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Áreas de Concentração Mecânica Aplicada | - | Petróleo e Energia | - | Termociências | - |
Linha de Pesquisa: Mecânica dos Sólidos
Desenvolvimento de modelos matemáticos para
análises uni, bi e tridimensionais de estruturas por meio de métodos numéricos,
incluindo o método dos elementos finitos. Desenvolvimento de técnicas e
procedimentos sobre o projeto mecânico, enfocando análise teórica, numérica e
experimental de tensões, fadiga, fluência, mecânica da fratura, comportamento
mecânico dos materiais, ensaios destrutivos e não destrutivos, análise
estrutural e histórico de falha. Monitoramento de integridade estrutural.
Professores:
Linha de Pesquisa: Sistemas Dinâmicos e Controle
Modelagem do comportamento dinâmico de sistemas
mecânicos e mecatrônicos incluindo elementos rígidos ou deformáveis. Sistemas
de corpos rígidos e rígidos-elásticos, incluindo efeitos do atrito, histerese e
impactos. Análise estocástica de processos. Controle de sistemas mecatrônicos,
hidráulicos e pneumáticos, incluindo robótica móvel e de manipuladores. Desenvolvimento
de sistemas de atuação e de sensoriamento para grandezas mecânicas.
Professores:
Laboratórios:
Cursos Associados
Linha de Pesquisa: Engenharia de Dutos
Com um enfoque aplicado, e procurando antecipar as futuras
necessidades da indústria, esta linha de pesquisa multidisciplinar está
voltada para a solução de problemas relevantes para o segmento de
transporte dutoviário da cadeia de produção e distribuição de petróleo e
gás natural. Alguns dos tópicos abordados são: integridade estrutural,
análise de risco, inspeção baseada em risco, análise estrutural de dutos
submarinos, sensoriamento e instrumentação, pigs instrumentados,
simulação termo-hidráulica de escoamento e garantia de escoamento.
Professores:
Linha de Pesquisa: Engenharia de Petróleo
Esta linha de pesquisa é voltada para problemas de interesse no
segmento de Exploração e Produção (E&P) da cadeia do petróleo e gás
natural. São desenvolvidos trabalhos de pesquisa relacionados com
engenharia de reservatório, perfuração, engenharia de poço ou engenharia
de produção. Entre os temas de pesquisa nesta linha pode-se citar o
sensoriamento a fibra óptica para a monitoração permanente de fundo do
poço, completação inteligente, campos inteligentes, reologia de fluidos
não convencionais de interesse no segmento de E&P, escoamento
multifásico, escoamento de fluidos no processo de perfuração, escoamento
em meios porosos, escoamento de emulsões e modelagem de reservatórios.
Professores:
Linha de Pesquisa: Sistemas Energéticos
Esta linha de pesquisa está direcionada para o estudo do
aproveitamento racional de fontes de energia, considerando-se aspectos
termodinâmicos, econômicos e ambientais. Alguns dos temas em
desenvolvimento são a conversão de motores diesel para o consumo de gás
natural, cogeração e geração alternativa, células de combustível para
geração de energia elétrica e cogeração, bem como a regulamentação do
mercado do setor de gás natural no País.
Professores:
Laboratórios Associados
Cursos Associados
Linha de Pesquisa: Engenharia de Fluidos
Esta linha de pesquisa engloba as atividades experimentais e de
simulação computacional voltadas para o estudo de problemas de caráter
fundamental e aplicado envolvendo o escoamento de fluidos. São feitas
simulações numéricas de uma gama variada de escoamentos utilizando
técnicas de volumes e elementos finitos, com aplicações desde
escoamentos a baixo número de Reynolds com superfícies livres até
escoamentos turbulentos a altos números Reynolds e escoamentos
bifásicos. Trabalha-se também no desenvolvimento de modelos de
turbulência e de métodos computacionais eficientes e robustos. Outra
linha de atuação está voltada para o estudo do comportamento reológico
de materiais, tanto a nível teórico, como numérico e experimental,
analisando-se materiais não convencionais, como os fluidos
viscoplásticos e viscoelásticos. Nesta linha também são realizadas
pesquisas experimentais e numéricas na área de poluição atmosférica,
envolvendo dispersão de poluentes particulados (aerossóis) e gasosos.
São desenvolvidas e aplicadas técnicas avançadas para a medição de
escoamentos de fluidos, como velocimetria de fio quente, laser-Doppler e
técnicas ópticas utilizando processamento de imagens digitais de
escoamentos.
Linha de Pesquisa: Máquinas Térmicas
O desenvolvimento de modelos de simulação e ensaios experimentais de
sistemas de aquecimento, refrigeração, ar condicionado e componentes é
conduzido nesta linha de pesquisa. Ênfase tem sido dada ao estudo de
novos refrigerantes, misturas não azeotrópicas, hidrocarbonetos e ar,
bem como ao desenvolvimento de trocadores de calor de melhor desempenho.
A termoacumulação aplicada a sistemas de refrigeração ou aquecimento
também é um tema investigado, com foco em sistemas que envolvem mudança
de fase, como por exemplo, materiais encapsulados ou pasta de gelo. No
Laboratório de Engenharia Veicular – LEV são conduzidos estudos
relacionados à avaliação de combustíveis e ao desempenho de motores.
Professores:
Linha de Pesquisa: Transferência de Calor e Massa
Nesta linha de pesquisa são realizados estudos teóricos, numéricos e
experimentais englobando os aspectos fundamentais e aplicados de
problemas envolvendo transferência de calor e massa. Estudos numéricos
sobre modelos de combustão e suas aplicações a problemas industriais são
também abordados nesta linha de pesquisa. Estes estudos são
complementados por técnicas avançadas de diagnóstico a laser da
combustão.
