Application of the TNO multi-energy and Baker-Strehlow-Tang methods to predict hydrogen explosion effects from small-scale experiments

Author:

Rocourt X.ORCID,Sochet I.,Pellegrinelli B.

Funder

French National Research Agency

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Management Science and Operations Research,Energy Engineering and Power Technology,Safety, Risk, Reliability and Quality,General Chemical Engineering,Food Science,Control and Systems Engineering

Reference25 articles.

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2. Risk-based quantitative method for determining blast-resistant and defense loads of petrochemical buildings;Bai;J. Loss Prev. Process. Ind.,2021

3. Vapor cloud explosion analysis;Baker;Process Saf. Prog.,1996

4. Lehrbuch der Ballistik;Cranz,1926

5. BARPPRO - Dimensionnement des BARrières Physiques de PROtection contre la propagation d’ondes de souffles consécutives à une explosion, Déflagration : Etude expérimentale à moyenne échelle, Rapport d’étude;Daubech,2014

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1. The prediction model for explosion overpressure in unconfined hydrogen cloud explosion;Journal of Loss Prevention in the Process Industries;2024-04

2. Risk-based optimization of emergency response systems for accidental gas leakage in utility tunnels;Reliability Engineering & System Safety;2024-04

3. Research on gas diffusion and explosion characteristics in a ship engine room;International Journal of Hydrogen Energy;2024-03

4. Consequence Analysis of An Industrial Accident at a Fuel Station;Gazi University Journal of Science Part A: Engineering and Innovation;2023-12-31

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