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ROTOR’S CAPACITY OF A FES (FLYWHEEL ENERGY STORAGE) SYSTEM FOR DIFFERENT MATERIALS USING ANALYTICAL STRESS CALCULATION

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MAY 2018   -  Volume: 93 -  Pages: 314-320

DOI:

https://doi.org/10.6036/8574

Authors:

EDUARDO CORRAL ABAD - MARIA JESUS GOMEZ GARCIA - IGNACIO SPALLA VALENCIANO - JUAN CARLOS GARCIA PRADA

Disciplines:

  • Mechanics (MEDIDAS DE PROPIEDADES DINAMICAS )

Downloads:   278

Cites in Web of Science:  1

How to cite this paper:  
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Received Date :   6 September 2017

Reviewing Date :   6 September 2017

Accepted Date :   7 March 2018


Key words:
Flyweheel energy storage rotors FES stress, Rotor, Acumulador Cinético, Tensiones, Materiales Compuestos.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

Nowadays, the energy storage is a fundamental aspect and there exists so many ways to do it. One of these ways, is the energy storage associated to rotational kinetic energy, better known like Flywheel Energy Storage (FES). FES is a complex system formed by different subsystems, and the most important of these subsystems is the rotor because it´s the element that enabled performs the function of storing energy. Rotor’s can be classified into two types: the rotors made with metal and the rotors made with composites. This article exposes a comparison between different settings of rotors to demonstrate the advantage of the use of composites comparing with the use of metals, especially in terms of energy density.

Key Words: Rotor; Flywheel Energy Storage; Stress; Composites

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