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1.
中国21世纪气候变化的情景模拟分析   总被引:33,自引:3,他引:33  
利用HadCM2和ECHAM4气候模式比较分析了温室气体排放综合效果相当于CO2浓度逐年递增1%情景下中国区域21世纪地面气温和降水量的变化趋势。结果表明:在温室气体渐进递增情景下,至21世纪末期,相对于1961-1990年的气候基准值,全国地面平均气温增幅可达5—6℃。与地面气温的变化相比,降水量的波动幅度较大,但全国范围内降水量变化的总趋势也是增加的。中国区域地面气温和降水量变化的地理分布显示:降水量的增加主要集中在南方区域,HadCM2预测21世纪末期降水增加可达0.9mm/d,ECHAM4预测可达0.6mm/d;ECHAM4模式模拟的气温增幅比HadCM2高,尤其是在冬季及中国北方和青藏高原地区,而HadCM2模式模拟的降水量的增加较大,但两个气候模式模拟的地面气温和降水量变化的总趋势大体一致。  相似文献   

2.
全球气候模式对宁夏区域未来气候变化的情景模拟分析   总被引:13,自引:0,他引:13  
利用多个全球气候模式(GCM)的情景模拟结果分析只考虑温室气体效应的IS92a GG情景和同时考虑温室气体效应和硫化物气溶胶辐射效应的IS92aGS情景以及SRESA2、B2情景下宁夏区域21世纪地面气温和降水量的可能变化,并进行不确定性分析。气候基准时段(1961~1990年)模拟结果与观测资料的对比分析表明,GCM对宁夏气候具有一定的模拟能力;整体上讲,GCM对地面气温的模拟值偏低,对降水量的模拟值偏高,其中ECHAM4和HadCM3对宁夏基准时段地面气温和降水量的模拟结果与观测比较接近。各GCM模拟值的平均结果显示,4种温室气体排放情景下21世纪宁夏区域气温持续升高,至21世纪末宁夏升温幅度可达4~6℃,与全国平均的增温幅度大致相当;与升温趋势相应的是降水量的增加,但降水变化呈现出很大的波动性,至21世纪末宁夏的降水变化幅度可达10%~40%。各个GCM模拟的宁夏气候变化的总趋势是一致的,但各模式在不同情景下模拟结果的差异很大,存在较大的不确定性。  相似文献   

3.
赵亮  刘健  靳春寒 《气象科学》2019,39(6):739-746
利用中国气象局所属的2 400余个台站观测资料制作的分辨率为0.25°×0.25°数据集中的气温、降水量资料评估了CMIP5中17个模式对于1961—2004年江苏省气温和降水量空间分布特征的模拟能力,筛选出了5个对江苏省气候特征模拟较好的模式。之后基于5个优选模式集合平均的结果预估了3种典型浓度路径(Representative Concentration Pathways,RCPs)下江苏省2006—2100年的气温和降水量变化趋势。结果表明:(1)全球耦合气候模式对江苏省的气温和降水量空间分布特征具有一定的模拟能力,并且模式集合平均的气温和降水量与观测资料的空间相关系数分别为0.85和0.93;(2)在低浓度路径(RCP2.6)、中浓度路径(RCP4.5)和高浓度路径(RCP8.5)3种温室气体排放情景下,江苏省2006—2100年的地表温度均呈现明显的增温趋势,并且苏北的增温幅度要高于苏南;(3)3种温室气体排放情景下,江苏省未来百年降水量均呈现出北方增多南方减少的趋势;(4)未来百年江苏省降水量随气温变化的趋势并不稳定,RCP2.6和RCP4.5情景下降水量随气温的升高而增加,而RCP8.5情景下降水量随气温的增加而减少。  相似文献   

