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1.
基于WRF模式对青藏高原一次强降水的模拟   总被引:4,自引:0,他引:4  
何由  阳坤  姚檀栋  何杰 《高原气象》2012,31(5):1183-1191
为了了解新一代中尺度数值预报模式WRF中各参数化方案组合、嵌套技术的使用对青藏高原降水模拟结果的影响,利用WRF模式对2004年10月5—6日青藏高原一次强降水过程进行了模拟试验;对各微物理方案和积云参数化方案组合进行了模拟和对比评分,对嵌套技术的使用进行了对比分析,主要分析了不同行星边界层方案选择对降水模拟的影响。结果表明,WRF模式基本能够重建此次强降水过程的中心、强度及降水范围,Eta-Ferrier云微物理方案和Betts-Miller-Janjic积云参数化方案的组合在此次模拟降水过程中是最优的,采用嵌套技术的模拟结果要优于不采用嵌套技术的结果;行星边界层方案的合理选择能够明显提高降水模拟的效果。  相似文献   

2.
使用NCEP-FNL全球分析资料作为WRF模式的初始场和边界场,利用该模式中7种积云对流参数化方案对新疆地区进行2006年10月1日至2008年3月1日的模拟积分试验,重点考察模式在水平分辨率为10 km下不同积云对流参数化方案对新疆地区气象要素模拟的敏感性。结果表明:1)采用7种积云对流参数化方案的模式都能较好地模拟出年、雨季总降水量、平均温度的空间分布及大气的垂直结构。2)对于不同区域来说,采用各种积云对流参数化方案的模式都能模拟出候降水及候平均温度随时间演变,模式候降水与观测的相关系数在0.20~0.85之间,而候平均温度与观测的相关系数在0.98以上。对于整个新疆地区来说,采用各方案模式模拟的低层偏干偏冷,大气层结较稳定导致降水较观测偏少,而其中天山地区模式模拟的低层较观测偏湿偏暖,大气层结偏向不稳定导致降水偏多。3)采用新的Grell和Kain-Fritsch(new Eta)方案模式模拟的效果综合来看较好。因此利用WRF模式开展新疆地区数值模拟研究时应该考虑不同积云对流参数化方案适用范围。  相似文献   

3.
基于WRF(Weather Research and Forecasting)模式及其3Dvar(3-Dimentional Variational)资料同化系统,采用36、12、4 km嵌套网格进行快速更新循环同化和不同的微物理及积云对流参数化方案对比试验,对2011年5月8日鲁中一次局地大暴雨过程进行了研究。结果表明,快速更新循环同化地面观测资料是影响模式降水落区预报准确性的关键因素,不同的微物理和积云对流参数化方案主要影响降水强度预报。采用不同的微物理参数化方案和积云对流参数化方案进行降水预报对比试验表明,LIN方案和WSM6(WRF Single-Moment 6-class)微物理参数化方案对降水预报均较好,LIN方案降水预报较WSM6方案略强。4 km网格预报使用K-F (Kain-Fritsch)积云对流参数化方案或不使用积云对流参数化方案,预报的降水均较好。4 km网格使用旧的K-F积云对流参数化方案,预报的近地层大气风场偏弱,导致大气动力抬升作用偏弱,从而造成模式降水预报偏弱。  相似文献   

4.
模式水平分辨率影响积云对流参数化效果的数值试验   总被引:8,自引:1,他引:8  
周天军  钱永甫 《高原气象》1996,15(2):204-211
利用一个有限区域嵌套细网格数据预模式,设计了3种不同分辨率的模式网格,通过对一次降水过程的预报,检验了模式水平分辨率对积云对流参数化效果的影响。结果表明:模水平分辨率的变化将直接影响积云对流参数化的效果,从而影响降水场和形势场。  相似文献   

