Composite gas cylinders – Probabilistic analysis of minimum load cycle requirements

Author:

Mair G.W.ORCID,Becker B.,Duffner E.,Saul H.,Schoppa A.

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference22 articles.

1. Research project “StorHy” – Hydrogen Storage Systems for Automotive Application; Integrated Project; Sustainable development, global change and ecosystems Project No.: 502667.

2. Mair GW. Hydrogen onboard storage – an Insertion of the probabilistic approach into standards & regulations? Presentation ID 220001 at the “International Conference on Hydrogen Safety ICHS”, Pisa: TU; Conference Proceedings 2005 on CD.

3. Research project “HyCube” – HYbrid HYdride HYdrogen pressure storage EU: KIC InnoEnergy Innovation Project KIC-CCAV – 02_2011_LH02_HY3.

4. Research project “HyComp”: Enhanced Design Requirements and Testing Procedures for Composite Cylinders intended for the Safe Storage of Hydrogen; Grant agreement N°256671; FCH-JU-2009-1.

5. Type approval of composite gas cylinders – probabilistic analysis of standards' requirements concerning minimum burst pressure;Mair;Int J Hydrogen Energy,2015

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1. Composite storage systems for compressed hydrogen - systematic improvement of regulations for more attractive storage units;International Journal of Hydrogen Energy;2020-05

2. Monte Carlo simulation and evaluation of burst strength of pressure vessels;Materials Testing;2019-12-02

3. Household LPG Cylinder: Effects of different heads and Impact analysis using ANSYS;Journal of Physics: Conference Series;2019-07-01

4. Introduction;Safety Assessment of Composite Cylinders for Gas Storage by Statistical Methods;2017

5. The Probabilistic Approval Approach (PAA);Safety Assessment of Composite Cylinders for Gas Storage by Statistical Methods;2017

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