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1.
在青藏高原北部海北高寒矮嵩草草甸地区,利用涡度相关法观测的2002年和2003年净辐射通量(Rn)、潜热通量(LE)、显热通量(H)、土壤热通量(G)等数据,分析了该地区能量分配的日、季节变化特征及能量闭合状况。结果表明,高寒矮嵩草草甸Rn、LE、H和G均呈现出日、季节变化规律。在能量分配过程中,不同季节LE、H和G占Rn的比例有所不同,降水丰富的暖季表现出LE〉H〉G,降水稀少的冷季表现出H〉LE〉G。就2a平均来看LE、H、G分别占Rn的34.0%、33.6%和-0.34%。能量平衡比率(EBR)日变化呈现白天高夜晚低,年变化呈现弱的季节趋势,全年平均在0.68,其中冷季稍大,暖季稍小。EBR与土壤容积含水量具有一定的负线性相关,与气温则呈现指数负相关关系。  相似文献   

2.
夏秋季绿洲荒漠过渡带芨芨草地蒸散及能量平衡特征研究   总被引:1,自引:0,他引:1  
闫人华  熊黑钢  张芳 《中国沙漠》2013,33(1):133-140
以实测气象资料为基础,运用波文比能量平衡法计算绿洲-荒漠过渡带芨芨草的蒸散量,并分析了其蒸散日变化规律及地表能量平衡特征。结果表明:①不同天气条件下的蒸散日变化曲线特征差异显著。晴天因辐射强、蒸散量大,蒸散曲线显示为“高耸”型;由于受云量和降水的影响,阴天曲线呈“平缓”型;雨天曲线则表现为“偏态”型,而平均蒸散曲线变化与晴天较为相似。②随着气候由夏季向秋季转变,早晨蒸散发生和夜间蒸散结束的时间点分别表现出1.73 min·d-1的滞后性和2.02 min·d-1的前移性;同时,蒸散峰值以0.0036 mm·d-1的速度递减。与一些相对叶宽的植被覆盖地相比,芨芨草地蒸散量日际波动幅度较小。③净辐射通量(Rn)、 潜热通量(LE)、感热通量 (H)及 土壤热通量(G)的平均值都表现出较为一致的日循环变化趋势。G/Rn、H/Rn、LE/Rn曲线白天平滑,夜间波动,日出和日落前后波动最为剧烈。潜热占净辐射的58.8%,远大于沙漠、戈壁,而低于绿洲。④晴天波文比(β)日内变化曲线呈明显的下降趋势,平均变化率接近-2%,但日间变化曲线略呈上升趋势,变化率为4.8‰。前者反映了晴天的潜热活动在日内随时间变化而愈来愈强,后者则表明感热活动在夏秋季中随日期的推移而逐渐增强。  相似文献   

3.
农田SPAC系统水分通量的研究对提高农业用水效率,缓解我国的水资源短缺现状具有重要作用.本文利用HydruS-1d模型,以山西省运城市董村农场为例,估算了研究区三种主要农作物(夏玉米、棉花和冬小麦)的农田水分通量.结果表明,在模拟期内,夏玉米、棉花和冬小麦的作物蒸腾占蒸散发(T/ET)的比值分别为84.7%、71.6%...  相似文献   

4.
敦煌戈壁冬夏季地表辐射与能量平衡特征对比研究   总被引:10,自引:6,他引:4  
利用敦煌戈壁夏(2006年7月)、冬(2007年1月1—10日)季观测得到的微气象资料,比较了夏、冬季敦煌戈壁的地表辐射平衡、能量平衡特征。分析了地表反照率(Albedo)与土壤特性的关系,发现地表反照率和表层土壤温度日变化呈反相关;冬季地表反照率和土壤湿度的线性相关差,夏季地表反照率和土壤湿度的线性相关性好;地表反照率和土壤热通量呈反相关,并且冬季二者的拟合性好于夏季。分析了降水前后各能量通量的变化,发现阵雨时感热H是变小的,降雨过后H和净辐射Rn有明显的增大,土壤热通量Gn在降雨过后也有增大,潜热LE变化微弱,对阵性降水强迫后的非平衡态的张弛时间大约为3 d。  相似文献   