5.
以2005年7月上旬江淮流域的一次梅雨锋暴雨为研究对象,选取WRF模式中Lin和Ferrier两个微物理方案和KF、NKF、Betts-Miller-Janjic三个积云参数化方案,经过组合得到6组方案,进行两重网格嵌套模拟,对数值模拟结果进行分析比较。通过分析得出如下结论:6个方案均能模拟出降水雨带的走向、降水中心,其中Ferri-er和NKF方案及Ferrier和Betts-Miller-Janjic方案模拟的降水强度和分布与实况最接近;在模拟降水量时采用微物理方案Ferrier初始阶段效果好,采用微物理方案Lin在后期效果好;当微物理方案相同时,积云对流参数化方案的变化对垂直速度、假相当位温、相对比湿的反映敏感;粗网格采用一定的积云对流参数化后,可一定程度再现α中尺度特征。  相似文献   

6.
分辨率对区域气候极端事件模拟的影响   总被引:13,自引:2,他引:13  
汤剑平  赵鸣  苏炳凯 《气象学报》2006,64(4):432-442
利用NCAR MM5V3对1999年6月长江流域的极端异常降水事件进行了模拟,主要研究不同水平和垂直分辨率对极端区域气候事件模拟的影响。数值模拟试验表明:模式能够模拟出极端强降水的主要分布特征;水平分辨率的提高降低了模式模拟的强降水偏差,对逐日降水变化的模拟更加合理,而垂直分辨率的提高基本上也都减小了模拟的强降水过程的偏差,改善对强降水的模拟能力;模式水平、垂直分辨率的提高在一定程度上增强了对强降水过程的模拟能力。水平分辨率的提高能够改善模式对海平面气压的模拟,而垂直分辨率的提高可以改善模式模拟的地面气温和低层环流。分辨率对中层大气环流的影响不是很敏感。不同积云对流参数化方案模拟的对流降水比率随水平分辨率的变化是不同的,Grell方案对流降水比例随分辨率的提高而增加,而Kain-Fritsch方案的结果相反。  相似文献   

7.
为了进一步评估和提高区域模式对青藏高原地区极端气候的模拟能力,利用WRF模式,采用不同模式参数(包括边界位置、积云对流、边界层参数化方案和水平分辨率)模拟了青藏高原东南部极端旱(2006年)、涝(1998年)年夏季降水。对比不同参数模拟的降水结果表明:整体而言,无论是旱年还是涝年,除南边界以外的模式边界位置对高原主体和东南部降水模拟的影响较小;边界层方案对降水空间形态的模拟影响较小,而对降水量级的影响较大;积云对流方案对降水空间形态和量级的影响均较大;采用15 km水平分辨率时可显著改善模式对高原主体和东南部降水的模拟水平。WRF采用适当的参数组合能较好地模拟高原主体和东南部降水的空间分布,但降水量偏大。整体而言,能较好模拟旱年降水的边界层和积云对流参数化方案组合也能较好模拟涝年降水。模式模拟的高原南侧降水偏多可能使高原南侧西风偏强,并进一步造成云南西南部降水偏多;湖南南部降水偏多可能在云南东北部至贵州地区激发出较强的气旋式环流偏差,该偏差环流在四川盆地形成异常强的偏北风,导致低纬度地区进入四川盆地的水汽偏小,从而在四川盆地形成明显的相对干偏差。因此,模式在四川盆地降水模拟能力的提高不仅要做好参数的本地化工作,还需要关注盆地以外地区的影响。  相似文献   

8.
基于WRF模式,研究了不同微物理和积云对流参数化方案对0908号台风"莫拉克"的路径移动、强度变化和降水过程模拟的敏感性。结果显示,积云对流参数化方案对台风"莫拉克"的路径和强度模拟起主导作用,采用Kain-Fritsch积云对流方案模拟的72 h平均路径误差较小;降水量的模拟主要取决于微物理参数化方案,而降水分布的好坏更依赖于积云对流参数化方案,而采用Thompson微物理和Grell-Devenyi积云对流方案的试验导致累积降水极值的偏干误差较大。积云对流方案对环境场和潜热释放模拟存在差异,导致路径和强度、温度廓线和垂直运动的模拟结果不同,而微物理方案对不同相态降水粒子的垂直分布结构模拟存在差异,从而导致降水模拟的差别。此外,由不同试验构造的集合平均能减少单个成员模拟路径和降水的不确定性,特别在强降水方面能减小空报数和漏报数,提高TS评分,改善模拟效果。  相似文献   

