globalchange  > 气候减缓与适应
DOI: 10.1016/j.scitotenv.2018.09.130
WOS记录号: WOS:000447915400038
论文题名:
A comprehensive analysis of interseasonal and interannual energy and water balance dynamics in semiarid shrubland and forest ecosystems
作者: Valayamkunnath, Prasanth1; Sridhar, Venkataramana1; Zhao, Wenguang2; Allen, Richard G.2
通讯作者: Sridhar, Venkataramana
刊名: SCIENCE OF THE TOTAL ENVIRONMENT
ISSN: 0048-9697
EISSN: 1879-1026
出版年: 2019
卷: 651, 页码:381-398
语种: 英语
英文关键词: Surface energy balance ; Water balance ; Soil moisture-air temperature coupling strength ; Evapotranspiration ; Complementary relationship ; Semiarid ecosystems
WOS关键词: LARGE-APERTURE SCINTILLOMETER ; LAND-SURFACE MODEL ; SENSIBLE HEAT-FLUX ; EDDY-COVARIANCE ; COMPLEMENTARY RELATIONSHIP ; SOIL-MOISTURE ; CLIMATE-CHANGE ; REGIONAL EVAPOTRANSPIRATION ; RAINFALL PATTERNS ; CHIHUAHUAN DESERT
WOS学科分类: Environmental Sciences
WOS研究方向: Environmental Sciences & Ecology
英文摘要:

Accurate estimation of ecosystem-scale land surface energy and water balance has great importance in weather and climate studies. This paper summarizes seasonal and interannual fluctuations of energy and water balance components in two distinctive semiarid ecosystems, sagebrush (SB) and lodgepole pine (LP) in the Snake River basin of Idaho. This study includes 6 years (2011-2016) of eddy covariance (EC) along with modeled estimates. An analysis of the energy balance indicated a higher energy balance ratio (0.88) for SB than for LP (0.86). The inclusion of canopy storage (CS) increased the association between turbulent fluxes and available energy in LP. Green vegetation fraction (GVF) significantly controlled evapotranspiration (ET) and surface energy partitioning when available energy and soil moisture were not limited. Seasonal water balance in the Budyko framework showed severe water-limited conditions in SB (6-9 months) compared to LP (6-7 months). Based on the validated Noah land surface model estimates, direct soil evaporation (E-Soil) is the main component of ET (62 to 79%) in SB due to a large proportion of bare soil (60%), whereas at the lodgepole pine site, it was transpiration (E-Tran, 42-52%). A complementary ratio (CR) analysis on ET and potential ET (PET) showed a strong asymmetric CR in SB, indicating significant advection. Both SG and LP showed strong coupling between soil moisture (SM) and air temperature (T-a). However, a weak coupling was observed in SB when the soil was dry and T-a was high. This weak coupling was due to the presence of net advection. The results presented here have a wider application: to help us understand and predict the survival, productivity, and hydroclimatology of water-limited ecosystems. (c) 2018 Elsevier B.V. All rights reserved.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/129999
Appears in Collections:气候减缓与适应

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作者单位: 1.Virginia Tech, Dept Biol Syst Engn, Blacksburg, VA 24061 USA
2.Univ Idaho, Coll Agr & Life Sci, Kimberly, ID 83341 USA

Recommended Citation:
Valayamkunnath, Prasanth,Sridhar, Venkataramana,Zhao, Wenguang,et al. A comprehensive analysis of interseasonal and interannual energy and water balance dynamics in semiarid shrubland and forest ecosystems[J]. SCIENCE OF THE TOTAL ENVIRONMENT,2019-01-01,651:381-398
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