Publicidad

Publicidad

becas.universia.netBiblioteca.Net

Buscar recursos:

Buscador Google

Self-Organization of Atmospheric Macroturbulence into Critical States of Weak Nonlinear Eddy–Eddy Interactions

Descargar SCORM

Este recurso ha sido solicitado 1 veces (0 veces en los últimos 31 días).

Para poder solicitar este recurso debe identificarse como usuario de la biblioteca

 
Ver

Detalles del recurso

Marcadores Sociales
Self-Organization of Atmospheric Macroturbulence into Critical States of Weak Nonlinear Eddy–Eddy Interactions
Id. 7306040
Titulo Self-Organization of Atmospheric Macroturbulence into Critical States of Weak Nonlinear Eddy–Eddy Interactions
Autor(es) Schneider, Tapio
Walker, Christopher C.
Localización http://authors.library.caltech.edu/4481/1/SCHNjas06.pdf
Schneider, Tapio and Walker, Christopher C. (2006) Self-Organization of Atmospheric Macroturbulence into Critical States of Weak Nonlinear Eddy–Eddy Interactions. Journal of the Atmospheric Sciences, 63 (6). pp. 1569-1586. ISSN 0022-4928 http://resolver.caltech.edu/CaltechAUTHORS:SCHNjas06
Versión 1.0
Estado Final
Descripción It is generally held that atmospheric macroturbulence can be strongly nonlinear. Yet weakly nonlinear models successfully account for scales and structures of baroclinic eddies in Earth's atmosphere. Here a theory and simulations with an idealized GCM are presented that suggest weakly nonlinear models are so successful because atmospheric macroturbulence organizes itself into critical states of weak nonlinear eddy–eddy interactions. By modifying the thermal structure of the extratropical atmosphere such that its supercriticality remains limited, macroturbulence inhibits nonlinear eddy–eddy interactions and the concomitant inverse energy cascade from the length scales of baroclinic instability to larger scales. For small meridional surface temperature gradients, the extratropical thermal stratification and tropopause height are set by radiation and convection, and the supercriticality is less than one; for sufficiently large meridional surface temperature gradients, the extratropical thermal stratification and tropopause height are modified by baroclinic eddies such that the supercriticality does not significantly exceed one. In either case, the scale of the energy-containing eddies is similar to the scale of the linearly most unstable baroclinic waves, and eddy kinetic and available potential energies are equipartitioned. The theory and simulations point to fundamental constraints on the thermal structures and global circulations of the atmospheres of Earth and other planets, for example, by providing limits on the tropopause height and estimates for eddy scales, eddy energies, and jet separation scales.
Tipo application/pdf
Palabras clave Caltech Library Services
Tipo de recurso Article
PeerReviewed
Tipo de Interactividad Expositivo
Nivel de Interactividad muy bajo
Audiencia Estudiante
Profesor
Autor
Estructura Atomic
Coste no
Copyright
Formatos application/pdf
Requerimientos técnicos Browser: Any
Relación [References] http://resolver.caltech.edu/CaltechAUTHORS:SCHNjas06
[References] http://authors.library.caltech.edu/4481/
Fecha de contribución 10-sep-2009
Contacto

Valoración de los usuarios

No hay ninguna valoración para este recurso. Sea el primero en valorar este recurso.