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1.
陆气双向耦合模式中全球感热和潜热通量的时空特征模拟   总被引:3,自引:1,他引:2  
利用中国科学院大气物理研究所(IAP/CAS)含有动态植被过程的海-陆-气耦合模式AVIlVI-GOAIS的积分结果,与ERA-40再分析资料的感热和潜热通量场进行对比分析,结果表明:AVIM-GOALS模拟的感热和潜热通量的气候态、季节变化等特征和ERA-40一致,其中感热通量的纬向分布为双峰型,而潜热通量从1~7月...  相似文献   

2.
张果  周广胜 《高原气象》2012,31(4):942-951
基于Noah陆面过程模式,利用内蒙古荒漠草原陆—气通量长期定位观测资料,模拟了地表反照率日变化对该荒漠草原感热和潜热通量的影响。结果表明,地表反照率的日变化将改善Noah陆面过程模式对内蒙古荒漠草原感热通量的模拟,但对受水分制约的潜热通量的改善效果不明显,表明准确地模拟地表反照率的日变化对模拟稀疏植被的感热通量至关重要。  相似文献   

3.
针对陆面模式Noah-MP对兰州大学半干旱气候与环境观测站(SACOL)2009年8月地表热通量模拟值偏差大的问题,通过分析相关物理过程和模拟试验来探究偏差的来源,并确定合适的参数化方案:采用Chen97方案计算感热输送系数可以改善感热通量的模拟;采用Jarvis气孔阻抗方案能增大植被蒸腾,改进模式对潜热通量的模拟效果,同时也使热通量在感热和潜热间的分配比例合理;采用LP92方案可减小土壤蒸发阻抗并有利于土壤蒸发,使得模式对潜热通量的模拟效果变好。不同参数化方案的组合试验表明:同时采用2组或3组新的参数化方案组合可以进一步减小模拟的地表感热和潜热通量的均方根误差,但是土壤湿度和温度的模拟效果并没有同步改善。  相似文献   

4.
LASG/IAP 大气环流谱模式对陆面过程的敏感性试验   总被引:22,自引:15,他引:7  
将中国科学院大气物理研究所大气科学和地球流体力学数值模拟国家重点实验室最近发展的高分辨率全球大气环流谱模式SAMIL-R42L26, 分别与两个陆面模式--NCAR通用陆面模式CLM和简化的简单生物圈模式SSiB进行耦合.在比较了两个陆面过程模式, 指出CLM改进方面的基础上, 通过分析两个陆气耦合模式所模拟的陆气通量交换结果, 指出新版本的陆气耦合模式(SAMIL-R42L26与CLM耦合)对表面感热、温度、降水率、潜热通量和海平面气压场的模拟能力大大提高, 尤其对于夏季表面感热通量场, 使亚洲北部和东南部、格陵兰岛以及北美洲大部分地区的数值从100 W/m2 降低到接近60 W/m2, 与NCEP再分析资料一致.新版本的陆气耦合模式模拟陆地表面能量收支趋于平衡, 为下一步发展海-陆-气-冰耦合气候系统模式提供保障.采用CLM陆面模式, SAMIL-R42L26能较好地模拟亚洲季风区地表感热和潜热的季节演变趋势, 而采用SSiB陆面模式的结果, 则存在较大误差.文中的结果表明, 不同的陆面模式所模拟的大气下垫面(包括洋面)通量发生的变化, 通过陆气耦合过程产生的影响不仅仅是局地性的, 而且是全球范围的.  相似文献   

5.
利用中国区域高分辨率数据集作为大气强迫场,驱动修改了热力学粗糙度参数化方案后的NoahMP陆面模式进行了2000-2018年青藏高原地区陆面过程模拟。用野外观测资料校验模拟结果后,分析了地表感热通量(SH)、潜热通量(LH)的分布及变化特征。结果表明,模式能较合理模拟高原地表感热和潜热通量。高原的中、西部为地表感热和潜热通量的年际变率较大区域。模拟的高原中、西部地区感热通量强于东部地区,且绝大部分区域的感热通量是有增强趋势的。对于整个高原,感热通量从2002年前后呈较明显的增强趋势。总体上,四个季节的平均感热都有较明显的增强,特别是在2010年以后。潜热通量在高原东部地区强于中、西部地区。潜热通量的年际变率相对于感热通量的变率要小。中部地区潜热呈减弱趋势,西部和东部都有弱的增强。对于整个高原,潜热通量在2000-2018年呈弱的增强趋势。其中,2000-2003年潜热通量是增强的,2003-2015年呈减弱趋势,主要因素为在夏季潜热通量的减弱。  相似文献   

