Difference between revisions of "liquid hydrogen"

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'''Liquid Hydrogen''' is a common fuel for rocket applications. In the aerospace industry, its name is often abbreviated to LH2. Hydrogen at normal temperature and pressure is a gas and to exist as a liquid must be compressed and cooled to a low temperature, 208 K (−423°F). Once liquified it can only be maintained as a liquid in thermally insulated containers.
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'''Liquid Hydrogen''' is a common fuel for rocket applications. In the aerospace industry, its name is often abbreviated to LH2. Hydrogen at normal temperature and pressure is a gas and to exist as a liquid must be compressed and cooled to a low temperature, 208 K (−423°F). Once liquified it can only be maintained as a liquid in thermally insulated ([[cryogenic]]) containers.
  
 
Liquid hydrogen has a very low density of 70.8 kg/m³ (at 20 K), so storage tanks for it have to be quite large.
 
Liquid hydrogen has a very low density of 70.8 kg/m³ (at 20 K), so storage tanks for it have to be quite large.
  
In rocket engines, liquid hydrogen is frequently used as a coolant for the engine nozzle and [[combustion chamber]] before being mixed with the oxidizer and burned. This is referred to as [[Regenerative cooling ]].
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In [[rocket engines]], liquid hydrogen is frequently used as a coolant for the engine nozzle and [[combustion chamber]] before being mixed with the oxidizer and burned. This is referred to as [[Regenerative cooling ]].
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[[Category:Glossary]]
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{{Stub}}

Revision as of 00:52, 21 April 2006

Liquid Hydrogen is a common fuel for rocket applications. In the aerospace industry, its name is often abbreviated to LH2. Hydrogen at normal temperature and pressure is a gas and to exist as a liquid must be compressed and cooled to a low temperature, 208 K (−423°F). Once liquified it can only be maintained as a liquid in thermally insulated (cryogenic) containers.

Liquid hydrogen has a very low density of 70.8 kg/m³ (at 20 K), so storage tanks for it have to be quite large.

In rocket engines, liquid hydrogen is frequently used as a coolant for the engine nozzle and combustion chamber before being mixed with the oxidizer and burned. This is referred to as Regenerative cooling .

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