Filtros : "Applied Energy" Limpar

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  • Source: Applied Energy. Unidade: EP

    Subjects: INDÚSTRIA AÇUCAREIRA, INDÚSTRIA ALCOOLEIRA, ELETROFISIOLOGIA, FONTES RENOVÁVEIS DE ENERGIA

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    • ABNT

      MUTRAN, Victoria Morgado et al. Risk-conscious optimization model to support bioenergy investments in the Brazilian sugarcane industry. Applied Energy, v. 258, p. 1-15, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2019.113978. Acesso em: 03 jun. 2024.
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      Mutran, V. M., Ribeiro, C., Nascimento, C. A. O. do, & Chachuat, B. (2020). Risk-conscious optimization model to support bioenergy investments in the Brazilian sugarcane industry. Applied Energy, 258, 1-15. doi:10.1016/j.apenergy.2019.113978
    • NLM

      Mutran VM, Ribeiro C, Nascimento CAO do, Chachuat B. Risk-conscious optimization model to support bioenergy investments in the Brazilian sugarcane industry [Internet]. Applied Energy. 2020 ; 258 1-15.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2019.113978
    • Vancouver

      Mutran VM, Ribeiro C, Nascimento CAO do, Chachuat B. Risk-conscious optimization model to support bioenergy investments in the Brazilian sugarcane industry [Internet]. Applied Energy. 2020 ; 258 1-15.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2019.113978
  • Source: Applied Energy. Unidades: EP, IQSC

    Assunto: CÉLULAS A COMBUSTÍVEL

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      LOPES, Thiago et al. Spatially resolved oxygen reaction, water, and temperature distribution: Experimental results as a function of flow field and implications for polymer electrolyte fuel cell operation. Applied Energy, v. 252, p. 113421, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2019.113421. Acesso em: 03 jun. 2024.
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      Lopes, T., Beruski, O., Manthanwar, A. M., Korkischko, I., Pugliesi, R., Pereira, M. A. S., et al. (2019). Spatially resolved oxygen reaction, water, and temperature distribution: Experimental results as a function of flow field and implications for polymer electrolyte fuel cell operation. Applied Energy, 252, 113421. doi:10.1016/j.apenergy.2019.113421
    • NLM

      Lopes T, Beruski O, Manthanwar AM, Korkischko I, Pugliesi R, Pereira MAS, Andrade MLG, Pistikopoulos EN, Perez J, Fonseca FC, Meneghini JR, Kucernak AR. Spatially resolved oxygen reaction, water, and temperature distribution: Experimental results as a function of flow field and implications for polymer electrolyte fuel cell operation [Internet]. Applied Energy. 2019 ; 252 113421.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2019.113421
    • Vancouver

      Lopes T, Beruski O, Manthanwar AM, Korkischko I, Pugliesi R, Pereira MAS, Andrade MLG, Pistikopoulos EN, Perez J, Fonseca FC, Meneghini JR, Kucernak AR. Spatially resolved oxygen reaction, water, and temperature distribution: Experimental results as a function of flow field and implications for polymer electrolyte fuel cell operation [Internet]. Applied Energy. 2019 ; 252 113421.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2019.113421
  • Source: Applied Energy. Unidade: EP

    Subjects: COMBUSTÍVEIS, INDÚSTRIA AUTOMOBILÍSTICA, GASES, EFEITO ESTUFA, FONTES ALTERNATIVAS DE ENERGIA

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      SALVO JUNIOR, Orlando de e ALMEIDA FILHO, Flavio Guilherme Vaz de. Influence of technologies on energy efficiency results of official brazilian tests of vehicle energy consumption. Applied Energy, v. 241, p. 98-112, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2019.02.042. Acesso em: 03 jun. 2024.
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      Salvo Junior, O. de, & Almeida Filho, F. G. V. de. (2019). Influence of technologies on energy efficiency results of official brazilian tests of vehicle energy consumption. Applied Energy, 241, 98-112. doi:10.1016/j.apenergy.2019.02.042
    • NLM

      Salvo Junior O de, Almeida Filho FGV de. Influence of technologies on energy efficiency results of official brazilian tests of vehicle energy consumption [Internet]. Applied Energy. 2019 ; 241 98-112.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2019.02.042
    • Vancouver

      Salvo Junior O de, Almeida Filho FGV de. Influence of technologies on energy efficiency results of official brazilian tests of vehicle energy consumption [Internet]. Applied Energy. 2019 ; 241 98-112.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2019.02.042
  • Source: Applied Energy. Unidade: EP

