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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

The impact of mesoscale eddies on the air-sea turbulent heat fluxes in the South Atlantic / O impacto dos vórtices de meso-escala nos fluxos turbulentos de calor pela superfície no Atlântico Sul

Boas, Ana Beatriz de Figueiredo Melo Villas 17 July 2014 (has links)
By collocating 10 years (1999-2009) of remotely sensed surface turbulent heat fluxes with satellite altimetry data, we investigate the impact of ocean mesoscale eddies on the latent and sensible heat fluxes in the South Atlantic ocean. Eddies were identified using the method proposed by Chaigneau et al. (2009), which is based on closed contours of sea level anomaly. Most of the identified eddies had a radius of ~70 km and amplitude of ~5 cm. On average, in the South Atlantic, eddies play a minor role on the ocean-atmosphere heat exchange. However, in strongly energetic regions such as the Brazil-Malvinas confluence or Agulhas Current retroflection regions, eddies can account up to 20-30% of the total variance of the surface turbulent heat fluxes with averaged anomalies of ±10-20 W/m2 for both heat flux components. Cyclonic (anticyclonic) eddies, associated with negative (positive) heat fluxes anomalies tend to cool (warm) the overlying atmosphere. A composite analysis of the turbulent heat fluxes anomalies within the eddies reveals a direct relationship between the eddy amplitude and the intensity of the latent and sensible fluxes anomalies, such that large-amplitude eddies have a stronger signature in the turbulent surface heat fluxes. Heat fluxes anomalies are also much stronger near the eddy centers and decay radially to reach minimum values outside the eddies. / Uma combinação de 10 anos (1999-2009) de fluxos turbulentos de calor pela superfície, medidos a partir de satélites, e dados altimétricos de anomalia da altura da superfície do mar, foram o utilizados com objetivo de investigar o impacto de vórtices de meso-escala nos fluxos de calor sensível e latente na bacia do Atlântico Sul. Para a detecção dos vórtices foi aplicado o método proposto por Chaigneau et al. (2009), que baseia-se em contornos fechados de anomalia da altura da superfície do mar. A maior parte dos vórtices identificados possui raio de ~70 km e amplitude de ~5 cm. Em média, no Atlântico Sul, o impacto dos vórtices para as trocas de calor entre oceano e atmosfera é relativamente fraco. Entretanto, em regiões de alta variabilidade energética como na Confluência Brasil- Malvinas e na retroflecção da Corrente das Agulhas, vórtices de meso-escala podem contribuir com anomalias médias de até ±10-20 W/m2 nos fluxos turbulentos. Vórtices ciclônicos (anti-ciclônicos), associados com anomalias negativas (positivas) de fluxos de calor, tendem a esfriar (esquentar) a atmosfera adjacente. Mapas composite foram analisados para milhares de vórtices, mostrando um relação direta entre a magnitude das anomalias dos fluxos e a amplitude dos vórtices, de tal modo que vórtices de maior amplitude contribuem com maiores anomalias de calor latente e sensível. Além disso, os padrões espaciais dos composites médios revelam que as anomalias são significativamente maiores próximo ao centro dos vórtices e decaem radialmente até atingirem valores absolutos mínimos fora dos contornos dos vórtices.
2

The impact of mesoscale eddies on the air-sea turbulent heat fluxes in the South Atlantic / O impacto dos vórtices de meso-escala nos fluxos turbulentos de calor pela superfície no Atlântico Sul

