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  • Source: Computers & Chemical Engineering. Unidade: EP

    Subjects: ENERGIA TÉRMICA, ENERGIA SOLAR, SIMULAÇÃO

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      UNTRAU, Alix et al. Dynamic real-time optimization of a solar thermal plant during daytime. Computers & Chemical Engineering, v. 172, p. 1-19, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.compchemeng.2023.108184. Acesso em: 09 set. 2024.
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      Untrau, A., Sochard, S., Marias, F., Reneaume, J. -M., Roux, G. A. C. L., & Serra, S. (2023). Dynamic real-time optimization of a solar thermal plant during daytime. Computers & Chemical Engineering, 172, 1-19. doi:10.1016/j.compchemeng.2023.108184
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      Untrau A, Sochard S, Marias F, Reneaume J-M, Roux GACL, Serra S. Dynamic real-time optimization of a solar thermal plant during daytime [Internet]. Computers & Chemical Engineering. 2023 ; 172 1-19.[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/j.compchemeng.2023.108184
    • Vancouver

      Untrau A, Sochard S, Marias F, Reneaume J-M, Roux GACL, Serra S. Dynamic real-time optimization of a solar thermal plant during daytime [Internet]. Computers & Chemical Engineering. 2023 ; 172 1-19.[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/j.compchemeng.2023.108184
  • Source: PEMD 2023. Conference titles: 12th International Conference on Power Electronics, Machines and Drives. Unidade: EP

    Subjects: TRANSPORTE FERROVIÁRIO, RECURSOS ENERGÉTICOS, SIMULAÇÃO

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      BURNETT, Guilhermo Garcia e PIRES, Cassiano Lobo e NABETA, Silvio Ikuyo. Improving energy efficiency in regional railways with PMSP. 2023, Anais.. London: The Institution of Engineering and Technology, 2023. Disponível em: https://doi.org/10.1049/icp.2023.1970. Acesso em: 09 set. 2024.
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      Burnett, G. G., Pires, C. L., & Nabeta, S. I. (2023). Improving energy efficiency in regional railways with PMSP. In PEMD 2023. London: The Institution of Engineering and Technology. doi:10.1049/icp.2023.1970
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      Burnett GG, Pires CL, Nabeta SI. Improving energy efficiency in regional railways with PMSP [Internet]. PEMD 2023. 2023 ;[citado 2024 set. 09 ] Available from: https://doi.org/10.1049/icp.2023.1970
    • Vancouver

      Burnett GG, Pires CL, Nabeta SI. Improving energy efficiency in regional railways with PMSP [Internet]. PEMD 2023. 2023 ;[citado 2024 set. 09 ] Available from: https://doi.org/10.1049/icp.2023.1970
  • Source: Chaos, Solitons and Fractals. Unidade: EP

    Subjects: AUTÔMATOS CELULARES, MODELOS EPIDEMIOLOGICOS, SIMULAÇÃO

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      GODÓI, Antônio Carlos Bastos de e PIQUEIRA, José Roberto Castilho. Spatio-temporal malware containment model with alert. Chaos, Solitons and Fractals, v. 173, p. 1-11, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.chaos.2023.113618. Acesso em: 09 set. 2024.
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      Godói, A. C. B. de, & Piqueira, J. R. C. (2023). Spatio-temporal malware containment model with alert. Chaos, Solitons and Fractals, 173, 1-11. doi:10.1016/j.chaos.2023.113618
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      Godói ACB de, Piqueira JRC. Spatio-temporal malware containment model with alert [Internet]. Chaos, Solitons and Fractals. 2023 ; 173 1-11.[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/j.chaos.2023.113618
    • Vancouver

      Godói ACB de, Piqueira JRC. Spatio-temporal malware containment model with alert [Internet]. Chaos, Solitons and Fractals. 2023 ; 173 1-11.[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/j.chaos.2023.113618
  • Source: Quality and Reliability Engineering International. Unidade: EP

