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Nonlinear Internal Waves in Lakes: Advances in Geophysical and Environmental Mechanics and Mathematics

Editat de Kolumban Hutter
en Limba Engleză Paperback – 28 ian 2014
Internal wave dynamics in lakes (and oceans) is an important physical component of geophysical fluid mechanics of ‘quiescent’ water bodies of the Globe. The formation of internal waves requires seasonal stratification of the water bodies and generation by (primarily) wind forces. Because they propagate in basins of variable depth, a generated wave field often experiences transformation from large basin-wide scales to smaller scales. As long as this fission is hydrodynamically stable, nothing dramatic will happen. However, if vertical density gradients and shearing of the horizontal currents in the metalimnion combine to a Richardson number sufficiently small (< ¼), the light epilimnion water mixes with the water of the hypolimnion, giving rise to vertical diffusion of substances into lower depths. This meromixis is chiefly responsible for the ventilation of the deeper waters and the homogenization of the water through the lake depth. These processes are mainly formed as a result of the physical conditions, but they play biologically an important role in the trophicational state of the lake.
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Specificații

ISBN-13: 9783642440069
ISBN-10: 3642440061
Pagini: 296
Ilustrații: XVI, 280 p.
Dimensiuni: 155 x 235 x 16 mm
Greutate: 0.42 kg
Ediția:2012
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Advances in Geophysical and Environmental Mechanics and Mathematics

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Internal Waves in Lakes: Generation, Transformation, Meromixis.- Field Studies of Non-linear Internal Waves in Lakes on the Globe.- Laboratory Modelling on Transformation of Large Amplitude Internal Waves by Topographic Obstructions.- Numerical Simulations of the Non-hydrostatic Transformation of Basic-scale Internal Gravity Waves and Wave-Enhanced Meromixis in Lakes.

Textul de pe ultima copertă

Internal wave dynamics in lakes (and oceans) is an important physical component of geophysical fluid mechanics of ‘quiescent’ water bodies of the Globe. The formation of internal waves requires seasonal stratification of the water bodies and generation by (primarily) wind forces. Because they propagate in basins of variable depth, a generated wave field often experiences transformation from large basin-wide scales to smaller scales. As long as this fission is hydrodynamically stable, nothing dramatic will happen. However, if vertical density gradients and shearing of the horizontal currents in the metalimnion combine to a Richardson number sufficiently small (< ¼), the light epilimnion water mixes with the water of the hypolimnion, giving rise to vertical diffusion of substances into lower depths. This meromixis is chiefly responsible for the ventilation of the deeper waters and the homogenization of the water through the lake depth. These processes are mainly formed as a result of the physical conditions, but they play biologically an important role in the trophicational state of the lake.

Caracteristici

Emphasizes the importance of the physical component of geophysical fluid mechanics of "quiescent" water bodies of the Globe Up-to-date collection of nonlinear internal dynamics Presents field studies of nonlinear internal waves in lakes Includes supplementary material: sn.pub/extras