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This book offers a unique multidisciplinary integration of the physics of turbulence and remote sensing technology. Remote Sensing of Turbulence provides a new vision on the research of turbulence and summarizes the current and future challenges of monitoring turbulence remotely. The book emphasizes sophisticated geophysical applications, detection, and recognition of complex turbulent flows in oceans and the atmosphere. Through several techniques based on microwave and optical/IR observations, the text explores the technological capabilities and tools for the detection of turbulence, their signatures, and variability.
FEATURES
Covers the fundamental aspects of turbulence problems with a broad geophysical scope for a wide audience of readers
Provides a complete description of remote-sensing capabilities for observing turbulence in the earth’s environment
Establishes the state-of-the-art remote-sensing techniques and methods of data analysis for turbulence detection
Investigates and evaluates turbulence detection signatures, their properties, and variability
Provides cutting-edge remote-sensing applications for space-based monitoring and forecasts of turbulence in oceans and the atmosphere
This book is a great resource for applied physicists, the professional remote sensing community, ecologists, geophysicists, and earth scientists.
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This book offers a unique multidisciplinary integration of the physics of turbulence and remote sensing technology. Remote Sensing of Turbulence provides a new vision on the research of turbulence and summarizes the current and future challenges of monitoring turbulence remotely. The book emphasizes sophisticated geophysical applications, detection, and recognition of complex turbulent flows in oceans and the atmosphere. Through several techniques based on microwave and optical/IR observations, the text explores the technological capabilities and tools for the detection of turbulence, their signatures, and variability.
FEATURES
Covers the fundamental aspects of turbulence problems with a broad geophysical scope for a wide audience of readers
Provides a complete description of remote-sensing capabilities for observing turbulence in the earth’s environment
Establishes the state-of-the-art remote-sensing techniques and methods of data analysis for turbulence detection
Investigates and evaluates turbulence detection signatures, their properties, and variability
Provides cutting-edge remote-sensing applications for space-based monitoring and forecasts of turbulence in oceans and the atmosphere
This book is a great resource for applied physicists, the professional remote sensing community, ecologists, geophysicists, and earth scientists.