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1.
RAMS模式在金塔地区非均匀下垫面上的适用性研究   总被引:1,自引:1,他引:0       下载免费PDF全文
为检验RAMS模式在金塔地区的模拟性能, 首先选2005年7月2~3日金塔地区的一次晴好天气过程, 然后利用RAMS及MM5模式对该过程进行了48 h三重嵌套的数值模拟, 最后对金塔绿洲、 戈壁及沙漠点近地面各变量的模拟值及实测值进行了对比分析。结果表明: RAMS模式对绿洲、 戈壁和沙漠不同下垫面近地面温度的模拟表现良好, 基本模拟出了近地面相对湿度的日变化趋势, 较好地模拟出了绿洲\_沙漠环流引起的绿洲“冷岛效应”和临近绿洲的戈壁与沙漠上空的“逆湿”现象; RAMS模式对绿洲下垫面潜热通量的模拟比感热通量更接近实况, 而对戈壁和沙漠下垫面感热通量的模拟好于潜热通量, 三种下垫面上净辐射的模拟都与观测值较接近; 同MM5模式的模拟结果比较, RAMS模式对非均匀下垫面净辐射、 感热通量的数值模拟更优于MM5模式。这表明RAMS模式在金塔地区应用的可行性。  相似文献   

2.
利用ERA-Interim地表热通量再分析资料(包含感热通量及潜热通量数据)分析了1979年3月至2009年2月青藏高原地区(下称高原)地面加热场的时空分布特征及其年际变化趋势。突出青藏高原地面加热场与西风急流的联系,分别探讨了青藏高原春季感热及潜热变化的可能影响机制。结果表明:(1)高原感热空间分布大体呈现为自西北向东南递减的特征,潜热与感热呈反相的空间格局,自西北向东南逐渐增强。(2)相比于夏、秋、冬三季,春季高原地表热通量年际变化特征较为突出,其中感热通量显著减少,潜热通量显著增加[分别为-1.83和0.79 W·m~(-2)·(10a)~(-1)],该趋势和全年平均热通量年际变化情况一致。(3)就年际变化而言,春季感热通量与潜热通量之间存在明显的负相关(相关系数为-0.69),表明可能存在某一气候因子使得春季感热减弱而使潜热增强。进一步分析发现,高原地面加热场与西风急流存在密切的联系,春季西风急流的减弱在影响高原感热强度的同时,对高原潜热也具有较大影响。其可能影响机制如下:受高原上空西风急流减弱的影响,高原地表风速减弱从而导致感热通量显著减少;春季西风急流的减弱导致印缅槽的增强,在孟加拉湾上空形成一异常气旋环流,使该地区对流增强、水汽上升异常,同时气旋中北向暖湿气流将水汽携带至高原南侧,并通过影响高原降水量改变其潜热通量。  相似文献   

3.
利用NCEP/NCAR地面感热通量再分析格点资料以及MICAPS天气图资料识别的高原低涡资料集,分析了1981—2010年青藏高原夏季地面感热通量线性倾向分布的空间分布特征,重点讨论了夏季高原地面感热通量与同期高原低涡生成频数的可能联系尤其是空间相关性。结果表明,近30 a夏季感热通量的线性倾向分布具有区域性差异,感热减少趋势在高原分布较广且负值中心明显,感热增加主要分布在高原西北部和东部。夏季地面感热通量与同期高原低涡生成频数呈高度正相关;感热通量强年,高原主体东部地区低层呈气旋式环流,高层为辐散气流,高原上空上升气流偏强,感热通量弱年的情形与之相反。地面感热加热强度与高原低涡的生成频数在空间上有明显联系。  相似文献   

4.
丁洁  褚涛 《气象科学》2019,39(3):396-404
使用区域气候模式RegCM4.4.5.7,通过改变春季欧亚大陆中高纬地区的陆面感热通量,对欧亚中高纬感热异常影响中国夏季气候进行模拟分析,并探讨其影响机制。试验结果表明:当春季欧亚中高纬陆面感热通量加强时,我国长江流域和东北东部夏季气温降低,降水偏多;华北地区气温升高,降水偏少。春季陆面感热增强引起近地面和对流层低层大气热力状况异常,进而导致高度场和环流场的异常,长江流域和东北地区有气旋环流,对流运动旺盛,结合充足的水汽条件,对应降水偏多,而华北地区则相反,有反气旋环流和微弱的气流辐合,对应降水偏少。研究表明欧亚中高纬陆面感热异常是影响我国夏季气候的一个不可忽视的因子。  相似文献   

