首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 15 毫秒
1.
天山南坡科契卡尔巴西冰川消融期雪面能量平衡研究   总被引:6,自引:4,他引:2  
李晶  刘时银  张勇 《冰川冻土》2007,29(3):366-373
根据2005年6~9月的野外观测资料,计算了天山南坡科契卡尔巴西冰川积雪表面的能量平衡各分量,其中感热和潜热采用空气动力学-梯度方法计算得到,净辐射由观测获得.结果表明,消融期净辐射是雪面最主要的能量来源,占能量收入的81.4%,平均值为63.3 W·m-2;其次为感热供热,占18.6%,为14.4 W·m-2.吸收的热量主要通过融化和蒸发两种方式消耗,融化和蒸发耗热分别为54.0 W·m-2和23.0 W·m-2,占能量总支出的69.5%和29.7%,剩下的0.8%由感热消耗.在积雪表面的能量组成中,感热值在6月和9月较大而8月较小;对于潜热来说,6月潜热交换绝对值最大,蒸发最强烈,这与6月风速大且天气晴好有关.另一方面,净辐射值较大的6月和9月融化热较多,说明此时段冰川消融较为强烈.  相似文献   

2.
2005年青藏高原唐古拉地区地表能量收支状况分析   总被引:4,自引:4,他引:0  
利用青藏高原唐古拉地区2005年涡动系统和10 m气象塔数据资料,计算分析了该地区地表能量收支状况.结果表明: 感热与潜热均有明显的季节变化特征,感热春季较大,夏季有下降趋势;潜热夏秋季节较大,冬春季节较小;净辐射在冬春季节主要转化为感热,夏秋季节转化为潜热,这些主要受季风、活动层冻、融过程及净辐射变化的影响.Bowen比夏秋季节平均为0.7,冬春季节平均为3.4,变化范围为-1.0~17.9.另外,研究显示降雨对感热、潜热通量影响较大.  相似文献   

3.
Complex interactions between the land surface and atmosphere and the exchange of water and energy have a significant impact on climate. The Tibetan Plateau is the highest plateau in the world and is known as “Earth’s third pole”. Because of its unique natural geographical and climatic characteristics, it directly affects China’s climate, as well as the world’s climate, through its thermal and dynamic roles. In this study, the BCCCSM1.1 model for the simulation results of CMIP5 is used to analyze the variation of the land surface processes of the Tibetan Plateau and the possible linkages with temperature change. The analysis showed that, from 1850 to 2005, as temperature increases, the model shows surface downward short-wave radiation, upward short-wave radiation, and net radiation to decrease, and long-wave radiation to increase. Meanwhile, latent heat flux increases, whereas sensible heat flux decreases. Except for sensible heat flux, the correlation coefficients of land surface fluxes with surface air temperature are all significant at the 99 % significance level. The model results indicate rising temperature to cause the ablation of ice (or snow) cover and increasing leaf area index, with reduced snowfall, together with a series of other changes, resulting in increasing upward and downward long-wave radiation and changes in soil moisture, evaporation, latent heat flux, and water vapor in the air. However, rising temperature also reduces the difference between the surface and air temperature and the surface albedo, which lead to further reductions of downward and upward short-wave radiation. The surface air temperature in winter increases by 0.93 °C/100 years, whereas the change is at a minimum (0.66 °C/100 years) during the summer. Downward short-wave and net radiation demonstrate the largest decline in the summer, whereas upward short-wave radiation demonstrates its largest decline during the spring. Downward short-wave radiation is predominantly affected by air humidity, followed by the impact of total cloud fraction. The average downward short-wave and net radiation attain their maxima in May, whereas for upward short-wave radiation the maximum is in March. The model predicts surface temperature to increase under all the different representative concentration pathway (RCP) scenarios, with the rise under RCP8.5 reaching 5.1 °C/100 years. Long-wave radiation increases under the different emission scenarios, while downward short-wave radiation increases under the low- and medium-emission concentration pathways, but decreases under RCP8.5. Upward short-wave radiation reduces under the various emission scenarios, and the marginal growth decreases as the emission concentration increases.  相似文献   

