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Chaoyang Wu

Datos Biográficos

ID6820762
NOMBREChaoyang Wu
NOMBRESChaoyang
APELLIDOWu
FIRMAWU C
AFILIACIONESChinese Academy of Sciences
ORCID0000-0001-6163-8209
VERIFICADOSí
TOTAL DE OBRAS11
TOTAL DE CITAS0
TOTAL COMO AUTOR11
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2012
AÑO MÁS RECIENTE DE PUBLICACIÓN2025
ÍNDICE H0
  • Efforts needed to coordinate future economic growth and heatwave exposure mitigation in coastal cities

    Open Access•Yuwei Wang, Na Zhao et al.•ARTICLE•Sustainable Cities and Society•2025

  • Exploring the behavioural determinants of compliance in resilient high-caries-risk patients who improved caries severity

    Open Access•Min Wang, Min Ching Wang et al.•ARTICLE•BMC Psychology•2024

    It is implementing suggested oral health behaviours daily, but not merely agreeing with professional advice, that alters the fate of teeth in these resilient patients

  • Climate-driven land surface phenology advance is overestimated due to ignoring land cover changes

    Open Access•Yuhao Pan, Dailiang Peng et al.•ARTICLE•Environmental Research Letters•2023

    Global warming has led to earlier spring green-up dates (GUDs) in recent decades with significant consequences for global carbon and hydrologic cycles. In addition to changes in climate, land cover change (LCC), including interchanges between vegetation and non-vegetation, and among plants with different functional traits, may also affect GUD. Here, we analyzed how satellite-derived GUD from 1992 to 2020 was impacted by changes in temperature, pr…

  • Pine caterpillar occurrence modeling using satellite spring phenology and meteorological variables

    Open Access•Hao Hua, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2022

    Outbreaks of leaf-feeding Lepidopteran insects substantially weaken the quality of forest trees and strongly affect the ecosystem functions of plant photosynthesis and carbon uptake. The narrow phenological time window of leaf out about ten days, during which Lepidopteran larvae feed on high nutrient newly flushed leaves, may change the insect community and outbreak dynamics by determining the survival rate of larvae. The Chinese pine Caterpillar…

  • Large-scale forest conservation and restoration programs significantly contributed to land surface greening in China

    Open Access•Haiwei Zhao, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2021

    China has implemented a portfolio of large-scale forest conservation and restoration programs (FCRPs) to advance the sustainable management of forests. However, the contributions of these programs to forest recovery and land surface greening were generally evaluated on a local scale, which hindered the systematic planning of FCRPs. In this study, we analyzed the spatiotemporal patterns of tree cover (TC) change before and after the intensificatio…

  • Incorporating water availability into autumn phenological model improved China’s terrestrial gross primary productivity (GPP) simulation

    Open Access•Jie Peng, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2021

    Ecosystem models provide an effective approach to quantify the terrestrial carbon cycle, but the lack of accurate phenological information prevents them from better simulations of the physical processes. Compared with spring phenology (i.e. the start of the growing season, SOS), the vegetation phenology in autumn (the end of the growing season, EOS) is not well-simulated and it is challenging to incorporate vegetation phenology into ecosystem mod…

  • Satellite-observed decrease in the sensitivity of spring phenology to climate change under high nitrogen deposition

    Open Access•Xiaoyue Wang, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2020

    Spring phenology is a sensitive indicator of climate change and has substantial impacts on the carbon cycle. The global N cycle has been greatly disturbed by anthropogenic activities resulting in altered atmospheric N deposition worldwide. Research has been focused on the changes in the spring phenology and its covariations with climatic factors. However, the influences of N deposition on spring phenology have not been well documented to date. He…

  • Understanding the role of phenology and summer physiology in controlling net ecosystem production

    Open Access•Ying Liu, Chaoyang Wu•ARTICLE•Environmental Research Letters•2020

    Understanding the temporal and spatial variability (SV) of net ecosystem productivity (NEP) is critical for coupling ecosystem carbon (C) cycle and climate system. Previous studies have shown responses of NEP to changes of plant phenology, but impacts of summer physiological status on annual NEP and how this may vary across different ecosystems and spatial scales were largely unknown. Combining large regional satellite derived indices (MODIS), 67…

  • Increased atmospheric vapor pressure deficit reduces global vegetation growth

    Open Access•Wenping Yuan, Yi Zheng et al.•ARTICLE•Science Advances•2019

    Global vegetation greening trend stalled after the late 1990s due to increased atmospheric water demand.

  • Estimates of grassland biomass and turnover time on the Tibetan Plateau

    Open Access•Jiangzhou Xia, Minna Ma et al.•ARTICLE•Environmental Research Letters•2017

    The grassland of the Tibetan Plateau forms a globally significant biome, which represents 6% of the world's grasslands and 44% of China's grasslands. However, large uncertainties remain concerning the vegetation carbon storage and turnover time in this biome. In this study, we quantified the pool size of both the aboveground and belowground biomass and turnover time of belowground biomass across the Tibetan Plateau by combining systematic measure…

  • An underestimated role of precipitation frequency in regulating summer soil moisture

    Open Access•Chaoyang Wu, Jing M Chen et al.•ARTICLE•Environmental Research Letters•2012

    Soil moisture induced droughts are expected to become more frequent under future global climate change. Precipitation has been previously assumed to be mainly responsible for variability in summer soil moisture. However, little is known about the impacts of precipitation frequency on summer soil moisture, either interannually or spatially. To better understand the temporal and spatial drivers of summer drought, 415 site-years measurements observe…

Sin obras prominentes en esta página.