5.
农田生态系统二氧化碳通量与群体水分利用率研究   总被引:16,自引:2,他引:14  
本文利用二氧化碳分析系统,配合波文比装置,测定了夏玉米农田群体二氧化碳浓度差及农田小气候特征,并计算了农田冠层瞬时的二氧化碳通量和群体水分利用率。结果表明,夏玉米群体二氧化碳通量、二氧化碳浓度差及群体水分利用率存在明显的日、季节变化规律。其中水分利用率呈“L”型曲线,上午8时左右达到一天的峰值。拔节后随着作物生长发育水分利用率逐渐增大,灌浆后期由于群体光合能力下降、呼吸消耗增强而逐步下降。太阳总辐射、二氧化碳浓度、空气饱和差及土壤水分等环境因素以不同机制及过程影响水分利用率。在生产实际中,可通过秸秆覆盖、喷灌等措施降低蒸腾驱动势,提高水分利用率。  相似文献   

6.
利用塔克拉玛干沙漠腹地塔中2014年10月的秋季涡动通量数据,分析了塔中秋季陆面过程通量变化特征。结果表明:(1)塔中秋季10月净辐射Rn、感热通量H、潜热通量LE、地表土壤热通量G0峰值依次为273.0、141.6、5.0、105.0 W·m-2,平均日总量依次为2.85、2.68、0.08、-0.57 MJ·m-2,净辐射能量分配以感热能量输送为主。(2)不同典型天气下,净辐射日总量扬沙>晴天>阴天>降水;阴天、扬沙天气H随Rn不同程度削减而减少,降水天气潜热增多导致日变化特征有别于其他天气。(3)10月能量闭合率为79.0%,不同天气能量闭合率阴天>晴天>扬沙>降水,依次为86.8%、83.4%、79.4%、71.4%。(4)地表反照率晴天呈“U”型变化,阴天和扬沙天气地表反照率趋势变缓发生波动现象,降水天气波动较大,趋势先降低后回升。(5)月平均热通量日间为正值,夜间为负值。日间能量闭合率为73.9%,夜间为50.8%,存在较高的能量不闭合。  相似文献   

7.
作物生长与气候的互馈是当前气候变化研究的热点之一。陆面模型作为一项重要的研究工具,其模型框架、算法设计及参数化方案的不同会直接导致模拟结果的不确定性。为探究陆面模型DLM(dynamic land model)和CLM5(community land model)在作物生长及农田热通量模拟方面的差异及原因,评估2个模型在华北平原作物研究中的适用程度,论文开展了冬小麦—夏玉米轮作站点的模拟对比研究。结果显示,DLM的夏玉米叶面积指数和生态系统总初级生产力的模拟值更高,与观测值更为接近;CLM5模型则在冬小麦模拟中略优。DLM的潜热模拟值与观测值的相关性普遍更高,可能反映了DLM采用的彭曼公式、双叶策略比CLM5采用基于水势梯度质量守恒、大叶策略的潜热计算方法更具优势。对于产量,模型当前的估测能力并不理想。总的来说,在默认设定下,2个模型的模拟结果能基本反映研究区农田站点内夏玉米和冬小麦的生长规律,但与实测值存在一定偏差。模型在该区域的适用性可能需要通过添加农田管理措施、算法优化和参数本地化等方式进一步提高。  相似文献   

8.
塔克拉玛干沙漠近地层湍流热通量计算方法比较研究   总被引:7,自引:4,他引:3  
利用2007年8月3日至10月31日在塔克拉玛干沙漠大气环境观测试验站取得的大气边界层观测资料,比较了涡动相关法、波文比法和空气动力学法计算得到的湍流热通量,分析了塔克拉玛干沙漠腹地能量平衡各分量的日变化特征。结果表明:波文比法、空气动力学和涡动相关法计算得到的塔克拉玛干沙漠腹地湍流热通量日变化特征是一致的,整个观测期间,空气动力学方法和波文比法计算得出的湍流通量大于涡动相关法。它们的顺序分别为,波文比法计算得出的湍流热通量最大,空气动力学方法次之,涡动相关法最小;塔克拉玛干沙漠腹地能量平衡各分量基本上以12:00时为中心,呈对称分布。净辐射、土壤热通量、感热通量具有非常明显的日变化特征。净辐射日最高值324 W·m-2出现在当地时间11:30,最小值-85 W·m-2出现在当地时间18:30;土壤热通量在12:00左右达到日最高值143 W·m-2,而20:00时出现最小值-69 W·m-2;感热通量在13:30时左右达到最高值178 W·m-2,19:00时左右出现最小值-7 W·m-2;相对于上述3个能量平衡分量,潜热通量的日变化特征不太明显。每日12:30左右出现潜热通量的最大值43 W·m-2,06:00时出现日最低值-1 W·m-2。  相似文献   

