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SANTOS, Carlos Renan dos e MARQUES, Flavio Donizeti e HAJJ, Muhammad R. Structural nonlinearities influence on the energy harvesting from stall-induced oscillations. 2018, Anais.. Reston, VA: AIAA, 2018. Disponível em: https://doi.org/10.2514/6.2018-0464. Acesso em: 30 jun. 2025.
APA
Santos, C. R. dos, Marques, F. D., & Hajj, M. R. (2018). Structural nonlinearities influence on the energy harvesting from stall-induced oscillations. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2018-0464
NLM
Santos CR dos, Marques FD, Hajj MR. Structural nonlinearities influence on the energy harvesting from stall-induced oscillations [Internet]. Proceedings. 2018 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2018-0464
Vancouver
Santos CR dos, Marques FD, Hajj MR. Structural nonlinearities influence on the energy harvesting from stall-induced oscillations [Internet]. Proceedings. 2018 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2018-0464
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SANTOS, Carlos Renan dos e MARQUES, Flavio Donizeti. Energy harvesting from stall-induced oscillations of pitching airfoils at high-subsonic regime. 2018, Anais.. Reston, VA: AIAA, 2018. Disponível em: https://doi.org/10.2514/6.2018-0463. Acesso em: 30 jun. 2025.
APA
Santos, C. R. dos, & Marques, F. D. (2018). Energy harvesting from stall-induced oscillations of pitching airfoils at high-subsonic regime. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2018-0463
NLM
Santos CR dos, Marques FD. Energy harvesting from stall-induced oscillations of pitching airfoils at high-subsonic regime [Internet]. Proceedings. 2018 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2018-0463
Vancouver
Santos CR dos, Marques FD. Energy harvesting from stall-induced oscillations of pitching airfoils at high-subsonic regime [Internet]. Proceedings. 2018 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2018-0463
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PEREIRA, Daniel Almeida e VASCONCELLOS, Rui Marcos Grombone de e MARQUES, Flavio Donizeti. Nonlinear airfoil torsional response induced by separated flows. 2015, Anais.. Reston, VA: AIAA, 2015. Disponível em: https://doi.org/10.2514/6.2015-1423. Acesso em: 30 jun. 2025.
APA
Pereira, D. A., Vasconcellos, R. M. G. de, & Marques, F. D. (2015). Nonlinear airfoil torsional response induced by separated flows. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2015-1423
NLM
Pereira DA, Vasconcellos RMG de, Marques FD. Nonlinear airfoil torsional response induced by separated flows [Internet]. Proceedings. 2015 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2015-1423
Vancouver
Pereira DA, Vasconcellos RMG de, Marques FD. Nonlinear airfoil torsional response induced by separated flows [Internet]. Proceedings. 2015 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2015-1423
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DIAS, José Augusto de Carvalho e DE MARQUI JÚNIOR, Carlos e ERTURK, Alper. Dimensionless analysis and scaling of a hybrid 3DOF airfoilbased piezoelectric-inductive aeroelastic energy harvester. 2013, Anais.. Reston, VA: AIAA, 2013. Disponível em: https://repositorio.usp.br/directbitstream/db8e9f0f-d1ee-4e22-98f6-11ba03e33e5e/trabalho%2021%20-%20%20Dimensionless%20analysis%20and%20scaling%20of%20a%20hybrid%203DOF%20airfoil-based%20piezoelectric-inductive%20aeroelastic%20energy%20harvester.%20%2854th%20AIAA-ASME-ASCE-AHS-ASC%20Structures%2C%20Structural%20Dynamics%2C%20and%20Materials%20C.pdf. Acesso em: 30 jun. 2025.
