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Tonghui Ding

Biographic Data

ID7573851
NAMETonghui Ding
GIVEN NAMESTonghui
FAMILY NAMEDing
SIGNATUREDING T
AFFILIATIONSHohai University
ORCID0000-0002-9825-6826
VERIFIEDYes
TOTAL WORKS11
TOTAL CITATIONS0
AUTHOR COUNT11
EDITOR COUNT0
FIRST PUBLICATION YEAR2019
LATEST PUBLICATION YEAR2026
H-INDEX0
  • A framework for urban planning of rapidly urbanized cities from the perspective of functional zoning

    Open Access•Tonghui Ding, Liping Fang et al.•ARTICLE•Environmental Impact Assessment…•2026

    Integrating functional zoning based on ecosystem service (ES) supply–demand into urban planning has received little attention. Therefore, a novel framework for urban planning in rapidly urbanized cities from the functional zoning perspective is presented. Here, urban functional zones are first delineated based on the ES supply–demand. Then, key urban functional zones are designated as restricted development zones to simulate land use structures u…

  • A supply-flow-demand network framework for unraveling the compounded impacts of future climate and functional space on urban water-soil ecosystem services

    Open Access•Yu Wang, Junfei Chen et al.•ARTICLE•Sustainable Cities and Society•2026

    The intensification of global climate change and human activities has exacerbated the supply-demand imbalance of urban water-soil ecosystem services (WSES ) . However, the compounded impacts of climate change and human-induced functional space transformation remain unclear. It is necessary to examine how dual pressures restructure the production, transfer and consumption of future WSES. Therefore, this study proposed an integrated supply-flow-dem…

  • Assessing urban ecosystem service supply from the water-energy-food system and multi-scenario perspective

    Open Access•Tonghui Ding, Junfei Chen et al.•ARTICLE•Sustainable Cities and Society•2025

  • A novel framework for urban flood resilience assessment at the urban agglomeration scale

    Open Access•Juan Ji, Liping Fang et al.•ARTICLE•International Journal of Disaster…•2024

    With global climate change and continuous urbanization exacerbating floods, urban flood resilience (UFR) has become a key to cope with floods. However, few studies target frameworks of UFR assessment at the urban agglomeration scale over a longer time span. This study, taking the Yangtze River Delta urban agglomeration as a case study, developed an evaluation framework to detail the building of a final evaluation index system of UFR, to analyze U…

  • Supply-demand security assessment of water-energy-food systems

    Open Access•Wentong Yang, Junfei Chen et al.•ARTICLE•Sustainable Cities and Society•2024

  • Nature's hand in megacity cluster progress

    Open Access•Changgao Cheng, Zhou Fang et al.•ARTICLE•Sustainable Cities and Society•2024

  • Urban ecosystem services supply-demand assessment from the perspective of the water-energy-food nexus

    Open Access•Tonghui Ding, Junfei Chen et al.•ARTICLE•Sustainable Cities and Society•2023

  • Emergency risk assessment of sudden water pollution in South-to-North Water Diversion Project in China based on driving force–pressure–state–impact–response (DPSIR) model and variable fuzzy set

    Open Access•Xueyou Zhang, Junfei Chen et al.•ARTICLE•Environment Development and…•2023

  • Optimization of Regional Water-Energy-Food Systems Based on Interval Number Multi-Objective Programming

    Open Access•Junfei Chen, Ziyue Zhou et al.•ARTICLE•International Journal of…•2020

    Water, energy, and food are the most important basic resources for economic and social development. In the context of global population growth, environmental degradation, and resource shortages, the interrelationship between the water, energy, and food has become increasingly important. In this paper, the city of Ordos in China was selected as a study area. Firstly, this paper sorted out relevant research literature and fully understood the conce…

  • Multi-Objective Optimization of a Regional Water–Energy–Food System Considering Environmental Constraints

    Open Access•Junfei Chen, Tonghui Ding et al.•ARTICLE•International Journal of…•2020

    Water, energy, and food, as the basic material resources of human production and life, play a prominent role in social and economic development. As the imbalance between the supply and demand of water, energy, and food increases, a highly sensitive and fragile relationship gradually forms among water, energy, and food. In this paper, Inner Mongolia in China is selected as a research area. Firstly, synergy theory is applied to establish the framew…

  • Research on Total Factor Productivity and Influential Factors of the Regional Water–Energy–Food Nexus

    Open Access•Junfei Chen, Tonghui Ding et al.•ARTICLE•International Journal of…•2019

    With the supply of water, energy and food facing severe challenges, there has been an increased recognition of the importance of studying the regional water-energy-food nexus. In this paper, Inner Mongolia, including 12 cities in China, was selected as a research case. A super-efficiency slack based measure (SBM) model that considered the undesirable outputs was adopted to calculate the regional total factor productivity (TFP) and the Malmquist-L…

No prominent works on this page.

