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Erschienen in: Environmental Earth Sciences 11/2016

01.06.2016 | Original Article

Evapotranspiration dynamics over a temperate meadow ecosystem in eastern Inner Mongolia, China

verfasst von: Huidong Li, Anzhi Wang, Fenghui Yuan, Dexin Guan, Changjie Jin, Jiabing Wu, Tongbin Zhao

Erschienen in: Environmental Earth Sciences | Ausgabe 11/2016

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Abstract

Ecosystem evapotranspiration links surface energy and water balance, which is very important to the forming and evolution of regional climate. To understand the evapotranspiration dynamic over the temperate meadow in Inner Mongolia grassland, a long-term continuous measurement of water vapour flux was conducted using eddy covariance technique from 2008 to 2013. The results showed that the seasonal variation of daily evapotranspiration displayed a unimodal pattern with maximum value of 6.45 mm day−1. The mean value of annual evapotranspiration (ET) was 650 mm with 72 % occurring during the growing season from May to September. The annual evapotranspiration was larger than the annual precipitation (P), while less than the annual evaporation (E). The ET/P reached up to 1.91, while the ET/E was only 0.60. The evapotranspiration was not limited by precipitation due to additional water supply from surrounding dunes. The daily evapotranspiration was mainly driven by atmospheric moisture demand in the growing season with high Priestley–Taylor parameter, averaged 1.04. The daily evapotranspiration presented positive correlation with net radiation, and the correlation was affected by water vapour pressure deficit. The net radiation and water vapour pressure deficit controlled the evapotranspiration process together. The study site had the largest annual evapotranspiration and ET/P compared with the other ecosystems along the transection of Northeast China Transect, International Geosphere Biosphere Programme. The harvest activity could increase the albedo and then decrease the available energy of the surface, eventually reducing the monthly evapotranspiration as much as 33.98 % in September.

