global mean, which implies thatChina may be particularly sensitive to climate change in the 21st century.  相似文献   

12.
This paper reviews recent progress in the development of the Beijing Climate Center Climate System Model(BCC-CSM) and its four component models(atmosphere,land surface,ocean,and sea ice).Two recent versions are described:BCC-CSM1.1 with coarse resolution(approximately 2.8125°×2.8125°) and BCC-CSM1.1(m) with moderate resolution(approximately 1.125°×1.125°).Both versions are fully coupled climate-carbon cycle models that simulate the global terrestrial and oceanic carbon cycles and include dynamic vegetation.Both models well simulate the concentration and temporal evolution of atmospheric CO_2 during the 20th century with anthropogenic CO2 emissions prescribed.Simulations using these two versions of the BCC-CSM model have been contributed to the Coupled Model Intercomparison Project phase five(CMIP5) in support of the Intergovernmental Panel on Climate Change(IPCC) Fifth Assessment Report(AR5).These simulations are available for use by both national and international communities for investigating global climate change and for future climate projections.Simulations of the 20th century climate using BCC-CSMl.l and BCC-CSMl.l(m) are presented and validated,with particular focus on the spatial pattern and seasonal evolution of precipitation and surface air temperature on global and continental scales.Simulations of climate during the last millennium and projections of climate change during the next century are also presented and discussed.Both BCC-CSMl.l and BCC-CSMl.l(m) perform well when compared with other CMIP5 models.Preliminary analyses indicate that the higher resolution in BCC-CSM1.1(m) improves the simulation of mean climate relative to BCC-CSMl.l,particularly on regional scales.  相似文献   

13.
IAP第四代大气环流模式的耦合气候系统模式模拟性能评估   总被引:5,自引:2,他引:5  
本文首先扼要介绍了基于中国科学院大气物理研究所(简称IAP)第四代大气环流模式的新气候系统模式-CAS-ESM-C(中国科学院地球系统模式气候系统模式分量)的发展和结构,之后主要对该模式在模拟大气、海洋、陆面和海冰的气候平均态、季节循环以及主要的年际变率等方面的能力做一个初步的评估.结果表明:模式没有明显的气候漂移,各...  相似文献   

14.
Extreme temperature events are simulated by using the Beijing Climate Center Atmospheric General Circulation Model (BCC AGCM) in this paper. The model has been run for 136 yr with the observed external forcing data including solar insolation, greenhouse gases, and monthly sea surface temperature (SST). The daily maximum and minimum temperatures are simulated by the model, and 16 indices representing various extreme temperature events are calculated based on these two variables. The results show that the maximum of daily maximum temperature (TXX), maximum of daily minimum (TNX), minimum of daily maximum (TXN), minimum of daily minimum (TNN), warm days (TX90p), warm nights (TN90p), summer days (SU25), tropical nights (TR20), and warm spell duration index (WSDI) have increasing trends during the 20th century in most regions of the world, while the cold days (TX10p), cold nights (TN10p), and cold spell duration index (CSDI) have decreasing trends. The probability density function (PDF) of warm/cold days/nights for three periods of 1881-1950, 1951- 1978, and 1979-2003 is examined. It is found that before 1950, the cold day/night has the largest probability, while for the period of 1979-2003, it has the smallest probability. In contrast to the decreasing trend of cold days/nights, the PDF of warm days/nights exhibits an opposite trend. In addition, the frost days (FD) and ice days (ID) have decreasing trends, the growing season has lengthened, and the diurnal temperature range is getting smaller during the 20th century. A comparison of the above extreme temperature indices between the model output and NCEP data (taken as observation) for 1948-2000 indicates that the mean values and the trends of the simulated indices are close to the observations, and overall there is a high correlation between the simulated indices and the observations. But the simulated trends of FD, ID, growing season length, and diurnal temperature range are not consistent with the observations and their correlations are low or even negative. This indicates that the model is incapable to simulate these four indices although it has captured most indices of the extreme temperature events.  相似文献   

15.
Evaluating the projection capability of climate models is an important task in climate model development and climate change studies. The projection capability of the Beijing Climate Center (BCC) Climate System Model BCC CSM1.0 is analyzed in this study. We focus on evaluating the projected annual mean air temperature and precipitation during the 21st century under three emission scenarios (Special Report on Emission Scenarios (SRES) B1, A1B, and A2) of the BCC CSM1.0 model, along with comparisons with 22 CMIP3 (Coupled Model Intercomparison Project Phase 3) climate models. Air temperature averaged both globally and within China is projected to increase continuously throughout the 21st century, while precipitation increases intermittently under each of the three emission scenarios, with some specific temporal and spatial characteristics. The changes in globally-averaged and China-averaged air temperature and precipitation simulated by the BCC CSM1.0 model are within the range of CMIP3 model results. On average, the changes of precipitation and temperature are more pronounced over China than over the globe, which is also in agreement with the CMIP3 models. The projection capability of the BCC CSM1.0 model is comparable to that of other climate system models. Furthermore, the results reveal that the climate change response to greenhouse gas emissions is stronger over China than in the global mean, which implies that China may be particularly sensitive to climate change in the 21st century.  相似文献   