4.
“一带一路”区域未来气候变化预估   总被引:1,自引:0,他引:1  
利用耦合模式比较计划第5阶段(CMIP5)提供的18个全球气候模式的模拟结果,预估了3种典型浓度路径(RCP2.6、RCP4.5、RCP8.5)下“一带一路”地区平均气候和极端气候的未来变化趋势。结果表明:在温室气体持续排放情景下,“一带一路”地区年平均气温在未来将会持续上升,升温幅度随温室气体浓度的增加而加大。在高温室气体排放情景(RCP8.5)下,到21世纪末期,平均气温将普遍升高5℃以上,其中北亚地区升幅最大,南亚和东南亚地区升幅最小。对于降水的变化,预估该区域大部分地区的年降水量将增加,其中西亚和北亚增加最为明显,而且在21世纪中期,RCP2.6情景下的增幅要比RCP4.5和RCP8.5情景下的偏大,而在21世纪后期,RCP8.5情景下降水的增幅比RCP2.6和RCP4.5情景下的偏大。未来极端温度也将呈升高的趋势,增温幅度高纬度地区大于低纬度地区、高排放情景大于低排放情景。而且在高纬度区域,极端低温的增暖幅度要大于极端高温的增幅。连续干旱日数在北亚和东亚总体呈现减少趋势,而在其他地区则呈增加趋势。极端强降水在“一带一路”区域总体上将增强,增强最明显的地区位于南亚、东南亚和东亚。  相似文献   

5.
青藏高原未来30~50年A1B情景下气候变化预估   总被引:21,自引:4,他引:17       下载免费PDF全文
刘晓东  程志刚  张冉 《高原气象》2009,28(3):475-484
基于政府间气候变化委员会第四次评估报告(IPCC-AR4)所采用的20个气候模式在未来大气温室气体中等排放情景(A1B)下模拟结果的集合平均以及一个全球气候模式模拟输出驱动下的动力降尺度(downscaling)分析结果,对青藏高原地区未来30~50年的气候变化趋势进行了预估研究.结果表明,从2030-2049年相对于1980-1999年气候平均值的变化来看,青藏高原大部分地区年平均地面气温的升温幅度在1.4~2.2℃之间,高海拔地区的增温一般更为显著,西藏西部的冬季增暖将达到2.4℃以上.降水量的变化相对较小,青藏高原大部分地区和全年多数季节降水可能增加,但未来30~50年青藏高原地区降水率增量通常不超过5%.考虑到未来大气温室气体排放程度、多模式集合预估以及区域尺度气候模拟等多方面均可能存在不确定性,这里给出的青藏高原未来气候变化预估结果应适时检验和修正.  相似文献   

6.
东北地区气候变化CMIP5模式预估   总被引:3,自引:0,他引:3       下载免费PDF全文
利用CMIP5的多模式集合资料,从时间变化和空间分布两方面分析了不同情景下(RCP2.6、RCP4.5、RCP8.5)中国东北地区未来100年的气候变化。结果显示:3种排放情景下,21世纪东北地区气温和降水呈显著增长趋势,中期和末期增幅较明显,冬季增幅高于其他季节,RCP8.5情景下气温增暖最为显著,RCP4.5次之,RCP2.6最小,随着年代的推移,气温和降水年较差逐渐减小;空间分布显示:3种排放情景下各个时期的增温分布形式基本一致,由南向北逐渐增大,辽宁南部增温幅度最小,最显著地区位于黑龙江大兴安岭;不同情景下气温变化率的分布形势略有不同,但均呈显著增温趋势;3种排放情景下降水距平百分率均为增加趋势,呈由东向西逐渐增大的经向分布特征;不同情景下的降水变化率分布形势相似,呈南大北小特征,辽宁地区增长最为明显,黑龙江西部地区增长相对较小。  相似文献   

