dc.contributorGoulart, Antonio Gledson de Oliveira
dc.contributorhttp://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4791371J5
dc.contributorDegrazia, Gervásio Annes
dc.contributorhttp://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4787248Z6
dc.contributorLoredo-souza, Acir Mércio
dc.contributorhttp://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4781652D9
dc.contributorCarvalho, Jonas da Costa
dc.contributorhttp://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4763793A0
dc.contributorAcevedo, Otávio Costa
dc.contributorhttp://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4796988J8
dc.creatorBuligon, Lidiane
dc.date.accessioned2017-05-09
dc.date.available2017-05-09
dc.date.created2017-05-09
dc.date.issued2009-08-04
dc.identifierBULIGON, Lidiane. A semi-analytical solution for the vertical wind profile in the atmospheric boundary layer. 2009. 127 f. Tese (Doutorado em Física) - Universidade Federal de Santa Maria, Santa Maria, 2009.
dc.identifierhttp://repositorio.ufsm.br/handle/1/3883
dc.description.abstractIn the present study, using the Generalized Integral Transform Technique (GITT), we derive a semi-analytical solution of the Navier-Stokes equation to obtain the mean wind profile in the atmospheric boundary layer. The technique combines series expansion and an integration employing an inverse-transform pair. The PBL is discretized into N sub-intervals in such manner that inside each sub-region the eddy diffusivity is the average value, this allows the use of realistic eddy diffusivity profiles, which depend on the physical characteristics of the energy-containing eddies. The nonlinear terms are written in terms of kinematical properties of the flow, such as divergence and vorticity, allowing the solutions to be interpreted in terms of large-scale synoptic conditions. The model results are compared to observed wind profiles obtained from the classical Wangara experiment. In addition, the results obtained by the proposed model are compared with the unidimensional model solved by the method of discretization, the model of two layers, with the logarithmic law and the Ekman model. The method used was efficient for the problem studied, since it has presented results consistent with those available in literature.
dc.publisherUniversidade Federal de Santa Maria
dc.publisherBR
dc.publisherFísica
dc.publisherUFSM
dc.publisherPrograma de Pós-Graduação em Física
dc.rightsAcesso Aberto
dc.subjectEquação de Navier-Stokes
dc.subjectModelo de Ekman
dc.subjectTeoria-K
dc.subjectTransformada inte-gral generalizada (GITT)
dc.subjectNavier-Stokes equations
dc.subjectEkman model
dc.subjectTheory-K
dc.subjectGeneralized integral trans-form technique (GITT)
dc.titleSolução semianalítica para o perfil vertical do vento na camada limite planetária
dc.typeTese


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