    Subjects: SISTEMAS FOTOVOLTAICOS, SISTEMAS ELÉTRICOS DE POTÊNCIA, PLANEJAMENTO ENERGÉTICO

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      VIANA, Matheus Sabino e MANASSERO JUNIOR, Giovanni e UDAETA, Miguel Edgar Morales. Analysis of demand response and photovoltaic distributed generation as resources for power utility planning. Applied Energy, v. 217, p. 456-466, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2018.02.153. Acesso em: 03 jun. 2024.
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      Viana, M. S., Manassero Junior, G., & Udaeta, M. E. M. (2018). Analysis of demand response and photovoltaic distributed generation as resources for power utility planning. Applied Energy, 217, 456-466. doi:10.1016/j.apenergy.2018.02.153
    • NLM

      Viana MS, Manassero Junior G, Udaeta MEM. Analysis of demand response and photovoltaic distributed generation as resources for power utility planning [Internet]. Applied Energy. 2018 ; 217 456-466.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2018.02.153
    • Vancouver

      Viana MS, Manassero Junior G, Udaeta MEM. Analysis of demand response and photovoltaic distributed generation as resources for power utility planning [Internet]. Applied Energy. 2018 ; 217 456-466.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2018.02.153
  • Source: Applied Energy. Unidade: EESC

    Subjects: EFEITO ESTUFA, GASES, VINHAÇA, MUDANÇA CLIMÁTICA, DIGESTÃO ANAERÓBIA, ENGENHARIA HIDRÁULICA

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      MORAES, Bruna S. et al. Reduction in greenhouse gas emissions from vinasse through anaerobic digestion. Applied Energy, v. 189, p. 21-30, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2016.12.009. Acesso em: 03 jun. 2024.
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      Moraes, B. S., Petersen, S. O., Zaiat, M., Sommer, S. G., & Triolo, J. M. (2017). Reduction in greenhouse gas emissions from vinasse through anaerobic digestion. Applied Energy, 189, 21-30. doi:10.1016/j.apenergy.2016.12.009
    • NLM

      Moraes BS, Petersen SO, Zaiat M, Sommer SG, Triolo JM. Reduction in greenhouse gas emissions from vinasse through anaerobic digestion [Internet]. Applied Energy. 2017 ; 189 21-30.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2016.12.009
    • Vancouver

      Moraes BS, Petersen SO, Zaiat M, Sommer SG, Triolo JM. Reduction in greenhouse gas emissions from vinasse through anaerobic digestion [Internet]. Applied Energy. 2017 ; 189 21-30.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2016.12.009
  • Source: Applied Energy. Unidade: EESC

    Subjects: VINHAÇA, CANA-DE-AÇÚCAR, REATORES DE LEITO FLUIDIFICADO, DIGESTÃO ANAERÓBIA, ENGENHARIA HIDRÁULICA

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      FUESS, Lucas Tadeu et al. Thermophilic two-phase anaerobic digestion using an innovative fixed-bed reactor for enhanced organic matter removal and bioenergy recovery from sugarcane vinasse. Applied Energy, v. 189, p. 480-491, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2016.12.071. Acesso em: 03 jun. 2024.
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      Fuess, L. T., Kiyuna, L. S. M., Ferraz Júnior, A. D. N., Persinoti, G. F., Squina, F. M., Garcia, M. L., & Zaiat, M. (2017). Thermophilic two-phase anaerobic digestion using an innovative fixed-bed reactor for enhanced organic matter removal and bioenergy recovery from sugarcane vinasse. Applied Energy, 189, 480-491. doi:10.1016/j.apenergy.2016.12.071
    • NLM

      Fuess LT, Kiyuna LSM, Ferraz Júnior ADN, Persinoti GF, Squina FM, Garcia ML, Zaiat M. Thermophilic two-phase anaerobic digestion using an innovative fixed-bed reactor for enhanced organic matter removal and bioenergy recovery from sugarcane vinasse [Internet]. Applied Energy. 2017 ; 189 480-491.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2016.12.071
    • Vancouver

      Fuess LT, Kiyuna LSM, Ferraz Júnior ADN, Persinoti GF, Squina FM, Garcia ML, Zaiat M. Thermophilic two-phase anaerobic digestion using an innovative fixed-bed reactor for enhanced organic matter removal and bioenergy recovery from sugarcane vinasse [Internet]. Applied Energy. 2017 ; 189 480-491.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2016.12.071
  • Source: Applied Energy. Unidade: EACH