4.
兰州马衔山多年冻土区地表能量平衡特征分析   总被引:1,自引:1,他引:0  
利用兰州马衔山多年冻土区2010年7月1日到2011年6月30日的气象资料, 采用气象梯度法计算了该地区的感热通量和潜热通量, 结合净辐射分析了该地区的地表能量平衡特征.结果表明: 马衔山多年冻土区净辐射呈现明显的年变化特征, 净辐射值较青藏高原西大滩地区略大, 而较唐古拉地区小; 净辐射冬春季主要转化为感热, 而夏秋季主要转化为潜热, 这一特点与青藏高原唐古拉和西大滩地区类似; 潜热年平均值略大于感热年平均值, 这与马衔山多年冻土区沼泽湿地的保护作用及充足的水分条件有关.此外, 地下冰的存在有效地保护了该地区的多年冻土.  相似文献   

5.
基于青海玉树隆宝湿地2011年10月-2012年9月气象观测数据, 利用组合法计算其近地面的感热通量和潜热通量, 进而分析近地面能量收支状况. 结果表明: 隆宝湿地太阳辐射资源充足, 达6 770.8 MJ·m-2, 受积雪影响, 冬季日反射率最高可达0.93; 11月和12月地面吸收的90%以上短波能量以辐射形式传给大气, 而6月份则不到30%. 地面全年以净辐射和土壤热通量吸收能量, 其中, 77%以潜热形式支出, 23%以感热形式支出, 但各月能量收支特征与之有所不同.  相似文献   

6.
The quantification of energy interactions among land surface, atmosphere, and surface vegetation is significant to comprehend the hydrological cycle in montane watersheds. Moreover, elevation change is an essential in causing variations in energy fluxes. Thus, estimating the major components of energy interactions is essential for better understanding of the hydrological process. The advanced land surface models (LSMs); the common land model (CLM) and variables infiltration capacity (VIC) are used to estimate accurate hydrometeorological variables. These hydrometeorological variables such as net radiation and sensible, latent, and ground heat fluxes were estimated using CLM and VIC at upper and lower meteorological stations in Sierra Nevada Mountain, California, USA. The estimated fluxes were compared with observations at each site. The estimated daily and monthly net radiation and sensible heat flux from both models showed good agreement with the observations (R ≥ 0.84). The CLM-modeled estimates showed lower trends during the rainfall periods, which occurred mainly during winter at both sites. In comparison, the estimated daily and monthly latent heat flux from CLM at both sites showed better results with lower RMSE and bias than that from VIC, which underestimated latent heat flux. Both models overestimated ground heat flux, and the variation trend was similar to observation. For sensitivity analysis, according to elevation change, all the estimated energy fluxes had slightly different values at the upper and lower met stations. In future studies, parameterization for the LSMs will be conducted for more robust estimations of hydrometeorological variables in montane watersheds.  相似文献   

7.
分析了2008年青藏高原林芝地区与四川盆地温江地区无降水条件下地表辐射、 湍流通量和地表反照率的日变化及月际变化特征, 并探讨了季风过程对其产生的影响.结果表明: 林芝与温江地区地表辐射和湍流通量都具有明显的日变化和月际变化周期, 季风期受云的影响, 日循环规律变得不是非常规则.季风对林芝地区地表能量分配影响极大, 季风前感热通量占主导地位, 季风期和季风后(夏、 秋节)潜热通量是净辐射的主要消耗项; 温江地区全年潜热在净辐射的分布中占主导地位, 感热通量的作用和土壤热通量相当. 林芝地区年平均地表反照率为0.21, 温江地区年平均仅为0.14; 季风前(3-5月)、 季风中(6-7月)和季风后(8-9月), 林芝地区的地表反照率分别为0.20、 0.19和0.20, 温江地区的地表反照率分别为0.13、 0.11和0.14.  相似文献   

