期刊文献+

A New Scheme for Predicting Leaf Onset in Summer-Green Vegetation in the Northern Hemisphere

A New Scheme for Predicting Leaf Onset in Summer-Green Vegetation in the Northern Hemisphere
下载PDF
导出
摘要 A modified thermal time model(MTM) was developed to reproduce the leaf onset for summer-green vegetation in the Northern Hemisphere. The model adopts the basic concept of a thermal time model(TM) in that leaf onset is primarily triggered by growing degree days(GDD). Based on global phenology data derived from satellite observations, a new parameterization for the critical model parameter Tb(i.e., baseline temperature for GDD calculation) has been introduced, and the spatial distribution of Tb was calculated. Simulations of leaf onset during 1982–2000 in the range 30–90°N showed a significant improvement of MTM over the standard TM model with constant Tb. The mean error and mean absolute error of the climatological simulation were 1.11 and 6.8 days, respectively, and 90% of the model error(5th and 95 th percentiles) was between-12.4 and 13.7 days. A modified thermal time model(MTM) was developed to reproduce the leaf onset for summer-green vegetation in the Northern Hemisphere. The model adopts the basic concept of a thermal time model(TM) in that leaf onset is primarily triggered by growing degree days(GDD). Based on global phenology data derived from satellite observations, a new parameterization for the critical model parameter Tb(i.e., baseline temperature for GDD calculation) has been introduced, and the spatial distribution of Tb was calculated. Simulations of leaf onset during 1982–2000 in the range 30–90°N showed a significant improvement of MTM over the standard TM model with constant Tb. The mean error and mean absolute error of the climatological simulation were 1.11 and 6.8 days, respectively, and 90% of the model error(5th and 95 th percentiles) was between-12.4 and 13.7 days.
出处 《Atmospheric and Oceanic Science Letters》 CSCD 2015年第5期290-294,共5页 大气和海洋科学快报(英文版)
基金 supported by the Strategic Priority Research Program of the Chinese Academy of Sciences (Grant No. XDA05110103) the National High Technology Research and Development Program of China (863 Program, Grant No. 2009AA122105) the International Science and Technology Cooperation Program of China (Grant No. 2011DFG23450)
关键词 LEAF ONSET BASELINE temperature GROWING degree DAY leaf onset baseline temperature growing degree day
  • 相关文献

参考文献20

  • 1ZENG Xiaodong,LI Fang,SONG Xiang.Development of the IAP Dynamic Global Vegetation Model[J].Advances in Atmospheric Sciences,2014,31(3):505-514. 被引量:15
  • 2Shunlin Liang,Xiang Zhao,Suhong Liu,Wenping Yuan,Xiao Cheng,Zhiqiang Xiao,Xiaotong Zhang,Qiang Liu,Jie Cheng,Hairong Tang,Yonghua Qu,Yancheng Bo,Ying Qu,Huazhong Ren,Kai Yu,John Townshend.A long-term Global LAnd Surface Satellite (GLASS) data-set for environmental studies[J]. International Journal of Digital Earth . 2013 (sup1)
  • 3Wang, Aihui,Zeng, Xubin.Development of Global Hourly 0.5? Land Surface Air Temperature Datasets[J]. Journal of Climate . 2013 (19)
  • 4Andrew D. Richardson,Trevor F. Keenan,Mirco Migliavacca,Youngryel Ryu,Oliver Sonnentag,Michael Toomey.Climate change, phenology, and phenological control of vegetation feedbacks to the climate system[J]. Agricultural and Forest Meteorology . 2013
  • 5Qisheng Feng,Tiangang Liang,Xiaodong Huang,Huilong Lin,Hongjie Xie,Jizhou Ren.Characteristics of global potential natural vegetation distribution from 1911 to 2000 based on comprehensive sequential classification system approach[J]. Grassl Sci . 2013 (2)
  • 6Ryan S.Anderson,Alan G.Barr,GuangshengChen,PhilippeCiais,Ankur R.Desai,DaniloDragoni,Christopher M.Gough,David Y.Hollinger,HarryMcCaughey,Russell K.Monson,BenjaminPoulter,Daniel M.Ricciuto,KevinSchaefer,RodrigoVargas,JingfengXiao.Terrestrial biosphere models need better representation of vegetation phenology: results from the North American Carbon Program Site Synthesis[J]. Glob Change Biol . 2012 (2)
  • 7Hisashi Sato,Akihiko Itoh,Takashi Kohyama.SEIB–DGVM: A new Dynamic Global Vegetation Model using a spatially explicit individual-based approach[J]. Ecological Modelling . 2006 (3)
  • 8.Sr,RonI.Avissar,MichaelRaupach,A. JohannesDolman,XubinZeng,A. ScottDenning.Interactions between the atmosphere and terrestrial ecosystems: influence on weather and climate[J]. Global Change Biology . 2003 (5)
  • 9Xiaoyang Zhang,Mark A. Friedl,Crystal B. Schaaf,Alan H. Strahler,John C.F. Hodges,Feng Gao,Bradley C. Reed,Alfredo Huete.Monitoring vegetation phenology using MODIS[J]. Remote Sensing of Environment . 2002 (3)
  • 10Dominique Bachelet,Ronald P. Neilson,James M. Lenihan,Raymond J. Drapek.Climate Change Effects on Vegetation Distribution and Carbon Budget in the United States[J]. Ecosystems . 2001 (3)

二级参考文献2

共引文献18

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部