Professores:
Laboratórios Associados
Cursos Associados
Últimas Publicações
Publicações de 2022
1. | ALMEIDA, G. C.; AZEVEDO, B.A.; AZEVEDO, F. S.; KALAOUN, K.; IBANEZ, I.; TEIXEIRA, P.S.; GOTTLIEB, I.; MELO, M. M.; OLIVEIRA, G. M. M.; NIECKELE, A. O. Fluidodinâmica Computacional na Avaliação do Risco Futuro de Aneurismas de Aorta Ascendente. Arquivos Brasileiros de Cardiologia, v. 118, p. 448-460, 2022. doi: 10.36660/abc.20200926. B2. (1.679) | 2. | SANTOS, B.J.M.; MURAD, F.W.; SAMPAIO, L. E. B.; THOMPSON, R. L.; A. O. NIECKELE. Development of nonlinear Reynolds average turbulent¿ models. Mechanics Research Communicattions, v. 1, p. 103853-8, 2022.doi: 10.1016/j.mechrescom.2022.103853 (2.254) | 3. | ROCHA, P. R. B; NIECKELE, A. O. Numerical study of statistically developed gas-liquid intermittent flows by the lens of three-dimensional simulations. Journal of Petroleum Science and Engineering, v. 217, p. 110866, 2022. doi:10.1016/j.petrol.2022.110866. A1. (5.168) | 4. | BRANCO, R. L. F. C.; KASSAR, B.; CARNEIRO, J. N. E.; NIECKELE, A. O. Assessment of a Point-Cloud Volume-of-Fluid method with sharp interface advection. Computers & Fluids, v. 248, p. 105664-105687, 2022. doi: 10.1016/j.compfluid.2022.105664. A1. (3.077) | 5. | DE JESUS VIEIRA, MARIA CLARA; FIGUEIRA DA SILVA, L. F. Premixed flame heat release-based optimum global single-step chemistry for H$$_2$$, CH$$_4$$, and C$$_3$$H$$_8$$ mixtures with air. Journal of the Brazilian Society of Mechanical Sciences and Engineering, v. 44, p. 131, 2022. doi: 10.1007/s40430-022-03437-7. A4. (2.361) | 6. | VIEIRA, MARIA CLARA DE JESUS; FIGUEIRA DA SILVA, LUÍS FERNANDO. Flame Flashback Critical Damköhler Number for CO$$_2$$ Diluted CH$$_4$$ and C$$_3$$H$$_8$$ Mixtures with Air. Flow Turbulance and Combustion, v. 1, p. 1, 2022.3. doi: 10.1007/s10494-022-00373-3. (2.566) | 7. | CUNHA, AMERICO; DA SILVA, LUIS FERNANDO FIGUEIRA. CRFlowLib ¿ Chemically Reacting Flow Library. Software Impacts, v. 11, p. 100206, 2021. doi: 10.1016/j.simpa.2021.100206. | 8. | HANCE. PARISH; M. S. CARVALHO; SATISH KUMAR. Thin-film flows on rotating noncircular cylinders with large curvature variations. Physical Reviews Fluids, vol.7(5), 054002, 2022. doi: 10.1103/PhysRevFluids.7.054002. (2.895) | 9. | UGUR SOYSAL; P. N. AZEVEDO; FLAVIEN BUREAU; ALEXANDRE AUBRY; M. S. CARVALHO; AMANDA C.S.N. PESSOA; LUCIMARA G. DE LA TORRE, OLIVIER COUTURE; ARNAUD TOURIN; MATHIAS FINK; PATRICK TABELING. Freeze-dried microfluidic monodisperse microbubbles as a new generation of ultrasound contrast agentes. Ultrasound in Medicine & Biology, vol.48(8), 1484-1495, 2022. doi: 10.1016/j.ultrasmedbio.2022.03.011. A2. (3.694). | 10. | N. M. LIMA; J. AVENDANO; M. S. CARVALHO. Effect of Viscoelasticity on oil displacement in a microfluidic porous media. Journal of the Brazilian Society of Mechanical Sciences and Engineering, vol. 44:144, 2022. doi: 10.1007/s40430-022-03435-9. A 4. (2.181) | 11. | PAULO ROBERTO C. MENDES JUNIOR; IVAN ROSA SIQUEIRA; RONEY L. THOMPSON; M. S. CARVALHO. Computational study of planar die-swell flows with a viscous liquid-gas interface. AIChE Journal, vol.68(3), e17503, 2022. doi: 10.1002/aic.17503. A1. (4.167) | 12. | BARCELOS, E. I.; KHANI, S.; NACCACHE, M. F ; MAIA, J. Supervised Learning for Accurate Mesoscale Simulations of Suspension Flow in Wall-bounded Geometries. Physics of Fluids, v. 34, p. 053110, 2022. doi: 10.1063/5.0086759. A1. (4.980) | 13. | FERNANDES SOARES, ISABELA; MARÍN CASTAÑO, ELIANA PAOLA; LIMBERGER, JONES; NACCACHE, MÔNICA FEIJÓ. Effect of aromatic and non-aromatic solvents on the interfacial viscoelasticity and self-arrangement of asphaltenes. Rheologica Acta, v. 61, p. 583-600, 2022. doi: 10.1007/s00397-022-01346-2. A3. (3.069) | 14. | RIBEIRO, S.; NACCACHE, M. F. Finite element model of oil well cement curing process in the presence of fluid loss zone. Journal of the Brazilian Society of Mechanical Sciences and Engineering, v. 44, p. 551, 2022. 10.1007/s40430-022-03851-x. A4. (2.181) | 15. | VIEIRA, LUIZ FERNANDO; WEINHOFER, ALEXANDRA C.; OLTJEN, WILLIAM C.; YU, CINDY; DE SOUZA MENDES, PAULO ROBERTO; HORE, MICHAEL J. A. Combining dynamic Monte Carlo with machine learning to study nanoparticle translocation. Soft Matter, v. 18, p. 5218-5229, 2022. doi: 10.1039/D2SM00431C . A2. (4.046) | 16. | THOMPSON, RONEY L. ; DE SOUZA MENDES, PAULO R. Recent developments on yield stress materials. Science Talks, v. 2, p. 100021, 2022. doi: 10.1016/j.sctalk.2022.100021. | 17. | LOAIZA, J. C. V. ; SÁNCHEZ, F. ; SOUZA, O. M. R. ; BRAGA, S. L. Ignition delay of reactivity controlled compression ignition (RCCI) for the mixture of diesel fuel and ethanol in a rapid compression machine. Brazilian Journal of