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March 29, 2026Land1 citationsOpen Access

Land Use Structure Evolution in Resource-Based Cities: Drivers and Multi-Scenario Forecasting—Evidence from China’s Huaihai Economic Zone

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YLYan LinBWBinjie WangLZLiyuan Zhao

Key Points

  • The aim is to analyze land use changes in the Huaihai Economic Zone and project future scenarios to understand driving factors.
  • Analyzed land use changes from 2000 to 2023 in the Huaihai Economic Zone.
  • Utilized land use transfer matrices and dynamic degree metrics.
  • Employed the PATCH-generating Land Use Simulation (PLUS) model for scenario forecasts.
  • Land use changes showed a transition from cultivated land to construction land.
  • Spatial restructuring from a monocentric to a polycentric network was observed.
  • Urban development scenarios predicted accelerated loss of cultivated land and increased unused land.
  • Ecological protection scenarios showed potential for reducing urban sprawl.

Abstract

Resource-based cities face unique land use challenges due to resource dependence and path lock-in, yet the driving mechanisms and future trajectories of their land use transitions remain underexplored. This study examines the Huaihai Economic Zone (HEZ), a representative coal-rich region in eastern China, to analyze land use changes from 2000 to 2023 and simulate 2036 scenarios under different development pathways. Using land use transfer matrices, dynamic degree metrics, and the Patch-generating Land Use Simulation (PLUS) model, we systematically identified spatiotemporal evolution patterns, quantified the contributions of driving factors, and projected multi-scenario future land use patterns. Results reveal that land use change in the study area was dominated by the conversion of cultivated land to construction land, alongside spatial restructuring from a monocentric to a polycentric network pattern. Notably, construction land expansion was least evident in the central Mining-Affected Zone, where land use changes remained relatively sluggish compared to other sub-regions. Driving factor analysis indicates that socio-economic factors primarily influenced changes in construction and cultivated land, while natural factors strongly affected ecological land and unused land. Multi-scenario simulations for 2036 demonstrate diverging trajectories: an urban development scenario would accelerate cultivated land loss and unused land expansion; a natural development scenario would maintain current pressures; and an ecological protection scenario would effectively curb urban sprawl while actively promoting ecological land recovery. This study concludes that transcending simple land use control to actively orchestrate “mining-urban-rural-ecological” spatial synergy is critical for achieving a sustainable transition in resource-based regions facing similar transformation pressures.

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/69c8c43ede0f0f753b39ef9bhttps://doi.org/10.3390/land15040555
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