2018•Unpublished venueRequires access

Investigation and Comparison of Hydrogen and Methane Explosive Characteristics

Giuseppe Cimmino

Open publisher page 0 citations

Abstract

Hydrogen and Methane have the capability to form explosive mixtures with oxygen and air which can lead to catastrophic accidents. For this reason, explosion hazards associated with the use, storage and transport of gaseous/liquid Hydrogen and Methane are a very serious problem that does not concern only the aerospace field but, because of the increasing everyday uses of these substances, also the industrial and domestic environments. The purpose of this work is to carry out a detailed investigation on the parameters and the mechanisms governing the explosion phenomena through an accurate theoretical study and a research work on the current knowledge and data. Then a comparison of these outcomes for hydrogen and methane different mixtures is shown. Particular attention is paid to the theory of detonation waves and their main features in terms of pressure, temperature and propagation velocity. Finally a brief overwiew of some experimental tests, undertaken by NASA in order to simulate some possible launch failure scenarios involving cryogenic liquid propellants, is presented.

About this research paper

What this paper is about

Hydrogen and Methane have the capability to form explosive mixtures with oxygen and air which can lead to catastrophic accidents. For this reason, explosion hazards associated with the use, storage and transport of gaseous/liquid Hydrogen and Methane are a very serious problem that does not concern only the aerospace field but, because of the increasing everyday uses of these substances, also the industrial and domestic environments. The purpose of this work is to carry out a detailed investigation on the parameters and the mechanisms governing the explosion phenomena through an accurate theoretical study and a research work on the current knowledge and data. Then a comparison of these outcomes for hydrogen and methane different mixtures is shown. Particular attention is paid to the theory of detonation waves and their main features in terms of pressure, temperature and propagation velocity. Finally a brief overwiew of some experimental tests, undertaken by NASA in order to simulate some possible launch failure scenarios involving cryogenic liquid propellants, is presented.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Hydrogen and Methane have the capability to form explosive mixtures with oxygen and air which can lead to catastrophic accidents. For this reason, explosion hazards associated with the use, storage and transport of gaseous/liquid Hydrogen and Methane are a very serious problem that does not concern only the aerospace field but, because of the increasing everyday uses of these substances, also the industrial and domestic environments. The purpose of this work is to carry out a detailed investigation on the parameters and the mechanisms governing the explosion phenomena through an accurate theoretical study and a research work on the current knowledge and data. Then a comparison of these outcomes for hydrogen and methane different mixtures is shown. Particular attention is paid to the theory of detonation waves and their main features in terms of pressure, temperature and propagation velocity. Finally a brief overwiew of some experimental tests, undertaken by NASA in order to simulate some possible launch failure scenarios involving cryogenic liquid propellants, is presented.

Key concepts: Explosive material, Methane, Detonation, Propellant, Work (physics), Hydrogen, Liquid hydrogen, Aerospace

Related papers

Back to paper searchBrowse research topicsOriginal source
Investigation and Comparison of Hydrogen and Methane Explosive Characteristics — Research Paper | ScholarLens