Development, v. 8, p. 29150-29172, 2022. doi: 10.5151/engpro-simea2015-PAP111 . C | 18. | ABEDI, BEHBOOD; BERGHE, LARA SCHIMITH; FONSECA, BRUNO S.; RODRIGUES, ELIAS C.; OLIVEIRA, RAFAEL M.; DE SOUZA MENDES, PAULO R. Influence of wall slip in the radial displacement of a yield strength material in a Hele-Shaw cell. Physics of Fluids. v. 34, p. 113102, 2022. A1. (4.980) | 19. | AURELIANO AGOSTINHO DIAS MEIRELLES; ANA LETÍCIA R. COSTA; MARIANO MICHELON; JULIANE VIRGANÓ; M. S. CCARVALHO; ROSIANE LOPES CUNHA. Microfluidic Approach to Produce Emulsion-Filled Alginate Microgels. Journal of Food Engineering, vol. 315, 110812, 2022. doi: 10.1016/j.jfoodeng.2021.110812. A1. (6.203) | 20. | OJEDA, FRANK WILLIAM ADOLFO BLANCO; QUEIROZ, MARCUS VINÍCIUS ALMEIDA; PICO, DAVID FERNANDO MARCUCCI; PARISE, JOSÉ ALBERTO REIS; FILHO, ENIO PEDONE BANDARRA. Experimental evaluation of low-GWP refrigerants R513A, R1234yf and R436A as alternatives for R134a in a cascade refrigeration cycle with R744. International Journal of Refrigeration-Revue Internationale du Froid, v. 144, p. 175-187, 2022. doi: 10.1016/j.ijrefrig.2022.08.010. A1. (4.14) |
Publicações de 2021
1. | SÁNCHEZ, FERNANDO ZEGARRA; BRAGA, CARLOS VALOIS MACIEL; BRAGA, SERGIO LEAL BRAGA; TEIXEIRA, CLAUDIO VIDAL; LOAIZA, JUAN CARLOS VALDEZ. An Experimental Study of the Compression Ignition of Ethanol/n-Butanol Blends in a Rapid Compression Machine. SAE Techinical Paper Series. v.1. 2021. doi: 10.4271/2020-36-0013. (0.62) | 2. | IBANEZ, I.; GOMES, BRUNO A; NIECKELE, A. O. Effect of percutaneous aortic valve position on stress map in ascending aorta: A fluid-structure interaction analysis. Artificial Organs, v. 1, p. 1-12, 2021. doi: 10.1111/aor.13883. B1. (3.094) | 3. | BRANCO, R. C.; GONZALEZ, E.M.; DE PAULA, I. B.; CARNEIRO, J. N. E.; A. O. NIECKELE . Stability analysis of vertical annular flows with the 1D Two-Fluid Model: effect of closure relations on wave characteristics. International Journal of Multiphase Flow, p. 103947, 2021.doi: 10.1016/j.ijmultiphaseflow.2021.103947. A1. (3.186) | 4. | SICA, L. U. R.; VASCONCELOS, A. A.; J. A. R. PARISE; GOMEZ, A. O. C.; BANDARRA FILHO, E. P. Thermal performance analysis of a 1-5 TEMA E shell and coil heat exchanger operating with SWCNT-water nanofluid with varied nanoparticle concentration. Journal of the Brazilian Society of Mechanical Sciences and Engineering, v. 43, p. 1-14, 2021. doi:10.1007/s40430-021-02833-9. B1. (2.220) | 5. | PEÑARANDA CHENCHE, LUZ ELENA; ABUBAKAR, IBRAHIM MUHAMMAD; PARISE, JOSÉ ALBERTO REIS; MENDOZA, OSCAR SAUL HERNANDEZ; BANDARRA FILHO, ENIO PEDONE. Comparative study of a tropical-climate natural-convection hybrid PV/T system operating with full or partial (tube-only) water coil insulation and two different sizes of thermal energy reservoirs. Journal of the Brazilian Society of Mechanical Sciences and Engineering (on line), v. 43, p. 301, 2021. doi:10.1007/s40430-021-03025-1. B1. (2.220) | 6. | SICA, L. U. R.; NOBRE, G. M.; CONTRERAS, E. M. C.; BANDARRA FILHO, E. P.; SOTOMAYOR, PAUL ORTEGA; PARISE, JOSÉ A. R. Heat transfer nanofluids for trigeneration systems: fabrication and experimental investigation of viscosity at below-ambient temperatures. International Journal of Refrigeration, v. 129, p. 163-174, 2021. doi: 10.1016/j.ijrefrig.2021.04.036. A1. (3.629) | 7. | SICA, LUIZ U. R.; CONTRERAS, EDWIN M. C.; BANDARRA FILHO, ENIO P.; PARISE, JOSÉ A. R. An experimental viscosity investigation on the use of non-Newtonian graphene heat transfer nanofluids at below ambient temperatures. International Journal of Energy Research, v. 45, p. 14530-14546, 2021. doi: 10.1002/er.6675. A2. (3.741) | 8. | SICA, LUIZ U. R.; CONTRERAS, EDWIN M. C.; FILHO, ENIO P. BANDARRA; PARISE, JOSÉ A. R. Cold start analysis of an engine coolant-MWCNT nanofluid: Synthesis and viscosity behavior under shear stress. Proceedings of the Institute of Mechanical Engineers Part D-Journal of Automobile Engineering, v. Oct, p. 095440702110192-16, 2021. doi:10.1177/09544070211019217. B1. | 9. | QUEIROZ, MARCUS VINÍCIUS ALMEIDA; OJEDA, FRANK WILLIAM ADOLFO BLANCO; MUHAMMAD AMJAD; RIAZ, FAHID; SALMAN, CHAUDHARY AWAIS; PARISE, JOSÉ A. R.; BANDARRA FILHO, E. P. Experimental comparison between R134a/R744 and R438A/R744 (drop-in) cascade refrigeration systems based on energy consumption and greenhouse gases emission. Energy Science & Engineering, v. 9, p. 2281-2297, 2021. doi: 10.1002/ese3.976. (4.07) | 10. | BESSA, GUILHERME M.; FERNANDES, LEONARDO S.; GOMES, BRUNO A. A.; AZEVEDO, LUIS F. A. Influence of aortic valve tilt angle on flow patterns in the ascending aorta. Experiments in Fluids, v. 62, p. 113, 2021. doi: 10.1007/s00348-021-03199-3. A1. (2.480) | 