7.
利用世界气候研究计划的第五阶段模式比较计划(Coupled Model Intercomparison Project Phase 5,CMIP5)提供的参加政府间气候变化专门委员会第五次评估报告(The Fifth Assessment Report of Intergovernmental Panel on Climate Change,IPCC AR5)的23个全球气候模式和第三阶段模式比较计划/第四次评估报告CMIP3/AR4的19个全球气候模式,考虑高排放典型浓度路径RCP 8.5(Representative Concentration Pathway 8.5)和排放情景特别策划SRES A2(Special Report on Emission Scenarios A2)、中等排放(RCP 4.5和SRES A1B)和低排放(RCP 2.6和SRES B1)各3种温室气体排放情景,预估21世纪中国近地层(距地面10 m)风速变化。结果表明:21世纪中国区域近地层年平均风速呈减小的趋势,随着温室气体排放浓度的增加,年平均风速减小趋势的程度依次显著,模式预估风速减小趋势的一致性也依次增加。CMIP5和CMIP3模式的预估结果均表明21世纪中国西部地区(N和SW区)年平均风速呈减小的趋势,东部地区(NE和SE区)年平均风速呈增加的变化趋势。与21世纪前期(2006—2015年)相比,21世纪后期(2090—2099年)中国西部、华北北部至东北南部地区风速偏小,东北北部、华北南部至华南大部地区风速偏大。温室气体排放浓度越大,21世纪后期中国冬季(夏季)风速偏小(偏大)于21世纪前期的范围越大,偏小(偏大)程度越明显。  相似文献   

8.
利用区域气候模式(RegCM4)1951—2005年历史模拟和2006—2099年RCP8.5(高排放)和RCP4.5(中排放)情景下的逐日平均气温、降水量、10m风速和入射辐射通量,给出21世纪贵州省夏季与全国其他地区的旅游气候资源时空对比。结果表明:未来贵州省夏季平均气温的增幅在两种排放情景下均小于全国的增幅,且2050年以后RCP4.5(低排放)情景下的增温幅度低于RCP8.5(高排放)情景。而其他气候要素(夏季降水量,10m风速和辐射)基本上没有表现出明显的变化趋势。空间分布来看,贵州省21世纪不同阶段在两种排放情景下其夏季平均气温增幅低于北部和西部大部分区域、与云南省增幅接近,但未来云南省主要以夏季辐射增加的态势为主,尤其是21世纪中远期RCP8.5(高排放)情景下更是位于夏季辐射增加的大值中心。因此综合来看,未来夏季贵州省增温幅度较小且降水量、10m风速和辐射变化不大,将继续维持良好的夏季避暑旅游气候资源优势。同时大力提倡环保减排是维持并进一步扩大贵州省避暑旅游资源优势的有力措施。  相似文献   

9.
使用国际耦合模式比较计划第五阶段CMIP5的模式结果,在不同RCP情景下对贵州省未来气温、降水进行了预估。通过对气温、降水的模拟值和实测值的标准化均方根误差的评估得知,模式对贵州省气温的模拟能力较强,对降水的模拟能力相对较差。预估结果表明:未来在RCP8.5、RCP4.5和RCP2.6情景下贵州省气温均是明显的上升趋势,降水小幅度增加,增温(增湿)速率分别为0.5℃/10a(1.0%/10a)、0.2℃/10a(0.9%/10a)和0.1℃/10a(0.6%/10a),到了21世纪末期相对于基准期气温(降水)分别增加4.5℃(5.2%)、2.3℃(5.4%)和1.3℃(4.2%)。空间分布总体上增温幅度从西南向东北逐渐变大,而降水相对于基准期变化的区域性差异较大。总体来说,21世纪温室气体浓度越高,增温增湿速率越快。  相似文献   

10.
2种降尺度方法在太湖流域的应用对比   总被引:3,自引:1,他引:2  
刘浏  徐宗学  黄俊雄 《气象科学》2011,31(2):160-169
同时应用统计降尺度模型SDSM(Statistical Downscaling Model)和区域气候模式PRECIS(Providing Regional Climate for Impacts Studies),对太湖流域的日降水量和日最高、最低气温进行降尺度处理,建立未来2021-2050年的气候变化情景,并对比分析两种方法的适用性.结果表明,两种方法模拟的未来时期日最高、最低气温季节和年的变化情景增幅总体上比较一致,高排放情景A2下模拟生成的情景增温幅度较B2情景大,未来时期最高气温增加幅度比最低气温明显.两种方法模拟的降水变化情景差异明显,PRECIS模拟的2021-2050年降水增加趋势明显,增幅较大;而SDSM模拟的未来时期降水存在一定的减少趋势,变化幅度相对较小.以上结果说明PRECIS和SDSM都能较好地模拟太湖流域未来气温变化情景,而对未来降水的模拟不确定性较大.  相似文献   