9.
华南中尺度暴雨数值预报的不确定性与集合预报试验   总被引:50,自引:0,他引:50  
陈静  薛纪善  颜宏 《气象学报》2003,61(4):432-446
利用非静力MM5模式,分析了不同积云对流参数化方案对华南暖区暴雨数值预报的不确定性影响,进行了中尺度暴雨模式扰动集合预报试验。不同对流参数化方案的对流凝结加热引起不同的局地温度扰动,通过大气内部的热力动力过程,导致垂直速度的差异,进而影响网格尺度和次网格尺度降水时间、地点和强度。后续降水再通过凝结潜热释放形成新的扰动源。不同积云对流参数化方案还可引起扰动源能量传播方式不同,最终使模拟大气的动力和热力结构有差异。针对物理过程的不确定性,使用两种模式扰动方法构造集合预报扰动模式,第一种方法是随机组合不同积云对流参数化方案和边界层方案,第二种方法是扰动Grell积云对流参数化方案中主要参数振幅。集合预报结果表明,第一种方法的集合预报效果优于第二种方法,仅扰动参数振幅值似乎还不足以反映华南暴雨预报的不确定性。单一的确定性预报在暴雨落区和强度方面的可信度不稳定,集合产品能给华南暴雨过程提供更有用价值的指导预报,具有较高的应用价值。  相似文献   

10.
积云参数化和分辨率对MJO数值模拟的影响   总被引:3,自引:1,他引:2  
用中国科学院大气物理研究所发展的一个大气环流模式,使用不同的积云参数化方案和分辨率进行了6个模拟试验,考察了积云参数化方案和模式分辨率对热带大气季节内振荡(MJO)模拟的影响。结果显示:积云参数化方案和分辨率都会影响MJO的模拟。但积云参数化方案决定了模式对MJO模拟的基本能力,决定了模拟的MJO的基本特征。分辨率的变化并不能使模拟的MJO发生本质的改变,分辨率的作用更多的是对MJO的模拟起一定的调制作用,而这种调制作用又受到积云参数化方案的制约。在改进积云参数化方案的基础上提高模式的分辨率会在某些方面改善MJO的模拟。但是分辨率的提高需要同时提高水平分辨率和垂直分辨率,单独提高水平分辨率会降低模式模拟MJO的能力,引入更多的小尺度的高频扰动。非绝热加热垂直廓线对模式模拟MJO有重要的影响,而非绝热加热廓线很大程度上取决于所使用的积云参数化方案。模式水平分辨率的变化不会对加热廓线的结构产生明显的影响,而垂直分辨率的变化会对加热廓线的垂直结构产生一定的调制作用,进而对模拟的MJO起到调制作用。  相似文献   

11.
王德立  徐国强 《气象科技》2012,40(6):949-959
在高水平分辨率模式(3~6 km)中,对于是否应该再使用积云参数化方案,仍存在着争论.为此,利用WRF模式,在5 km水平分辨率下,研究了不同云降水方案对一次台风过程模拟的影响,并对影响原因进行了初步探索.结果表明,即使在5 km高水平分辨率下,使用积云参数化方案仍能有效改善对台风路径的模拟,同时,成熟的混合冰相微物理方案对模拟台风路径也非常重要;对台风强度模拟,对积云参数化方案的选择较为敏感和复杂;在48 h预报时效内,只使用微物理方案模拟的降水较好,使用积云参数化方案容易产生较多的虚假降水,但能改善第3天24 h累积降水模拟.这些研究结果为利用高水平分辨率模式模拟台风和改进积云参数化方案提供一定借鉴.  相似文献   