9.
黄小涛  罗格平 《干旱区地理》2017,40(6):1198-1206
基于HL20波文比系统获得了天山北坡低山丘陵干草原2013-2015年的能量、气象观测数据,采用波文比-能量平衡法对其生长季(4~10月)蒸散特征进行了分析。结果表明:(1)生长季蒸散日内变化总体呈现中午最高、早晚变小和夜间蒸散微弱的特征,阴雨天蒸散日内变化相对复杂,蒸散强度通常弱于晴天;2013-2015年生长季蒸散量平均值为353.2 mm,生长季蒸散量在不同年份、不同季节和不同月份差异较大;2013-2015年生长季凝结水占降水量的比例分别为9.7%,18.8%和16.8%,日均凝结水量分别为0.177 mm,0.179 mm和0.316 mm。(2)生长季潜热和感热占据了净辐射能的主体且总体上潜热小于感热,白天潜热最大值出现之前,潜热会出现短暂小幅降低的情况。生长季感热和潜热逐日对比变化与植被长势密切相关。(3)波文比在夜间波动较大,变化复杂,白天上午波文比从负值增大到<1的正值,再到>1的正值,中午波文比为>1的正值,20:00左右波文比值开始回落。  相似文献   

10.
对石家庄市LandsatTM数据进行土地覆被分类,计算各土地覆被类型的能量平衡分量。找出感热、潜热、储热通量在下垫面的分配差异并分析下垫面面积比例与感热/净辐射的关系。发现密集不透水面感热单位面积能量达314.1 W/m2,49.9%的净辐射转换为感热。城市植被、水体净辐射的61.2%,65.9%变成潜热;感热/净辐射与城市植被和水体面积比例负相关,面积比例小于30%,感热/净辐射随之减少而快速增长;大于30%则随之增加缓慢降低。感热/净辐射与不透水面面积比显著正相关,可见,城市近地层温度升高主要由不透水面产生的感热交换引起。  相似文献   

11.
Surface energy fluxes were measured using Bowen-Ratio Energy Balance technique (BREB) and eddy correlation system at Luancheng of Hebei Province, on the North China Plain from 1999 to 2001. Average diurnal variation of surface energy fluxes and CO2 flux for maize showed the inverse “U” type. The average peak fluxes did not appear at noon, but after noon. The average peak CO2 flux was about 1.65 mg m-2 s-1. Crop water use efficiency (WUE) increased quickly in the morning, stabilized after 10:00 and decreased quickly after 15:00 with no evident peak value. The ratio of latent heat flux (λE) to net solar radiation (Rn) was always higher than 70% during winter wheat and maize seasons. The seasonal average ratio of sensible heat flux (H) divided byR n stayed at about 15% above the field surface; the seasonal average ratio of conductive heat flux (G) divided by Rn varied between 5% and 13%, and the averageG/R> n from the wheat canopy was evidently higher than that from the maize canopy. The evaporative fraction (EF) is correlated to the Bowen ratio in a reverse function.EF for winter wheat increased quickly during that revival stage, after the stage, it gradually stabilized to 1.0, and fluctuated around 1.0. EF for maize also fluctuated around 1.0 before the later grain filling stage, and decreased after that stage.  相似文献   

12.
Surface energy fluxes were measured using Bowen-Ratio Energy Balance technique (BREB) and eddy correlation system at Luancheng of Hebei Province, on the North China Plain from 1999 to 2001. Average diurnal variation of surface energy fluxes and CO2 flux for maize showed the inverse "U" type. The average peak fluxes did not appear at noon, but after noon. The average peak CO2 flux was about 1.65 mg m-2 s-1. Crop water use efficiency (WUE) increased quickly in the morning, stabilized after 10:00 and decreased quickly after 15:00 with no evident peak value. The ratio of latent heat flux (λE) to net solar radiation (Rn) was always higher than 70% during winter wheat and maize seasons. The seasonal average ratio of sensible heat flux (H) divided by Rn stayed at about 15% above the field surface; the seasonal average ratio of conductive heat flux (G) divided by Rn varied between 5% and 13%, and the average G/Rn from the wheat canopy was evidently higher than that from the maize canopy. The evaporative fraction (EF) is correlated to the Bowen ratio in a reverse function. EF for winter wheat increased quickly during that revival stage, after the stage, it gradually stabilized to 1.0, and fluctuated around 1.0. EF for maize also fluctuated around 1.0 before the later grain filling stage, and decreased after that stage.  相似文献   

