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1.
In this paper,the forecasting equations of a 2nd-order space-time differential remainder are deduced from the Navier-Stokes primitive equations and Eulerian operator by Taylor-series expansion.Here we introduce a cubic spline numerical model(Spline Model for short),which is with a quasi-Lagrangian time-split integration scheme of fitting cubic spline/bicubic surface to all physical variable fields in the atmospheric equations on spherical discrete latitude-longitude mesh.A new algorithm of"fitting cubic spline—time step integration—fitting cubic spline—……"is developed to determine their first-and2nd-order derivatives and their upstream points for time discrete integral to the governing equations in Spline Model.And the cubic spline function and its mathematical polarities are also discussed to understand the Spline Model’s mathematical foundation of numerical analysis.It is pointed out that the Spline Model has mathematical laws of"convergence"of the cubic spline functions contracting to the original functions as well as its 1st-order and 2nd-order derivatives.The"optimality"of the 2nd-order derivative of the cubic spline functions is optimal approximation to that of the original functions.In addition,a Hermite bicubic patch is equivalent to operate on a grid for a 2nd-order derivative variable field.Besides,the slopes and curvatures of a central difference are identified respectively,with a smoothing coefficient of 1/3,three-point smoothing of that of a cubic spline.Then the slopes and curvatures of a central difference are calculated from the smoothing coefficient 1/3 and three-point smoothing of that of a cubic spline,respectively.Furthermore,a global simulation case of adiabatic,non-frictional and"incompressible"model atmosphere is shown with the quasi-Lagrangian time integration by using a global Spline Model,whose initial condition comes from the NCEP reanalysis data,along with quasi-uniform latitude-longitude grids and the so-called"shallow atmosphere"Navier-Stokes primitive equations in the spherical coordinates.The Spline Model,which adopted the Navier-Stokes primitive equations and quasi-Lagrangian time-split integration scheme,provides an initial ideal case of global atmospheric circulation.In addition,considering the essentially non-linear atmospheric motions,the Spline Model could judge reasonably well simple points of any smoothed variable field according to its fitting spline curvatures that must conform to its physical interpretation.  相似文献   

2.
The classification of the Northeast China Cold Vortex(NCCV)activity paths is an important way to analyze its characteristics in detail.Based on the daily precipitation data of the northeastern China(NEC)region,and the atmospheric circulation field and temperature field data of ERA-Interim for every six hours,the NCCV processes during the early summer(June)seasons from 1979 to 2018 were objectively identified.Then,the NCCV processes were classified using a machine learning method(k-means)according to the characteristic parameters of the activity path information.The rationality of the classification results was verified from two aspects,as follows:(1)the atmospheric circulation configuration of the NCCV on various paths;and(2)its influences on the climate conditions in the NEC.The obtained results showed that the activity paths of the NCCV could be divided into four types according to such characteristics as the generation origin,movement direction,and movement velocity of the NCCV.These included the generation-eastward movement type in the east of the Mongolia Plateau(eastward movement type or type A);generation-southeast longdistance movement type in the upstream of the Lena River(southeast long-distance movement type or type B);generationeastward less-movement type near Lake Baikal(eastward less-movement type or type C);and the generation-southward less-movement type in eastern Siberia(southward less-movement type or type D).There were obvious differences observed in the atmospheric circulation configuration and the climate impact of the NCCV on the four above-mentioned types of paths,which indicated that the classification results were reasonable.  相似文献   

3.
In this paper,we investigate the influence of the winter NAO on the multidecadal variability of winter East Asian surface air temperature(EASAT)and EASAT decadal prediction.The observational analysis shows that the winter EASAT and East Asian minimum SAT(EAmSAT)display strong in-phase fluctuations and a significant 60-80-year multidecadal variability,apart from a long-term warming trend.The winter EASAT experienced a decreasing trend in the last two decades,which is consistent with the occurrence of extremely cold events in East Asia winters in recent years.The winter NAO leads the detrended winter EASAT by 12-18 years with the greatest significant positive correlation at the lead time of 15 years.Further analysis shows that ENSO may affect winter EASAT interannual variability,but does not affect the robust lead relationship between the winter NAO and EASAT.We present the coupled oceanic-atmospheric bridge(COAB)mechanism of the NAO influences on winter EASAT multidecadal variability through its accumulated delayed effect of~15 years on the Atlantic Multidecadal Oscillation(AMO)and Africa-Asia multidecadal teleconnection(AAMT)pattern.An NAO-based linear model for predicting winter decadal EASAT is constructed on the principle of the COAB mechanism,with good hindcast performance.The winter EASAT for 2020-34 is predicted to keep on fluctuating downward until~2025,implying a high probability of occurrence of extremely cold events in coming winters in East Asia,followed by a sudden turn towards sharp warming.The predicted 2020/21 winter EASAT is almost the same as the 2019/20 winter.  相似文献   