    Subjects: ETANOL, FONTES ALTERNATIVAS DE ENERGIA, CANA-DE-AÇÚCAR

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      MOREIRA, José Roberto et al. BECCS potential in Brazil: achieving negative emissions in ethanol and electricity production based on sugar cane bagasse and other residues. Applied Energy, v. 179, p. 55-63, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2016.06.044. Acesso em: 03 jun. 2024.
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      Moreira, J. R., Romeiro, V., Fuss, S., Kraxner, F., & Pacca, S. A. (2016). BECCS potential in Brazil: achieving negative emissions in ethanol and electricity production based on sugar cane bagasse and other residues. Applied Energy, 179, 55-63. doi:10.1016/j.apenergy.2016.06.044
    • NLM

      Moreira JR, Romeiro V, Fuss S, Kraxner F, Pacca SA. BECCS potential in Brazil: achieving negative emissions in ethanol and electricity production based on sugar cane bagasse and other residues [Internet]. Applied Energy. 2016 ; 179 55-63.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2016.06.044
    • Vancouver

      Moreira JR, Romeiro V, Fuss S, Kraxner F, Pacca SA. BECCS potential in Brazil: achieving negative emissions in ethanol and electricity production based on sugar cane bagasse and other residues [Internet]. Applied Energy. 2016 ; 179 55-63.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2016.06.044
  • Source: Applied Energy. Unidade: EP

    Assunto: BIOMASSA

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      KOHL, Thomas et al. Corrigendum to “Exergoeconomic assessment of CHP-integrated biomass upgrading” [Appl. Energy 156 (2015) 290–305]. Applied Energy, v. No 2016, p. 590-591, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2016.07.092. Acesso em: 03 jun. 2024.
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      Kohl, T., Santos, M. T. dos, Melin, K., Laukkanen, T., Järvinen, M., Park, S. W., & Giudici, R. (2016). Corrigendum to “Exergoeconomic assessment of CHP-integrated biomass upgrading” [Appl. Energy 156 (2015) 290–305]. Applied Energy, No 2016, 590-591. doi:10.1016/j.apenergy.2016.07.092
    • NLM

      Kohl T, Santos MT dos, Melin K, Laukkanen T, Järvinen M, Park SW, Giudici R. Corrigendum to “Exergoeconomic assessment of CHP-integrated biomass upgrading” [Appl. Energy 156 (2015) 290–305] [Internet]. Applied Energy. 2016 ; No 2016 590-591.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2016.07.092
    • Vancouver

      Kohl T, Santos MT dos, Melin K, Laukkanen T, Järvinen M, Park SW, Giudici R. Corrigendum to “Exergoeconomic assessment of CHP-integrated biomass upgrading” [Appl. Energy 156 (2015) 290–305] [Internet]. Applied Energy. 2016 ; No 2016 590-591.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2016.07.092
  • Source: Applied Energy. Unidade: IAG

    Subjects: ENERGIA SOLAR, RADIAÇÃO SOLAR E TERRESTRE

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      BOZNAR, Marija Zlata et al. Radial frequency diagram (sunflower) for the analysis of diurnal cycle parameters: solar energy application. Applied Energy, v. 154, p. 592-602, 2015Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2015.05.055. Acesso em: 03 jun. 2024.
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      Boznar, M. Z., Grasic, B., Mlakar, P., Soares, J. R., Oliveira, A. P. de, & Costa, T. S. (2015). Radial frequency diagram (sunflower) for the analysis of diurnal cycle parameters: solar energy application. Applied Energy, 154, 592-602. doi:10.1016/j.apenergy.2015.05.055
    • NLM

      Boznar MZ, Grasic B, Mlakar P, Soares JR, Oliveira AP de, Costa TS. Radial frequency diagram (sunflower) for the analysis of diurnal cycle parameters: solar energy application [Internet]. Applied Energy. 2015 ; 154 592-602.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2015.05.055
    • Vancouver

      Boznar MZ, Grasic B, Mlakar P, Soares JR, Oliveira AP de, Costa TS. Radial frequency diagram (sunflower) for the analysis of diurnal cycle parameters: solar energy application [Internet]. Applied Energy. 2015 ; 154 592-602.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2015.05.055
  • Source: Applied Energy. Unidade: EESC

    Subjects: DIGESTÃO ANAERÓBIA, BIOGÁS, IMPACTOS AMBIENTAIS, CANA-DE-AÇÚCAR, VINHAÇA, REFINARIAS

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      MORAES, Bruna S et al. Anaerobic digestion of vinasse from sugarcane biorefineries in Brazil from energy, environmental, and economic perspectives: profit or expense?. Applied Energy, v. 113, n. Ja 2014, p. 825-835, 2014Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2013.07.018. Acesso em: 03 jun. 2024.
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      Moraes, B. S., Junqueira, T. L., Pavanello, L. G., Cavalett, O., Mantelatto, P. E., Bonomi, A., & Zaiat, M. (2014). Anaerobic digestion of vinasse from sugarcane biorefineries in Brazil from energy, environmental, and economic perspectives: profit or expense? Applied Energy, 113( Ja 2014), 825-835. doi:10.1016/j.apenergy.2013.07.018
    • NLM