11. | VALENCIA, SEBASTIAN.; RUIZ, SEBASTIAN.; MANRIQUE, JAVIER.; CELIS PEREZ, C. ; FIGUEIRA DA SILVA, L. F. Soot modeling in turbulent diffusion flames: review and prospects. Journal of the Brazilian Society of Mechanical Sciences and Engineering (on-line), v. 43, p. 219, 2021. doi: 10.1007/s40430-021-02876-y. B1. (2.220) | 12. | CRUZ, J. J.; ESCUDERO, FELIPE.; ÁLVAREZ, EMILIO; FIGUEIRA DA SILVA, L.F.; CARVAJAL, GONZALO.; THOMSEN, MARIA.; FUENTES, ANDRÉS. Three-wavelength broadband soot pyrometry technique for axisymmetric flames. Optics Letters, v. 46, p. 2654-2657, 2021.doi: 10.1364/OL.424529. A1. (3.776) | 13. | ALIREZA MOHAMMAD KARIM, WIESLAW J. SUSZYNSKI, SASWATI PUJARI, LORRAINE F. FRANCIS e M. S. CARVALHO. Contact line dynamics in curtain coating of non-Newtonian liquids. Physics of Fluids, vol.33, 103103, 2021. doi: 10.1063/5.0064467. A2. (3.521) | 14. | SANTOS, TATIANA PORTO; MICHELON, MARIANO; CARVALHO, MARCIO SILVEIRA; CUNHA, ROSIANE LOPES. Formation and stability of oil-in-water emulsions based on components of bioprocesses: A microfluidic analysis. Colloids and Surfaces A-Physicochemical and Engineering Aspects, v. 626, p. 126994, 2021. doi:10.1016/j.colsurfa.2021.126994.(4.539) | 15. | B. C. LEOPÉRSIO, SERGIO RIBEIRO, FREDERICO C. Gomes, M. MICHELON e M. S. CARVALHO. Microcapsules with controlled magnetic response. Microfluidics and Nanofluidics. v. 25: 98, pg 1-12, 2021. doi: 10.1007/s10404-021-02498-9. A2. Springer (2.529) | 16. | BARCELOS, ERIKA. I.; KHANI, SHAGHAYEGH.; BOROMAND, ARMAND.; VIEIRA, LUIS. F.; LEE, ALEX. J; PEET, JEFFREY.; NACCACHE, M. F.; MAIA, J. Controlling Particle Penetration and Depletion at the Wall in Dissipative Particle Dynamics. Computer Physics Communications, v. 258, p. 107618, 2021. doi: 10.1016/j.cpc.2020.107618. A1. (4.390) | 17. | FERREIRA, ISABELA PINTO; SIRQUEIRA, ALEX DA SILVA; SANTOS, TAIANE ANDRE DOS; NACCACHE, MONICA FEIJO; SOARES, BLUMA GUENTHER. Rheological studies of SBS/EVA blends modified with bio-based cashew nut shell liquid. Journal of Elastomers and Plastics, v. 1, p. 009524432199040, 2021 doi: 10.1177/0095244321990407. (1.60) | 18. | SOARES, ISABELA FERNANDES; OLIVEIRA, MÁRCIA CRISTINA K. DE; NACCACHE, MÔNICA FEIJÓ; NELE, MÁRCIO Effects of monovalent and divalent cations on the rheology of organic acid laden interfaces. Journal of Dispersion Science and Technology, v. 12, p. 1-13, 2021. doi: 10.1080/01932691.2021.2017296. (2.260) | 19. | MARÍN CASTAÑO, E. P.; LEITE, R. H. T ; DE SOUZA MENDES, P. R.. Microscopic phenomena inferred from the rheological analysis of an emulsion. Physics of Fluids, v. 33, p. 073102, 2021. doi: 10.1063/5.0053408. A2. (3.521) | 20. | NACCACHE, JOÃO PEDRO AIEX; LEITE, RICARDO T.; CASTAÑO, ELIANA P. MARÍN; DE SOUZA MENDES, PAULO R.; QUINTELLA, ERICK F. Production method of reference fluids intended for gravitational settlers' efficiency verification tests. Physics of Fluids, v. 33, p. 117105, 2021.doi: 10.1063/5.0063752. A2. (3521) | 21. | ABEDI, BEHBOOD; PERES MIGUEL, MATHEUS J.; DE SOUZA MENDES, PAULO R.; MENDES, RAFAEL. Startup flow of gelled waxy crude oils in pipelines: The role of volume shrinkage. Fuel, v. 288, p. 119726, 2021. doi: 10.1016/j.fuel.2020.119726. A1. (6.609) | 22. | MARÍN CASTAÑO, E.P; DE SOUZA MENDES, PAULO R. Thermodynamics and rheology of droplet aggregation of water-in-crude oil emulsion systems. Chemical Engineering Science, v. 245, p. 116955, 2021.doi: 10.1016/j.ces.2021.116955. A1. (4.311) | 23. | OLIVEIRA, RAFAEL M.; COUTINHO, ÍRIO M.; ANJOS, PEDRO H. A.; MIRANDA, JOSÉ A. Shape instabilities in confined ferrofluids under crossed magnetic fields. Physical Review E, v. 104, p. 065113, 2021.doi: 10.1103/PhysRevE.104.065113. A1. (3.54) |
Publicações de 2020
1. | M. MICHE/measurement.2019.107308. B1. (2.218) | 2. | CELIS, D. F; AZEVEDO, B. A.; IBANEZ, I.; AZEVEDO, P. N.; TEIXEIRA, P. S.; NIECKELE, ANGELA O. Prediction of stress map in ascending aorta – optimization of the coaxial position in transcatheter aortic valve. Arquivos Brasileiros de Cardiologia, v. 115, p. 680-687, 2020. doi:10.36660/abc.2019385. B1 (1.450) | 3. | GARCIA, D. E.; ALVAREZ RODRIGUES, D.; NIECKELE, A. O.; DE PAULA, I. B. Nonlinear instability of interfacial waves in stratified laminar channel flow. International Journal of Multiphase Flow, v. 133, p. 103463, 2020. doi: 10.1016/j.ijmultiphaseflow.2020.103463. A1. (3.083) | 4. | CARVALHO, JOSÉ EDUARDO PORTELLA; SOTOMAYOR, PAUL ORTEGA; PARISE, JOSÉ ALBERTO REIS; PRADELLE, FLORIAN ALAIN YANNICK. Numerical assessment of critical properties of nanofluids: Applications to nanorefrigerants and nanolubricants. Journal of Molecular Liquids. v.318, pg. 113938. 