8.
青藏高原地表能量通量的估计   总被引:1,自引:0,他引:1  
季劲钧  黄玫 《地球科学进展》2006,21(12):1268-1272
利用1981—2000年逐日气候、植被和土壤基础资料作为输入,以大气—植被相互作用模式(AVIM2)计算了青藏高原0.1°分辨率的年平均地表能量通量的空间分布和季节变化特征。结果显示,年平均地表净辐射通量由高原西南部的100 W/m2减少到东部的70 W/m2左右。高原东南部的林区潜热通量强而感热通量弱,从高原东南向西、向北潜热通量逐渐减少,而感热通量逐渐增大。夏季这种趋势更加显著。冬季除东南部外,高原上广大地区地表能量通量都较低。  相似文献   

9.
This paper describes measurement of air-sea parameters and estimation of sensible and latent heat fluxes by the “Inertial-Dissipation” technique over south Bay of Bengal. The data were collected on ORV Sagar Kanya during BOBMEX-Pilot cruise during the period 23rd October 1998 to 12th November 1998 over south Bay of Bengal. The fluxes are estimated using the data collected through fast response sensors namely Gill anemometer, Sonic anemometer and IR Hygrometer. In this paper the analyses carried out for two days, one relatively cloud free day on November 3rd and the other cloudy with rain on November 1st, are presented. Sea surface and air temperatures are higher on November 3rd than on November 1st. Sensible heat flux for both the days does not show any significant variation over the period of estimation, whereas latent heat flux is more for November 3rd than November 1st. An attempt is made to explain the variation of latent heat flux with a parameter called thermal stability on the vapor transfer from the water surface, which depends on wind speed and air to sea surface temperature difference.  相似文献   

10.
青藏高原西部陆面过程特征的模拟分析   总被引:15,自引:4,他引:11  
王澄海  师锐 《冰川冻土》2007,29(1):73-81
利用1998年5月1日至9月18日狮泉河自动气象站(AWS)的观测资料作为强迫场,运用改进的陆面过程模式CoLM(Common Land Model),对青藏高原西部的陆面特征进行了模拟研究.结果表明,该模式能够较好地模拟出高原地区的陆面特征.在高原西部地表能量平衡过程中,感热通量占主要地位,潜热通量较小,但在高原西部的湿季,潜热通量也是不可忽略的.在5月及6月初表层土壤频繁的发生水分相变,使土壤在相变过程中不断地吸收和释放潜热.降水及土壤表层频繁的冻结-消融使地表有效通量(感热+潜热)发生变化.有效辐射中的感热、潜热的分配,即Bowen会发生变化,进一步影响到对大气的加热及大气水汽输送情况,大气状况的改变又反过来影响地表蒸散及土壤持水能力,使土壤水分状态和含量发生变化.  相似文献   

11.
基于能量平衡对额尔齐斯河流域融雪过程的研究   总被引:5,自引:5,他引:0  
为定量描述额尔齐斯河流域积雪的消融过程,建立了利用基于能量平衡的积雪模型,对流域内库威积雪站2014年1月4日-3月28日积雪的积累和消融过程进行了模拟.结果表明:模型能够很好的模拟出融雪期净辐射能量的变化过程,对雪水当量的模拟结果也非常好,雪水当量的观测值和模拟值之间的Nash系数达到了0.989.在积雪的积累期,雪表的净辐射、感热、潜热通量的绝对值以及地表热通量明显低于积雪的消融期.在积累期,感热和潜热通量以及土壤热通量受到雪层厚度的影响.当雪水当量小于10 mm时,感热和潜热通量的绝对值偏高,土壤热通量的波动性也偏大.在积累期积雪的物质损失全部为升华损失,升华量为2.74 mm;在消融期,积雪的融化量为66.26 mm,升华量为2.04 mm.净辐射对积雪物质损失的贡献达到了83.1%,湍流通量对积雪物质损失的贡献达到16.9%.由于在融化期土壤热通量为正值,因此土壤热通量对融雪没有贡献.  相似文献   

12.
区域平均感热和潜热通量是气象、水文、生态模式中的关键物理因子,卫星遥感反演为观测区域平均感热和潜热通量提供了可能。对利用卫星遥感资料反演地气通量的方法进行了总结和评述。首先描述了现在常用的反演方法,分析了方法中的各种假定对反演结果的影响,并对不同的模式反演结果进行了比较。还指出了评价卫星反演通量的精度时需要注意的问题。最后对该领域内现存的问题与发展方向进行探讨。  相似文献   