12.
The fifth-generation Pennsylvania State University/NCAR Mesoscale Model Version 3 (MM5V3) was used to simulate extreme heavy rainfall events over the Yangtze River Basin in June 1999. The effects of model's horizontal and vertical resolution on the extreme climate events were investigated in detail. In principle, the model was able to characterize the spatial distribution of monthly heavy precipitation. The results indicated that the increase in horizontal resolution could reduce the bias of the modeled heavy rain and reasonably simulate the change of daily precipitation during the study period. A finer vertical resolution led to obviously improve rainfall simulations with smaller biases, and hence, better resolve heavy rainfall events. The increase in both horizontal and vertical resolution could produce better predictions of heavy rainfall events. Not only the rainfall simulation altered in the cases of different horizontal and vertical grid spacing, but also other meteorological fields demonstrated diverse variations in terms of resolution change in the model. An evident improvement in the simulated sea level pressure resulted from the increase of horizontal resolution, but the simulation was insensitive to vertical grid spacing. The increase in vertical resolution could enhance the simulation of surface temperature as well as atmospheric circulation at low levels, while the simulation of circulation at middle and upper levels were found to be much less dependent on changing resolution. In addition, cumulus parameterization schemes showed high sensitivity to horizontal resolution. Different convective schemes exhibited large discrepancies in rainfall simulations with regards to changing resolution. The percentage of convective precipitation in the Grell scheme increased with increasing horizontal resolution. In contrast, the Kain-Fritsch scheme caused a reduced ratio of convective precipitation to total rainfall accumulations corresponding to increasing horizontal resolution.  相似文献   

13.
By using the Betts-Miller-Janjic, Grell-Devenyi, and Kain-Fritsch cumulus convective parameterization schemes in theWeather Research and Forecasting (WRF) model, long time simulations from 2000 to 2009 are conducted to investigate the impacts of different cumulus convective parameterization schemes on summer monsoon precipitation simulation over China. The results show that all the schemes have the capability to reasonably reproduce the spatial and temporal distributions of summer monsoon precipitation and the corresponding background circulation. The observed north-south shift of monsoon rain belt is also well simulated by the three schemes. Detailed comparison indicates that the Grell-Devenyi scheme gives a better performance than the others. Deficiency in simulated water vapor transport is one possible reason for the precipitation simulation bias.  相似文献   

14.
IMPACTS OF CUMULUS PARAMETERIZATION AND RESOLUTION ON THE MJO SIMULATION   总被引:1,自引:1,他引:0  
Madden-Julian Oscillations (MJO) in six integrations using an AGCM with different cumulus parameterization schemes and resolutions are examined to investigate their impacts on the MJO simulation. Results suggest that the MJO simulation can be affected by both resolution and cumulus parameterization, though the latter, which determines the fundamental ability of the AGCM in simulating the MJO and the characteristics of the simulated MJO, is more crucial than the former. Model resolution can substantially affect the simulated MJO in certain aspects. Increasing resolution cannot improve the simulated MJO substantially, but can significantly modulate the detailed character of the simulated MJO; meanwhile, the impacts of resolution are dependent on the cumulus parameterization, determining the basic features of the MJO. Changes in the resolution do not alter the nature of the simulated MJO but rather regulate the simulation itself, which is constrained by cumulus parameterization schemes. Therefore, the vertical resolution needs to be increased simultaneously. The vertical profile of diabatic heating may be a crucial factor that is responsible for these different modeling results. To a large extent, it is determined by the cumulus parameterization scheme used.  相似文献   

