Land constraints shape China’s wind power potential and improve development efficiency

Terawatt-scale expansion of wind power facilitates China’s latest climate pledge. But the land-extensive nature of wind power, combined with increasingly stringent land protection policies, results in growing energy-land conflicts. Here, we construct a plant-level land-use dataset based on 15,116 wind turbines from representative wind farms nationwide. The land-use information is then combined with a wind resource assessment model and an integrated assessment model to quantify the pronounced spatial mismatch among wind resources, land availability, and projected energy demand. Our results indicate that China’s land-constrained wind power potential ranges from 7.62 to 14.06 terawatts. Although wind power development would require only 6.98% of China’s total land area, the aggregate results mask strong provincial disparities. The scenario analysis shows that stricter land-use policies reduce developable land, but they can lower generation-based land-use intensity in many provinces, suggesting that well-designed land policies can help reconcile wind power development with ecological and farmland protection. China’s land-constrained wind power potential is 7.62−14.06 terawatts, and stricter land policies can reduce energy-land conflicts while protecting farmland and ecosystems, according to turbine-level land-use data integrated with wind resource and assessment modeling.

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Publication Details

Journal
Communications Earth & Environment
Published
2026-09-21
DOI
https://doi.org/10.1038/s43247-026-04069-8
Primary Topic
Wind Energy Research and Development
Type
article
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Land constraints shape China’s wind power potential and improve development efficiency

Shidong Liu, Mengye Zhu, H X Zhang, Pu Wang et al.
Communications Earth & Environment
Wind Energy Research and Development
article

Land constraints shape China’s wind power potential and improve development efficiency

Shidong Liu, Mengye Zhu, H X Zhang, Pu Wang, Muzhen Ren, Yan Sun, Gang Wu, Lu Zhang
article en

Abstract

Terawatt-scale expansion of wind power facilitates China’s latest climate pledge. But the land-extensive nature of wind power, combined with increasingly stringent land protection policies, results in growing energy-land conflicts. Here, we construct a plant-level land-use dataset based on 15,116 wind turbines from representative wind farms nationwide. The land-use information is then combined with a wind resource assessment model and an integrated assessment model to quantify the pronounced spatial mismatch among wind resources, land availability, and projected energy demand. Our results indicate that China’s land-constrained wind power potential ranges from 7.62 to 14.06 terawatts. Although wind power development would require only 6.98% of China’s total land area, the aggregate results mask strong provincial disparities. The scenario analysis shows that stricter land-use policies reduce developable land, but they can lower generation-based land-use intensity in many provinces, suggesting that well-designed land policies can help reconcile wind power development with ecological and farmland protection. China’s land-constrained wind power potential is 7.62−14.06 terawatts, and stricter land policies can reduce energy-land conflicts while protecting farmland and ecosystems, according to turbine-level land-use data integrated with wind resource and assessment modeling.

Communications Earth & Environment
Chinese Academy of Sciences (CN), Institute of Agricultural Economics and Development (CN), Institutes of Science and Development (CN), Chinese Academy of Agricultural Sciences (CN), University of Chinese Academy of Sciences (CN), Stanford University (US)
Affordable and clean energy
Openalex Percentile: Top 8%
Wind Energy Research and Development
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