11.
The spatial and temporal variations of daily maximum temperature(Tmax), daily minimum temperature(Tmin), daily maximum precipitation(Pmax) and daily maximum wind speed(WSmax) were examined in China using Mann-Kendall test and linear regression method. The results indicated that for China as a whole, Tmax, Tmin and Pmax had significant increasing trends at rates of 0.15℃ per decade, 0.45℃ per decade and 0.58 mm per decade,respectively, while WSmax had decreased significantly at 1.18 m·s~(-1) per decade during 1959—2014. In all regions of China, Tmin increased and WSmax decreased significantly. Spatially, Tmax increased significantly at most of the stations in South China(SC), northwestern North China(NC), northeastern Northeast China(NEC), eastern Northwest China(NWC) and eastern Southwest China(SWC), and the increasing trends were significant in NC, SC, NWC and SWC on the regional average. Tmin increased significantly at most of the stations in China, with notable increase in NEC, northern and southeastern NC and northwestern and eastern NWC. Pmax showed no significant trend at most of the stations in China, and on the regional average it decreased significantly in NC but increased in SC, NWC and the mid-lower Yangtze River valley(YR). WSmax decreased significantly at the vast majority of stations in China, with remarkable decrease in northern NC, northern and central YR, central and southern SC and in parts of central NEC and western NWC. With global climate change and rapidly economic development, China has become more vulnerable to climatic extremes and meteorological disasters, so more strategies of mitigation and/or adaptation of climatic extremes,such as environmentally-friendly and low-cost energy production systems and the enhancement of engineering defense measures are necessary for government and social publics.  相似文献   

12.
Using the International Comprehensive Ocean-Atmosphere Data Set(ICOADS) and ERA-Interim data, spatial distributions of air-sea temperature difference(ASTD) in the South China Sea(SCS) for the past 35 years are compared,and variations of spatial and temporal distributions of ASTD in this region are addressed using empirical orthogonal function decomposition and wavelet analysis methods. The results indicate that both ICOADS and ERA-Interim data can reflect actual distribution characteristics of ASTD in the SCS, but values of ASTD from the ERA-Interim data are smaller than those of the ICOADS data in the same region. In addition, the ASTD characteristics from the ERA-Interim data are not obvious inshore. A seesaw-type, north-south distribution of ASTD is dominant in the SCS; i.e., a positive peak in the south is associated with a negative peak in the north in November, and a negative peak in the south is accompanied by a positive peak in the north during April and May. Interannual ASTD variations in summer or autumn are decreasing. There is a seesaw-type distribution of ASTD between Beibu Bay and most of the SCS in summer, and the center of large values is in the Nansha Islands area in autumn. The ASTD in the SCS has a strong quasi-3a oscillation period in all seasons, and a quasi-11 a period in winter and spring. The ASTD is positively correlated with the Nio3.4 index in summer and autumn but negatively correlated in spring and winter.  相似文献   

13.
The moving-window correlation analysis was applied to investigate the relationship between autumn Indian Ocean Dipole (IOD) events and the synchronous autumn precipitation in Huaxi region, based on the daily precipitation, sea surface temperature (SST) and atmospheric circulation data from 1960 to 2012. The correlation curves of IOD and the early modulation of Huaxi region’s autumn precipitation indicated a mutational site appeared in the 1970s. During 1960 to 1979, when the IOD was in positive phase in autumn, the circulations changed from a “W” shape to an ”M” shape at 500 hPa in Asia middle-high latitude region. Cold flux got into the Sichuan province with Northwest flow, the positive anomaly of the water vapor flux transported from Western Pacific to Huaxi region strengthened, caused precipitation increase in east Huaxi region. During 1980 to 1999, when the IOD in autumn was positive phase, the atmospheric circulation presented a “W” shape at 500 hPa, the positive anomaly of the water vapor flux transported from Bay of Bengal to Huaxi region strengthened, caused precipitation ascend in west Huaxi region. In summary, the Indian Ocean changed from cold phase to warm phase since the 1970s, caused the instability of the inter-annual relationship between the IOD and the autumn rainfall in Huaxi region.  相似文献   

