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Information Journal Paper

Title

MODELING OF A NEW SIMPLE SCHEME TO ACHIEVE ENERGY FROM OCEAN WAVES

Pages

  11-17

Abstract

RENEWABLE ENERGY supplies are of steadily increasing importance in all countries. Most governments have substantial plans directed towards commercial development from which wave energy is one of them that has attracted many researchers. In this work, a new mechanism proposed by the authors has been compared with the conventional floating devices that has been utilized to absorb energy from water and convert it to kinetic energy through generators and consequently to electrical energy. The mechanism proposed is simple in structure. In this method, the floating device travels in a circular trend and converts the kinetic energy to electrical energy. The result of this work reveals that the proposed mechanism travels a longer distance compared to conventional process which gains more kinetic energy. To model the mechanism, the momentum and energy equations has been derived using initial and boundary conditions. The results also demonstrate that the proposed technique could theoretically achieve 37 percent more energy compared to the conventional method and its efficiency could be improved by as much as 17 percent. It is also worth mention that the mechanism utilized in this work is simple and does not require high- tech expertise.

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    APA: Copy

    SEGHATOLESLAMI, N., & KARBASIAN, H.R.. (2013). MODELING OF A NEW SIMPLE SCHEME TO ACHIEVE ENERGY FROM OCEAN WAVES. IRANIAN CHEMICAL ENGINEERING JOURNAL, 12(69), 11-17. SID. https://sid.ir/paper/150682/en

    Vancouver: Copy

    SEGHATOLESLAMI N., KARBASIAN H.R.. MODELING OF A NEW SIMPLE SCHEME TO ACHIEVE ENERGY FROM OCEAN WAVES. IRANIAN CHEMICAL ENGINEERING JOURNAL[Internet]. 2013;12(69):11-17. Available from: https://sid.ir/paper/150682/en

    IEEE: Copy

    N. SEGHATOLESLAMI, and H.R. KARBASIAN, “MODELING OF A NEW SIMPLE SCHEME TO ACHIEVE ENERGY FROM OCEAN WAVES,” IRANIAN CHEMICAL ENGINEERING JOURNAL, vol. 12, no. 69, pp. 11–17, 2013, [Online]. Available: https://sid.ir/paper/150682/en

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