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Qiquan Yang

Datos Biográficos

ID7996872
NOMBREQiquan Yang
NOMBRESQiquan
APELLIDOYang
FIRMAYANG Q
AFILIACIONESTongji University
ORCID0000-0003-1152-5999
VERIFICADOSí
TOTAL DE OBRAS4
TOTAL DE CITAS0
TOTAL COMO AUTOR4
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2021
AÑO MÁS RECIENTE DE PUBLICACIÓN2026
ÍNDICE H0
  • Urban heat island assessment constrained by administrative boundaries

    Open Access•Meng Du, Richen Ye et al.•ARTICLE•Sustainable Cities and Society•2026

  • Daytime cooling efficiencies of urban trees derived from land surface temperature are much higher than those for air temperature

    Open Access•Meng Du, Niantan Li et al.•ARTICLE•Environmental Research Letters•2024

    Accurately capturing the impact of urban trees on temperature can help optimize urban heat mitigation strategies. Recently, there has been widespread use of remotely sensed land surface temperature ( T s ) to quantify the cooling efficiency (CE) of urban trees. However, remotely sensed T s reflects emitted radiation from the surface of an object seen from the point of view of the thermal sensor, which is not a good proxy for the air temperature (…

  • Global assessment of urban trees’ cooling efficiency based on satellite observations

    Open Access•Qiquan Yang, Xin Huang et al.•ARTICLE•Environmental Research Letters•2022

    Trees are among the most important urban land covers, and their effects on local thermal environments have been extensively evaluated by using the concept of urban trees’ cooling efficiency (CE), defined as the magnitude of land surface temperature (LST) reduction by per 1% increase in fractional tree cover (FTC). Existing studies provide quantitative knowledge of the CE at local and regional scales, but global-scale analyses are still lacking. T…

  • The relationship between land surface temperature and artificial impervious surface fraction in 682 global cities

    Open Access•Qiquan Yang, Xin Huang et al.•ARTICLE•Environmental Research Letters•2021

    The artificial impervious surface (AIS) counts among the most important components of the urban surface, and understanding how temperature changes with the AIS fraction (AISF) is crucial for urban ecology and sustainability. Considering the high heterogeneity among existing local studies, this study systematically analyzed the relationship between land surface temperature (LST) and AISF in 682 global cities. The LST–AISF relation was quantified b…

Sin obras prominentes en esta página.

  • The relationship between land surface temperature and artificial impervious surface fraction in 682 global cities

    Open Access•Qiquan Yang, Xin Huang et al.•ARTICLE•Environmental Research Letters•2021

    The artificial impervious surface (AIS) counts among the most important components of the urban surface, and understanding how temperature changes with the AIS fraction (AISF) is crucial for urban ecology and sustainability. Considering the high heterogeneity among existing local studies, this study systematically analyzed the relationship between land surface temperature (LST) and AISF in 682 global cities. The LST–AISF relation was quantified b…

  • Global assessment of urban trees’ cooling efficiency based on satellite observations

    Open Access•Qiquan Yang, Xin Huang et al.•ARTICLE•Environmental Research Letters•2022

    Trees are among the most important urban land covers, and their effects on local thermal environments have been extensively evaluated by using the concept of urban trees’ cooling efficiency (CE), defined as the magnitude of land surface temperature (LST) reduction by per 1% increase in fractional tree cover (FTC). Existing studies provide quantitative knowledge of the CE at local and regional scales, but global-scale analyses are still lacking. T…

  • Daytime cooling efficiencies of urban trees derived from land surface temperature are much higher than those for air temperature

    Open Access•Meng Du, Niantan Li et al.•ARTICLE•Environmental Research Letters•2024

    Accurately capturing the impact of urban trees on temperature can help optimize urban heat mitigation strategies. Recently, there has been widespread use of remotely sensed land surface temperature ( T s ) to quantify the cooling efficiency (CE) of urban trees. However, remotely sensed T s reflects emitted radiation from the surface of an object seen from the point of view of the thermal sensor, which is not a good proxy for the air temperature (…

  • Urban heat island assessment constrained by administrative boundaries

    Open Access•Meng Du, Richen Ye et al.•ARTICLE•Sustainable Cities and Society•2026

Urban Green Space and Health (4 obras) · Urban Heat Island Mitigation (4 obras) · Atmospheric sciences (3 obras) · Environmental Science (3 obras) · Geography (3 obras) · Urban heat island (3 obras) · Building Energy and Comfort Optimization (2 obras) · Climatology (2 obras) · Daytime (2 obras) · Ecology (2 obras)

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