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大型蒸渗仪的研制与作物根系吸水实验研究 被引量:2

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作者 杨新民
出处 《水土保持学报》 CSCD 北大核心 2000年第2期101-103,共3页 Journal of Soil and Water Conservation
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  • 1任传友,于贵瑞,王秋凤,关德新.冠层尺度的生态系统光合-蒸腾耦合模型研究[J].中国科学(D辑),2004,34(A02):141-151. 被引量:22
  • 2王积强,马世忠.E_(83)型土壤蒸渗仪[J].干旱区研究,1994,11(4):73-76. 被引量:5
  • 3Yu G R, Wang Q F, Zhuang J. Modeling the water use efficiency of soybean and maize plants under environmental stresses: application of a synthetic model of photosynthesis - transpiration based on stomatal behavior. Journal of Plant Physiology, 2004, 161: 308-318.
  • 4Schimel D S, House J I, Hibbard K A, et al. Recent patterns and mechanisms of carbon exchange by terrestrial ecosystems. Nature, 2001, 414.'169-172.
  • 5Zhao H F, Yu G R, Li S G, et al. Canopy water use efficiency of winter wheat in the North China Plain[J]. Agricultural Water Management, 2007, 93:99-108.
  • 6Ponton S, Flanagan L B, Alstad K P, et al. Comparison of ecosystem water-use efficiency among Douglas-fir forest, aspen forest and grassland using eddy covariance and carbon isotope techniques[J]. Global Change Biology, 2006, 12(2):294-310.
  • 7Yu G R, Song X, Wang Q F, et al. Water-use efficiency of forest ecosystems in eastern China and its relations to climatic variables [J]. New Phytologist, 2008, 177: 927-937.
  • 8Woodward FI, Smith TM. Global photosynthesis and stomatal conductance: Modelling the controls by soil and climate[J]. Advanced Botany research, 1994, 23: 1-41.
  • 9Running S W, Coughlan J C. A general model of forest ecosystem processes for regional applications I. Hydrologic balance, canopy gas exchange and primary production processes[J]. Ecological Modeling, 1988, 42: 125-154.
  • 10Sellers P J, Randall D A, Collatz G J, et al. A revised land surface parameterization (SiB2) for atmospheric GCMs. Part I. Model formulation[J]. Journal of Climate, 1996, 9:676-705.

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