    Subjects: GRÁFICOS, DISTRIBUIÇÕES (PROBABILIDADE), ESTIMAÇÃO PARAMÉTRICA, SIMULAÇÃO

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      PEREIRA, Marcelo Bourguignon e HO, Linda Lee e FERNANDES, Fidel Henrique. Control charts for monitoring the median parameter of Birnbaum‐Saunders distribution. Quality and Reliability Engineering International, v. 36, n. 5 p. 1333–1363, 2020Tradução . . Disponível em: https://doi.org/10.1002/qre.2632. Acesso em: 09 set. 2024.
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      Pereira, M. B., Ho, L. L., & Fernandes, F. H. (2020). Control charts for monitoring the median parameter of Birnbaum‐Saunders distribution. Quality and Reliability Engineering International, 36( 5 p. 1333–1363). doi:10.1002/qre.2632
    • NLM

      Pereira MB, Ho LL, Fernandes FH. Control charts for monitoring the median parameter of Birnbaum‐Saunders distribution [Internet]. Quality and Reliability Engineering International. 2020 ; 36( 5 p. 1333–1363):[citado 2024 set. 09 ] Available from: https://doi.org/10.1002/qre.2632
    • Vancouver

      Pereira MB, Ho LL, Fernandes FH. Control charts for monitoring the median parameter of Birnbaum‐Saunders distribution [Internet]. Quality and Reliability Engineering International. 2020 ; 36( 5 p. 1333–1363):[citado 2024 set. 09 ] Available from: https://doi.org/10.1002/qre.2632
  • Source: Chemical Engineering Science. Unidades: EEL, EP

    Subjects: MODELAGEM DE EQUAÇÕES ESTRUTURAIS, SIMULAÇÃO, DINÂMICA

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      NAKAMA, Caroline Satye Martins e SIQUEIRA, A. F e VIANNA JUNIOR, Ardson dos Santos. Stochastic axial dispersion model for tubular equipment. Chemical Engineering Science, v. 171, p. 131-138, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.ces.2017.05.024. Acesso em: 09 set. 2024.
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      Nakama, C. S. M., Siqueira, A. F., & Vianna Junior, A. dos S. (2017). Stochastic axial dispersion model for tubular equipment. Chemical Engineering Science, 171, 131-138. doi:10.1016/j.ces.2017.05.024
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      Nakama CSM, Siqueira AF, Vianna Junior A dos S. Stochastic axial dispersion model for tubular equipment [Internet]. Chemical Engineering Science. 2017 ; 171 131-138.[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/j.ces.2017.05.024
    • Vancouver

      Nakama CSM, Siqueira AF, Vianna Junior A dos S. Stochastic axial dispersion model for tubular equipment [Internet]. Chemical Engineering Science. 2017 ; 171 131-138.[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/j.ces.2017.05.024
  • Source: Materials Sciences and Applications. Unidade: EP

    Subjects: AÇO CARBONO, FRATURA DAS ESTRUTURAS, SIMULAÇÃO

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      TSILOUFAS, Stergios Pericles e PLAUT, Ronald Lesley. Ductile Fracture Characterization for Medium Carbon Steel Using Continuum Damage Mechanics. Materials Sciences and Applications, v. 3, p. 745-755, 2012Tradução . . Disponível em: https://doi.org/10.4236/msa.2012.311109. Acesso em: 09 set. 2024.
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      Tsiloufas, S. P., & Plaut, R. L. (2012). Ductile Fracture Characterization for Medium Carbon Steel Using Continuum Damage Mechanics. Materials Sciences and Applications, 3, 745-755. doi:10.4236/msa.2012.311109
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      Tsiloufas SP, Plaut RL. Ductile Fracture Characterization for Medium Carbon Steel Using Continuum Damage Mechanics [Internet]. Materials Sciences and Applications. 2012 ; 3 745-755.[citado 2024 set. 09 ] Available from: https://doi.org/10.4236/msa.2012.311109
    • Vancouver

      Tsiloufas SP, Plaut RL. Ductile Fracture Characterization for Medium Carbon Steel Using Continuum Damage Mechanics [Internet]. Materials Sciences and Applications. 2012 ; 3 745-755.[citado 2024 set. 09 ] Available from: https://doi.org/10.4236/msa.2012.311109
  • Source: PSE 2009: proceedings. Conference titles: International Symposium on Process Systems Engineering. Unidade: EP