  • An underestimated role of precipitation frequency in regulating summer soil moisture

    Open Access•Chaoyang Wu, Jing M Chen et al.•ARTICLE•Environmental Research Letters•2012

    Soil moisture induced droughts are expected to become more frequent under future global climate change. Precipitation has been previously assumed to be mainly responsible for variability in summer soil moisture. However, little is known about the impacts of precipitation frequency on summer soil moisture, either interannually or spatially. To better understand the temporal and spatial drivers of summer drought, 415 site-years measurements observe…

  • Estimates of grassland biomass and turnover time on the Tibetan Plateau

    Open Access•Jiangzhou Xia, Minna Ma et al.•ARTICLE•Environmental Research Letters•2017

    The grassland of the Tibetan Plateau forms a globally significant biome, which represents 6% of the world's grasslands and 44% of China's grasslands. However, large uncertainties remain concerning the vegetation carbon storage and turnover time in this biome. In this study, we quantified the pool size of both the aboveground and belowground biomass and turnover time of belowground biomass across the Tibetan Plateau by combining systematic measure…

  • Increased atmospheric vapor pressure deficit reduces global vegetation growth

    Open Access•Wenping Yuan, Yi Zheng et al.•ARTICLE•Science Advances•2019

    Global vegetation greening trend stalled after the late 1990s due to increased atmospheric water demand.

  • Satellite-observed decrease in the sensitivity of spring phenology to climate change under high nitrogen deposition

    Open Access•Xiaoyue Wang, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2020

    Spring phenology is a sensitive indicator of climate change and has substantial impacts on the carbon cycle. The global N cycle has been greatly disturbed by anthropogenic activities resulting in altered atmospheric N deposition worldwide. Research has been focused on the changes in the spring phenology and its covariations with climatic factors. However, the influences of N deposition on spring phenology have not been well documented to date. He…

  • Understanding the role of phenology and summer physiology in controlling net ecosystem production

    Open Access•Ying Liu, Chaoyang Wu•ARTICLE•Environmental Research Letters•2020

    Understanding the temporal and spatial variability (SV) of net ecosystem productivity (NEP) is critical for coupling ecosystem carbon (C) cycle and climate system. Previous studies have shown responses of NEP to changes of plant phenology, but impacts of summer physiological status on annual NEP and how this may vary across different ecosystems and spatial scales were largely unknown. Combining large regional satellite derived indices (MODIS), 67…

  • Large-scale forest conservation and restoration programs significantly contributed to land surface greening in China

    Open Access•Haiwei Zhao, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2021

    China has implemented a portfolio of large-scale forest conservation and restoration programs (FCRPs) to advance the sustainable management of forests. However, the contributions of these programs to forest recovery and land surface greening were generally evaluated on a local scale, which hindered the systematic planning of FCRPs. In this study, we analyzed the spatiotemporal patterns of tree cover (TC) change before and after the intensificatio…

  • Incorporating water availability into autumn phenological model improved China’s terrestrial gross primary productivity (GPP) simulation

    Open Access•Jie Peng, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2021

    Ecosystem models provide an effective approach to quantify the terrestrial carbon cycle, but the lack of accurate phenological information prevents them from better simulations of the physical processes. Compared with spring phenology (i.e. the start of the growing season, SOS), the vegetation phenology in autumn (the end of the growing season, EOS) is not well-simulated and it is challenging to incorporate vegetation phenology into ecosystem mod…

  • Pine caterpillar occurrence modeling using satellite spring phenology and meteorological variables

    Open Access•Hao Hua, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2022

    Outbreaks of leaf-feeding Lepidopteran insects substantially weaken the quality of forest trees and strongly affect the ecosystem functions of plant photosynthesis and carbon uptake. The narrow phenological time window of leaf out about ten days, during which Lepidopteran larvae feed on high nutrient newly flushed leaves, may change the insect community and outbreak dynamics by determining the survival rate of larvae. The Chinese pine Caterpillar…

  • Climate-driven land surface phenology advance is overestimated due to ignoring land cover changes

    Open Access•Yuhao Pan, Dailiang Peng et al.•ARTICLE•Environmental Research Letters•2023

    Global warming has led to earlier spring green-up dates (GUDs) in recent decades with significant consequences for global carbon and hydrologic cycles. In addition to changes in climate, land cover change (LCC), including interchanges between vegetation and non-vegetation, and among plants with different functional traits, may also affect GUD. Here, we analyzed how satellite-derived GUD from 1992 to 2020 was impacted by changes in temperature, pr…

  • Exploring the behavioural determinants of compliance in resilient high-caries-risk patients who improved caries severity

    Open Access•Min Wang, Min Ching Wang et al.•ARTICLE•BMC Psychology•2024

    It is implementing suggested oral health behaviours daily, but not merely agreeing with professional advice, that alters the fate of teeth in these resilient patients

  • Efforts needed to coordinate future economic growth and heatwave exposure mitigation in coastal cities

    Open Access•Yuwei Wang, Na Zhao et al.•ARTICLE•Sustainable Cities and Society•2025

Environmental Science (10 obras) · Ecology (7 obras) · Plant Water Relations and Carbon Dynamics (7 obras) · Atmospheric sciences (6 obras) · Biology (6 obras) · Climatology (6 obras) · Geography (6 obras) · Climate change (5 obras) · Ecosystem (5 obras) · Phenology (5 obras)

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