13.
《Polar Science》2014,8(2):166-182
The larch forests on the permafrost in northeastern Mongolia are located at the southern limit of the Siberian taiga forest, which is one of the key regions for evaluating climate change effects and responses of the forest to climate change. We conducted long-term monitoring of seasonal and interannual variations in hydrometeorological elements, energy, and carbon exchange in a larch forest (48°15′24′′N, 106°51′3′′E, altitude: 1338 m) in northeastern Mongolia from 2010 to 2012. The annual air temperature and precipitation ranged from −0.13 °C to −1.2 °C and from 230 mm to 317 mm. The permafrost was found at a depth of 3 m. The dominant component of the energy budget was the sensible heat flux (H) from October to May (H/available energy [Ra] = 0.46; latent heat flux [LE]/Ra = 0.15), while it was the LE from June to September (H/Ra = 0.28, LE/Ra = 0.52). The annual net ecosystem exchange (NEE), gross primary production (GPP), and ecosystem respiration (RE) were −131 to −257 gC m−2 y−1, 681–703 gC m−2 y−1, and 423–571 gC m−2 y−1, respectively. There was a remarkable response of LE and NEE to both vapor pressure deficit and surface soil water content.  相似文献   

14.
Clay pans (playas) are common landforms of semi-arid and arid desert regions ranging in size from 1 to 2 km2 to greater than 10,000 km2. The first observations of surface energy exchanges over a clay pan in central Australia using the eddy covariance method are presented. Measurements were obtained in the late dry season (September) before the onset of the Australian summer monsoon under clear skies and weak synoptic winds for five consecutive days. Sensible heat flux displayed an upward trend over the observation period reaching a peak of approximately 50% of net radiation over the period, while latent heat flux declined as the clay pan became dryer. Ground heat flux was similar in magnitude to sensible heat flux reaching maximum values near noon, approximately 2 h before daily maximum sensible heat flux. Net radiation and ground heat flux both reached minimum values 1–2 h after sunset and then gradually increased towards sunrise, while sensible and latent heat flux remained close to zero. Bowen Ratio values increased from 4.08 to 6.12 over the study period as the surface dried. Results highlight clay pans as significant sources of sensible heat in desert landscapes.  相似文献   

15.
土地覆被变化过程中,叶面积指数(LAI)是地表能量平衡重要的影响因素,且与降水等多种因素存在交互作用。以2003 年中国东北地区农田、森林和草地三种覆被类型和三种LAI月变化过程为研究对象,着重分离出土地覆被变化过程中LAI对地表能量平衡的作用,认清覆被和LAI 变化对地表能量平衡的相对作用。利用SiB2 模型研究不同降水条件下土地覆被和LAI 变化对地表能量平衡的影响。结果表明:① 覆被变化对净辐射的影响最大,年均14.5W·m-2左右。② LAI 主要改变净辐射对潜热和显热的分配,对农田和草地而言,LAI 增加明显提高(减小)潜热(显热)分配比例;对森林而言,LAI对潜热和显热分配的影响较弱。③ 降水对净辐射的分配起重要作用,降水增加,潜热增加。④ 表层土壤水分受降水和LAI 调控,与潜热有相反的变化趋势。  相似文献   

16.
The meteorological data of ablation season in 2005 were recorded by two automatic weather stations on Keqicar Glacier, in the southwest Tianshan Mountains of China. One is operated on the glacier near the equilibrium line with an altitude of 4,265 m (Site A) and another is operated on the glacier ablation area with an altitude of 3,700 m (Site B). These data were used to analyze the meteorological conditions and the surface energy balance (SEB) of Keqicar Glacier. Net radiation was directly measured, and turbulent heat fluxes were calculated using the bulk aerodynamic approach, including stability correction. The ablation value of 0.68 m w.e. derived from four ablation stakes is in close correspondence to the modeled value of 0.71 m w.e. During the observation period, net radiation accounts for 81.4% of the total energy with its value of 63.3 W/m2. The rest energy source is provided by the sensible heat flux with a value of 14.4 W/m2. Energy is consumed mainly by melting and evaporation, accounting for 69.5% and 29.7% of the total energy with their values of 54.0 and 23.0 W/m2, respectively. Radiative energy dominates energy exchanges at the glacier-atmosphere interface, governed by the variation in net shortwave radiation. Net short-wave radiation varies significantly due to the effects of cloudiness and the high albedo caused by solid precipitation. Wind speed influences the turbulent heat fluxes distinctively and sensible heat flux and latent heat flux are much larger in July with high wind speed.  相似文献   