      Moraes BS, Junqueira TL, Pavanello LG, Cavalett O, Mantelatto PE, Bonomi A, Zaiat M. Anaerobic digestion of vinasse from sugarcane biorefineries in Brazil from energy, environmental, and economic perspectives: profit or expense? [Internet]. Applied Energy. 2014 ; 113( Ja 2014): 825-835.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2013.07.018
    • Vancouver

      Moraes BS, Junqueira TL, Pavanello LG, Cavalett O, Mantelatto PE, Bonomi A, Zaiat M. Anaerobic digestion of vinasse from sugarcane biorefineries in Brazil from energy, environmental, and economic perspectives: profit or expense? [Internet]. Applied Energy. 2014 ; 113( Ja 2014): 825-835.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2013.07.018
  • Source: Applied Energy. Unidade: IQSC

    Subjects: ÁGUA, CÉLULAS A COMBUSTÍVEL

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      MACIEL, Cristhiane Guimarães et al. Hydrogen production and purification from the water-gas shift reaction on CuO/CeO2-TiO2 catalysts. Applied Energy, v. 112, p. 52-59, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2013.06.003. Acesso em: 03 jun. 2024.
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      Maciel, C. G., Silva, T. de F., Assaf, E. M., & Assaf, J. M. (2013). Hydrogen production and purification from the water-gas shift reaction on CuO/CeO2-TiO2 catalysts. Applied Energy, 112, 52-59. doi:10.1016/j.apenergy.2013.06.003
    • NLM

      Maciel CG, Silva T de F, Assaf EM, Assaf JM. Hydrogen production and purification from the water-gas shift reaction on CuO/CeO2-TiO2 catalysts [Internet]. Applied Energy. 2013 ; 112 52-59.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2013.06.003
    • Vancouver

      Maciel CG, Silva T de F, Assaf EM, Assaf JM. Hydrogen production and purification from the water-gas shift reaction on CuO/CeO2-TiO2 catalysts [Internet]. Applied Energy. 2013 ; 112 52-59.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2013.06.003
  • Source: Applied Energy. Unidade: FCF

    Subjects: ETANOL, FERMENTAÇÃO

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      FERREIRA, Lívia Seno et al. Arthrospira (Spirulina) platensis cultivation in tubular photobioreactor: use of no-cost 'CO IND. 2' from ethanol fermentation. Applied Energy, v. 92, p. 379-385, 2012Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2011.11.019. Acesso em: 03 jun. 2024.
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      Ferreira, L. S., Rodrigues, M. S., Converti, A., Sato, S., & Carvalho, J. C. M. de. (2012). Arthrospira (Spirulina) platensis cultivation in tubular photobioreactor: use of no-cost 'CO IND. 2' from ethanol fermentation. Applied Energy, 92, 379-385. doi:10.1016/j.apenergy.2011.11.019
    • NLM

      Ferreira LS, Rodrigues MS, Converti A, Sato S, Carvalho JCM de. Arthrospira (Spirulina) platensis cultivation in tubular photobioreactor: use of no-cost 'CO IND. 2' from ethanol fermentation [Internet]. Applied Energy. 2012 ; 92 379-385.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2011.11.019
    • Vancouver

      Ferreira LS, Rodrigues MS, Converti A, Sato S, Carvalho JCM de. Arthrospira (Spirulina) platensis cultivation in tubular photobioreactor: use of no-cost 'CO IND. 2' from ethanol fermentation [Internet]. Applied Energy. 2012 ; 92 379-385.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2011.11.019
  • Source: Applied Energy. Unidade: IAG

    Subjects: RADIAÇÃO SOLAR E TERRESTRE, NUVENS

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      FURLAN, Claudia et al. The role of clouds in improving the regression model for hourly values of diffuse solar radiation. Applied Energy, v. 92, p. 240-254, 2012Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2011.10.032. Acesso em: 03 jun. 2024.
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      Furlan, C., Oliveira, A. P. de, Soares, J. R., Codato, G., & Escobedo, J. F. (2012). The role of clouds in improving the regression model for hourly values of diffuse solar radiation. Applied Energy, 92, 240-254. doi:10.1016/j.apenergy.2011.10.032
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      Furlan C, Oliveira AP de, Soares JR, Codato G, Escobedo JF. The role of clouds in improving the regression model for hourly values of diffuse solar radiation [Internet]. Applied Energy. 2012 ; 92 240-254.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2011.10.032
    • Vancouver