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Literatur
Zurück zum Zitat Alessio S, Taricco C, Rubinetti S, Vivaldo G, Mancuso S (2014) Temperature and precipitation in Northeast China during the last 150 years: relationship to large-scale climatic variability. Ann Geophys 32(7):749–760CrossRef Alessio S, Taricco C, Rubinetti S, Vivaldo G, Mancuso S (2014) Temperature and precipitation in Northeast China during the last 150 years: relationship to large-scale climatic variability. Ann Geophys 32(7):749–760CrossRef
Zurück zum Zitat Bremer DJ, Ham JM (1999) Effect of spring burning on the surface energy balance in a tallgrass prairie. Agric For Meteorol 97(1):43–54CrossRef Bremer DJ, Ham JM (1999) Effect of spring burning on the surface energy balance in a tallgrass prairie. Agric For Meteorol 97(1):43–54CrossRef
Zurück zum Zitat Dukes JS, Chiariello NR, Cleland EE, Moore LA, Shaw MR, Thayer S, Tobeck T, Mooney HA, Field CB (2005) Responses of grassland production to single and multiple global environmental changes. PLoS Biol 3(10):1829–1837CrossRef Dukes JS, Chiariello NR, Cleland EE, Moore LA, Shaw MR, Thayer S, Tobeck T, Mooney HA, Field CB (2005) Responses of grassland production to single and multiple global environmental changes. PLoS Biol 3(10):1829–1837CrossRef
Zurück zum Zitat Foken T, Wichura B (1996) Tools for the quality assessment of surface based flux measurements. Agric For Meteorol 78:83–105CrossRef Foken T, Wichura B (1996) Tools for the quality assessment of surface based flux measurements. Agric For Meteorol 78:83–105CrossRef
Zurück zum Zitat Guan DX, Zhang XJ, Yuan FH, Chen NN, Wang AZ, Wu JB, Jin CJ (2012) The relationship between sap flow of intercropped young poplar trees (Populus × euramericana cv. N3016) and environmental factors in a semiarid region of northeastern China. Hydrol Process 26(19):2925–2937CrossRef Guan DX, Zhang XJ, Yuan FH, Chen NN, Wang AZ, Wu JB, Jin CJ (2012) The relationship between sap flow of intercropped young poplar trees (Populus × euramericana cv. N3016) and environmental factors in a semiarid region of northeastern China. Hydrol Process 26(19):2925–2937CrossRef
Zurück zum Zitat Hao Y, Wang Y, Huang X, Cui X, Zhou X, Wang S, Niu H, Jiang G (2007) Seasonal and interannual variation in water vapor and energy exchange over a typical steppe in Inner Mongolia, China. Agric For Meteorol 146(1):57–69CrossRef Hao Y, Wang Y, Huang X, Cui X, Zhou X, Wang S, Niu H, Jiang G (2007) Seasonal and interannual variation in water vapor and energy exchange over a typical steppe in Inner Mongolia, China. Agric For Meteorol 146(1):57–69CrossRef
Zurück zum Zitat Hao Y, Wang Y, Mei X, Huang X, Cui X, Zhou X, Niu H (2008) CO2, H2O and energy exchange of an Inner Mongolia steppe ecosystem during a dry and wet year. Acta Oecol 33(2):133–143CrossRef Hao Y, Wang Y, Mei X, Huang X, Cui X, Zhou X, Niu H (2008) CO2, H2O and energy exchange of an Inner Mongolia steppe ecosystem during a dry and wet year. Acta Oecol 33(2):133–143CrossRef
Zurück zum Zitat Hu ZM, Yu GR, Zhou YL, Sun XM, Li YN, Shi PL, Wang YF, Song X, Zheng ZM, Zhang L, Li SG (2009) Partitioning of evapotranspiration and its controls in four grassland ecosystems: application of a two-source model. Agric For Meteorol 149(9):1410–1420CrossRef Hu ZM, Yu GR, Zhou YL, Sun XM, Li YN, Shi PL, Wang YF, Song X, Zheng ZM, Zhang L, Li SG (2009) Partitioning of evapotranspiration and its controls in four grassland ecosystems: application of a two-source model. Agric For Meteorol 149(9):1410–1420CrossRef
Zurück zum Zitat Jing YL, Wang AZ, Guan DX, Wu JB, Yuan FH, Jin CJ (2014) Carbon dioxide fluxes over a temperate meadow in eastern Inner Mongolia, China. Environ Earth Sci 72(11):4401–4411CrossRef Jing YL, Wang AZ, Guan DX, Wu JB, Yuan FH, Jin CJ (2014) Carbon dioxide fluxes over a temperate meadow in eastern Inner Mongolia, China. Environ Earth Sci 72(11):4401–4411CrossRef
Zurück zum Zitat Lindroth A, Grelle A, Moren AS (1998) Long-term measurements of boreal forest carbon balance reveal large temperature sensitivity. Glob Change Biol 4(4):443–450CrossRef Lindroth A, Grelle A, Moren AS (1998) Long-term measurements of boreal forest carbon balance reveal large temperature sensitivity. Glob Change Biol 4(4):443–450CrossRef
Zurück zum Zitat Liu H, Guo WL, Quan WJ (2011) Climate division of the types and yields of grassland in Inner Mongolia. J Appl Meteorol Sci 22(3):329–335 Liu H, Guo WL, Quan WJ (2011) Climate division of the types and yields of grassland in Inner Mongolia. J Appl Meteorol Sci 22(3):329–335
Zurück zum Zitat Massman WJ (2000) A simple method for estimating frequency response corrections for eddy covariance systems. Agric For Meteorol 104(3):185–198CrossRef Massman WJ (2000) A simple method for estimating frequency response corrections for eddy covariance systems. Agric For Meteorol 104(3):185–198CrossRef