15.
The major features of Meiyu precipitation and associated circulation systems simulated by the grid-point atmospheric model of IAP LASG (GAMIL) with Zhang-McFarlane and Tiedtke cumulus parameterization schemes are examined in this paper. The results show that the model with both schemes can reproduce the heavy precipitation center over the Yangtze-Huai River Basin (YHRB) during the Meiyu period. The horizontal and vertical structures of the circulation systems during the Meiyu period are also well simulated,such as the intensive meridional gradients of moisture and μse (pseudo-equivalent temperature), the strong low-level southwesterly flow in the lower troposphere over East China, the location of the westerly jet stream in the upper troposphere, the strong ascending motion in heavy precipitation zone, and compensation downward motion on the northern and southern sides of the heavy precipitation belt. However, obvious discrepancies occur in the simulated temperature field in the mid-lower troposphere,especially with the Zhang-McFarlane scheme. In addition, the simulated Meiyu period (onset and duration) is found to be associated with the temperature difference in the lower atmosphere over the land and ocean, and with the cumulus parameterization schemes. The land-sea thermal contrast (LSTC) simulated by the Zhang-McFarlane scheme increases faster than that in the reanalysis from April to July, and changes from negative to positive at the end of May. Consequently, the simulated Meiyu onset begins in May, one month earlier than the observation. On the other hand, since the LSTC simulated by the Tiedtke scheme is in agreement with the reanalysis during June and July, the simulated Meiyu period is similar to the observation. The different LSTCs simulated by the GAMIL model with the two cumulus parameterization schemes may affect the Meiyu period simulations. Therefore, it is necessary to refine the cumulus parameterization scheme in order to improve the Meiyu precipitation simulation by the GAMIL model.  相似文献   

16.
基于1980—2015年6—8月CWRF模式(Climate-Weather Research and Forecasting model)14种方案的模拟结果和全国逐日降水观测资料,对比了Q-lin,Q-tri,RQ-lin,RQ-tri,SSP-lin和CDFt 6种误差订正方法对CWRF模式控制化方案(C1)模拟中国东部夏季日极端降水的订正效果,以CWRF模式14种方案日极端降水的模拟效果排名为基础,对比了模拟效果较好的4种方案集合、模拟较差的4种方案集合以及14种方案集合的订正效果,选出相对较好的订正方案进一步评估其成员集合后订正和成员分别订正后再集合的订正效果,结果表明:采用6种误差订正方法均可明显减少日极端降水模拟误差,其中RQ-lin方法订正效果最佳。CWRF模式对中国东部的极端降水指数均表现出较好的模拟能力,不同参数化集合方案得到14种方案成员先订正再集合与观测日极端降水平均值最为接近,研究结果对于改进模拟结果、提高其预测能力有重要应用价值。  相似文献   

17.
不同云微物理方案对上海特大暴雨模拟影响的分析   总被引:2,自引:1,他引:2  
利用中尺度数值预报模式WRF3.5,采用36、12和4 km三重嵌套,在积云参数化方案为BMJ条件下,选用WSM5、WSM6和Lin三种云微物理参数化方案,对发生在上海地区的两次典型特大暴雨(简称“0913”和“0825”)进行模拟试验和对比分析,探讨不同云微物理参数化方案对上海暴雨模拟的影响。结果表明:三种方案总体上都较好地模拟出两次特大暴雨过程,但在降水落区、降水中心、降水强度等方面仍存在差异。再利用地面自动站、观测站的实测雨量以及自动站与CMORPH降水产品融合的逐时降水量网格数据,结合K指数、相对湿度、垂直速度和涡度散度等物理诊断量,从降水落区、降水中心和降水强度等方面对三种云微物理参数化方案的模拟结果进行对比分析。此外,通过对三种方案主要参数的比较以及三种方案模拟的冰、雪、霰粒子混合比的垂直廓线对相应的模拟结果进行解释。结果显示:WSM5微物理方案能更好地模拟出强降水的范围,其模拟的降水量较实测偏大;WSM6方案模拟的降水落区略有偏移,降水量偏小;Lin方案模拟的降水落区偏移较大。   相似文献   

18.
针对四川盆地4次暴雨过程,利用MM5中尺度数值模式,进行了Grell和Kuo对流参数化方案及两重区域采用不同方案组合的数值试验,分析了不同试验对降水的模拟能力。结果表明,不同试验方案在降水落区、强度、演变及降水性质分配上存在一定程度的差异。细网格区域降水强度及落区主要由本区域所采用的积云参数化方案所决定。模式采用Kuo方案预报的雨区少动,主要降水落区偏西、偏南,降水强度偏弱,采用Grell方案与粗网格采用Kuo方案而细网格采用Grell方案预报结果接近,能够较好地预报雨区东移,降水强度预报更接近实况。Kuo方案以对流降水为主,Grell方案模拟的以非对流降水与对流降水两种性质降水各占一定比例,有小幅度变化,可能更能反映实际降水性质。过程分析结合统计检验表明,两重区域均采用Grell方案预报效果相对较好。同时也看到,没有哪种对流参数化方案是完备的。发展具有区域特色的对流参数方案有着重要和实际意义。   相似文献   