16.
RegCM3模式对新疆1996年降水和气温的数值模拟分析   总被引:1,自引:0,他引:1  
通过数值模拟方法,研究了降水和气温对模式分辨率、初始和边界条件的敏感性。结果表明:区域模式RegCM3对新疆1996年冬季和夏季的降水和气温具有一定的模拟能力,气温的模拟要优于降水。分辨率、初始和边界条件对区域模式的模拟结果有较大的影响。模式分辨率的提高,可以增强对气温的模拟能力,尤其是气温沿地形变化的特点。分辨率的提高,同样可以改进降水的量级和落区。相同分辨率下,不同初始和边界条件,对降水的模拟结果影响不大。无论分辨率和初始,边界条件如何变化,塔克拉玛干沙漠南麓均有虚假降水出现,说明该模式在刻画复杂地形方面,还存在不足。  相似文献   

17.
英国CRU高分辨率格点资料揭示的20世纪中国气候变化   总被引:29,自引:1,他引:29  
中国覆盖比较完整的台站观测始于1951年,1951年之前虽然有一些观测记录,但是残缺不全.所以要建立更长的气候序列就要吸收代用资料,但是代用资料可能与气候要素仅有一定程度的相关,不可能一一对应,因此应用代用资料重建的气候序列有一定的不确定性.英国East Anglia大学的Climatic Research Unit(简称CRU)通过整合已有的若干个知名数据库,重建了一套覆盖完整、高分辨率、且无缺测的月平均地表气候要素数据集,时间范围覆盖1901~2003年,空间为0.5°×0.5°经纬网格覆盖所有陆地.这套资料和中国已有的气候数据相比具有如下优点: 第一,中国西部20世纪前半期非常缺少观测,CRU资料尽管包含插值带来的误差,经比较仍可作为有一定信度的参考; 第二,中国现有的百年温度序列只是年或季分辨率,而CRU资料达到月分辨率; 第三,建立这个序列仅使用观测结果,做统计内插,不包括代用资料所带来的不确定性.因此,CRU的序列与用代用资料补充得到的序列在资料方面有较大不同,比较这两个序列,不仅可以进一步确认中国气候变化的特征,也可以彼此校正.结果表明:(1)CRU资料反映的全国年平均温度年际变化和考虑代用资料重建的序列吻合得很好,相关系数达到0.84;(2)区域尺度上,两者在10个典型分区的气温变率也相当一致,相关整体保持在0.8左右,仅新疆西南部和西藏西北部两者差异较大;(3)CRU资料揭示的中国年总降水量在1951~2000年的变化与160站观测吻合,相关系数达到0.93;(4)CRU资料的中国东部四季降水量和重建资料十分一致,秋季一致性最好,相关0.93;(5)CRU资料和重建的序列比较一致地表现出中国温度和降水年代际变化的主要特征,其给出的20世纪20年代中国大旱和20世纪40年代中国高温的空间分布与作者过去的结论相一致.这表明,作者过去重建的中国气候序列有比较大的可靠性,而CRU资料也提供了新的信息,特别是在20世纪前半期和中国西部.  相似文献   

18.
利用CMIP5(Coupled Model Intercomparison Project Phase 5)数据集中的全球模式IPSL-CM5A-LR及其嵌套的区域气候模式WRF(Weather Research and Forecasting),分别评估了模式对1981~2000中国华东区域极端降水指标的模拟能力,并讨论了RCP8.5排放情景下21世纪中期(2041~2060年)中国华东极端降水指标的变化特征。相比驱动场全球气候模式,WRF模式更好地再现了各个极端指数空间分布及各子区域降水年周期变化。在模拟区域气候特点方面,WRF模拟结果有所改进,并在弥补全球模式对小雨日过多模拟的缺陷起到了明显的作用。21世纪中期,华东区域的降水将呈现明显的极端化趋势。WRF模拟结果显示年总降雨量、年大雨日数、平均日降雨强度在华东大部分区域的增幅在20%以上;年极端降雨天数、连续5 d最大降水量的增幅在华东北部部分区域分别超过了50%和35%,同时最长续干旱日在华东区域全面增加;且变化显著的格点主要位于增加幅度较大的区域。未来华东区域会出现强降水事件和干旱事件同时增加的情况,降水呈现明显的极端化趋势,且华东北部极端化强于华东南部。  相似文献   

19.
In the early 1980s, Chinese meteorologists discovered the positive correlation in summer rainfall between India and North China and the correlation was later confirmed by some researches in and outside China. Based on a variety of meteorological data from 1951 to 2005 and numerical simulations, the present study investigates such a correlation between Indian summer monsoon (ISM) and precipitation in North China. Furthermore, we discuss the intrinsic relations of the positive (Northwest India)-negative (the Tibetan Plateau)-positive (North China) precipitation anomaly teleconnection pattern from two aspects of thermal and dynamical factors, which not only confirms the precipitation teleconnection previously discovered again, but also reveals the influence mechanism of the ISM on the rainfall in North China. The results show that: (1) When the ISM is strong (weak), the precipitation in North China tends to be more (less) than normal; however, when the rainfall in North China is more (less) than normal, the probability of the strengthening (weakening) of the ISM is relatively lower. This implies that the ISM anomaly has more impact on the rainfall in North China. (2) The Indian low usually dominantly impacts the intensity of the ISM. When the Indian low deepens, the low troughs in mid-high latitudes are frequently strengthened, and the ridge of the western Pacific subtropical high (WPSH) extends westward. The southwesterly water vapor transport originated from low-latitudes and the southeasterly water vapor transport along the southwestern flank of the WPSH converge in North China, which is favorable for more rainfall there than normal, and vice versa. (3) The simulations from the regional climate model developed by National Climate Center (ReGCM_NCC) capture the salient feature of the precipitation teleconnection between India and North China. The simulated anomalous atmospheric existence of such a teleconnection from another circulations are close to observatio  相似文献   

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