2020 doi: 10.1016/j.molliq.2020.113938. B1. (5.065) | 5. | GARCÍA, DEIBI E.; RODRÍGUEZ, DANIEL; NIECKELE, ANGELA O.; DEPAULA, IGOR BRAGA . Nonlinear instability of interfacial waves in stratified laminar channel flow. International Journal of Multiphase Flow. v. 133, p. 103463, 2020. doi: 10.1016/j.ijmultiphaseflow.2020.103463. A1. (3.083) | 6. | DE CARVALHO, JOSÉ EDUARDO PORTELLA; SOTOMAYOR, PAUL ORTEGA; PARISE, JOSÉ ALBERTO REIS; PRADELLE, FLORIAN ALAIN YANNICK. Numerical assessment of critical properties of nanofluids: Applications to nanorefrigerants and nanolubricants. Journal of Molecular Liquids. v. 318, pg. 113938. 2020 doi: 10.1016/j.molliq.2020.113938. B1. (5065) | 7. | FURTADO, LEANDRO ANDRADE.; RIBEIRO, SERGIO GUERREIRO.; JOSÉ ALBERTO DOS REIS PARISE. Techno-economic analysis of a hybrid combined cycle applied to sugarcane plants. Energy Conversion and Management, v. 223, p. 113288, 2020. doi: 10.1016/j.enconman.2020.1132288. A1. (8.208) | 8. | COIMBRA, A. P. N. ; FIGUEIRA DA SILVA, L. F. Modelling of a turbulent lean premixed combustor using a Reynolds-averaged Navier-Stokes approach. Journal of the Brazilian Society of Mechanical Sciences and Engineering, v. 42, p. 213, 2020. doi: 10.1007/s40430-020-2273-y. B1. (1.755) | 9. | PITON, L.C.; NOBREGA, G. S. P. R.; FIGUEIRA DA SILVA, L. F.; SCOUFLAIRE, P.; DARABIHA, N. Experimental study of the influence of the swirl number on lean premixed combustion regimes. Journal of the Brazilian Society of Mechanical Sciences and Engineering, v. 42, p. 210, 2020. doi:10.1007/s40430-020-02274-w. B1. (1.755) | 10. | VERDUGO, IGNACIO; CRUZ VILLANEUVA, JUAN JOSÉ; RESZKA, PEDRO.; FIGUEIRA DA SILVA, LUIS FERNANDO ; FUENTES, ANDRÉS. Candle flame soot sizing by planar time-resolved laser-induced incandescence. Scientific Reports, v. 10, p. 11364, 2020. doi: 10.1038/s41598-020-68256-z. A1. (3.998) | 11. | CRUZ, J. J.; FIGUEIRA DA SILVA, LUIS FERNANDO; ESCUDERO, F.; CEPEDA, F.; ELICER-CORTÉS, J. C.; FUENTES, A. Soot Pyrometry by Emission Measurements at Different Wavelengths in Laminar Axisymmetric Flames. Combustion Science and Technology, v. 2020, p. 1-18, 2020. doi:10.1080/00102202.2020.1825401. (1.730) | 12. | CHARITATOS, VASILEIOS; SUSZYNSKI, WIESLAW J.; CARVALHO, MARCIO S.; KUMAR, SATISH. Dynamic wetting failure in shear-thinning and shear-thickening liquids. Journal of Fluid Mechanics, v. 892, p. A1, 2020. doi:10.1017/ jfm.2020.154. A1. (3.354) | 13. | WU, JYUN-TING; FRANCIS, LORRAINE F.; CARVALHO, MARCIO S.; KUMAR, SATISH. Cavity filling with shear-thinning liquids. Physical Review Fluids, v. 5, p. 054003, 2020. doi: 10.1103/PhysRevFluids.5.054003. (2.512) | 14. | NACCACHE, M. F.; ABDU, A. A.; ABREU, CRISTINA DUARTE R. DE. Air Bubbles Displacement in Yield Stress Fluids. Journal of Applied Fluid Mechanics, v. 13, p. 727-736, 2020. doi:10.29252/ jafm.13.02.30261. B1.(1.035) | 15. | VARGES, P. R.; AZEVEDO, P. E.; FONSECA, B. S.; DE SOUZA MENDES, PAULO R.; NACCACHE, M. F.; MARTINS, A. L. Immiscible liquid-liquid displacement flows in a Hele-Shaw cell including shear thinning effects. Physics of Fluids, v. 32, p. 013105, 2020. doi:10.1063/1.5133054. A2.(3.514) | 16. | SOARES, YAGO; CARGNIN, ELYFF; NACCACHE, MÔNICA; ANDRADE, RICARDO JORGE E. Influence of Oxidation Degree of Graphene Oxide on the Shear Rheology of Poly (Ethylene Glycol) Suspensions. Fluids, v. 5, p. 41, 2020. doi:10.3390/fluids5020041. | 17. | VARGES, P. R.; FONSECA, B. S; SOUZA MENDES, P. R.; NACCACHE, M. F.; DE MIRANDA, C. R. Flow of yield stress materials through annular abrupt expansion-contractions. Physics of Fluids. v. 32, p. 083101, 2020. doi:10.1063/5.0015400. A2. (3.514) | 18. | MORAES, LORENA.; RIBEIRO, HÉLIO; CARGNIN, ELYFF; ANDRADE, RICARDO JORGE E; NACCACHE, M. F. Rheology of graphene oxide suspended in yield stress fluid. Journal of Non-Newtonian Fluid Mechanics, v. 286, p. 104426, 2020. doi: 10.1016/j.jnnfm.2020.104426 . A1. (2.538) | 19. | ALCANTARA, STANLEY P.; SIRQUEIRA, ALEX. S.; SANTOS, TAIANE A.; NACCACHE, M. F. In situ compatibilization of polyamide 6/carboxylated acrylonitrile butadiene rubber blends with polyhedral oligomeric silsesquioxane. Macromolecular Symposia (Online), v. 394, p. 2000032, 2020. doi:10.1002/masy.202000032 (o.68) | 20. | RODRIGUES, R. K.; MARTINS, S. F. C.; NACCACHE, M. F.; DE SOUZA MENDES, PAULO ROBERTO . Rheological modifiers in drilling fluids. Journal of Non-Newtonian Fluid Mechanics v. 286, p. 104397, 2020. doi:10.1016/j.jnnfm.2020.104397. A1. (2.538) | 21. | THOMPSON, RONEY LEON ; DE SOUZA MENDES, PAULO R. Rheological material functions at yielding. Journal of Rheology, v. 64, p. 615-624, 2020. doi: 10.1122//1.5126491. A1. (3.468) | 22. | SICA, LUIZ U. R.; DE SOUZA MENDES, PAULO R.; THOMPSON, RONEY L. Is the von Mises criterion generally applicable to soft solids?. Soft Matter. v. 16, p. 7576-7584, 2020. doi:10.1039/d0sm00762e. A1. (3140) | 23. | SIQUEIRA, I. R.; PASQUALI, M.; DE SOUZA MENDES, P. R. Couette flows of a thixotropic yield-stress material: Performance of a novel fluidity-based constitutive model. Journal of Rheology, v. 64, p. 889-898, 2020. doi:10.1122/8.0000041. A1. (3.468) | 24. | OLIVEIRA, RAFAEL M.; MIRANDA, JOSÉ A. Fully nonlinear simulations of ferrofluid patterns in a radial magnetic field. Physical Review Fluids, v. 5, p. 124003, 2020. doi: 10.1103/PhysRevFluids.5.124003.