4.
Phase Two of the Integrative Monsoon Frontal Rainfall Experiment(IMFRE-II)was conducted over the middle and lower reaches of the Yangtze River during the period 16 June to 19 July 2020.This paper provides a brief overview of the IMFRE-II field campaign,including the multiple ground-based remote sensors,aircraft probes,and their corresponding measurements during the 2020 mei-yu period,as well as how to use these numerous datasets to answer scientific questions.The highlights of IMFRE-II are:(1)to the best of our knowledge,IMFRE-II is the first field campaign in China to use ground-based,airborne,and spaceborne platforms to conduct comprehensive observations over the middle and lower reaches of the Yangtze River;and(2)seven aircraft flights were successfully carried out,and the spectra of ice particles,cloud droplets,and raindrops at different altitudes were obtained.These in-situ measurements will provide a“cloud truth”to validate the ground-based and satellite-retrieved cloud and precipitation properties and quantitatively estimate their retrieval uncertainties.They are also crucial for the development of a warm(and/or cold)rain conceptual model in order to better understand the cloud-to-rain conversion and accretion processes in mei-yu precipitation events.Through an integrative analysis of ground-based,aircraft,and satellite observations and model simulations,we can significantly improve our cloud and precipitation retrieval algorithms,investigate the microphysical properties of cloud and precipitation,understand in-depth the formation and dissipation mechanisms of mei-yu frontal systems,and improve cloud microphysics parameterization schemes and model simulations.  相似文献   

5.
Based on tropical cyclone (TC) data for the period 1949 to 2008 and following the Gumbe-I method, Pearson-Ⅲ method and determinacy method, this article estimates the possible minimum central pressure of TCs affecting southern Fujian where a nuclear power will be located. Results show that the observed minimum central pressure of TCs agrees well with the results determined with the methods above and there is little difference between them (the minimum central pressure is 867.4 hPa and 868.1 hPa, respectively, in a 1,000-yr return period). Established with the theory of atmospheric dynamics, the determinacy method yields a result of 867.28 hPa/1000 years, only a little smaller than the result of the probability method. Because of randomicity in parameter adjustment with the Pearson-Ⅲ method whereas the determinacy method is theoretically solid and its estimates are the smallest of the three methods, it is therefore reasonable, for security and conservative concerns, to adopt the result determined with the determinacy method as the possible maximum intensity of TC (with the central pressure being 867.28 hPa in a 1,000-yr return period).  相似文献   

6.
Idealized supercell storms are simulated with two aerosol-aware bulk microphysics schemes(BMSs),the Thompson and the Chen-Liu-Reisner(CLR),using the Weather Research and Forecast(WRF)model.The objective of this study is to investigate the parameterizations of aerosol effects on cloud and precipitation characteristics and assess the necessity of introducing aerosols into a weather prediction model at fine grid resolution.The results show that aerosols play a decisive role in the composition of clouds in terms of the mixing ratios and number concentrations of liquid and ice hydrometeors in an intense supercell storm.The storm consists of a large amount of cloud water and snow in the polluted environment,but a large amount of rainwater and graupel instead in the clean environment.The total precipitation and rain intensity are suppressed in the CLR scheme more than in the Thompson scheme in the first three hours of storm simulations.The critical processes explaining the differences are the auto-conversion rate in the warm-rain process at the beginning of storm intensification and the low-level cooling induced by large ice hydrometeors.The cloud condensation nuclei(CCN)activation and auto-conversion processes of the two schemes exhibit considerable differences,indicating the inherent uncertainty of the parameterized aerosol effects among different BMSs.Beyond the aerosol effects,the fall speed characteristics of graupel in the two schemes play an important role in the storm dynamics and precipitation via low-level cooling.The rapid intensification of storms simulated with the Thompson scheme is attributed to the production of hail-like graupel.  相似文献   