6.
1991年江淮暴雨期地气通量与混合层结构的研究   总被引:6,自引:1,他引:6  
本文用1991年5—7月江淮及其北部地区的地面与高空资料根据3种不同的整体公式对地表通量(动量、感热和潜热通量)进行了估算,并对混合层结构进行了研究,揭示出这次持续性特大暴雨中陆面过程的一些特征,主要结果如下:1.地表通量依赖于大气稳定度,稳定度越强,地表通量越小。不稳定状况下平均地表动量通量为0.0154N/m2,向上的感热和潜热平均值分别为25.7W/m2和132.3W/m2;稳定状况下,地表动量通量为0.006N/m2,感热和潜热通量平均是向下输送的,分别为-1.5W/m2和2.5W/m2。2.地表通量与降水过程密切有关。雨期的动量通量略小于非雨期,而雨期的感热与潜热通量明显小于非雨期,雨量越大,这两种通量愈小。3.地表通量具有明显日变化。动量、感热和潜热通量的最大值出现在下午2时左右,最小值出现在凌晨2时左右。4.混合层与雨期关系密切,雨期的混合层高度较非雨期低,这时地表感热和潜热通量小;而非雨期情况相反  相似文献   

7.
采用南京气象学院(NIM)5层陆面过程模式,利用1979年5-8月“青藏高原气象科学实验”资料模拟和分析了夏季青藏高原不同地区的陆面特征和地表能量特征。并将模拟值与根据观测资料计算得到的感热和潜热以及观测得到的净辐射、土壤温度、土壤热通量进行了对比。结果表明,NIM5层陆面过程模式可以模拟青藏高原夏季不同下垫面情形下的能量交换过程。  相似文献   

8.
利用WRF V模式耦合4个陆面过程对2015年5月18—19日江西南部暖区特大暴雨进行了模拟,以检验陆面过程对暴雨过程的影响;在此基础上,又进行了地表通量敏感性试验,以检验地面扰动通量对降水的影响。结果表明,各方案模拟的降水范围、雨带走向以及降水中心位置与实况都比较相似,但是降水强度大小与陆面过程的选择存在一定的差异。其中,WRF模式耦合NOAH方案模拟的降水中心、降水强度和累积降水量均能够较好地反映这次暴雨过程的发展。感热和潜热通量在暖区暴雨中是维持降水持续的主要能量输送,对暴雨中心强度和位置变化的影响,潜热通量比感热通量发挥了更重要的作用。来自地面水汽蒸发所释放的潜热以及水汽抬升和辐合释放的潜能为维持暴雨强度提供了重要的能量支撑。  相似文献   

9.
藏北高原陆面过程的模拟试验   总被引:12,自引:1,他引:12       下载免费PDF全文
张宇  吕世华 《大气科学》2002,26(3):387-393
利用NCAR陆面过程模式(Land Surface Model)和1998年"青藏高原能量与水分观测实验"加强观测期(GAME/Tibet IOP)的观测资料对青藏高原地区陆面过程进行了模拟研究.结果表明,在观测资料的强迫下模式能够较好地模拟出地表特征量的变化趋势,深层的土壤温度的模拟对初始场在0℃左右的变化敏感.模拟的感热通量、潜热通量以及地表反射的太阳辐射较观测值偏大.在高原地区地表类型分布状况的真实描述及植被、土壤参数的选取可能是提高该地区效果的首要问题;草地下垫面的陆面特征有待进一步研究;对土壤水热运动的真实描述,及冻土过程的加入对大气环流模式(GCM)跨季节的数值模拟会有所改进.  相似文献   

10.
甘肃马衔山区陆面过程与降水的研究   总被引:1,自引:0,他引:1  
采用定西的麦田微气象观测,定西、兰州的辐射观测和马衔山区34个气象、水文和雨量站的气候资料,结合NOAA-16卫星的AVHRR资料以及反演的地表植被盖度和反射率,并用SEBAL算法推导出夏季地表净辐射、感热、潜热、土壤热通量密度的区域分布特征,并分析陆面过程对降水的影响。结果表明:本区降水的空间分布与夏季植被盖度对应最好,相关系数高达0.722,其次是土壤热通量和潜热通量,相关系数分别为-0.65和0.615。这表明森林通过降低地表反射率和表面温度,不仅增加地表净辐射,而且减少其用于感热和土壤热通量的消耗。由于林区地表水分多,从而将接收较多的太阳辐射能主要用于蒸散,增加边界层中的水汽。故林区降水远大于植被稀疏的半干旱黄土梁。  相似文献   

