Constructal design of an onshore overtopping device in real scale for two different depths

Marine Systems & Ocean Technology - Tập 10 Số 2 - Trang 120-129 - 2015
Marcelo Moraes Goulart1, Jaifer Corrêa Martins1, Ivoni Carlos Acunha2, Mateus das Neves Gomes3, Jeferson Ávila Souza1, Luíz Alberto Oliveira Rocha4, Liércio André Isoldi1, Elizaldo Domingues dos Santos1
1Escola de Engenharia (EE), Universidade Federal do Rio Grande (FURG), Rio Grande, Brazil
2Instituto Federal de Educação, Ciência e Tecnologia do Rio Grande do Sul (IFRS), Rio Grande, Brazil
3Instituto Federal de Educação, Ciência e Tecnologia do Paraná (IFPR), Porto Seguro, Paranaguá, Brazil
4Departamento de Engenharia Mecânica (DEMEC), Universidade Federal do Rio Grande do Sul (UFRGS), Porto Alegre, Brazil

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Tài liệu tham khảo

C. Beels, P. Troch, K. De Visch, J.P. Kofoed, G. De Backer, Application of the time-dependent mild-slope equations for the simulation of wake effects in the lee of a farm of Wave Dragon wave energy converters. Renew. Energy 35(8), 1644–1661 (2010)

A. Bejan, Shape and Structure, From Engineering to Nature (Cambridge University Press, New York, 2000)

A. Bejan, Design with Constructal Theory (Wiley, Hoboken, 2008)

S.K. Chakrabarti, Handbook of Offshore Engineering (Elsevier, Amsterdam, 2005)

A.F.O. Falcão, Wave energy utilization: a review of the technologies. Renew. Sustain. Energy Rev. 14(3), 899–918 (2010)

FLUENT, Documentation Manual—FLUENT 6.3.16. Ansys, Inc (2007)

M.N. Gomes, E.D. Dos Santos, L.A. Isoldi, L.A.O. Rocha, Análise de Malhas para Geração Numérica de Ondas em Tanques. In Proceedings VII Congresso Nacional de Engenharia Mecânica, São Luiz (2012)

M.N. Gomes, M.F.E. Lara, S.L.P. Iahnke, B.N. Machado, M.M. Goulart, F.M. Seibt, E.D. Dos Santos, L.A. Isoldi, L.A.O. Rocha, Numerical approach of the main physical operational principle of several wave energy converters: oscillating water column, overtopping and submerged plate. Defect Diffus. Forum 362, 115–171 (2015)

M. Horko, CFD optimisation of an oscillating water column energy converter. Master Thesis, School of Mechanical Engineering Faculty of Engineering, Computing and Mathematics, The University of Western (2007)

S.L.P. Iahnke, Estado da Arte e Desenvolvimento de um Modelo de Simulação Numérica para o Princípio de Galgamento. Dissertação de Mestrado em Modelagem Computacional, Universidade Federal do Rio Grande, Rio Grande, RS, Brasil (2010)

J.P. Kofoed, Wave overtopping of marine structures—utilization of wave energy. PhD thesis, Hydraulics & Coastal Engineering Laboratory, Department of Civil Engineering, Aalborg University (2002)

J.P. Kofoed, P. Frigaard, E. Friis-Madsen, H.C. Sørensen, Prototype testing of the wave energy converter Wave Dragon. Renew. Energy 31(2), 181–189 (2006)

Z. Liu, B. Hyun, J. Jin, Numerical prediction for overtopping performance of OWEC. J. Korean Soc. Mar. Environ. Eng. 11(1), 35–41 (2008)

X. Lv, Q. Zou, D. Reeve, Numerical simulation of overflow at vertical weirs using a hybrid level set/VOF method. Adv. Water Resour. 34(10), 1320–1334 (2011)

L. Margheritini, D. Vicinanza, P. Frigaard, SSG wave energy converter: design, reliability and hydraulic performance of an innovative overtopping device. Renew. Energy 34(5), 1371–1380 (2009)

S.V. Patankar, Numerical Heat Transfer and Fluid Flow (McGraw Hill, New York, 1980)

L.A.O. Rocha, S. Lorente, A. Bejan, Constructal Law and the Unifying Principle of Design (Springer, New York, 2013)

E.D. Dos Santos, B.N. Machado, M.M. Zanella, M.N. Gomes, J.A. Souza, L.A. Isoldi, L.A.O. Rocha, Numerical study of the effect of the relative depth on the overtopping wave energy converters according to constructal design. Defect Diffus. Forum 348, 232–244 (2014)

H.K. Versteeg, W. Malalasekera, An Introduction to Computational Fluid Dynamics: The Finite Volume Method (Pearson, New Jersey, 2007)

F. Zabihian, A.S. Fung, Review of marine renewable energies: case study of Iran. Renew. Sustain. Energy Rev. 15(5), 2461–2474 (2011)