      Furlan C, Oliveira AP de, Soares JR, Codato G, Escobedo JF. The role of clouds in improving the regression model for hourly values of diffuse solar radiation [Internet]. Applied Energy. 2012 ; 92 240-254.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2011.10.032
  • Source: Applied Energy. Unidade: IAG

    Subjects: RADIAÇÃO SOLAR E TERRESTRE, RADIAÇÃO ULTRAVIOLETA, BOTUCATU (SP)

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      ESCOBEDO, João F et al. Modeling hourly and daily fractions of UV, PAR and NIR to global solar radiation under various sky conditions at Botucatu, Brazil. Applied Energy, v. 86, p. 299-309, 2009Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2008.04.013. Acesso em: 03 jun. 2024.
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      Escobedo, J. F., Oliveira, A. P. de, Gomes, E. N., & Soares, J. R. (2009). Modeling hourly and daily fractions of UV, PAR and NIR to global solar radiation under various sky conditions at Botucatu, Brazil. Applied Energy, 86, 299-309. doi:10.1016/j.apenergy.2008.04.013
    • NLM

      Escobedo JF, Oliveira AP de, Gomes EN, Soares JR. Modeling hourly and daily fractions of UV, PAR and NIR to global solar radiation under various sky conditions at Botucatu, Brazil [Internet]. Applied Energy. 2009 ; 86 299-309.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2008.04.013
    • Vancouver

      Escobedo JF, Oliveira AP de, Gomes EN, Soares JR. Modeling hourly and daily fractions of UV, PAR and NIR to global solar radiation under various sky conditions at Botucatu, Brazil [Internet]. Applied Energy. 2009 ; 86 299-309.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2008.04.013
  • Source: Applied Energy. Unidade: IAG

    Subjects: MICROMETEOROLOGIA, RADIAÇÃO ATMOSFÉRICA

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      SOARES, Jacyra Ramos et al. Modeling hourly diffuse solar-radiation in the city of São Paulo using a neural-network technique. Applied Energy, v. 79, p. 201-214, 2004Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2003.11.004. Acesso em: 03 jun. 2024.
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      Soares, J. R., Oliveira, A. P. de, Boznar, M. Z., Mlakar, P., Escobedo, J. F., & Machado, A. J. (2004). Modeling hourly diffuse solar-radiation in the city of São Paulo using a neural-network technique. Applied Energy, 79, 201-214. doi:10.1016/j.apenergy.2003.11.004
    • NLM

      Soares JR, Oliveira AP de, Boznar MZ, Mlakar P, Escobedo JF, Machado AJ. Modeling hourly diffuse solar-radiation in the city of São Paulo using a neural-network technique [Internet]. Applied Energy. 2004 ;79 201-214.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2003.11.004
    • Vancouver

      Soares JR, Oliveira AP de, Boznar MZ, Mlakar P, Escobedo JF, Machado AJ. Modeling hourly diffuse solar-radiation in the city of São Paulo using a neural-network technique [Internet]. Applied Energy. 2004 ;79 201-214.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/j.apenergy.2003.11.004
  • Source: Applied Energy. Unidade: IAG

    Assunto: MICROMETEOROLOGIA

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      OLIVEIRA, Amauri Pereira de et al. Correlation models of diffuse solar-radiation applied to the city of São Paulo, Brazil. Applied Energy, v. 71, p. 59-73, 2002Tradução . . Disponível em: https://doi.org/10.1016/s0306-2619(01)00040-x. Acesso em: 03 jun. 2024.
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      Oliveira, A. P. de, Escobedo, J. F., Machado, A. J., & Soares, J. R. (2002). Correlation models of diffuse solar-radiation applied to the city of São Paulo, Brazil. Applied Energy, 71, 59-73. doi:10.1016/s0306-2619(01)00040-x
    • NLM

      Oliveira AP de, Escobedo JF, Machado AJ, Soares JR. Correlation models of diffuse solar-radiation applied to the city of São Paulo, Brazil [Internet]. Applied Energy. 2002 ;71 59-73.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/s0306-2619(01)00040-x
    • Vancouver

      Oliveira AP de, Escobedo JF, Machado AJ, Soares JR. Correlation models of diffuse solar-radiation applied to the city of São Paulo, Brazil [Internet]. Applied Energy. 2002 ;71 59-73.[citado 2024 jun. 03 ] Available from: https://doi.org/10.1016/s0306-2619(01)00040-x

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