  • Research on Total Factor Productivity and Influential Factors of the Regional Water–Energy–Food Nexus

    Open Access•Junfei Chen, Tonghui Ding et al.•ARTICLE•International Journal of…•2019

    With the supply of water, energy and food facing severe challenges, there has been an increased recognition of the importance of studying the regional water-energy-food nexus. In this paper, Inner Mongolia, including 12 cities in China, was selected as a research case. A super-efficiency slack based measure (SBM) model that considered the undesirable outputs was adopted to calculate the regional total factor productivity (TFP) and the Malmquist-L…

  • Optimization of Regional Water-Energy-Food Systems Based on Interval Number Multi-Objective Programming

    Open Access•Junfei Chen, Ziyue Zhou et al.•ARTICLE•International Journal of…•2020

    Water, energy, and food are the most important basic resources for economic and social development. In the context of global population growth, environmental degradation, and resource shortages, the interrelationship between the water, energy, and food has become increasingly important. In this paper, the city of Ordos in China was selected as a study area. Firstly, this paper sorted out relevant research literature and fully understood the conce…

  • Multi-Objective Optimization of a Regional Water–Energy–Food System Considering Environmental Constraints

    Open Access•Junfei Chen, Tonghui Ding et al.•ARTICLE•International Journal of…•2020

    Water, energy, and food, as the basic material resources of human production and life, play a prominent role in social and economic development. As the imbalance between the supply and demand of water, energy, and food increases, a highly sensitive and fragile relationship gradually forms among water, energy, and food. In this paper, Inner Mongolia in China is selected as a research area. Firstly, synergy theory is applied to establish the framew…

  • Urban ecosystem services supply-demand assessment from the perspective of the water-energy-food nexus

    Open Access•Tonghui Ding, Junfei Chen et al.•ARTICLE•Sustainable Cities and Society•2023

  • Emergency risk assessment of sudden water pollution in South-to-North Water Diversion Project in China based on driving force–pressure–state–impact–response (DPSIR) model and variable fuzzy set

    Open Access•Xueyou Zhang, Junfei Chen et al.•ARTICLE•Environment Development and…•2023

  • A novel framework for urban flood resilience assessment at the urban agglomeration scale

    Open Access•Juan Ji, Liping Fang et al.•ARTICLE•International Journal of Disaster…•2024

    With global climate change and continuous urbanization exacerbating floods, urban flood resilience (UFR) has become a key to cope with floods. However, few studies target frameworks of UFR assessment at the urban agglomeration scale over a longer time span. This study, taking the Yangtze River Delta urban agglomeration as a case study, developed an evaluation framework to detail the building of a final evaluation index system of UFR, to analyze U…

  • Supply-demand security assessment of water-energy-food systems

    Open Access•Wentong Yang, Junfei Chen et al.•ARTICLE•Sustainable Cities and Society•2024

  • Nature's hand in megacity cluster progress

    Open Access•Changgao Cheng, Zhou Fang et al.•ARTICLE•Sustainable Cities and Society•2024

  • Assessing urban ecosystem service supply from the water-energy-food system and multi-scenario perspective

    Open Access•Tonghui Ding, Junfei Chen et al.•ARTICLE•Sustainable Cities and Society•2025

  • A framework for urban planning of rapidly urbanized cities from the perspective of functional zoning

    Open Access•Tonghui Ding, Liping Fang et al.•ARTICLE•Environmental Impact Assessment…•2026

    Integrating functional zoning based on ecosystem service (ES) supply–demand into urban planning has received little attention. Therefore, a novel framework for urban planning in rapidly urbanized cities from the functional zoning perspective is presented. Here, urban functional zones are first delineated based on the ES supply–demand. Then, key urban functional zones are designated as restricted development zones to simulate land use structures u…

  • A supply-flow-demand network framework for unraveling the compounded impacts of future climate and functional space on urban water-soil ecosystem services

    Open Access•Yu Wang, Junfei Chen et al.•ARTICLE•Sustainable Cities and Society•2026

    The intensification of global climate change and human activities has exacerbated the supply-demand imbalance of urban water-soil ecosystem services (WSES ) . However, the compounded impacts of climate change and human-induced functional space transformation remain unclear. It is necessary to examine how dual pressures restructure the production, transfer and consumption of future WSES. Therefore, this study proposed an integrated supply-flow-dem…

Engineering (7 works) · Environmental Science (7 works) · Ecosystem services (6 works) · Environmental resource management (6 works) · Water-Energy-Food Nexus Studies (6 works) · Economics (5 works) · Business (4 works) · Ecology (4 works) · Ecosystem (4 works) · Geography (4 works)

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