青藏高原两种草甸地表通量季节变化特征
Seasonal Variation of Surface Fluxes of two Species Meadows on the Qinghai-Tibet Plateau
查看参考文献13篇
文摘
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2003年1月-2004年7月运用涡度相关法技术研究青藏高原金露梅(Potentilla fruticosa)灌丛草甸(SWM)和藏嵩草(Kobresia humilis)沼泽化草甸(SRM)的地表通量。结果表明:二者地表湍流通量都具有明显的季节变化和日变化,其中感热通量以4月最大,1月最小,而潜热通量则以5月最大;感热通量随着季节的变动而显著变化,在相同月份中沼泽化草甸白天最大值大于灌丛草甸,日变化振幅比灌丛草甸强;白天潜热通量达到最大值的时间和波动强度因季节不同而各异,在非生长季节白天最大值在13~15 h,日波动较弱,生长季节最大值在12 h,日波动较强;高寒草甸地表湍流通量与温度间存在着线性关系;不同季节感热通量:沼泽化草甸>灌丛革甸,而潜热通量与感热通量各异,在1月沼泽化革匈>灌丛草甸,在4和10月,沼泽化草甸<灌丛草甸,在7月二者基本一致。 |
其他语种文摘
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Eddy covariance technique was used to measure the surface fluxes (sensible flux and latent flux) of a Potentilla fruticosa shrub meadow (SRM) and a Kobresia humilis swamp meadow (SWM) on the Qinghai-Tibetan Plateau from January 2003 to July 2004. Results show that the surface fluxes had been recorded with significant diurnal and seasonal variations. Among them, April saw the highest monthly sensible flux, and January the lowest, while the latent fluxes maximum appeared in May. Diurnal sensible flux amplitude significantly changed with season alternations. Within the same month, the maximal diurnal sensible flux of the K. humilis shrub meadow was higher than that of the P. fruticosa swamp meadow, and the diurnal amplitude of the former excelled that of the latter. Different seasons also altered the time in which the diurnal latent flux and the amplitude vibration force reaching the peaks During the plant dormant season, the maximal diurnal sensible flux appeared between 1 ' 00 pm to 3 ! 00 pm and the diurnal amplitude was weak. During the plant growing seasons, the maximal diurnal sensible fluxes occurred in midday, 12 o 00 am, with strong diurnal amplitude. There exists a linearity or exponential relationship between surface fluxes and air temperature in the two meadows. The responses of the P. fruticosa shrub meadow latent flux to temperature were stronger than those of the K. humilis swamp meadow, each month. The responses of the shrub meadow sensible flux to temperature were stronger than those of the swamp meadow in January. It was the reverse in April and October. In July, the response of sensible flux to temperature of the two was similar. |
来源
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草地学报
,2006,14(3):248-253 【扩展库】
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关键词
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青藏高原
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感热通量
;
潜热通量
;
草甸
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地址
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1.
中国科学院西北高原生物研究所, 青海, 西宁, 810001
2.
中国科学院地理科学与资源研究所, 北京, 100101
3.
日本农林环境技术研究所, 日本
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语种
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中文 |
文献类型
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研究性论文 |
ISSN
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1007-0435 |
学科
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畜牧、动物医学、狩猎、蚕、蜂 |
基金
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中国科学院知识创新工程项目
;
国家973计划
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文献收藏号
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CSCD:2422553
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参考文献 共
13
共1页
|
1.
Wilson K B. Seasonal and interannual variability of energy fluxes over a broadleaved temperate deciduous forest in North America[J].
Agric For Meterol,2000,100:1-18
|
CSCD被引
39
次
|
|
|
|
2.
Linda A W. Seasonal and interannual variation in evapotranspiration.
Agric.For.Meterol,2002,112:31-49
|
CSCD被引
1
次
|
|
|
|
3.
季国良. 1982年冬季青藏高原地面和大气热场特征[J].
中国科学(B辑),1986(2):214-224
|
CSCD被引
45
次
|
|
|
|
4.
李家伦. 青藏高原改则地区近地层通量观测研究[J].
大气科学,1999,23(2):172-177
|
CSCD被引
1
次
|
|
|
|
5.
卞林根. 青藏高原东南部昌都地区近地层湍流输送的观测研究.
应用气象学报,2001,12:1-13
|
CSCD被引
44
次
|
|
|
|
6.
余锦华. 青藏高原西部地表通量的年、日变化特征.
高原气象,2004,23:353-359
|
CSCD被引
12
次
|
|
|
|
7.
Zhao L. Carbon dioxide exchange between the atmosphere and an alpine shrubland meadow during the growing season on the Qinghai-Tibetan plateau[J].
J Integrative Plant Biology,2005,47:271-282
|
CSCD被引
21
次
|
|
|
|
8.
Zhao L. Comparative study of the net exchange of CO2 in 3 type of vegetation ecosystems on the Qinghai-Tibetan Plateau[J].
Chiese Science Bulletin,2005,50:1767-1774
|
CSCD被引
31
次
|
|
|
|
9.
赵亮. 积雪对藏北高寒草甸CO2和水汽通量的影响.
草地学报,2005,13:242-247
|
CSCD被引
18
次
|
|
|
|
10.
赵亮. 海北高寒草甸辐射能量的收支及植物生物量季节变化.
草地学报,2004,12:66-69
|
CSCD被引
12
次
|
|
|
|
11.
李英年. 海北高寒草甸地区能量平衡特征.
草地学报,2003,11:289-295
|
CSCD被引
18
次
|
|
|
|
12.
李英年. 海北高寒草甸生态系统定位站气候、植被生产力背景的分析.
高原气象,2004,23:558-567
|
CSCD被引
132
次
|
|
|
|
13.
李栋梁. 夏季青藏高原下垫面感热异常的诊断研究[J].
高原气象,1997,16:368-375
|
CSCD被引
4
次
|
|
|
|
|