中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Spatiotemporal variations in remote sensing phenology of vegetation and its responses to temperature change of boreal forest in tundra-taiga transitional zone in the Eastern Siberia

文献类型:期刊论文

作者Li, Cheng2; Zhuang, Dafang; He, Jianfeng; Wen, Kege2
刊名JOURNAL OF GEOGRAPHICAL SCIENCES
出版日期2023-03-01
卷号33期号:3页码:464-482
关键词phenology climate change Siberia asymmetric Gaussian function GeoDetector
ISSN号1861-9568
DOI10.1007/s11442-023-2092-z
文献子类Article
英文摘要Phenology is an important indicator of climate change. Studying spatiotemporal variations in remote sensing phenology of vegetation can provide a basis for further analysis of global climate change. Based on time series data of MODIS-NDVI from 2000 to 2017, we extracted and analyzed four remote sensing phenological parameters of vegetation, including the Start of Season (SOS), the End of Season (EOS), the Middle of Season (MOS) and the Length of Season (LOS), in tundra-taiga transitional zone in the East Siberia, using asymmetric Gaussian function and dynamic threshold methods. Meanwhile, we analyzed the responses of the four phenological parameters to the temperature change based on the temperature change data from Climate Research Unit (CRU). The results show that: in regions south of 64 degrees N, with the rise of temperature in April and May, the SOS in the corresponding area was 5-15 days ahead of schedule; in the area between 64 degrees N and 72 degrees N, with the rise of temperature in May and June, the SOS in the corresponding area was 10-25 days ahead of schedule; in the northernmost of the study area on the coast of the Arctic Ocean, with the drop of temperature in May and June, the SOS in the corresponding area was 15-25 days behind schedule; in the northwest of the study area in August and the southwest in September, with the drop of temperature, the EOS in the corresponding areas was 15-30 days ahead of schedule; in regions south of 67 degrees N, with the rise of temperature in September and October, the EOS in the corresponding area was 5-30 days behind schedule; the change of the EOS in autumn was more sensitive to the change of the SOS in spring, because the smaller temperature fluctuation can cause the larger change of the EOS; the growth season of vegetation in the study area was generally moving forward, and the LOS in the northwest was shortened, while the LOS in the middle and south of the study area was prolonged.
WOS关键词TIME-SERIES ; SATELLITE ; MODEL ; NDVI
WOS研究方向Physical Geography
WOS记录号WOS:000948349900003
出版者SCIENCE PRESS
源URL[http://ir.igsnrr.ac.cn/handle/311030/190257]  
专题资源与环境信息系统国家重点实验室_外文论文
作者单位1.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
2.Chinese Acad Sci, Inst Geog Sci & Nat Resources Res, State Key Lab Resources & Environm Informat Syst, Beijing 100101, Peoples R China
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Li, Cheng,Zhuang, Dafang,He, Jianfeng,et al. Spatiotemporal variations in remote sensing phenology of vegetation and its responses to temperature change of boreal forest in tundra-taiga transitional zone in the Eastern Siberia[J]. JOURNAL OF GEOGRAPHICAL SCIENCES,2023,33(3):464-482.
APA Li, Cheng,Zhuang, Dafang,He, Jianfeng,&Wen, Kege.(2023).Spatiotemporal variations in remote sensing phenology of vegetation and its responses to temperature change of boreal forest in tundra-taiga transitional zone in the Eastern Siberia.JOURNAL OF GEOGRAPHICAL SCIENCES,33(3),464-482.
MLA Li, Cheng,et al."Spatiotemporal variations in remote sensing phenology of vegetation and its responses to temperature change of boreal forest in tundra-taiga transitional zone in the Eastern Siberia".JOURNAL OF GEOGRAPHICAL SCIENCES 33.3(2023):464-482.

入库方式: OAI收割

来源:地理科学与资源研究所

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