7.
THE IMPACTS OF MADDEN-JULIAN OSCILLATION ON SPRING RAINFALL IN EAST CHINA   总被引:3,自引:1,他引:2  
Phase composite analyses are conducted to investigate the possible effect of the Madden–Julian oscillation(MJO)on the spring rainfall anomalies in East China by using the Real-time Multivariate MJO(RMM)index from Australian Meteorological Bureau.The results show that the rainfall anomalies over the mid-and lower-valley of Yangtze River are positive when the MJO shifts eastward to the mid-and eastern-Indian Ocean,and anomalous precipitation over South China are positive when the MJO moves further eastward to the maritime continent,whereas spring rainfall anomalies over East China are negative in the other MJO episodes.The MJO impacts on the precipitation over East China result from the changes in large-scale atmospheric circulation as well as vorticity and water vapor transportation in the mid-and lower-troposphere.  相似文献   

8.
Global climate changes significantly impact the water condition of big rivers in glacierized high mountains. However,there is a lack of studies on hydrological changes within river basins caused by climate changes over a geological timescale due to the impossibility of direct observations. In this study, we examine the hydro-climatic variation of the Yarlung Zangbo River Basin in the Tibet Plateau since the Last Glacial Maximum(LGM) by combining δ18 O proxy records in Indian and Omani caves with the simulated Indian summer monsoon, surface temperature, precipitation, evapotranspiration and runoff via the Community Climate System Model and the reconstructed glacier coverage via the Parallel Ice Sheet Model. The mean river runoff was kept at a low level of 145 billion cubic meters per year until an abrupt increase at a rate of 8.7 million cubic meters per year in the B?lling-Aller?d interval(BA). The annual runoff reached a maximum of 250 billion cubic meters in the early Holocene and then reduced to the current value of 180 billion cubic meters at a rate of 6.4 million cubic meters per year. The low runoff in the LGM and Heinrich Stadial 1(HS1) is likely attributed to such a small contribution of precipitation to runoff and the large glacier cover. The percentage of precipitation to runoff was only 20%during the LGM and HS1. Comparison of glacier area among different periods indicates that the fastest deglaciation occurred during the late HS1, when nearly 60% of glacier area disappeared in the middle reach, 50% in the upper reach,and 30% in the lower reach. The rapid deglaciation and increasing runoff between the late HS1 and BA may have accelerated widespread ice-dam breaches and led to extreme outburst flood events. Combining local geological proxy records and regional simulations could be a useful approach for the study of paleo-hydrologic variations in big river basins.  相似文献   

9.
This study reports verification results of hindcast data of four systems in the subseasonal-to-seasonal(S2S)prediction project for major stratospheric sudden warmings(MSSWs)in northern winter from 1998/99 to 2012/13.This report deals with average features across all MSSWs,and possible differences between two MSSW types(vortex displacement and split types).Results for the average features show that stratospheric forecast verifications,when further averaged among the four systems,are judged to be successful for lead times around 10 d or shorter.All systems are skillful for lead times around 5 d,whereas the results vary among the systems for longer lead times.A comparison between the MSSW types overall suggests larger forecast errors or lower skill for MSSWs of the vortex split type,although the differences do not have strong statistical significance for almost all cases.This limitation is likely to at least partly reflect the small sample size of the MSSWs available.  相似文献   

10.
南京三千公尺高空之风向与天气之预测   总被引:1,自引:0,他引:1  
晚近日本籐原笑平(Fujiwhora)博士于地球物理杂志发表「根据三千公尺高空等压线,以预测天气之一例证」一文,谓日本最近用三千公尺高空之等压线,作每日天气之预测,已得相当成就。氏之经验法则谓自九月以迄五月,日本太平洋沿岸,三千公尺高空之等压线,来自西南者,可形去致雨,而来自西北者,则可期晴明。此种倾向颇为显著。  相似文献   

11.
一次江淮暴雨中中尺度低涡的数值模拟及分析   总被引:6,自引:3,他引:6  
利用MM5模式对2003年7月4—5日一次江淮梅雨暴雨过程进行了数值模拟。分析表明:暴雨与江淮地区对流层中低层中尺度低涡的发生发展有密切关系。中尺度低涡与中尺度雨团相伴移动,低涡强度与雨强的演变近于一致;低涡中心的强上升运动及低层辐合、高层辐散的配置有利于中尺度对流系统的发生发展;低涡低层有不稳定能量的积聚。应用螺旋度理论分析指出,较大的螺旋度是对流层中低层低涡发生和发展的一种有利机制。  相似文献   