11.
下垫面非均匀性的模拟   总被引:8,自引:0,他引:8  
用美国大气科学中心GENESIS模式中的陆面过程方案,我们在一个全球大气模式网格尺度范围内,研究了来自非均匀下垫面的水汽,能量等通量。基于3种不同的模拟下垫面非均匀性的方法,即马赛克法、混合法以及显式次网格法,我们设计了4种不同的试验。模拟结果表明,3种方法计算出的结果有很大的不同:地面吸收的太阳辐射差异达4%;感热通量达12%;潜热通量达66%;土壤水分可达30%。这一结果说明有必要用实测数据来检验不同的模拟下垫面非均匀性的方法以及用区域气候模式来模拟下垫面的非均匀性。  相似文献   

12.
The effects of small fractions ( < 30%) of open water covering a grid element are currently neglected even in atmospheric general circulation models (AGCMs) which incorporate complex land surface parameterization schemes. Here, a method for simulating sub-grid scale open water is proposed which permits any existing land surface model to be modified to account for open water. This new parameterization is tested as an addition to an advanced land surface scheme and, as expected, is shown to produce general increases in the surface latent heat flux at the expense of the surface sensible heat flux. Small changes in temperature are associated with this change in the partitioning of available energy which is driven by an increase in the wetness of the grid element. The sensitivity of the land surface to increasing amounts of open water is dependent upon the type of vegetation represented. Dense vegetation (with a high leaf area index) is shown to complicate the apparently simple model sensitivity and indicates that more advanced methods of incorporating open water into AGCMs need to be considered and compared against the parameterization suggested here. However, the sensitivity of one land surface model to incorporating open water is large enough to warrant consideration of its incorporation into climate models.  相似文献   

13.
A simple parameterization of land surface processes, amenable to the structure of a two-layer soil model, including a representation of the vegetation, has been designed for use in meteorological models. Prior to implementation in a mesoscale model, it is necessary to check the components and to verify the good working order of the parameterization as a whole. The aims of this paper then are: (i) evaluation and a sensitivity study of the various components of the model, specifying the needed accuracy for the parameters; (ii) micrometeorological validation of the model against the HAPEX-MOBILHY data set.First, we present the basic scheme. The focus is on the parameterization of surface resistance, and especially on its relationship with soil moisture.A sensitivity study is then performed through a set of one-dimensional simulations which allow a full interaction between the ground and the atmosphere. Above bare ground, it is shown that both soil texture and initial moisture greatly influence the outcome of the simulation. Latent heat flux ranges from that associated with potential evaporation through a switch-like behavior to that of dry soil. Next, the effects of transpiring vegetation canopies on the physical processes involved and the surface energy balance are examined. The sensitivity of the latent heat flux to changes in the soil and canopy parameters is emphazised; the major influence of the initial mean soil moisture and of the vegetation cover is pointed out. Finally, the evolution of the boundary layer in response to various surface conditions is studied.A validation of the land surface scheme is conducted through daily cycles during cloudless days. Simulated turbulent fluxes are successfully compared to micrometeorological measurements over a maize field at different growth stages. Over a pine forest, the correct simulation of the turbulent fluxes is obtained with an adequate parameterization of the surface resistance accounting for the atmospheric moisture deficit.  相似文献   

14.
植被覆盖异常变化影响陆面状况的数值模拟   总被引:15,自引:2,他引:15  
利用NCAR最新的公用陆面模式CLM3.0,通过数值模拟初步研究了植被叶面积指数(LAI,leafareaindex)异常变化对陆面状况的可能影响,结果表明,植被LAI的异常变化能够引起地表能量平衡、地表水循环等陆面状况的异常。(1)植被LAI的异常变化主要影响太阳辐射在植被与地表之间的分配,以及地表的感热、潜热通量。植被LAI增大,能够引起植被吸收的太阳辐射增加,而到达土壤表面的太阳辐射减小,并导致植被的蒸发、蒸腾潜热通量增加,造成地表的蒸发潜热和感热通量不同程度的减小。(2)植被LAI增大时,植被对降水的拦截和植被叶面的蒸发增大,植被的蒸腾作用也明显增强;植被LAI增加会使得热带地区各个季节的土壤表面蒸发、地表径流减小,而土壤湿度有所增加;LAI增加造成中高纬度地区土壤蒸发的减少主要出现在夏季;LAI增加还能够引起中高纬地区冬、春积雪深度不同程度的增加,造成春末、夏初地表径流的增加。(3)植被LAI增加能够使得叶面和土壤温度有所下降,但植被LAI的变化对叶面、土壤温度的影响相对较小。  相似文献   

