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GNSS Applications to Monitor Natural Hazards

Editat de Joseph Awange
en Limba Engleză Paperback – mar 2026
Global Navigation Satellite Systems (GNSS) are a cornerstone of modern geodetic positioning, but their true potential extends far beyond traditional applications. GNSS Applications to Monitor Natural Hazards presents a systematic, step-by-step methodology for leveraging satellite-based positioning to detect, analyze, and mitigate environmental threats—from floods and droughts to seismic shifts and landslides. As climate change intensifies natural hazards, this book bridges the gap between theory and practice, offering researchers, engineers, and policymakers reproducible techniques to enhance early-warning systems. For the first time, it also explores AI-enhanced GNSS, demonstrating how machine learning can unlock real-time hazard prediction and adaptive monitoring. Designed for both experts and newcomers, this work translates cutting-edge research into actionable strategies, empowering readers to harness GNSS technology for a more resilient future. Whether optimizing disaster response or decoding subtle environmental changes, this book is an essential guide to reducing the impact of catastrophic events through innovation.



  • Covers a wide variety of techniques with numerous Illustrative examples to link GNSS applications to real situations
  • Provides easy to follow, step-by-step procedures enhancing understanding of complex methodologies
  • Delivers simplified theoretical concepts to enable non-GNSS experts to understand
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Specificații

ISBN-13: 9780443214653
ISBN-10: 0443214654
Pagini: 270
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE

Cuprins

1. Natural Hazards and the need for monitoring
2. GNSS: The Basics
3. Application to Landslides
4. Application of GNSS-RO to Climate Variability
5. Application of GNSS-RO to Expansion of the Tropics
6. Application of GNSS-IWV to Global Warming
7. Application to Floods
8. Application to Droughts
9. Application to Sea level changes
10. Application to Earthquakes
11. Application to Tsunamis
12. Application to Volcanoes
13. Applications to Typhoons
14. Applications to land subsidence
15. Application to Structural Health Monitoring