12.
一次局地大暴雨过程的数值模拟和诊断分析   总被引:14,自引:0,他引:14  
采用中尺度数值模式MM5(V3)对2002年8月15-16日发生在江苏启东附近的一次局地大暴雨过程进行了数值模拟,较好地模拟出了本次过程的暴雨中心落区和降水量,以及相关的中尺度系统的发生、发展过程.探讨了中尺度涡旋、局地环流对这次暴雨过程的影响,结果表明,中尺度涡旋对暴雨的发生起了至关重要的作用,局地环流的存在,也有利于降水的发生.  相似文献   

13.
"99.8"山东特大暴雨形成机制的数值模拟分析   总被引:20,自引:9,他引:11  
利用双重嵌套的非静力数值模式MM5V3,成功地模拟了1999年8月11~12日山东诸城发生的特大暴雨。利用模式输出的高时空分辨率资料,对这次暴雨天气及中尺度低涡的形成机制进行了诊断分析。结果表明,这次特大暴雨是在弱冷空气侵入台风低压环流,热带辐合带北伸的形势下形成的;倾斜涡度发展是特大暴雨及中尺度低涡产生、发展的重要机制,鲁东南有利的地形对中尺度低涡的形成具有重要作用;台风低压倒槽顶部的强辐合作用首先触发上升运动,产生强降水,强降水位于低层气旋性暖式切变最明显的地方;强降水释放的凝结潜热使高层气层增暖,高层辐散加强,引起低层中尺度低涡强烈发展,导致降水增幅。可见,CISK机制是特大暴雨和中尺度低涡加强的另一种机制。  相似文献   

14.
贵州大暴雨个例形成机制数值模拟   总被引:1,自引:0,他引:1  
利用3层嵌套的中尺度数值模式MM5 V3.5,模拟了2007年6月24~25日发生在贵州中南部的一次大暴雨过程.利用模式输出的高分辨率资料,对这次暴雨天气及中尺度低涡的形成机制进行了诊断分析.模式较成功地模拟出了中尺度系统的演变和降水的分布特征.中尺度低涡的发展、稳定维持是造成贵州这次大暴雨天气的直接原因.暴雨、大暴雨出现在低涡的西南侧.在低层正涡度、辐合、强烈的上升运动和高层负涡度、辐散的有利配置下,形成深厚的上升运动柱,这种中尺度动力配置结构,不仅与暴雨区和暴雨发生时段相对应,而且是引起此次暴雨的中尺度低涡发展和持续的动力机制之一.暴雨区与强烈上升运动区,正涡度区相对应.  相似文献   

15.
利用NCEP1°×1°再分析资料、卫星云图TBB资料和逐小时地面降水资料对2012年7月12~13日发生在湖北东部地区一次大暴雨过程进行了分析,结果表明:(1)在华北横槽转竖带动冷空气南下的过程中,中低层有中尺度低涡的发生发展,中尺度低涡的稳定维持与副高外围西南暖湿气流共同作用,导致了这次强降雨的发生。(2)鄂东强降水主要由两个中尺度暴雨云团影响,前一个暴雨云团为MCC,受副高外围西南气流向偏东方向移动,后一个暴雨云团受冷空气影响向东南方向移动。(3)低层露点锋与本次强降水天气过程的发生发展有较好的对应,锋区北侧偏北气流穿越露点锋,使得低层气旋式涡度增大、辐合加强。(4)本次过程干湿空气的相互作用形成能量锋区,锋区的维持和加强导致了强降水的发生。   相似文献   

16.
江西一次暴雨过程的诊断分析   总被引:3,自引:0,他引:3  
利用NCEP 1°×1°再分析资料、地面与探空资料、卫星资料等,对2012年5月12日发生在江西省中部的一次暴雨过程进行诊断分析。结果表明:本次暴雨过程发生在冷锋南侧地面倒槽区,由高层西风槽、低层低空急流及切变线、低涡共同影响所致。中低层西南气流的加强,一方面使暴雨区有充足的水汽输送,同时也使该区对流不稳定度加大,加强了暴雨区上空的对流上升运动。中尺度辐合线是强对流暴雨的触发机制,而冷锋影响使地面东风气流加强,冷空气入侵致中尺度辐合线演变为中尺度低压,中尺度低压是江西短时强降水长时间持续的机制;500hPa高空槽东移,槽前正涡度平流向江西上空输送,利于低层低涡生成和维持、上升运动加强,从而导致降水增强。冷空气影响初始阶段,〉10mm·h-1 的中尺度雨团产生在中尺度辐合线及其所演变成低压的1、2象限即中尺度辐合线或中尺度低压偏北一侧,随着冷空气的进一步入侵,中尺度雨团产生于中尺度低压的偏南一侧。  相似文献   

