Lianhuan Wei
Papers
2
Total Citations
6
H-Index
2
About
Lianhuan Wei is a researcher specializing in geodetic engineering and environmental monitoring, with a focus on high-precision surveying techniques and geohazard assessment. Their key research areas include atmospheric refraction correction for trigonometric leveling, differential interferometric synthetic aperture radar (DInSAR) for ground deformation analysis, and dump stability evaluation in mining regions. Wei’s major contribution lies in developing a high-precision trigonometric leveling method that corrects errors caused by atmospheric refraction, significantly improving measurement accuracy for electronic surveying robots—a critical advancement for large-scale infrastructure and mining projects. This work, published in 2022, has garnered 4 citations, reflecting its relevance to precision geodesy. Additionally, Wei’s 2016 study on dump stability, combining DInSAR with ground measurements, demonstrated a novel approach to monitoring landslide risks in mining waste piles, earning 2 citations. This joint application of remote sensing and in-situ data provides a practical framework for early warning systems, enhancing safety in mining regions prone to debris flows after heavy rainfall. Wei’s research bridges theoretical modeling and field application, offering tangible solutions for environmental and engineering challenges. Their work is particularly notable for integrating atmospheric physics with geodetic practice, making it a valuable reference for students and researchers in surveying, geohazards, and mining engineering.
Research Focus
Key Achievements
Top Papers
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- 2