    Subjects: TROCADORES DE CALOR, SIMULAÇÃO

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      VASQUEZ ALVAREZ, Elsa et al. Development of a micro heat exchanger made with ceramic multi-layers (LTCC) and its setup to gas flow measurements. 2009, Anais.. Oxford: Elsevier, 2009. Disponível em: https://doi.org/10.1016/S1570-7946(09)70686-8. Acesso em: 09 set. 2024.
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      Vasquez Alvarez, E., Degasperi, F. T., Góngora Rubio, M. R., & Giudici, R. (2009). Development of a micro heat exchanger made with ceramic multi-layers (LTCC) and its setup to gas flow measurements. In PSE 2009: proceedings. Oxford: Elsevier. doi:10.1016/S1570-7946(09)70686-8
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      Vasquez Alvarez E, Degasperi FT, Góngora Rubio MR, Giudici R. Development of a micro heat exchanger made with ceramic multi-layers (LTCC) and its setup to gas flow measurements [Internet]. PSE 2009: proceedings. 2009 ;[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/S1570-7946(09)70686-8
    • Vancouver

      Vasquez Alvarez E, Degasperi FT, Góngora Rubio MR, Giudici R. Development of a micro heat exchanger made with ceramic multi-layers (LTCC) and its setup to gas flow measurements [Internet]. PSE 2009: proceedings. 2009 ;[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/S1570-7946(09)70686-8
  • Source: Chemical Engineering Science. Unidade: EP

    Subjects: MODELOS MATEMÁTICOS, NÍQUEL, REATORES QUÍMICOS, SIMULAÇÃO, SINTERIZAÇÃO, MÉTODO DE MONTE CARLO

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      TEIXEIRA, Antonio Carlos S. C. e GIUDICI, Reinaldo. A Monte Carlo model for the sintering of Ni/Al2O3 catalysts. Chemical Engineering Science, v. fe 2001, n. 3, p. 789-798, 2001Tradução . . Disponível em: https://doi.org/10.1016/S0009-2509(00)00290-6. Acesso em: 09 set. 2024.
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      Teixeira, A. C. S. C., & Giudici, R. (2001). A Monte Carlo model for the sintering of Ni/Al2O3 catalysts. Chemical Engineering Science, fe 2001( 3), 789-798. doi:10.1016/S0009-2509(00)00290-6
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      Teixeira ACSC, Giudici R. A Monte Carlo model for the sintering of Ni/Al2O3 catalysts [Internet]. Chemical Engineering Science. 2001 ; fe 2001( 3): 789-798.[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/S0009-2509(00)00290-6
    • Vancouver

      Teixeira ACSC, Giudici R. A Monte Carlo model for the sintering of Ni/Al2O3 catalysts [Internet]. Chemical Engineering Science. 2001 ; fe 2001( 3): 789-798.[citado 2024 set. 09 ] Available from: https://doi.org/10.1016/S0009-2509(00)00290-6
  • Source: Transactions on Modelling and Simulation. Unidade: EP

    Subjects: VÓRTICES DOS FLUÍDOS, SIMULAÇÃO, EQUAÇÕES DE NAVIER-STOKES

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      MENEGHINI, Julio Romano e SALTARA, Fábio e BEARMAN, Peter W. Numerical simulation of vortex sheddind from an oscillating circular cylinder. Transactions on Modelling and Simulation, v. 16, p. 1-10, 1997Tradução . . Disponível em: https://doi.org/10.2495/BE090221. Acesso em: 09 set. 2024.
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      Meneghini, J. R., Saltara, F., & Bearman, P. W. (1997). Numerical simulation of vortex sheddind from an oscillating circular cylinder. Transactions on Modelling and Simulation, 16, 1-10. doi:10.2495/BE090221
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      Meneghini JR, Saltara F, Bearman PW. Numerical simulation of vortex sheddind from an oscillating circular cylinder [Internet]. Transactions on Modelling and Simulation. 1997 ; 16 1-10.[citado 2024 set. 09 ] Available from: https://doi.org/10.2495/BE090221
    • Vancouver

      Meneghini JR, Saltara F, Bearman PW. Numerical simulation of vortex sheddind from an oscillating circular cylinder [Internet]. Transactions on Modelling and Simulation. 1997 ; 16 1-10.[citado 2024 set. 09 ] Available from: https://doi.org/10.2495/BE090221

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