17.
江淮梅雨锋强暴雨低涡系统发生发展的数值研究   总被引:16,自引:2,他引:14  
利用美国新一代中尺度WRF(Weather Research and Forecast)模式,采用高分辨率的细网格距和适当的物理方案,对2003年7月4—5日的江淮梅雨锋强暴雨中尺度系统进行了数值模拟研究。模拟结果很好地描述了本次暴雨及其中尺度系统发生、发展的时空演变过程,并较理想地预报出了该次降水的落区、强度及降水中心的位置。着重分析了低空急流、倾斜不稳定发展及中尺度低涡系统和对流层高层小扰动,并进一步指出了其形成、发展的物理机制。从数值模拟分析结果看,倾斜垂直涡度的发展是造成低空涡旋生成和发展的动力机制。充足的湿有效能量和凝结潜热的释放为本次大降水过程提供了物质条件。  相似文献   

18.
王欢  倪允琪 《气象学报》2006,64(6):734-742
2003年7月4—5日淮河流域发生了一次中尺度强暴雨过程,致使淮河洪水泛滥。这次暴雨过程由中尺度对流系统(MCS)以及因其发展而产生的低涡造成。通过对此次过程的诊断分析和新一代细网格WRF中尺度预报模式的数值模拟,研究了这次过程发生发展的机制。模拟结果较好地描述了本次暴雨及中尺度系统发生、发展的时空演变过程。分析结果表明:此次移动性暴雨过程的前期由不断向东移动发展的MCS造成,后期降水则由低涡切变线产生的中尺度低涡引起。同时,副热带高压明显偏西偏北,并维持较长时间,造成雨带一直维持在淮河流域。高层辐合中心的加强使低空急流不断增强,低空急流的增强进而引起低层辐合的加强,而低层辐合的加强以及上升运动的潜热释放导致低涡的发生,低涡形成及形成后移动缓慢,造成了淮河流域的大暴雨。高层中尺度辐散区的抽吸对低层中尺度涡旋的发生发展起到了促进和加强的作用。低层的中尺度辐合场和高层的中尺度辐散场的发展与耦合对中尺度系统的发展有很好的预示作用。低层中尺度辐合区的减弱预示着系统的衰减,西南偏西的中层相对干冷空气侵入并在梅雨锋前缘下沉促进了系统的衰减。  相似文献   

19.
The cumulus merging processes in generating the mesoscale convective system (MCS) on 23 August 2001 in the Beijing region are studied by using a cloud-resolving mesoscale model of MM5. The results suggest that the merger processes occurred among isolated convective cells formed in high mountain region during southerly moving process play critical role in forming MCS and severe precipitating weather events such as hailfall, heavy rain, downburst and high-frequency lightning in the region. The formation of the MCS experiences multi-scale merging processes from single-cell scale merging to cloud cluster-scale merging, and high core merging. The merger process can apparently alter cloud dynamical and microphysical properties through enhancing both low- and middle-level forcing. Also, lightning flash rates are enhanced by the production of more intense and deeper convective cells by the merger process, especially by which, the more graupel-like ice particles are formed in clouds. The explosive convective development and the late peak lightning flash rate can be found during merging process.  相似文献   

20.
李平  官莉  黄勇  翟菁 《辽宁气象》2011,(6):20-27
利用LAPS系统融合分析资料对安徽沿淮一次短时暴雨过程进行中尺度天气分析,探讨降水过程成因机制及天气结构特点,同时验证LAPS分析资料的实用性。结果表明:过程主要影响系统为中尺度气旋式涡旋,其向安徽北部沿淮地区移动为暴雨的发生、发展提供了触发机制。雷达降水回波主要出现在850hPa中尺度涡旋南侧以及700hPa槽前西南气流辐合上升运动过程中,持续的低空急流及其带来的水汽共同为暴雨过程提供了水汽条件和动力机制。比较雷达回波发展和云中液态水含量演变发现,云中液态水含量极大值区多出现在雷达回波单体的新生区域,借助于LAPS云中液态水含量分布结果对预测雷迭回波发展趋势及降水分布有借鉴作用。  相似文献   

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