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Gravity waves exist in all types of geophysical fluids, such as lakes, oceans, and atmospheres. They play an important role in redistributing energy at disturbances, such as mountains or seamounts and they are routinely studied in meteorology and oceanography, particularly simulation models, atmospheric weather models, turbulence, air pollution, and climate research. An Introduction to Atmospheric Gravity Waves provides readers with a working background of the fundamental physics and mathematics of gravity waves, and introduces a wide variety of applications and numerous recent adva
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Gravity waves exist in all types of geophysical fluids, such as lakes, oceans, and atmospheres. They play an important role in redistributing energy at disturbances, such as mountains or seamounts and they are routinely studied in meteorology and oceanography, particularly simulation models, atmospheric weather models, turbulence, air pollution, and climate research. An Introduction to Atmospheric Gravity Waves provides readers with a working background of the fundamental physics and mathematics of gravity waves, and introduces a wide variety of applications and numerous recent adva
Atmospheric waves. --- Gravity waves. --- Hydrodynamics --- Waves --- Dynamic meteorology
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Gravity waves exist in all types of geophysical fluids, such as lakes, oceans, and atmospheres. They play an important role in redistributing energy at disturbances, such as mountains or seamounts and they are routinely studied in meteorology and oceanography, particularly simulation models, atmospheric weather models, turbulence, air pollution, and climate research.An Introduction to Atmospheric Gravity Waves provides readers with a working background of the fundamental physics and mathematics of gravity waves, and introduces a wide variety of applications and numerous recent advan
Atmospheric waves. --- Gravity waves. --- Hydrodynamics --- Waves --- Dynamic meteorology
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Atmospheric waves --- Space vehicles --- Mathematical models. --- Atmospheric entry.
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This book concisely expounds the fundamental concepts, phenomena, theories and procedures in a complete and systematic sense. In this book, not only almost all the important achievements from predecessors but also the contributions from the author himself have been summed up profoundly. Starting from the derivation of fundamental equations, various classical acoustical phenomena such as reflection, refraction, scattering diffraction and absorption in atmosphere, as well as the influences of gravitation and rotation of the earth on the behaviors of different atmospheric waves including acoustic waves, have been discussed in viewpoints of wave acoustics and geometrical acoustics respectively. The recent developments of several computation methods in the field of atmospheric acoustics have been introduced in some detail. As for the application aspects, atmospheric remote sensing has been discussed from the angle of inverse problems.
Sound-waves. --- Sound --- Atmosphere. --- Atmospheric waves. --- Atmospheric physics. --- Transmission.
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Atmospheric waves. --- Ondes atmosphériques. --- Probabilités --- Probabilities. --- Mecanique statistique
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Atmosferische golven --- Atmospheric waves --- Golven [Atmosferische ] --- Ondes atmosphériques --- Ondes atmosphériques
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Atmospheric waves. --- Microwave remote sensing. --- Meteorological satellites --- Meteorological instruments --- Radiometers --- Artificial satellites in remote sensing --- Calibration.
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