5.
北极地区楚克奇海域一次强逆温过程的分析   总被引:8,自引:6,他引:2  
利用中国首次北极科学考察期间所获得的大气边界层资料,分析了楚克奇海域夏季一次强逆温过程.考察期间楚克奇海域上空的大气逆温强度(6.3℃/100 m)远远超过了北极地区夏季的气候平均值(0.5℃/100 m),该大气逆温存在明显的日变化,逆温强度自当地时间00时到18时逐步减弱.考察期间同样存在强大的逆湿结构,逆湿层内最大湿度差为6.4 g m-3.稳定边界层内大气向地面输送感热通量和潜热通量,输送最大值出现在夜间.研究同时段的大气环流资料后表明,考察区域西南的暖湿气流及其变化是造成此次夏季强逆温及其日变化的主要原因.  相似文献   

6.
敦煌绿洲夏季边界层特征的数值模拟   总被引:16,自引:14,他引:2  
吕世华  罗斯琼 《高原气象》2004,23(2):147-154
使用美国NCAR新版MM5V3.6非静力平衡模式,采用三重嵌套方法,模拟研究了沙漠绿洲的环流及边界层特征。并且与无绿洲试验进行了比较。结果表明:沙漠中的绿洲在夏季是一个冷源,地面感热通量和潜热通量与周围的沙漠地区存在较大差异。在绿洲区,感热通量小,潜热通量大;在沙漠区,感热通量大,潜热通量小。绿洲边界层顶低,沙漠边界层顶高。绿洲可以改变沙漠地区的大气稳定度,使得原来大气层结不稳定的沙漠地区出现较稳定的大气层结。沙漠绿洲改变了原有沙漠地区的环流结构及温、湿场的分布,使得在绿洲上空大气下沉,沙漠上空大气上升,从而产生了绿洲上空大气干冷,沙漠上空大气暖湿的边界特征。绿洲边缘的沙漠形成的较大的湿气柱围绕着绿洲,起到了保护绿洲的作用。沙漠绿洲低空呈现辐散气流,使得绿洲上风方的沙漠地区风速减小,绿洲下风方的沙漠地区风速增大。  相似文献   

7.
利用区域气候模式Reg CM4.3(Regional Climate Mode version 4.3)对新疆地区冬季的地表状态进行了模拟分析,通过与ERA40再分析资料的对比分析发现,温度分布形势模拟较好,地面热力状态受地形影响显著,陡峭地形附近由于热性质差异大和非均匀性强会导致较大模拟误差;模式较好模拟出降水和潜热通量北疆多南疆少,山区多盆地少的分布特征,模拟出通过反照率影响,地表吸收的短波辐射呈现出沙漠腹地吸收多而天山地区吸收少的分布,对北疆呈感热通量汇而南疆呈感热通量源的感热分布形势也模拟较好;模拟的雪水当量与降水分布有较好的一致性,春季融雪径流与冬季雪水当量分布及降水均有较好的对应关系。通过模拟分析也发现,现有方案实际感热通量计算中以地面温度代替地面位温,造成感热通量偏小,因此会低估南疆感热源效应和高估北疆感热汇效应。此外,积雪量和地面温度模拟偏高可能是春季北疆主要积雪区径流偏强的原因。  相似文献   

8.
利用2012年1—3月玛曲站的观测资料和单点模式Noah_LSM,通过敏感性试验研究了3次积雪过程对近地层气象要素的影响。结果表明:(1)Noah_LSM模式能较好地模拟出近地层气象要素的变化特征;(2)敏感性试验1模拟的净辐射、感热通量、潜热通量、气温和30、60 cm土壤温度均大于控制试验的模拟结果;(3)敏感性试验2模拟结果表明较大的风速可能是造成2月18日出现大潜热通量和负感热通量的一个原因。  相似文献   