Zurück zum Zitat Miao HX, Chen SP, Chen JQ, Zhang WL, Zhang P, Wei L, Han XG, Lin GH (2009) Cultivation and grazing altered evapotranspiration and dynamics in Inner Mongolia steppes. Agric For Meteorol 149(11):1810–1819CrossRef Miao HX, Chen SP, Chen JQ, Zhang WL, Zhang P, Wei L, Han XG, Lin GH (2009) Cultivation and grazing altered evapotranspiration and dynamics in Inner Mongolia steppes. Agric For Meteorol 149(11):1810–1819CrossRef
Zurück zum Zitat Moore CJ (1986) Frequency response corrections for eddy correlation systems. Bound Layer Meteorol 37:17–35CrossRef Moore CJ (1986) Frequency response corrections for eddy correlation systems. Bound Layer Meteorol 37:17–35CrossRef
Zurück zum Zitat Ni J, Zhang XS (2000) Climate variability, ecological gradient and the Northeast China Transect (NECT). J Arid Environ 46(3):313–325CrossRef Ni J, Zhang XS (2000) Climate variability, ecological gradient and the Northeast China Transect (NECT). J Arid Environ 46(3):313–325CrossRef
Zurück zum Zitat Ni P, Jin CJ, Wang AZ, Wu JB, Guan DX, Qu CP (2009) Spectral analysis of turbulence characteristics under different atmosphere stability regimes in Horqin grassland. Chin J Ecol 28(12):2495–2502 Ni P, Jin CJ, Wang AZ, Wu JB, Guan DX, Qu CP (2009) Spectral analysis of turbulence characteristics under different atmosphere stability regimes in Horqin grassland. Chin J Ecol 28(12):2495–2502
Zurück zum Zitat Piao SL, Fang JY, He JS, Xiao Y (2004) Spatial distribution of grassland biomass in China. Acta Phytoecol Sin 28(4):491–498 Piao SL, Fang JY, He JS, Xiao Y (2004) Spatial distribution of grassland biomass in China. Acta Phytoecol Sin 28(4):491–498
Zurück zum Zitat Pomeroy J, Essery R (1999) Turbulent fluxes during blowing snow: field tests of model sublimation predictions. Hydrol Process 13(18):2963–2975CrossRef Pomeroy J, Essery R (1999) Turbulent fluxes during blowing snow: field tests of model sublimation predictions. Hydrol Process 13(18):2963–2975CrossRef
Zurück zum Zitat Priestley C, Taylor R (1972) On the assessment of surface heat flux and evaporation using large-scale parameters. Mon Weather Rev 100(2):81–92CrossRef Priestley C, Taylor R (1972) On the assessment of surface heat flux and evaporation using large-scale parameters. Mon Weather Rev 100(2):81–92CrossRef
Zurück zum Zitat Rosset M, Montani M, Tanner M, Fuhrer J (2001) Effects of abandonment on the energy balance and evapotranspiration of wet subalpine grassland. Agric Ecosyst Environ 86(3):277–286CrossRef Rosset M, Montani M, Tanner M, Fuhrer J (2001) Effects of abandonment on the energy balance and evapotranspiration of wet subalpine grassland. Agric Ecosyst Environ 86(3):277–286CrossRef
Zurück zum Zitat Ryu Y, Baldocchi DD, Ma S, Hehn T (2008) Interannual variability of evapotranspiration and energy exchange over an annual grassland in California. J Geophys Res Atmos. doi:10.1029/2007jd009263 Ryu Y, Baldocchi DD, Ma S, Hehn T (2008) Interannual variability of evapotranspiration and energy exchange over an annual grassland in California. J Geophys Res Atmos. doi:10.​1029/​2007jd009263
Zurück zum Zitat Shaw MR, Zavaleta ES, Chiariello NR, Cleland EE, Mooney HA, Field CB (2002) Grassland responses to global environmental changes suppressed by elevated CO2. Science 298:1987–1990CrossRef Shaw MR, Zavaleta ES, Chiariello NR, Cleland EE, Mooney HA, Field CB (2002) Grassland responses to global environmental changes suppressed by elevated CO2. Science 298:1987–1990CrossRef
Zurück zum Zitat Shukla J, Mintz Y (1982) Influence of land-surface evapo-transpiration on the earths climate. Science 215:1498–1501CrossRef Shukla J, Mintz Y (1982) Influence of land-surface evapo-transpiration on the earths climate. Science 215:1498–1501CrossRef
Zurück zum Zitat Vetter SH, Schaffrath D, Bernhofer C (2012) Spatial simulation of evapotranspiration of semi-arid Inner Mongolian grassland based on MODIS and eddy covariance data. Environ Earth Sci 65(5):1567–1574CrossRef Vetter SH, Schaffrath D, Bernhofer C (2012) Spatial simulation of evapotranspiration of semi-arid Inner Mongolian grassland based on MODIS and eddy covariance data. Environ Earth Sci 65(5):1567–1574CrossRef
Zurück zum Zitat Webb EK, Pearman GI, Leuning R (1980) Correction of flux measurements for density effects due to heat and water vapor transfer. Q J R Meteorol Soc 106:85–100CrossRef Webb EK, Pearman GI, Leuning R (1980) Correction of flux measurements for density effects due to heat and water vapor transfer. Q J R Meteorol Soc 106:85–100CrossRef