APA
Dias, J. A. de C., De Marqui Júnior, C., & Erturk, A. (2013). Dimensionless analysis and scaling of a hybrid 3DOF airfoilbased piezoelectric-inductive aeroelastic energy harvester. In Proceedings. Reston, VA: AIAA. Recuperado de https://repositorio.usp.br/directbitstream/db8e9f0f-d1ee-4e22-98f6-11ba03e33e5e/trabalho%2021%20-%20%20Dimensionless%20analysis%20and%20scaling%20of%20a%20hybrid%203DOF%20airfoil-based%20piezoelectric-inductive%20aeroelastic%20energy%20harvester.%20%2854th%20AIAA-ASME-ASCE-AHS-ASC%20Structures%2C%20Structural%20Dynamics%2C%20and%20Materials%20C.pdf
NLM
Dias JA de C, De Marqui Júnior C, Erturk A. Dimensionless analysis and scaling of a hybrid 3DOF airfoilbased piezoelectric-inductive aeroelastic energy harvester [Internet]. Proceedings. 2013 ;[citado 2025 jun. 30 ] Available from: https://repositorio.usp.br/directbitstream/db8e9f0f-d1ee-4e22-98f6-11ba03e33e5e/trabalho%2021%20-%20%20Dimensionless%20analysis%20and%20scaling%20of%20a%20hybrid%203DOF%20airfoil-based%20piezoelectric-inductive%20aeroelastic%20energy%20harvester.%20%2854th%20AIAA-ASME-ASCE-AHS-ASC%20Structures%2C%20Structural%20Dynamics%2C%20and%20Materials%20C.pdf
Vancouver
Dias JA de C, De Marqui Júnior C, Erturk A. Dimensionless analysis and scaling of a hybrid 3DOF airfoilbased piezoelectric-inductive aeroelastic energy harvester [Internet]. Proceedings. 2013 ;[citado 2025 jun. 30 ] Available from: https://repositorio.usp.br/directbitstream/db8e9f0f-d1ee-4e22-98f6-11ba03e33e5e/trabalho%2021%20-%20%20Dimensionless%20analysis%20and%20scaling%20of%20a%20hybrid%203DOF%20airfoil-based%20piezoelectric-inductive%20aeroelastic%20energy%20harvester.%20%2854th%20AIAA-ASME-ASCE-AHS-ASC%20Structures%2C%20Structural%20Dynamics%2C%20and%20Materials%20C.pdf
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VIEIRA, Wander Gustavo Rocha e NITZSCHE, Fred e DE MARQUI JÚNIOR, Carlos. Modeling and analysis of piezoelectric energy harvesting from helicopter blades. 2012, Anais.. Reston, VA: AIAA, 2012. Disponível em: https://repositorio.usp.br/directbitstream/b38ac35a-6b48-4b81-b2d0-ba8cb4df244a/trabalho%2036%20-%20Modeling%20and%20Analysis%20of%20Piezoelectric%20Energy%20Harvesting%20from%20Helicopter%20Blades.%20%2853rd%20AIAA-ASME-ASCE-AHS-ASC%20Structures%2C%20Structural%20Dynamics%20and%20Materials%20Conference%29.pdf. Acesso em: 30 jun. 2025.