Ana Beatriz de Figueiredo Melo Villas Boas 17 July 2014 (has links)
By collocating 10 years (1999-2009) of remotely sensed surface turbulent heat fluxes with satellite altimetry data, we investigate the impact of ocean mesoscale eddies on the latent and sensible heat fluxes in the South Atlantic ocean. Eddies were identified using the method proposed by Chaigneau et al. (2009), which is based on closed contours of sea level anomaly. Most of the identified eddies had a radius of ~70 km and amplitude of ~5 cm. On average, in the South Atlantic, eddies play a minor role on the ocean-atmosphere heat exchange. However, in strongly energetic regions such as the Brazil-Malvinas confluence or Agulhas Current retroflection regions, eddies can account up to 20-30% of the total variance of the surface turbulent heat fluxes with averaged anomalies of ±10-20 W/m2 for both heat flux components. Cyclonic (anticyclonic) eddies, associated with negative (positive) heat fluxes anomalies tend to cool (warm) the overlying atmosphere. A composite analysis of the turbulent heat fluxes anomalies within the eddies reveals a direct relationship between the eddy amplitude and the intensity of the latent and sensible fluxes anomalies, such that large-amplitude eddies have a stronger signature in the turbulent surface heat fluxes. Heat fluxes anomalies are also much stronger near the eddy centers and decay radially to reach minimum values outside the eddies. / Uma combinação de 10 anos (1999-2009) de fluxos turbulentos de calor pela superfície, medidos a partir de satélites, e dados altimétricos de anomalia da altura da superfície do mar, foram o utilizados com objetivo de investigar o impacto de vórtices de meso-escala nos fluxos de calor sensível e latente na bacia do Atlântico Sul. Para a detecção dos vórtices foi aplicado o método proposto por Chaigneau et al. (2009), que baseia-se em contornos fechados de anomalia da altura da superfície do mar. A maior parte dos vórtices identificados possui raio de ~70 km e amplitude de ~5 cm. Em média, no Atlântico Sul, o impacto dos vórtices para as trocas de calor entre oceano e atmosfera é relativamente fraco. Entretanto, em regiões de alta variabilidade energética como na Confluência Brasil- Malvinas e na retroflecção da Corrente das Agulhas, vórtices de meso-escala podem contribuir com anomalias médias de até ±10-20 W/m2 nos fluxos turbulentos. Vórtices ciclônicos (anti-ciclônicos), associados com anomalias negativas (positivas) de fluxos de calor, tendem a esfriar (esquentar) a atmosfera adjacente. Mapas composite foram analisados para milhares de vórtices, mostrando um relação direta entre a magnitude das anomalias dos fluxos e a amplitude dos vórtices, de tal modo que vórtices de maior amplitude contribuem com maiores anomalias de calor latente e sensível. Além disso, os padrões espaciais dos composites médios revelam que as anomalias são significativamente maiores próximo ao centro dos vórtices e decaem radialmente até atingirem valores absolutos mínimos fora dos contornos dos vórtices.
3

Modélisation statistique des écoulements turbulents en convection forcée, mixte et naturelle / Rans modelling of turbulent flows in forced, mixed and natural convection

Dehoux, Frédéric 18 October 2012 (has links)
L'objectif général de la thèse est d'améliorer la modélisation numérique RANS des flux thermiques turbulents notamment en proposant un modèle fonctionnant dans les trois régimes de convection thermique (forcée, mixte et naturelle).Pour ce faire, un état des lieux, non exhaustif, des modèles des flux thermiques utilisant les approches algébriques et à équations de transport, est effectué. Puis, le modèle EB-RSM (Elliptic Blending-Reynolds Stress Model) étant utilisé pour modéliser la turbulence, le principe de la pondération elliptique est appliqué aux modèles des flux thermiques turbulents algébriques EB-GGDH (EB-General Gradient Diffusion Hypothesis), EB-AFM (EB-Algebraic Flux Model) et à équations de transport EB-DFM (EB-Differential Flux Model). Une attention particulière a été apportée aux échelles de temps et de longueur utilisées pour ces modèles. Il en résulte qu'utiliser une échelle de longueur thermique différente de l'échelle de longueur dynamique et une échelle de temps mixte dans le terme de flottabilité de l'équation de la dissipation turbulente est préférable.Pour valider les formulations retenues, nous avons effectué des tests pour des fluides usuels (nombre de Prandtl de l’ordre de 1) dans les trois régimes de convection à l'aide de l'outil de calcul Code_Saturne sur des configurations académiques, semi-académiques et industrielles.Des résultats satisfaisants ont été obtenus en associant l'EB-RSM et le GGDH en convection forcée ou mixte et l'EB-RSM aux modèles EB-DFM et AFM en convection naturelle. / The PhD main objective is to improve the turbulent heat flux RANS modelling especially by proposing a model working in the three thermal convection regime (forced, mixed and natural).In order to achieve this, a non-exhaustive state of art of heat flux model, using algebraic approach and transport equations, is done. Then, as EB-RSM model (Elliptic Blending-Reynolds Stress Model) is used to model turbulence, elliptic blending approach is apply to algebraic turbulent heat flux model EB-GGDH (EB-General Gradient Diffusion Hypothesis), EB-AFM (EB-Algebraic Flux Model) and transport equation model EB-DFM (EB-Differential Flux Model). Special attention was paid to time and length scales used with these models. It follows that using a thermal length scale different from dynamic length scale and a mixed time scale in the buoyant term of turbulent dissipation equation is better.To validate these models, some test were done for common fluids (Prandtl number in the order of 1) in the three convection regimes with the tool Code_Saturne on academic, mid-academic and industrial cases.Good results were obtained combining EB-RSM with GGDH in forced or mixed convection and EB-RSM with EB-DFM or AFM in natural convection.

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