15.
The effects of terrestrial ecosystems on the climate system have received most attention in the tropics, where extensive deforestation and burning has altered atmospheric chemistry and land surface climatology. In this paper we examine the biophysical and biogeochemical effects of boreal forest and tundra ecosystems on atmospheric processes. Boreal forests and tundra have an important role in the global budgets of atmospheric CO2 and CH4. However, these biogeochemical interactions are climatically important only at long temporal scales, when terrestrial vegetation undergoes large geographic redistribution in response to climate change. In contrast, by masking the high albedo of snow and through the partitioning of net radiation into sensible and latent heat, boreal forests have a significant impact on the seasonal and annual climatology of much of the Northern Hemisphere. Experiments with the LSX land surface model and the GENESIS climate model show that the boreal forest decreases land surface albedo in the winter, warms surface air temperatures at all times of the year, and increases latent heat flux and atmospheric moisture at all times of the year compared to simulations in which the boreal forest is replaced with bare ground or tundra. These effects are greatest in arctic and sub-arctic regions, but extend to the tropics. This paper shows that land-atmosphere interactions are especially important in arctic and sub-arctic regions, resulting in a coupled system in which the geographic distribution of vegetation affects climate and vice versa. This coupling is most important over long time periods, when changes in the abundance and distribution of boreal forest and tundra ecosystems in response to climatic change influence climate through their carbon storage, albedo, and hydrologic feedbacks.  相似文献   

16.
The snow cover extent in mid-high latitude areas of the Northern Hemisphere has significantly declined corresponding to the global warming, especially since the 1970s. Snow-climate feedbacks play a critical role in regulating the global radiation balance and influencing surface heat flux exchange. However, the degree to which snow cover changes affect the radiation budget and energy balance on a regional scale and the difference between snow-climate and land use/cover change (LUCC)-climate feedbacks have been rarely studied. In this paper, we selected Heilongjiang Basin, where the snow cover has changed obviously, as our study area and used the WRF model to simulate the influences of snow cover changes on the surface radiation budget and heat balance. In the scenario simulation, the localized surface parameter data improved the accuracy by 10 % compared with the control group. The spatial and temporal analysis of the surface variables showed that the net surface radiation, sensible heat flux, Bowen ratio, temperature and percentage of snow cover were negatively correlated and that the ground heat flux and latent heat flux were positively correlated with the percentage of snow cover. The spatial analysis also showed that a significant relationship existed between the surface variables and land cover types, which was not obviously as that for snow cover changes. Finally, six typical study areas were selected to quantitatively analyse the influence of land cover types beneath the snow cover on heat absorption and transfer, which showed that when the land was snow covered, the conversion of forest to farmland can dramatically influence the net radiation and other surface variables, whereas the snow-free land showed significantly reduced influence. Furthermore, compared with typical land cover changes, e.g., the conversion of forest into farmland, the influence of snow cover changes on net radiation and sensible heat flux were 60 % higher than that of land cover changes, indicating the importance of snow cover changes in the surface-atmospheric feedback system.  相似文献   

17.
10层陆面过程模式及其Offline独立试验   总被引:4,自引:0,他引:4  
利用西伯利亚地区的一个试验点资料和1998年中国淮河流域试验(HUBEX)的加密观测资料,对一个新发展的陆面过程模式进行了模拟检验。西伯利亚地区的单点试验表明,不同时间间隔的边界强迫对地表吸收的净短波辐射和释放的潜热影响较大。淮河流域的模拟结果表明,模式能够较好地模拟出我国夏季半湿润地区陆面特征量的变化趋势。由于模式模拟的地温偏低、净短波辐射偏小。所以模拟的感热和潜热值偏小。对该模式在淮河流域的植被、土壤等参数的合理选取可能会提高模式的模拟效果。  相似文献   

18.
19.
Summary A parameterization scheme for the thermal effects of subgrid scale orography is incorporated into a regional climate model (developed at Nanjing University) and its impact on modeling of the surface energy budget over East Asia is evaluated. This scheme includes the effect of terrain slope and orientation on the computation of solar and infrared radiation fluxes at the surface, as well as the surface sensible and latent heat fluxes. Calculations show that subgrid terrain parameters alter the diurnal cycle and horizontal distributions of surface energy budget components. This effect becomes more significant with increased terrain slope, especially in winter. Due to the inclusion of the subgrid topography, the surface area of a model grid box changes over complex terrain areas. Numerical experiments, with and without the subgrid scale topography scheme, show that the parameterization scheme of subgrid scale topography modifies the distribution of the surface energy budget and surface temperature around the Tibetan Plateau. Comparisons with observations indicate that the subgrid topography scheme, implemented in the climate model, reproduces the observed detailed spatial temperature structures at the eastern edge of the Tibetan Plateau and reduces the tendency to overestimate precipitation along the southern coastal areas of China in summer.  相似文献   

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