14.
正The Taal Volcano in Luzon is one of the most active and dangerous volcanoes of the Philippines. A recent eruption occurred on 12 January 2020(Fig. 1a), and this volcano is still active with the occurrence of volcanic earthquakes. The eruption has become a deep concern worldwide, not only for its damage on local society, but also for potential hazardous consequences on the Earth's climate and environment.  相似文献   

15.
正While China’s Air Pollution Prevention and Control Action Plan on particulate matter since 2013 has reduced sulfate significantly, aerosol ammonium nitrate remains high in East China. As the high nitrate abundances are strongly linked with ammonia, reducing ammonia emissions is becoming increasingly important to improve the air quality of China. Although satellite data provide evidence of substantial increases in atmospheric ammonia concentrations over major agricultural regions, long-term surface observation of ammonia concentrations are sparse. In addition, there is still no consensus on  相似文献   

16.
Observed daily precipitation data from the National Meteorological Observatory in Hainan province and daily data from the National Centers for Environmental Prediction/National Center for Atmospheric Research (NCEP/NCAR) reanalysis-2 dataset from 1981 to 2014 are used to analyze the relationship between Hainan extreme heavy rainfall processes in autumn (referred to as EHRPs) and 10–30 d low-frequency circulation. Based on the key low-frequency signals and the NCEP Climate Forecast System Version 2 (CFSv2) model forecasting products, a dynamical-statistical method is established for the extended-range forecast of EHRPs. The results suggest that EHRPs have a close relationship with the 10–30 d low-frequency oscillation of 850 hPa zonal wind over Hainan Island and to its north, and that they basically occur during the trough phase of the low-frequency oscillation of zonal wind. The latitudinal propagation of the low-frequency wave train in the middle-high latitudes and the meridional propagation of the low-frequency wave train along the coast of East Asia contribute to the ‘north high (cold), south low (warm)’ pattern near Hainan Island, which results in the zonal wind over Hainan Island and to its north reaching its trough, consequently leading to EHRPs. Considering the link between low-frequency circulation and EHRPs, a low-frequency wave train index (LWTI) is defined and adopted to forecast EHRPs by using NCEP CFSv2 forecasting products. EHRPs are predicted to occur during peak phases of LWTI with value larger than 1 for three or more consecutive forecast days. Hindcast experiments for EHRPs in 2015–2016 indicate that EHRPs can be predicted 8–24 d in advance, with an average period of validity of 16.7 d.  相似文献   

17.
Based on the measurements obtained at 64 national meteorological stations in the Beijing–Tianjin–Hebei (BTH) region between 1970 and 2013, the potential evapotranspiration (ET0) in this region was estimated using the Penman–Monteith equation and its sensitivity to maximum temperature (Tmax), minimum temperature (Tmin), wind speed (Vw), net radiation (Rn) and water vapor pressure (Pwv) was analyzed, respectively. The results are shown as follows. (1) The climatic elements in the BTH region underwent significant changes in the study period. Vw and Rn decreased significantly, whereas Tmin, Tmax and Pwv increased considerably. (2) In the BTH region, ET0 also exhibited a significant decreasing trend, and the sensitivity of ET0 to the climatic elements exhibited seasonal characteristics. Of all the climatic elements, ET0 was most sensitive to Pwv in the fall and winter and Rn in the spring and summer. On the annual scale, ET0 was most sensitive to Pwv, followed by Rn, Vw, Tmax and Tmin. In addition, the sensitivity coefficient of ET0 with respect to Pwv had a negative value for all the areas, indicating that increases in Pwv can prevent ET0 from increasing. (3) The sensitivity of ET0 to Tmin and Tmax was significantly lower than its sensitivity to other climatic elements. However, increases in temperature can lead to changes in Pwv and Rn. The temperature should be considered the key intrinsic climatic element that has caused the "evaporation paradox" phenomenon in the BTH region.  相似文献   