( 2.512) | 25. | TEIXEIRA, CLAUDIO VIDAL; BRAGA, CARLOS VALOIS MACIEL; SÁNCHEZ, FERNANDO ZEGARRA; BRAGA, SERGIO LEAL. Reactivity-controlled compression ignition (RCCI) with double direct injection of diesel and hydrous ethanol. Journal of the Brazilian Society of Mechanical Sciences and Engineering, v. 42, p. 64, 2020. doi:10.1007/s40430-019-2101-4. B1. (1.755) | 26. | TEIXEIRA, CLAUDIO VIDAL; BRAGA, CARLOS VALOIS MACIEL; SÁNCHEZ, FERNANDO ZEGARRA; BRAGA, SERGIO LEAL. Reactivity controlled compression ignition with triple injection fuel: ethanol-diesel-ethanol. Journal of the Brazilian Society of Mechanical Sciences and Engineering, v. 42, p. 401, 2020. doi:10.1007/s40430-020-02441-z. B1. (1.755) | 27. | SÁNCHEZ, FERNANDO ZEGARRA; MARTINS, ANA ROSA FONSECA DE AGUIAR; BRAGA, CARLOS VALOIS MACIEL BRAGA; BRAGA, SERGIO LEAL; TURKOVICS, FRANCK YVES; PRADELLE, RENATA NOHRA CHAAR. Study of effects of ignition improvers on ethanol compression ignition in the rapid compression machine. Journal of the Brazilian Society of Mechanical Sciences and Engineering, v.42, pg 1- 20, 20202. doi:10.1007/s40430-020-02577-y. B1. (1.755) |
Publicações de 2019
1. | MEDEIROS, K. A. R.; BARBOSA, C. R. H.; DALMEIDA, J. R. M.; RIBEIRO, A. S.; DE PAULA, I.B. Flowmeter based on a piezoelectric PVDF tube. Measurement, v. 138, p. 368-378, 2019. doi: 10.1016/j.measurement.2019.02.059. B1. (2.218) | 2. | MARTINS, FABIO J.W.A; FOUCAUT, JEAN-MARC; STANISLAS, MICHEL; AZEVEDO, LUIS FERNANDO A. Characterization of Near-Wall Structures in the Log-region of a Turbulent Boundary Layer by Means of Conditional Statistics of Tomographic PIV Data. Experimental Thermal and Fluid Science, v. 105, p. 191-205, 2019.doi: 0.1016/j.expthermflusci.2019.03.020. A2. (3.132) | 3. | JEREZ, A.; CRUZ VILLANUEVA, J.J.; FIGUEIRA DA SILVA, L. F.; Demarco, R; Fuentes, A. Measurements and modeling of PAH soot precursors in coflow ethylene/air laminar diffusion flames. Fuel, v. 236, p. 452-460, 2019. doi: 10.1016/j.fuel.2018.09.047. A1. (4.908) | 4. | LIU, CHEN-YU; CARVALHO, MARCIO S.; KUMAR, SATISH. Dynamic wetting failure in curtain coating: Comparison of model predictions and experimental observations. Chemical Engineering Science, v. 195, p. 74-82, 2019. doi: 10.1016/j.fuel.2018.09.047. A1. (3.306) | 5. | MOHAMMAD KARIM, ALIREZA; SUSZYNSKI, WIESLAW J.; GRIFFITH, WILLIAM B.; PUJARI, SASWATI; FRANCIS, LORRAINE F.; CARVALHO, MARCIO S. Effect of rheological properties of shear thinning liquids on curtain stability. Journal of Non-Newtonian Fluid Mechanics. v. 263, p. 69-76, 2019. doi: 10.1016/j.jnnfm.2018.11.009. A1. (2.293) | 6. | BAZZI, M.S.; CARVALHO, M.S. Effect of viscoelasticity on liquid sheet rupture. Journal of Non- Newtonian Fluid Mechanics, v. 264, p. 107-116, 2019. doi:10.1016/j.jnnfm.2018.10.007. A1. (2.293) | 7. | AVENDAÑO, JORGE; LIMA, NICOLLE; QUEVEDO, ANTÔNIO; CARVALHO, MÁRCIO. Effect of Surface Wettability on Immiscible Displacement in a Microfluidic Porous Media. Energies, v. 12, p. 664, 2019. doi: 10.3390/en12040664. B1. (2.676) | 8. | HUANG, CHUNG-HSUAN; CARVALHO, MARCIO S.; Kumar, Satish. Electrostatic assist of liquid transfer between plates and cavities. Physical Review Fluids, v. 4, p. 044005, 2019. doi: 10.1103/PhysRevFluids.4.044005. (2.442) | 9. | GALLASSI, MARIANA; GONÇALVES, GABIREL F.N.; BOTTI, TÁLITA COFFLER; MOURA, MARIA J.B.; CARNEIRO, JOÃO N.E.; CARVALHO, MÁRCIO S. Numerical and experimental evaluation of droplet breakage of O/W emulsions in rotor-stator mixers. Chemical Engineering Science, v. 204, p. 270-286, 2019. doi: 10.1016/j.ces.2019.04.011. A1. (3.306) | 10. | WU, JYUN-TING; CARVALHO, MARCIO S.; KUMAR, SATISH. Emptying of gravure cavities containing shear-thinning and shear-thickening liquids. Journal of Non-Newtonian Fluid Mechanics, v. 268, p. 46-55, 2019. doi: 10.1016/j.j.nnfm.2019.04.001 A1. (2.293) | 11. | JYUN-TING. WU, M. S. CARVALHO; S. KUMAR. Effects of Shear and Extensional Rheology on Liquid Transfer between Two Flat Surfaces. Journal of Non Newtonian Fluid Mechanics, vol. 274, 104173, 2019.doi: 10.1016/j.jnnfm.2019.104173. A1 (2.293) | 12. | I. R. SIQUEIRA; M. S. CARVALHO. A computational