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Jiancang Xie

Biographic Data

ID6316347
NAMEJiancang Xie
GIVEN NAMESJiancang
FAMILY NAMEXie
SIGNATUREXIE J
AFFILIATIONSXi'an University of Technology
ORCID0000-0002-0411-3294
VERIFIEDYes
TOTAL WORKS8
TOTAL CITATIONS3
AUTHOR COUNT8
EDITOR COUNT0
FIRST PUBLICATION YEAR2014
LATEST PUBLICATION YEAR2025
H-INDEX1
  • A new spatial optimization layout framework for urban LID facilities in response to climate change impacts

    Open Access•Wen Li, Rengui Jiang et al.•ARTICLE•Sustainable Cities and Society•2025

  • An integrated urban flooding risk analysis framework leveraging machine learning models

    Open Access•Wen Li, Rengui Jiang et al.•ARTICLE•International Journal of Disaster…•2024

  • A new two-stage emergency material distribution framework for urban rainstorm and flood disasters to promote the SDGs

    Open Access•Wen Li, Rengui Jiang et al.•ARTICLE•Sustainable Cities and Society•2024

  • A System Dynamics Model of Urban Rainstorm and Flood Resilience to Achieve the Sustainable Development Goals

    Open Access•Wen Li, Rengui Jiang et al.•ARTICLE•Sustainable Cities and Society•2023

  • Do the protection and harnessing of river systems promote the society, economy, and ecological environment of cities? A case study of Xi'an, China

    Open Access•Bing Wang, Jiwei Zhu et al.•ARTICLE•Sustainable Cities and Society•2023

  • Assessment of temperature extremes and climate change impacts in Singapore, 1982–2018

    Open Access•Rengui Jiang, Wen Li et al.•ARTICLE•Singapore Journal of Tropical…•2021

    Understanding extreme temperature variations is important for countries to manage risks associated with climate change. Yet, the characteristics of temperature extremes and possible climate change impacts have not been adequately investigated in Singapore. In this study, we attempted to do so by defining 14 extreme temperature indices (ETIs) for the period of 1982–2018 in Singapore, and investigating the trends of those ETIs using a pre‐whitening…

  • Quantifying precipitation extremes and their relationships with large‐scale climate oscillations in a tropical country, Singapore

    Open Access•Rengui Jiang, Ruijuan Cao et al.•ARTICLE•Singapore Journal of Tropical…•2020

    Extreme precipitation indices (EPIs) were defined to quantify the precipitation extremes in Singapore, a typical tropical country situated near the equator. The paper investigated the spatial and temporal variability of precipitation extremes based on seventeen EPIs using non‐parametric Mann‐Kendall test and Sen’s slope, and further explored the linear and nonlinear relationships between precipitation extremes and four large‐scale global climate …

  • A comprehensive framework on land-water resources development in Mu Us Sandy Land

    Ni Wang, Jiancang Xie et al.•ARTICLE•Land Use Policy•2014•Cited by: 3•References: 6

  • A comprehensive framework on land-water resources development in Mu Us Sandy Land

    Ni Wang, Jiancang Xie et al.•ARTICLE•Land Use Policy•2014•Cited by: 3•References: 6

  • A comprehensive framework on land-water resources development in Mu Us Sandy Land

    Ni Wang, Jiancang Xie et al.•ARTICLE•Land Use Policy•2014•Cited by: 3•References: 6

  • Quantifying precipitation extremes and their relationships with large‐scale climate oscillations in a tropical country, Singapore

    Open Access•Rengui Jiang, Ruijuan Cao et al.•ARTICLE•Singapore Journal of Tropical…•2020

    Extreme precipitation indices (EPIs) were defined to quantify the precipitation extremes in Singapore, a typical tropical country situated near the equator. The paper investigated the spatial and temporal variability of precipitation extremes based on seventeen EPIs using non‐parametric Mann‐Kendall test and Sen’s slope, and further explored the linear and nonlinear relationships between precipitation extremes and four large‐scale global climate …

  • Assessment of temperature extremes and climate change impacts in Singapore, 1982–2018

    Open Access•Rengui Jiang, Wen Li et al.•ARTICLE•Singapore Journal of Tropical…•2021

    Understanding extreme temperature variations is important for countries to manage risks associated with climate change. Yet, the characteristics of temperature extremes and possible climate change impacts have not been adequately investigated in Singapore. In this study, we attempted to do so by defining 14 extreme temperature indices (ETIs) for the period of 1982–2018 in Singapore, and investigating the trends of those ETIs using a pre‐whitening…

  • A System Dynamics Model of Urban Rainstorm and Flood Resilience to Achieve the Sustainable Development Goals

    Open Access•Wen Li, Rengui Jiang et al.•ARTICLE•Sustainable Cities and Society•2023

  • Do the protection and harnessing of river systems promote the society, economy, and ecological environment of cities? A case study of Xi'an, China

    Open Access•Bing Wang, Jiwei Zhu et al.•ARTICLE•Sustainable Cities and Society•2023

  • An integrated urban flooding risk analysis framework leveraging machine learning models

    Open Access•Wen Li, Rengui Jiang et al.•ARTICLE•International Journal of Disaster…•2024

  • A new two-stage emergency material distribution framework for urban rainstorm and flood disasters to promote the SDGs

    Open Access•Wen Li, Rengui Jiang et al.•ARTICLE•Sustainable Cities and Society•2024

  • A new spatial optimization layout framework for urban LID facilities in response to climate change impacts

    Open Access•Wen Li, Rengui Jiang et al.•ARTICLE•Sustainable Cities and Society•2025

Geography (7 works) · Engineering (6 works) · Environmental Science (6 works) · Flood Risk Assessment and Management (5 works) · Civil engineering (4 works) · Geology (4 works) · Ecology (3 works) · Environmental planning (3 works) · Flood myth (3 works) · Political science (3 works)

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