Reference-Based Terrain Coordination Assessment of Abandoned Sand Mining Sites in an Arid Region Using UAV-Derived DEMs

Abandoned sand mining sites in arid regions are characterized by slow vegetation recovery and extensive bare-surface exposure, making it difficult to evaluate restoration outcomes using vegetation-based or conventional engineering indicators alone. More importantly, reference-based terrain assessment requires reliable natural benchmarks; otherwise, terrain similarity may be misinterpreted when candidate reference areas have been modified by human activities. This study developed a reference-based terrain coordination evaluation framework using high-resolution UAV-derived DEMs for three historical abandoned sand mining sites in the Aksu region, northwestern China. Candidate reference units were first screened using a 30 m DEM based on area, mean slope, and slope variability, and were then verified using 0.1 m UAV orthomosaics and DEM-derived hillshade maps. Surface roughness, local topographic relief, and mean absolute curvature were extracted to quantify terrain similarity between restored areas and verified natural reference units, and DEM-resolution sensitivity was further assessed.

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Publication Details

Journal
Land
Published
2026-09-04
DOI
https://doi.org/10.3390/land15091645
Primary Topic
3D Surveying and Cultural Heritage
Type
article
Field-Weighted Citation Impact
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article

Reference-Based Terrain Coordination Assessment of Abandoned Sand Mining Sites in an Arid Region Using UAV-Derived DEMs

Jianjun Yang, Xianming De, Zhe Hao, Alimira Alimu et al.
Land
3D Surveying and Cultural Heritage
article

Reference-Based Terrain Coordination Assessment of Abandoned Sand Mining Sites in an Arid Region Using UAV-Derived DEMs

Jianjun Yang, Xianming De, Zhe Hao, Alimira Alimu, Feifei Sheng, Ziqi Tian, Hasigerili, Huiling Cheng
article en

Abstract

Abandoned sand mining sites in arid regions are characterized by slow vegetation recovery and extensive bare-surface exposure, making it difficult to evaluate restoration outcomes using vegetation-based or conventional engineering indicators alone. More importantly, reference-based terrain assessment requires reliable natural benchmarks; otherwise, terrain similarity may be misinterpreted when candidate reference areas have been modified by human activities. This study developed a reference-based terrain coordination evaluation framework using high-resolution UAV-derived DEMs for three historical abandoned sand mining sites in the Aksu region, northwestern China. Candidate reference units were first screened using a 30 m DEM based on area, mean slope, and slope variability, and were then verified using 0.1 m UAV orthomosaics and DEM-derived hillshade maps. Surface roughness, local topographic relief, and mean absolute curvature were extracted to quantify terrain similarity between restored areas and verified natural reference units, and DEM-resolution sensitivity was further assessed.

LandVol. 15(9)
Ministry of Natural Resources (CN), Rice Research Institute (CN), Ministry of Water Resources of the People's Republic of China (CN), Xinjiang University (CN)
Life in Land
Openalex Percentile: Top 8%
3D Surveying and Cultural Heritage
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Reference-Based Terrain Coordination Assessment of Abandoned Sand Mining Sites in an Arid Region Using UAV-Derived DEMs — Jianjun Yang, Xianming De, et al. · Land (2026) | TGRS Research Map | TGRS