study of the effect of particle migration on the low-flow limit in slot coating of particle suspensions. Journal of Coatings Technology and Research. vol. 16(6), pp.1619-1628, 2019. doi: 10.1007/s11998-019-00196-4. B1. (1.584) | 13. | D. F. DO NASCIMENT; J. R. VIMIEIRO; S. PACIORNICK; M. S. CARVALHO. Pore Scale Visualization of Drainage in 3D Porous Media by Confocal Microscopy. Scientific Reports. vol. 9, 12333, 2019. doi: 10.1038/s41598-019-48803-z. A1. (4.011) | 14. | R. VARGES, PRISCILLA; M. COSTA, CAMILA; S. FONSECA, BRUNO; F. NACCACHE, MÔNICA; DE SOUZA MENDES, PAULO. Rheological Characterization of Carbopol Dispersions in Water and in Water/Glycerol Solutions. Fluids, v. 4, p. 3, 2019. doi: 10.3399/fluids4010003. | 15. | MARCHESIN, FLÁVIO H.; OLIVEIRA, RAFAEL M.; ALTHOFF, HELOISA; DE SOUZA MENDES, PAULO R. Irreversible time-dependent rheological behavior of cement slurries: Constitutive model and experiments. Journal of Rheology, v. 63, p. 247-262, 2019. doi: 10.1122/1.5054879. A1. (2.969) | 16. | SIQUEIRA, I.R.; DE SOUZA MENDES, P.R. On the pressure-driven flow of suspensions: particle migration in apparent yield-stress fluids. Journal of Non-Newtonian Fluid Mechanics, v. 265, p. 92-98, 2019. doi: 10.1016/j.jnnfm.2019.02.002. A1. (2.293) | 17. | RODRIGUES, ELIAS C.; DE SOUZA MENDES, PAULO R. Predicting the time-dependent irreversible rheological behavior of oil well cement slurries. Journal of Petroleum Science and Engineering, v. 178, p. 805-813, 2019 doi: 10.1016/j.petrol.2019.03.073. (2.739) | 18. | DE SOUZA MENDES, PAULO; THOMPSON, RONEY L. Time-dependent yield stress materials. Current Opinion in Colloid & Interface Science, v. 43, p. 15-25, 2019. doi:10.1016/j.cocis.2019.01.018. (6.790) |
Publicações de 2018
1. | PARISE, JOSÉ ALBERTO REIS; SABOYA, FRANCISCO EDUARDO MOURÃO. Experimental data on transport coefficients for developing laminar flow in isosceles triangular ducts using the naphthalene sublimation technique. Data in Brief, v. 18, p. 1350-1359, 2018. doi: 10.1016/j.dib.2018.03.090. B3. (SNIP 0.201) | 2. | BETANCOURT, J. M.; TIECHER, R. F. P.; ESTEVES, A.D.S. ; J. A. R. PARISE. Thermodynamic study of the simultaneous production of electrical power and refrigeration capacity from regasification of liquefied natural gas. Applied Thermal Engineering, v. 140, p. 564-579, 2018. A1.(3.771) | 3. | MOHAMMAD KARIM, ALIREZA; SUSZYNSKI, WIESLAW J.; FRANCIS, LORRAINE F.; CARVALHO, MARCIO S. Effect of viscosity on liquid curtain stability. Aiche Journal, v. 64, p. 1448-1457, 2018. doi: 10.1002/aic.16015. A1. (3.326) | 4. | WU, JYUN-TING; CARVALHO, MARCIO S.; KUMAR, SATISH. Transfer of rate-thinning and rate-thickening liquids between separating plates and cavities. Journal of Non-Newtonian Fluid Mechanics, v. 255, p. 57-69, 2018. doi: 10.1016/j.jnnfm.2018.02.010. A1. (2.293) | 5. | MOHAMMAD KARIM, ALIREZA; SUSZYNSKI, WIESLAW J.; GRIFFITH, WILLIAM B.; PUJARI, SASWATI; FRANCIS, LORRAINE F.; CARVALHO, MARCIO S. Effect of viscoelasticity on stability of liquid curtain. Journal of Non-Newtonian Fluid Mechanics, v. 257, p. 83-94, 2018. doi: 10.1016/j.jnnfm.2018.03.019. A1. (2.293) | 6. | REBOUÇAS, R.B.; SIQUEIRA, I.R.; CARVALHO, M.S. Slot coating flow of particle suspensions: Particle migration in shear sensitive liquids. Journal of Non- Newtonian Fluid Mechanics, v. 258, p. 22-31, 2018. doi: 10.1016/j.jnnfm.2018.04.007. A1. (2.293) | 7. | DE SIQUEIRA, IVAN ROSA; DE CARVALHO, MÁRCIO SILVEIRA. Shear-induced particle migration in the flow of particle suspensions through a sudden plane expansion. Journal of the Brazilian Society of Mechanical Sciences and Engineering (online), v. 40, p. 228, 2018. doi: 10.1007/s40430-018-1155-z. B1. (1.235) | 8. | CARNEIRO, M. L. N. M.; GOMES, M. S. P. Energy, Exergy, Environmental and Economic Analysis of Hybrid Waste-To-Energy Plants. Energy Conversion and Management, v. 179, p. 397-417, 2018. doi: 10.1016/j.enconman.2018.10.007. A1. (6.377) | 9. | VARGES, P.R. ; FONSECA, B.S. ; COSTA, C.M. ; NACCACHE, M.F.; DE SOUZA MENDES, P.R. ; PINHO, H.A. Exchange flows between yield stress materials and Newtonian oils. Journal of Non-Newtonian Fluid Mechanics, v. 261, p. 123-135, 2018. doi: 10.1016/ j.jnnfm.2018.08.008. A1.(2.293) | 10. | NACCACHE, M.F.; PINTO, H. M.; ABDU, A. Flow displacement in eroded regions inside annular ducts. Journal of the Brazilian Society of Mechanical Sciences and Engineering. v. 40, p. 1-14, 2018. doi:10.1007/s40430-018-1342-y. B1. (1.235) | 11. | OLIVEIRA, RAFAEL M.; MEIBURG, ECKART. Settling-driven instability in two-component stably stratified Hele-Shaw flows. Journal of Fluid Mechanics, v. 843, p. R1-1 – R1-12, 2018. doi: 10.1017/jfm.2018.215. A1. (2.893) | 12. | CANDELLA, W. L.; NACCACHE, M.F.; DE SOUZA MENDES, P. Rising bubbles in yield stress materials. Journal of Rheology, v. 62, p. 209-219, 2018. doi:10.1122/1.4995348. A1.(3.468) | 13. | KASSAR, BRUNO B.M.; CARNEIRO, JOÃO N.E.; NIECKELE, ANGELA O. Curvature computation in volume-of-fluid method based on point-cloud sampling. Computer Physics Communications, v. 222, p. 189-208, 2017. doi:10.1016/j.cpc.2017.10.003. A1.(3.748) |
