Surface Urban Heat Island Dynamics in a High-Elevation Valley City on the Tibetan Plateau: Diurnal, Seasonal, and Spatial Evidence from Nyingchi, 2000–2025

The thermal environment of high-elevation valley cities is jointly shaped by urbanization and complex geographic settings. Using Landsat and MODIS data from 2000 to 2025, annually varying built-up-area boundaries, and elevation-constrained rural references, we characterized the diurnal and seasonal patterns of the surface urban heat island (SUHI) in Nyingchi, Tibet Autonomous Region, China, and used an XGBoost model with out-of-fold SHAP interpretation to examine predictive associations with summer daytime surface thermal anomalies in 2025. The results showed that, since 2000, the urban built-up area of Bayi District expanded from 2.15 to 12.34 km2. Daytime SUHI was strongest in summer (5.24 °C) and was clearly distinct from that in other seasons, whereas nighttime SUHI remained a weak warming signal in all four seasons. A conventional buffer reference that included cooler mountain slopes overestimated summer daytime SUHI by 4.00 °C relative to the elevation-constrained reference, indicating that rural-reference definition is decisive in this terrain. Spatial cross-validation of the XGBoost model yielded an R2 of 0.764; moisture and vegetation variables were associated with lower predicted anomalies, whereas built-up status was associated with higher predicted anomalies. These findings identify a pronounced diurnal-seasonal asymmetry in Nyingchi’s SUHI and provide a basis for terrain-aware thermal-environment assessment; the machine-learning associations are not interpreted as causal intervention effects.

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Publication Details

Journal
Land
Published
2026-09-28
DOI
https://doi.org/10.3390/land15101824
Primary Topic
Urban Heat Island Mitigation
Type
article
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Surface Urban Heat Island Dynamics in a High-Elevation Valley City on the Tibetan Plateau: Diurnal, Seasonal, and Spatial Evidence from Nyingchi, 2000–2025

Yun Xiao, Yinghao Zhang, Zhibang Xu, Yongjie Wang et al.
Land
Urban Heat Island Mitigation
article

Surface Urban Heat Island Dynamics in a High-Elevation Valley City on the Tibetan Plateau: Diurnal, Seasonal, and Spatial Evidence from Nyingchi, 2000–2025

Yun Xiao, Yinghao Zhang, Zhibang Xu, Yongjie Wang, Chuanxi Zhao, Hanzhi Zhang, Nuotong Cheng, Zhen He
article en

Abstract

The thermal environment of high-elevation valley cities is jointly shaped by urbanization and complex geographic settings. Using Landsat and MODIS data from 2000 to 2025, annually varying built-up-area boundaries, and elevation-constrained rural references, we characterized the diurnal and seasonal patterns of the surface urban heat island (SUHI) in Nyingchi, Tibet Autonomous Region, China, and used an XGBoost model with out-of-fold SHAP interpretation to examine predictive associations with summer daytime surface thermal anomalies in 2025. The results showed that, since 2000, the urban built-up area of Bayi District expanded from 2.15 to 12.34 km2. Daytime SUHI was strongest in summer (5.24 °C) and was clearly distinct from that in other seasons, whereas nighttime SUHI remained a weak warming signal in all four seasons. A conventional buffer reference that included cooler mountain slopes overestimated summer daytime SUHI by 4.00 °C relative to the elevation-constrained reference, indicating that rural-reference definition is decisive in this terrain. Spatial cross-validation of the XGBoost model yielded an R2 of 0.764; moisture and vegetation variables were associated with lower predicted anomalies, whereas built-up status was associated with higher predicted anomalies. These findings identify a pronounced diurnal-seasonal asymmetry in Nyingchi’s SUHI and provide a basis for terrain-aware thermal-environment assessment; the machine-learning associations are not interpreted as causal intervention effects.

LandVol. 15(10)
Shandong University of Technology (CN), Nanjing Normal University (CN), Chinese Academy of Sciences (CN), Chengdu University of Technology (CN), University of Jinan (CN), Institute of Urban Environment (CN), Institute of Tibetan Plateau Research (CN), University of Hong Kong (HK)
Sustainable cities and communities
Openalex Percentile: Top 19%
Urban Heat Island Mitigation
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