13.
南水北调大面积农业灌溉的区域气候效应研究   总被引:1,自引:1,他引:0       下载免费PDF全文
基于社会经济学模型对中国未来不同社会经济发展情景下土地利用变化的预测资料,利用区域气候模式RegCM3,重点研究了南水北调工程建成后,对中国北方13个省(区)范围内农田、农林混作区和草地等进行大面积灌溉所产生的区域气候效应。结果显示:大面积农业灌溉对中国区域气候影响明显,主要受灌区及其邻近地区土壤湿度、近地层空气湿度、总云量、潜热通量、降水量等均呈增加趋势,地表温度、感热通量及500 hPa位势高度将降低。灌溉后受灌区土壤湿度的增加,不仅使受灌区气候环境发生变化,还通过动量、热量及水汽交换对邻近地区气候产生影响。  相似文献   

14.
北冰洋浮冰区近冰层湍流通量计算方法比较   总被引:8,自引:0,他引:8  
利用2003年中国第二次北极科学考察获得的北冰洋浮冰区近冰层气象要素梯度观测资料,应用空气动力学的廓线法和总体输送法以及不同的普适函数,计算分析了2003年8月23日至9月4日浮冰区近冰层的摩擦速度、感热通量和潜热通量.结果表明:Holtslag普适函数的计算结果明显优于其它普适函数,总体输送法计算的不同层次湍流通量比廓线法更能够满足近冰层的常值通量层的假设,其结果可望为进一步优化北冰洋浮冰区边界层参数化方案和提高计算精度提供重要依据.  相似文献   

15.
唐恬  王磊  文小航 《冰川冻土》2013,35(6):1462-1473
利用2010年6-7月鄂陵湖野外试验的近地层观测数据,分析了在不同天气条件下黄河源鄂陵湖地区辐射分量、地表能量分量、土壤温度和反照率的变化特征. 结果表明:不同天气条件下,辐射和地表能量各分量日变化差异较大,晴天、阴天和雨天的地表反照率依次递减,平均反照率约为0.21;观测期内,平均辐射贡献从大到小依次为向上长波、向下长波、向下短波、向上短波,日积分值分别为31.4 MJ·m-2、25.6 MJ·m-2、22.4 MJ·m-2、4.2 MJ·m-2,净辐射(12.5 MJ·m-2)占向下短波辐射的55.7%;平均地表能量和土壤温度的变化幅度较晴天小,感热、潜热、0 cm土壤热通量的平均日积分值分别占净辐射的21.2%、43.1%、8.2%;平均土壤温度变化幅度随深度增加逐渐减小,浅层土壤温度峰值较晴天低2 ℃,深层土壤温度相差不大. 云和降水的扰动削弱了向下短波辐射,导致平均感热通量和0 cm土壤热通量的峰值比晴天小,而平均潜热通量的峰值大于晴天. 由于湖泊水体巨大的热容量和水分供应,鄂陵湖地区的气温日较差较小,地表温度变化幅度变小,附近地表温度升高缓慢. 鄂陵湖区的地表能量平衡中,潜热通量占主导,感热和地表土壤热通量次之. 研究结果有助于理解气候变化背景下黄河源区湖泊的能量水分循环过程,为促进该地区光热资源的合理利用和畜牧业的可持续发展提供数据支持.  相似文献   

16.
塔克拉玛干沙漠腹地LAS和EC观测感热通量对比分析   总被引:1,自引:0,他引:1  
利用2009年6月20日至7月3日塔克拉玛干沙漠腹地塔中地区地-气相互作用观测试验中的大孔径闪烁仪(LAS)和涡动相关仪(EC)观测资料,对LAS和EC在流动沙漠地区观测的感热通量差异进行了对比分析.结果表明:LAS和EC测得的感热通量变化趋势一致,两者有很好的相关性.总体来看,LAS的感热通量测量值大于EC测得的感热通量值.如果LAS和EC测量的允许差异|△H|≤50 W/m2时,LAS和EC测量结果无显著差异的频率达79%左右.因此,LAS完全适用于流动沙漠地区大尺度的感热通量的观测研究.  相似文献   