Publicações de 2017
1. | CELIS PEREZ, C.; FIGUEIRA DA SILVA, L.F. On the Non-Equilibrium Behavior of Fuel-Rich Hydrocarbon/Air Combustion Within Perfectly Stirred Reactors. Combustion Science and Technology, v. 189, p. 732-746, 2017. doi: 10.1080/00102202.2016.1248239. B1.(1.730) | 2. | LI, W; CARVALHO, M. S.; KUMAR, SATISH. Liquid-film coating on topographically patterned rotating cylinders. Physical Review Fluids, v. 2, p. 024001, 2017. doi:10.1103/PhysRevFluid.2.02400.(2.512) | 3. | SIQUEIRA, I.R.; REBOUCAS, R.; CARVALHO, M. S. Migration and alignment in the flow of elongated particle suspensions through a converging-diverging channel. Journal of Non-Newtonian Fluid Mechanics, v. 243, p. 56-63, 2017. doi:10.1016/j.jnnfm.2017.03.006. A1. (2.536) | 4. | MIKKELSEN, A.; DOMMERSNES, P.; ROSYNEK, Z.; GHOLAMIPOUR-SHIRAZI, A.; CARVALHO, M. S.; FOSSUM, J. O. Mechanics of Pickering Drops Probed by Electric Field-Induced Stress. Materials. v. 10, p. 436- 447, 2017. 10.3390/ma10040436. A2. (2.654) | 5. | SIQUEIRA, I.R.; REBOUÇAS, R.B.; CARVALHO, M. S. Particle migration and alignment in slot coating flows of elongated particle suspensions. Aiche Journal, v. 63, p. 3187-3198, 2017. doi:10.1002/ aic15653. A1. (2.836) | 6. | ARAUJO, S. B.; CARVALHO, M. S. Sedimentation and Marangoni Stress in Slot Coating Flow of Particle Suspension. Journal of Non-Newtonian Fluid Mechanics, v. 247, p. 53-61, 2017.doi: 140.1016/j.jnnfm.2017.06.008. A1. (2.536) | 7. | SIQUEIRA, I.R.; CARVALHO, M. S. Particle migration in planar die-swell flows. Journal of Fluid Mechanics, v. 825, p. 49-68, 2017.doi: 10.1017/jfm.2017.373. B1. (2.821) | 8. | MAZA, D.; CARVALHO, M. S. Trailing edge formation during slot coating of rectangular patches. Jct Research, v. 14, p. 1003-1013, 2017. doi: 10.1007/S11998-017-9962-1. B1. (1.557) | 9. | DO NASCIMENTO, DÉBORA F.; AVENDAÑO, JORGE A; MEHL, ANA; MOURA, MARIA J. B.; CARVALHO, MARCIO S.; DUNCANSON, WYNTER J. Flow of Tunable Elastic Microcapsules through Constrictions. Scientific Reports, v. 7, p. 11898, 2017. doi: 10.1038/s41598-017-11950-2. A1. (4.259) | 10. | LIU, CHEN-YU; CARVALHO, M. S; Kumar, Satish . Mechanisms of dynamic wetting failure in the presence of soluble surfactants. Journal of Fluid Mechanics, v. 825, p. 677-703, 2017. doi: 10.1017/jfm.2017.394. B1.(2.821) | 11. | FRIGAARD, I.A.; JEON, J.; MOISES, G.; NACCACHE, M. F.; ALBA, K. Displacing difficult yield stress fluids from pipes. Annual Transactions of the Nordic Rheology Society, v. 25, p. 217-224, 2017. C. | 12. | LI, WEIHUA; CARVALHO, MARCIO S.; KUMAR, SATISH. Viscous free-surface flows on rotating elliptical cylinders. Physical Review Fluids, v. 2, p. 094005, 2017. doi: 10.1007/s40430-017-0885-7 (2.512) | 13. | GOMES, BRUNO ALVARES DE AZEVEDO; CAMARGO, GABRIEL CORDEIRO; SANTOS, JORGE ROBERTO LOPES DOS; AZEVEDO, LUIS FERNANDO ALZUGUIR; NIECKELE, NGELA OURIVIO; SIQUEIRA-FILHO, ARISTARCO GONÇALVES; OLIVEIRA, GLAUCIA MARIA MORAES DE. Influence of the tilt angle of Percutaneous Aortic Prosthesis on Velocity and Shear Stress Fields. Arquivos Brasileiros de Cardiologia, v. 436, p. 12-20, 2017. doi:10.5935/abc.20170115.B1. (1.318) | 14. | DE PAULA, I. B.; WÜRZ, W.; MENDONÇA, Marcio Teixeira ; MEDEIROS, MARCELLO AUGUSTO FARACO DE. Interaction of instability waves and a three-dimensional roughness element in a boundary layer. Journal of Fluid Mechanics. v. 824, p. 624-660, 2017. doi:10.1017/jfm.2017.362. A1. (2.821) | 15. | VASCONCELOS, ADRIANO AKEL; CÁRDENAS GÓMEZ, ABDUL ORLANDO; BANDARRA FILHO, ENIO PEDONE; PARISE, JOSÉ ALBERTO DOS REIS. Experimental evaluation of SWCNT-water nanofluid as a secondary fluid in a refrigeration system. Applied Thermal Engineering. v. 111, p. 1487-1492, 2017. doi: 10.1016/j.applthermaleng.2016.06.126. A1. (3.356) | 16. | COSTA, C. M.; NACCACHE, M. F.; VARGES, P. R. Caracterização reológica de fluidos complexos. Revista Brasileira de Iniciação Científica, v. 4, p. 3, 2017 | 17. | NOBRE, G. M.; VASCONCELOS, A. A.; GOMEZ, A. O. C.; BANDARRA FILHO, E. P.; PARISE, J. A. R. Performance correction factors for vapor compression refrigeration and heat pump systems tested with uncontrolled condenser conditions. Revista da Engenharia Térmica, v.16, p. 93-98, 2017. doi:10.5380/retern.v16i2.62219. |
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