Zurück zum Zitat Wever LA, Flanagan LB, Carlson PJ (2002) Seasonal and interannual variation in evapotranspiration, energy balance and surface conductance in a northern temperate grassland. Agric For Meteorol 112(1):31–49CrossRef Wever LA, Flanagan LB, Carlson PJ (2002) Seasonal and interannual variation in evapotranspiration, energy balance and surface conductance in a northern temperate grassland. Agric For Meteorol 112(1):31–49CrossRef
Zurück zum Zitat Wilczak JM, Oncley SP, Stage SA (2001) Sonic anemometer tilt correction algorithms. Bound Layer Meteorol 99(1):127–150CrossRef Wilczak JM, Oncley SP, Stage SA (2001) Sonic anemometer tilt correction algorithms. Bound Layer Meteorol 99(1):127–150CrossRef
Zurück zum Zitat Wilson K, Goldstein A, Falge E, Aubinet M, Baldocchi D, Berbigier P, Bernhofer C, Ceulemans R, Dolman H, Field C (2002) Energy balance closure at FLUXNET sites. Agric For Meteorol 113(1):223–243CrossRef Wilson K, Goldstein A, Falge E, Aubinet M, Baldocchi D, Berbigier P, Bernhofer C, Ceulemans R, Dolman H, Field C (2002) Energy balance closure at FLUXNET sites. Agric For Meteorol 113(1):223–243CrossRef
Zurück zum Zitat Wu JB, Kutzbach L, Jager D, Wille C, Wilmking M (2010) Evapotranspiration dynamics in a boreal peatland and its impact on the water and energy balance. J Geophys Res Biogeosci. doi:10.1029/2009JG001075 Wu JB, Kutzbach L, Jager D, Wille C, Wilmking M (2010) Evapotranspiration dynamics in a boreal peatland and its impact on the water and energy balance. J Geophys Res Biogeosci. doi:10.​1029/​2009JG001075
Zurück zum Zitat Yang FL, Zhou GS (2011) Characteristics and modeling of evapotranspiration over a temperate desert steppe in Inner Mongolia, China. J Hydrol 396(1):139–147CrossRef Yang FL, Zhou GS (2011) Characteristics and modeling of evapotranspiration over a temperate desert steppe in Inner Mongolia, China. J Hydrol 396(1):139–147CrossRef
Zurück zum Zitat Yu HB, Bao YH, Zhang QF, Li HP, Wang J (2014) Remote sensing monitoring of temporal and spatial variation of evapotranspiration in Xilin River Basin research of soil and water conservation. Res Soil Water Conserv 21(6):290–294 Yu HB, Bao YH, Zhang QF, Li HP, Wang J (2014) Remote sensing monitoring of temporal and spatial variation of evapotranspiration in Xilin River Basin research of soil and water conservation. Res Soil Water Conserv 21(6):290–294
Zurück zum Zitat Zeppel MJ, Macinnis-Ng CM, Yunusa IA, Whitley RJ, Eamus D (2008) Long term trends of stand transpiration in a remnant forest during wet and dry years. J Hydrol 349(1):200–213CrossRef Zeppel MJ, Macinnis-Ng CM, Yunusa IA, Whitley RJ, Eamus D (2008) Long term trends of stand transpiration in a remnant forest during wet and dry years. J Hydrol 349(1):200–213CrossRef
Zurück zum Zitat Zhang XJ, Jin CJ, Guan DX, Wang AZ, Wu JB, Yuan FH (2011) Long-Term eddy covariance monitoring of evapotranspiration and its environmental factors in a temperate mixed forest in Northeast China. J Hydrol Eng 17(9):965–974CrossRef Zhang XJ, Jin CJ, Guan DX, Wang AZ, Wu JB, Yuan FH (2011) Long-Term eddy covariance monitoring of evapotranspiration and its environmental factors in a temperate mixed forest in Northeast China. J Hydrol Eng 17(9):965–974CrossRef
Zurück zum Zitat Zhang F, Zhou GS, Wang Y, Yang FL, Nilsson C (2012) Evapotranspiration and crop coefficient for a temperate desert steppe ecosystem using eddy covariance in Inner Mongolia, China. Hydrol Process 26(3):379–386CrossRef Zhang F, Zhou GS, Wang Y, Yang FL, Nilsson C (2012) Evapotranspiration and crop coefficient for a temperate desert steppe ecosystem using eddy covariance in Inner Mongolia, China. Hydrol Process 26(3):379–386CrossRef
Zurück zum Zitat Zhang G, Zhou GS, Chen F, Wang Y (2014) Analysis of the variability of canopy resistance over a desert steppe site in Inner Mongolia, China. Adv Atmos Sci 31(3):681–692CrossRef Zhang G, Zhou GS, Chen F, Wang Y (2014) Analysis of the variability of canopy resistance over a desert steppe site in Inner Mongolia, China. Adv Atmos Sci 31(3):681–692CrossRef
Zurück zum Zitat Zhou GS, He QJ (2012) Terrestrial transect study on the responses of ecosystems to global change. Adv Earth Sci 27(5):563–572 Zhou GS, He QJ (2012) Terrestrial transect study on the responses of ecosystems to global change. Adv Earth Sci 27(5):563–572
Zurück zum Zitat Zhou GS, Wang YH, Jiang YL (2002) Global change and water-driven IGBP–NECT, Northeast China. Earth Sci Front 9(1):198–216 Zhou GS, Wang YH, Jiang YL (2002) Global change and water-driven IGBP–NECT, Northeast China. Earth Sci Front 9(1):198–216
Metadaten
Titel
Evapotranspiration dynamics over a temperate meadow ecosystem in eastern Inner Mongolia, China
verfasst von
Huidong Li
Anzhi Wang
Fenghui Yuan
Dexin Guan
Changjie Jin
Jiabing Wu
Tongbin Zhao
Publikationsdatum
01.06.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 11/2016
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-016-5786-z

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