APA
Vieira, W. G. R., Nitzsche, F., & De Marqui Júnior, C. (2012). Modeling and analysis of piezoelectric energy harvesting from helicopter blades. In Proceedings. Reston, VA: AIAA. Recuperado de https://repositorio.usp.br/directbitstream/b38ac35a-6b48-4b81-b2d0-ba8cb4df244a/trabalho%2036%20-%20Modeling%20and%20Analysis%20of%20Piezoelectric%20Energy%20Harvesting%20from%20Helicopter%20Blades.%20%2853rd%20AIAA-ASME-ASCE-AHS-ASC%20Structures%2C%20Structural%20Dynamics%20and%20Materials%20Conference%29.pdf
NLM
Vieira WGR, Nitzsche F, De Marqui Júnior C. Modeling and analysis of piezoelectric energy harvesting from helicopter blades [Internet]. Proceedings. 2012 ;[citado 2025 jun. 30 ] Available from: https://repositorio.usp.br/directbitstream/b38ac35a-6b48-4b81-b2d0-ba8cb4df244a/trabalho%2036%20-%20Modeling%20and%20Analysis%20of%20Piezoelectric%20Energy%20Harvesting%20from%20Helicopter%20Blades.%20%2853rd%20AIAA-ASME-ASCE-AHS-ASC%20Structures%2C%20Structural%20Dynamics%20and%20Materials%20Conference%29.pdf
Vancouver
Vieira WGR, Nitzsche F, De Marqui Júnior C. Modeling and analysis of piezoelectric energy harvesting from helicopter blades [Internet]. Proceedings. 2012 ;[citado 2025 jun. 30 ] Available from: https://repositorio.usp.br/directbitstream/b38ac35a-6b48-4b81-b2d0-ba8cb4df244a/trabalho%2036%20-%20Modeling%20and%20Analysis%20of%20Piezoelectric%20Energy%20Harvesting%20from%20Helicopter%20Blades.%20%2853rd%20AIAA-ASME-ASCE-AHS-ASC%20Structures%2C%20Structural%20Dynamics%20and%20Materials%20Conference%29.pdf
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VASCONCELLOS, Rui Marcos Grombone de et al. Control surface freeplay nonlinearity: modeling and experimental validation. 2012, Anais.. Reston, VA: AIAA, 2012. Disponível em: https://doi.org/10.2514/6.2012-1980. Acesso em: 30 jun. 2025.
APA
Vasconcellos, R. M. G. de, Abdelkef, A., Marques, F. D., & Hajj, M. R. (2012). Control surface freeplay nonlinearity: modeling and experimental validation. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2012-1980
NLM
Vasconcellos RMG de, Abdelkef A, Marques FD, Hajj MR. Control surface freeplay nonlinearity: modeling and experimental validation [Internet]. Proceedings. 2012 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2012-1980
Vancouver
Vasconcellos RMG de, Abdelkef A, Marques FD, Hajj MR. Control surface freeplay nonlinearity: modeling and experimental validation [Internet]. Proceedings. 2012 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2012-1980
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VASCONCELLOS, Rui Marcos Grombone de e MARQUES, Flavio Donizeti e HAJJ, Muhammad R. Time series analysis and identification of a nonlinear aeroelastic section. 2010, Anais.. Reston, VA: AIAA, 2010. Disponível em: https://doi.org/10.2514/6.2010-2555. Acesso em: 30 jun. 2025.
APA
Vasconcellos, R. M. G. de, Marques, F. D., & Hajj, M. R. (2010). Time series analysis and identification of a nonlinear aeroelastic section. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2010-2555
NLM
Vasconcellos RMG de, Marques FD, Hajj MR. Time series analysis and identification of a nonlinear aeroelastic section [Internet]. Proceedings. 2010 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2010-2555
Vancouver
Vasconcellos RMG de, Marques FD, Hajj MR. Time series analysis and identification of a nonlinear aeroelastic section [Internet]. Proceedings. 2010 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2010-2555
Caixeta Junior, P. R., & Marques, F. D. (2010). Neural network metamodel-based MDO for wing design considering aeroelastic constraints. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2010-2762
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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DE MARQUI JÚNIOR, Carlos e ERTURK, Alper e INMAN, Daniel J. Finite element analysis of a UAV wing spar with piezoceramics for vibration energy harvesting. 2009, Anais.. Reston, VA: AIAA, 2009. Disponível em: https://repositorio.usp.br/directbitstream/79d8d9ca-56c6-4d69-8f4c-4db41cef7212/print4.pdf. Acesso em: 30 jun. 2025.
