Arid
DOI10.5194/bg-11-5181-2014
Land surface phenological response to decadal climate variability across Australia using satellite remote sensing
Broich, M.1,2; Huete, A.1; Tulbure, M. G.2; Ma, X.1; Xin, Q.4; Paget, M.3; Restrepo-Coupe, N.1; Davies, K.1; Devadas, R.1; Held, A.3
通讯作者Broich, M.
来源期刊BIOGEOSCIENCES
ISSN1726-4170
EISSN1726-4189
出版年2014
卷号11期号:18页码:5181-5198
英文摘要

Land surface phenological cycles of vegetation greening and browning are influenced by variability in climatic forcing. Quantitative spatial information on phenological cycles and their variability is important for agricultural applications, wildfire fuel accumulation, land management, land surface modeling, and climate change studies. Most phenology studies have focused on temperature-driven Northern Hemisphere systems, where phenology shows annually recurring patterns. However, precipitation-driven non-annual phenology of arid and semi-arid systems (i.e., drylands) received much less attention, despite the fact that they cover more than 30% of the global land surface. Here, we focused on Australia, a continent with one of the most variable rainfall climates in the world and vast areas of dryland systems, where a detailed phenological investigation and a characterization of the relationship between phenology and climate variability are missing.


To fill this knowledge gap, we developed an algorithm to characterize phenological cycles, and analyzed geographic and climate-driven variability in phenology from 2000 to 2013, which included extreme drought and wet years. We linked derived phenological metrics to rainfall and the Southern Oscillation Index (SOI). We conducted a continent-wide investigation and a more detailed investigation over the Murray-Darling Basin (MDB), the primary agricultural area and largest river catchment of Australia.


Results showed high inter-and intra-annual variability in phenological cycles across Australia. The peak of phenological cycles occurred not only during the austral summer, but also at any time of the year, and their timing varied by more than a month in the interior of the continent. The magnitude of the phenological cycle peak and the integrated greenness were most significantly correlated with monthly SOI within the preceding 12 months. Correlation patterns occurred primarily over northeastern Australia and within the MDB, predominantly over natural land cover and particularly in floodplain and wetland areas. Integrated greenness of the phenological cycles (surrogate of vegetation productivity) showed positive anomalies of more than 2 standard deviations over most of eastern Australia in 2009-2010, which coincided with the transition from the El Nino-induced decadal droughts to flooding caused by La Nina.


类型Article
语种英语
国家Australia ; Peoples R China
收录类别SCI-E
WOS记录号WOS:000343120900019
WOS关键词VEGETATION PHENOLOGY ; SOUTHERN-OSCILLATION ; MODIS ; ECOSYSTEM ; DYNAMICS ; PATTERNS ; TRENDS ; FEEDBACKS ; COVER ; NDVI
WOS类目Ecology ; Geosciences, Multidisciplinary
WOS研究方向Environmental Sciences & Ecology ; Geology
来源机构清华大学 ; Commonwealth Scientific and Industrial Research Organisation
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/181069
作者单位1.Univ Technol Sydney, Plant Funct Biol & Climate Change Cluster, Sydney, NSW 2007, Australia;
2.Univ New S Wales, Sch Biol Earth & Environm Sci, Ctr Ecosyst Sci, Kensington, NSW 2052, Australia;
3.CSIRO Marine & Atmospher Res, Pye Lab, Acton, ACT 2600, Australia;
4.Tsinghua Univ, Ctr Earth Syst Sci, Minist Educ, Key Lab Earth Syst Modeling, Beijing 100084, Peoples R China
推荐引用方式
GB/T 7714
Broich, M.,Huete, A.,Tulbure, M. G.,et al. Land surface phenological response to decadal climate variability across Australia using satellite remote sensing[J]. 清华大学, Commonwealth Scientific and Industrial Research Organisation,2014,11(18):5181-5198.
APA Broich, M..,Huete, A..,Tulbure, M. G..,Ma, X..,Xin, Q..,...&Held, A..(2014).Land surface phenological response to decadal climate variability across Australia using satellite remote sensing.BIOGEOSCIENCES,11(18),5181-5198.
MLA Broich, M.,et al."Land surface phenological response to decadal climate variability across Australia using satellite remote sensing".BIOGEOSCIENCES 11.18(2014):5181-5198.
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