Design and Analytical and Numerical Calculation of Pressure Vessel for Hydrogen Gas

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The article deals with of a hydrogen pressure vessel suitable for high pressure of approximately 75MPa. One of the goals is to design a vessel from materials whose strength will meet mechanical requirements a calculated in both analytical and numerical ways. Another objective is the simulation of the design the pressure vessel with regard to safety and weight requirements.

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595-604

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] František Trebuňa, František Šimčák: Odolnosť prvkov mechanických sústav (Endurance of elements of mechanical systems). Košice: Technical University of Košice, Faculty of Mechanical Engineering, 2004., 980 pages, ISBN 978-80-8073-148-9.

DOI: 10.24867/jpe-2021-02-009

Google Scholar

[2] František Trebuňa, Vladimír Jurica, František Šimčák: Pružnosť a pevnosť II. Košice:, SjF TU Košice Faculty of Mechanical Engineering, 2002., 318 pages, ISBN 8071653640.

Google Scholar

[3] František Trebuňa, František Šimčák: Pružnosť, pevnosť a plastickosť v príkladoch (Elasticity, strength and plasticity in examples). Košice: Technical University of Košice, Faculty of Mechanical Engineering, 2005., 451 pages, ISBN 978-80-8073-277-6.

Google Scholar

[4] Ján Paško, Slavko Paulenko, Iveta Kislíková: Pružnosť a pevnosť II, Teória a príklady (Elasticity and strength II. Theory and examples). Faculty of Manufacturing Technologies of the Technical University of Košice with seat in Prešov, 2003., 154 pages, ISBN 978-80-7099-983-7.

Google Scholar

[5] Miroslav Badida, Ervin Lumnitzer, Darina Badidová, Jana Vargová: Environmentalistika-Alternatívne pohony automobilov. SjF TU Košice, 2007, 150s., ISBN 978-80-8073-937-3.

Google Scholar

[6] Miroslav Badida, Juraj Ladomerský, Ružena Kraliková, Lýdia Sobotová, Ladislav Bartko: Základy environmentalistiky. ELFA s. r. o., Košice, 2013, 326s. ISBN 978-802-8086-219-0.

Google Scholar

[7] Marián Hurajt: SjF TU, 2013, 81s.

Google Scholar

[8] N. Takeichi et al, Int. J. Hydrogen Energy, 28, 1121-1129 (2003).

Google Scholar

[9] Khan Md. T. I, Monde M, Setoguchi T. Hydrogen gas filling into an actual tank at high pressure and optimization of its thermal characteristics, J. Thermal Science (2009).

DOI: 10.1007/s11630-009-0235-x

Google Scholar

[10] Monde, M, Mitsutake Y, Woodfield P. L, Maruyama S. Characteristics of heat transfer and temperature rise of hydrogen during Rapid Hydrogen Filling at High Pressure. J. Heat Transfer – Asia Research (2007).

DOI: 10.1002/htj.20140

Google Scholar

[11] http: /www. nissan-global. com/EN/TECHNOLOGY/OVERVIEW/hphsc. html.

Google Scholar