19.
The regional climate model (RegCM4) is customized for 10-year climate simulation over Indian region through sensitivity studies on cumulus convection and land surface parameterization schemes. The model is configured over 30° E–120° E and 15° S–45° N at 30-km horizontal resolution with 23 vertical levels. Six 10-year (1991–2000) simulations are conducted with the combinations of two land surface schemes (BATS, CLM3.5) and three cumulus convection schemes (Kuo, Grell, MIT). The simulated annual and seasonal climatology of surface temperature and precipitation are compared with CRU observations. The interannual variability of these two parameters is also analyzed. The results indicate that the model simulated climatology is sensitive to the convection as well as land surface parameterization. The analysis of surface temperature (precipitation) climatology indicates that the model with CLM produces warmer (dryer) climatology, particularly over India. The warmer (dryer) climatology is due to the higher sensible heat flux (lower evapotranspiration) in CLM. The model with MIT convection scheme simulated wetter and warmer climatology (higher precipitation and temperature) with smaller Bowen ratio over southern India compared to that with the Grell and Kuo schemes. This indicates that a land surface scheme produces warmer but drier climatology with sensible heating contributing to warming where as a convection scheme warmer but wetter climatology with latent heat contributing to warming. The climatology of surface temperature over India is better simulated by the model with BATS land surface model in combination with MIT convection scheme while the precipitation climatology is better simulated with BATS land surface model in combination with Grell convection scheme. Overall, the modeling system with the combination of Grell convection and BATS land surface scheme provides better climate simulation over the Indian region.  相似文献   

20.
Summary The global spectral model of NCMRWF at T80 horizontal resolution and 18 vertical levels has been integrated for the summer season (July) using different cumulus parameterization schemes namely, the Simplified Arakawa-Schubert scheme (SAS), the Relaxed Arakawa-Schubert Scheme (RAS), and the Kuo-type cumulus parameterization scheme (KUO). The results have been compared with mean analysis of the operational NCMRWF model (ANA) and other available observations. Results indicate that, while the global distributions of basic fields such as the wind, temperature and moisture are fairly well simulated by all the three schemes, there are many differences seen in the simulation of the typical features of the Indian summer monsoon. The strength of the Low Level Westerly Jet (LLWJ), the Cross Equatorial Flow (CEF), and the Tropical Easterly Jet (TEJ) are better simulated by RAS and SAS as compared to ANA than the KUO scheme. RAS and SAS produce strong rising motion owing to strong intensity of convection produced by these two schemes. This in turn produces stronger Hadley cell by RAS and SAS than compared to the KUO scheme. Simulation of the 200 mb velocity potential and divergent wind by RAS and SAS produced two prominent centers, one in the Bay of Bengal and another in the Western Pacific, which correspond to the intense latent heating by cumulus convection during the active monsoon phase. The velocity potential and divergent winds were weaker in KUO, than compared to RAS and SAS. The simulation of OLR is improved by RAS as compared to observations. The cold bias produced by KUO at 200 mb is reduced by RAS and is substantially improved by SAS. Study of observed and simulated rainfall indicated that RAS and SAS produced better distribution of precipitation over the Western Ghat Mountains and the Arakan coast, where deep cumulus convection is produced due to orographic forcing of the warm moist air. The KUO scheme underestimated the rainfall over these two regions, but produced slightly better distribution of rainfall over the northwest and central India, where the intensity of convection is relatively weaker. Evaluation of overall dynamics, thermal structure and rainfall indicates that in general, SAS is able to provide relatively better results compared to other two schemes. Received October 3, 2000/Revised December 5, 2000  相似文献   

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