17.
The regional impacts of future climate changes are principally driven by changes in energy fluxes. In this study, measurements on micrometeorological and biophysical variables along with surface energy exchange were made over a coniferous subtropical chir pine (Pinus roxburghii) plantation ecosystem at Forest Research Institute, Doon valley, India. The energy balance components were analyzed for two years to understand the variability of surface energy fluxes, their drivers, and closure pattern. The period covered two growth cycles of pine in the years 2010 and 2011 without and with understory growth. Net short wave and long wave radiative fluxes substantially varied with cloud dynamics, season, rainfall induced surface wetness, and green growth. The study clearly brought out the intimate link of albedo dynamics in chir pine system with dynamics of leaf area index (LAI), soil moisture, and changes in understory background. Rainfall was found to have tight linear coupling with latent heat fluxes. Latent heat flux during monsoon period was found to be higher in higher rainfall year (2010) than in lower rainfall year (2011). Higher or lower pre-monsoon sensible heat fluxes were succeeded by noticeably higher or lower monsoon rainfall respectively. Proportion of latent heat flux to net radiation typically followed the growth curve of green vegetation fraction, but with time lag. The analysis of energy balance closure (EBC) showed that the residual energy varied largely within ±30% of net available energy and the non-closure periods were marked by higher rainspells or forced clearance of understory growths.  相似文献   

18.
祁连山七一冰川暖季能量平衡及小气候特征分析   总被引:8,自引:6,他引:2  
利用2007年7月1日至10月10日安装在七一冰川消融区的自动气象站资料,计算和讨论了能量平衡方程中的净辐射、感热和潜热通量、冰雪的热传输和降雨加热项.结果表明:净辐射是七一冰川的主要能量来源,其次是湍流感热.消融期消融耗热是主要的能量耗散,到消融末期,潜热耗热的比重开始增加.冰雪的热传导量值较小.同时还分析了暖季七一冰川区的小气候特征.  相似文献   

19.
Bihourly water temperatures from two, 110-day study periods are compared for a study site in the Indian River Lagoon, along the Atlantic coast of South Florida. Results of a summer study include the annual maximum temperatures in July and August, and reveal low-frequency variations of ±1–2°C superimposed onto the annual curve. The winter study shows the annual minimum temperatures in late February and low-frequency variations of ±3–4°C superimposed onto the annual curve. At the very long and the very short periodicities, thermal activity is consistently higher during the winter study. At the diurnal period, however, the temperature range during the summer study is twice that recorded during the winter study, and the time of warmest water in the diurnal cycle is shifted back between two and three hours toward mid day in the summer months. This is attributed to the relative increase in importance of heating by insolation at that time of year. Sensible and latent heat fluxes appear to damp the diurnal cycle in both records.  相似文献   

20.
用VIC模型模拟黑河上游流域水分和能量通量的时空分布   总被引:3,自引:3,他引:0  
受地形起伏影响, 山区流域的水分和能量通量时空分布差异很大. 利用水文模型VIC (variable infiltration capacity)对黑河上游流域的水文和能量时空分布进行了模拟, 并通过观测对模拟结果进行了验证. 结果表明:VIC模型能够较合理地模拟研究区径流过程, 对净辐射的计算也较准确, 模拟得到的部分水分通量和能量通量(感热、潜热和土壤热通量)在趋势上较一致, 但在数量上存在偏差. 积雪过程对研究区的水文和能量循环有重要影响, VIC模型对积雪的模拟偏差较大, 导致了每年4月左右的模拟径流偏低, 也没有模拟出积雪融化导致的土壤含水量上升; 同时, 积雪模拟的不准确也明显影响到能量通量的模拟. 在研究区, 土壤水分变化受土壤冻融影响明显, VIC模型对气温较高、不发生冻融过程的7-9月土壤水分变化模拟较好, 但是在其他月份, 对积雪及表层土壤消融导致的土壤水分迅速增加和土壤冻结导致的土壤水分迅速减少两个过程的模拟比较差; VIC模型能够给出水分和能量各通量的时空分布, 较好地揭示研究流域各个通量的空间异质性及相互影响.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号