9.
青藏高原表面过程对夏季青藏高压的影响--数值试验   总被引:14,自引:2,他引:14  
利用IAP/LASGGOALS气候模式设计了两组敏感性试验,分别考察青藏高原表面感热输送和表面摩擦拖曳对夏季青藏高压的影响.结果表明,表面感热输送显著增强了高原近地层气柱中正涡度的制造和气旋性环流,同时增强了高原上空气柱高层的负涡度制造和反气旋性环流.另一方面,高原表面摩擦拖曳虽然使得低层的辐合略有增加,但施加给整层气柱以反气旋性涡度.因而高原表面的感热输送和表面摩擦拖曳对夏季青藏高压都有增强的作用.表面摩擦拖曳对上空环流的影响随着高度升高而减弱,而表面感热输送引起的高层负涡度的增加与低层正涡度的增加在数值上相当甚至更大.  相似文献   

10.
通用陆面模式CLM在东亚不同典型下垫面的验证试验   总被引:20,自引:7,他引:13  
利用野外观测资料,考察了通用陆面过程模式(CLM)对东亚地区3种典型下垫面(高原稀疏植被下垫面、森林、水田)的模拟能力.验证结果表明,在高原稀疏植被下垫面,CLM模拟的地表气温跟实测较为接近,同时CLM还可以较好地模拟出土壤温度随时间和深度的变化特征,但模式模拟的地面温度的幅值跟观测相比显著偏小;对于能量通量而言,除感热通量外,CLM所模拟出的其它能量通量的变化均与观测实况比较一致.对于淮河流域的森林下垫面,CLM所模拟出陆气间的各能量通量均与实测较为接近,尤以夏季(8月份)的模拟性能最好.对于水田下垫面,CLM模式较好地模拟出了各能量通量的主要变化特征及其季节差异,如水田的净辐射以及潜热通量夏季最大,而感热通量则是秋季最大等.  相似文献   

11.
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   

12.
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   

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.
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   

15.
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   

16.
基于最新的GTAP8 (Global Trade Analysis Project)数据库,使用投入产出法,分析了2004年到2007年全球贸易变化下南北集团贸易隐含碳变化及对全球碳排放的影响。结果显示,随着发展中国家进出口规模扩张,全球贸易隐含碳流向的重心逐渐向发展中国家转移。2004年到2007年,发达国家高端设备制造业和服务业出口以及发展中国家资源、能源密集型行业及中低端制造业出口的趋势加强,该过程的生产转移导致全球碳排放增长4.15亿t,占研究时段全球贸易隐含碳增量的63%。未来发展中国家的出口隐含碳比重还将进一步提高。贸易变化带来的南北集团隐含碳流动变化对全球应对气候变化行动的影响日益突出,发达国家对此负有重要责任。  相似文献   

17.
正ERRATUM to: Atmospheric and Oceanic Science Letters, 4(2011), 124-130 On page 126 of the printed edition (Issue 2, Volume 4), Fig. 2 was a wrong figure because the contact author made mistake giving the wrong one. The corrected edition has been updated on our website. The editorial office is sincerely sorry for any  相似文献   

18.
19.
Index to Vol.31     
正AN Junling;see LI Ying et al.;(5),1221—1232AN Junling;see QU Yu et al.;(4),787-800AN Junling;see WANG Feng et al.;(6),1331-1342Ania POLOMSKA-HARLICK;see Jieshun ZHU et al.;(4),743-754Baek-Min KIM;see Seong-Joong KIM et al.;(4),863-878BAI Tao;see LI Gang et al.;(1),66-84BAO Qing;see YANG Jing et al.;(5),1147—1156BEI Naifang;  相似文献   

20.
正Journal of Meteorological Research is an international academic journal in atmospheric sciences edited and published by Acta Meteorologica Sinica Press,sponsored by the Chinese Meteorological Society.It has been acting as a bridge of academic exchange between Chinese and foreign meteorologists and aiming at introduction of the current advancements in atmospheric sciences in China.The journal columns include Articles.Note and Correspondence,and research letters.Contributions from all over the world are welcome.  相似文献   

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