APA
De Marqui Júnior, C., Erturk, A., & Inman, D. J. (2009). Finite element analysis of a UAV wing spar with piezoceramics for vibration energy harvesting. In Proceedings. Reston, VA: AIAA. Recuperado de https://repositorio.usp.br/directbitstream/79d8d9ca-56c6-4d69-8f4c-4db41cef7212/print4.pdf
NLM
De Marqui Júnior C, Erturk A, Inman DJ. Finite element analysis of a UAV wing spar with piezoceramics for vibration energy harvesting [Internet]. Proceedings. 2009 ;[citado 2025 jun. 30 ] Available from: https://repositorio.usp.br/directbitstream/79d8d9ca-56c6-4d69-8f4c-4db41cef7212/print4.pdf
Vancouver
De Marqui Júnior C, Erturk A, Inman DJ. Finite element analysis of a UAV wing spar with piezoceramics for vibration energy harvesting [Internet]. Proceedings. 2009 ;[citado 2025 jun. 30 ] Available from: https://repositorio.usp.br/directbitstream/79d8d9ca-56c6-4d69-8f4c-4db41cef7212/print4.pdf
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MARQUES, Flavio Donizeti e DE MARQUI JÚNIOR, Carlos. Analysis and chaos prediction of a nonlinear aeroelastic system via Lyapunov exponents. 2008, Anais.. Reston, VA: AIAA, 2008. Disponível em: https://doi.org/10.2514/6.2008-1759. Acesso em: 30 jun. 2025.
APA
Marques, F. D., & De Marqui Júnior, C. (2008). Analysis and chaos prediction of a nonlinear aeroelastic system via Lyapunov exponents. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2008-1759
NLM
Marques FD, De Marqui Júnior C. Analysis and chaos prediction of a nonlinear aeroelastic system via Lyapunov exponents [Internet]. Proceedings. 2008 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2008-1759
Vancouver
Marques FD, De Marqui Júnior C. Analysis and chaos prediction of a nonlinear aeroelastic system via Lyapunov exponents [Internet]. Proceedings. 2008 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2008-1759
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MARQUES, Flavio Donizeti e DE MARQUI JÚNIOR, Carlos e CAIXETA JUNIOR, Paulo Roberto. Active control of non-linear aeroelastic response using a conformal surface. 2006, Anais.. Reston, VA: AIAA, 2006. Disponível em: https://doi.org/10.2514/6.2006-1837. Acesso em: 30 jun. 2025.
APA
Marques, F. D., De Marqui Júnior, C., & Caixeta Junior, P. R. (2006). Active control of non-linear aeroelastic response using a conformal surface. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2006-1837
NLM
Marques FD, De Marqui Júnior C, Caixeta Junior PR. Active control of non-linear aeroelastic response using a conformal surface [Internet]. Proceedings. 2006 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2006-1837
Vancouver
Marques FD, De Marqui Júnior C, Caixeta Junior PR. Active control of non-linear aeroelastic response using a conformal surface [Internet]. Proceedings. 2006 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2006-1837
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DE MARQUI JÚNIOR, Carlos e BELO, Eduardo Morgado e MARQUES, Flavio Donizeti. Wind-tunnel model and a controller for flutter suppression. 2004, Anais.. Reston, VA: AIAA, 2004. Disponível em: https://doi.org/10.2514/6.2004-1854. Acesso em: 30 jun. 2025.
APA
De Marqui Júnior, C., Belo, E. M., & Marques, F. D. (2004). Wind-tunnel model and a controller for flutter suppression. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2004-1854
NLM
De Marqui Júnior C, Belo EM, Marques FD. Wind-tunnel model and a controller for flutter suppression [Internet]. Proceedings. 2004 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2004-1854
Vancouver
De Marqui Júnior C, Belo EM, Marques FD. Wind-tunnel model and a controller for flutter suppression [Internet]. Proceedings. 2004 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2004-1854
Marques, F. D., Belo, E. M., Oliveira, V. A. de, Rosolen, J. R., & Simoni, A. R. (2004). Non-linear phenomena analysis of stall-induced aeroelastic oscillations. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2004-1940
NLM
Marques FD, Belo EM, Oliveira VA de, Rosolen JR, Simoni AR. Non-linear phenomena analysis of stall-induced aeroelastic oscillations [Internet]. Proceedings. 2004 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2004-1940
Vancouver
Marques FD, Belo EM, Oliveira VA de, Rosolen JR, Simoni AR. Non-linear phenomena analysis of stall-induced aeroelastic oscillations [Internet]. Proceedings. 2004 ;[citado 2025 jun. 30 ] Available from: https://doi.org/10.2514/6.2004-1940