18.
Storms that occur at the Bay of Bengal (BoB) are of a bimodal pattern, which is different from that of the other sea areas. By using the NCEP, SST and JTWC data, the causes of the bimodal pattern storm activity of the BoB are diagnosed and analyzed in this paper. The result shows that the seasonal variation of general atmosphere circulation in East Asia has a regulating and controlling impact on the BoB storm activity, and the “bimodal period” of the storm activity corresponds exactly to the seasonal conversion period of atmospheric circulation. The minor wind speed of shear spring and autumn contributed to the storm, which was a crucial factor for the generation and occurrence of the “bimodal pattern” storm activity in the BoB. The analysis on sea surface temperature (SST) shows that the SSTs of all the year around in the BoB area meet the conditions required for the generation of tropical cyclones (TCs). However, the SSTs in the central area of the bay are higher than that of the surrounding areas in spring and autumn, which facilitates the occurrence of a “two-peak” storm activity pattern. The genesis potential index (GPI) quantifies and reflects the environmental conditions for the generation of the BoB storms. For GPI, the intense low-level vortex disturbance in the troposphere and high-humidity atmosphere are the sufficient conditions for storms, while large maximum wind velocity of the ground vortex radius and small vertical wind shear are the necessary conditions of storms.  相似文献   

19.
Various features of the atmospheric environment affect the number of migratory insects, besides their initial population. However, little is known about the impact of atmospheric low-frequency oscillation(10 to 90 days) on insect migration. A case study was conducted to ascertain the influence of low-frequency atmospheric oscillation on the immigration of brown planthopper, Nilaparvata lugens(Stl), in Hunan and Jiangxi provinces. The results showed the following:(1) The number of immigrating N. lugens from April to June of 2007 through 2016 mainly exhibited a periodic oscillation of 10 to 20 days.(2) The 10-20 d low-frequency number of immigrating N. lugens was significantly correlated with a low-frequency wind field and a geopotential height field at 850 h Pa.(3) During the peak phase of immigration, southwest or south winds served as a driving force and carried N. lugens populations northward, and when in the back of the trough and the front of the ridge, the downward airflow created a favorable condition for N. lugens to land in the study area. In conclusion, the northward migration of N. lugens was influenced by a low-frequency atmospheric circulation based on the analysis of dynamics. This study was the first research connecting atmospheric low-frequency oscillation to insect migration.  相似文献   

20.
The atmospheric and oceanic conditions before the onset of EP El Ni?o and CP El Ni?o in nearly 30 years are compared and analyzed by using 850 hPa wind, 20℃ isotherm depth, sea surface temperature and the Wheeler and Hendon index. The results are as follows: In the western equatorial Pacific, the occurrence of the anomalously strong westerly winds of the EP El Ni?o is earlier than that of the CP El Ni?o. Its intensity is far stronger than that of the CP El Ni?o. Two months before the El Ni?o, the anomaly westerly winds of the EP El Ni?o have extended to the eastern Pacific region, while the westerly wind anomaly of the CP El Ni?o can only extend to the west of the dateline three months before the El Ni?o and later stay there. Unlike the EP El Ni?o, the CP El Ni?o is always associated with easterly wind anomaly in the eastern equatorial Pacific before its onset. The thermocline depth anomaly of the EP El Ni?o can significantly move eastward and deepen. In addition, we also find that the evolution of thermocline is ahead of the development of the sea surface temperature for the EP El Ni?o. The strong MJO activity of the EP El Ni?o in the western and central Pacific is earlier than that of the CP El Ni?o. Measured by the standard deviation of the zonal wind square, the intensity of MJO activity of the EP El Ni?o is significantly greater than that of the CP El Ni?o before the onset of El Ni?o.  相似文献   

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