17.
We set up an automatic weather station over a playa (the flat floor of an undrained desert basin that becomes at times a shallow lake), approximately 65 km east–west by 130 km north–south, located at the U.S. Army Dugway Proving Ground (40°08′N, 113°27′W, 1124 m above mean sea level) in north-western Utah, U.S.A., in 1999. This station measured the incoming (Rsi) and outgoing (Rso) solar or shortwave radiation using two CM21 Kipp & Zonen pyranometers (one inverted), the incoming (Rli or atmospheric) and outgoing (Rlo or terrestrial) longwave radiation, using two CG1 KippZonen pyrgeometers (one inverted), and the net (Rn) radiation using a Q*7 net radiometer (Radiation Energy Balance System, REBS). We also measured the 10-m wind speed (U10) and direction (R.M. Young wind monitor) and precipitation (Campbell Sci., Inc.). The measurements were taken every 2 s, averaged into 20-min, continuously, throughout the year. The annual (August 1999 – August 2000) comparisons of global or solar radiation and windiness with two other stations in central (Hunter) and northern (Logan) Utah, indicate higher solar radiation (Rsi,Dugway=7797 MJ m−2 period−1vs. Rsi, Hunter=7021 MJ m−2 period−1 and Rsi, Logan=6865 MJ m−2 period−1) and much higher annual mean windiness (UDugway=387 km day−1vs. UHunter=275 km day−1 and ULogan=174 km day−1) throughout the period over the playa. These data reveal the possibility of simultaneously harvesting these two sources of clean energies at this vast and uniform playa.  相似文献   

18.
土壤水分及土壤-大气界面对麦田水热传输的作用   总被引:13,自引:2,他引:11  
文章根据1996年在中国栾城农业生态试验站观测的田间试验资料,分析了土壤水分和土壤-大气界面对麦田水热传输的抑制和加速作用。对于显热和潜热输送,土壤水分起决定作用,土壤水分越小,显热通量越大,潜热通量越小,反之亦然。只在土壤水分较小时界面厚度对显热和潜热输送作用较大。对于土壤热输送,界面厚度起决定作用,界面厚度越大土壤热通量越小。分析还发现60cm深处土壤水势与叶水势和大气水势的相关系数较其它深度处的土壤水势大。0~60cm土层是确定土壤水分运动对界面水热传输影响的一个良好的指示层。  相似文献   

19.
《Polar Science》2014,8(3):218-231
To investigate the dynamics and environmental drivers of CO2 flux through the winter snowpack in a dwarf bamboo ecosystem (Hokkaido, northeast Japan), we constructed an automated sampling system to measured CO2 concentrations at five different levels in the snowpack, from the base to the upper snow surface. Using a gas diffusion approach, we estimated an average apparent soil CO2 flux of 0.26 μmol m−2 s−1 during the snow season (December–April); temporally, the CO2 flux increased until mid-snow season, but showed no clear trend thereafter; late-season snow-melting events resulted in rapid decreases in apparent CO2 flux values. Air temperature and subnivean CO2 flux exhibited a positive linear relationship. After eliminating the effects of wind pumping, we estimated the actual soil CO2 flux (0.41 μmol m−2 s−1) to be 54% larger than the apparent flux. This study provides new constraints on snow-season carbon emissions in a dwarf bamboo ecosystem in northeast Asia.  相似文献   

20.
冬小麦能量平衡及蒸散分配的季节变化分析   总被引:13,自引:0,他引:13  
本文分析了华北平原冬小麦生态系统辐射收支、热量平衡以及蒸散在冠层蒸腾和土壤蒸发之间的分配特征。结果发现,在冬小麦生长过程中,系统截获的太阳短波辐射随小麦的生长而变,它占太阳总辐射的比例,初期为0.8左右,尔后随叶面积的增加而逐渐下降,在孕穗期最小,约为0.75,之后,随叶片枯黄、麦穗的成长又上升,最后可达0.86。净辐射占太阳总辐射的比例,可分成如下3个阶段:拔节期比值较低,约为0.45;孕穗抽穗期约为0.5;灌浆期比值最大,约0.57。随着叶面积指数(LAI)的增加,土壤热通量与净辐射之比,由返青初期的0.13迅速下降,直至较为稳定的0.06。潜热通量消耗净辐射的大部分,且随LAI的增加而增大。从返青到乳熟的58天内(4月1日~5月28日),麦田总蒸散量约为250mm,其中土壤蒸发量约为50mm,冠层蒸腾约为200mm,分别占总蒸散量的20%和80%。  相似文献   

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