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- W4312912106 abstract "Owing to the great requirement of renewable energy sources, the lifetime enhancement based study on renewable energy system and its components have been emerged recently. This investigation deals the structural optimization on Gravitational Vortex Hydropower’s [GVHPs] Rotor through Hydro Structural Simulation. The important selection factors involved in this structural optimization are high stiffed material under Hydrodynamic load and low equivalent stress induction on rotor body. The conceptual design of Hydro-Rotor is modeled with the help of an advanced modeling tool, i.e., CATIA. Based on the GVHP’s external design, the boundary of the GVHP’s rotor is constructed and thereafter modeled. The hydrodynamic fluid analysis is computed in ANSYS Fluent under the real-time working conditions of river. The hydrodynamic impact load on Hydro-Rotor is predicted and transferred through the help of one-way coupling HSI approach. With the help of Hydro-Structural Simulation, the structural output parameters of GVHP’s rotor are computed. The predominant lightweight materials such as Alloys and Composite materials are underwent the HSI simulation. Based on the aforesaid selection factors, the suitable lightweight cum stiffed material is shortlisted for GVHP’s rotor. Thus, the good cum high lifetime based structural set-up is provided to the GVHP based renewable energy system." @default.
- W4312912106 created "2023-01-05" @default.
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- W4312912106 date "2022-01-01" @default.
- W4312912106 modified "2023-10-03" @default.
- W4312912106 title "Structural optimization for gravitational vortex hydropower’s rotor through hydro-structural interaction [HSI] analysis" @default.
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- W4312912106 doi "https://doi.org/10.1063/5.0108342" @default.
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