The functions of a regeneratively-cooled nozzle are to (1) expand combustion gases to increase exhaust gas velocity while, (2) maintaining adequate wall temperatures to prevent structural failure, and (3) transfer heat from the hot gases to the coolant fluid to promote injector performance and stability. Regeneratively-cooled nozzles are grouped into two categories: tube-wall nozzles and channel wall nozzles. A channel wall nozzle is designed with an internal liner containing a series of integral coolant channels that are closed out with an external jacket. Manifolds are attached at each end of the nozzle to distribute coolant to and away from the channels. A variety of manufacturing techniques have been explored for channel wall nozzles, i...
NASA and industry partners are working towards fabrication process development to reduce costs and s...
Empirical heat transfer values and thermodynamic models were verified and expanded for a uni-element...
A conjugate heat transfer computational fluid dynamics (CFD) model to describe regenerative cooling ...
A regeneratively-cooled nozzle for liquid rocket engine applications is a significant cost of the ov...
Regeneratively cooled channel wall nozzles incorporate a series of integral coolant channels to cont...
A regeneratively-cooled nozzle is a critical component for expansion of the hot gases to enable high...
Additive manufacturing (AM) is being investigated at NASA and across much of the rocket propulsion i...
The nozzle is a major component of a rocket engine, having a significant influence on the overall en...
Production of regeneratively cooled rocket thrust chambers by removable tooling and subsequent hot i...
NASA and industry partners are working towards fabrication process development to reduce costs and s...
A grooved capstrip, to straddle the metal edges of regenerative cooling channels, increases the stre...
Heat exchangers for use in propulsion applications are very critical components because they must be...
Heat exchangers for use in propulsion applications are very critical components because they must be...
Electroforming has proven to be an excellent fabrication method for building liquid rocket regenerat...
Traditional rocket engines require the use of cooling methods in order to prevent system failure thr...
NASA and industry partners are working towards fabrication process development to reduce costs and s...
Empirical heat transfer values and thermodynamic models were verified and expanded for a uni-element...
A conjugate heat transfer computational fluid dynamics (CFD) model to describe regenerative cooling ...
A regeneratively-cooled nozzle for liquid rocket engine applications is a significant cost of the ov...
Regeneratively cooled channel wall nozzles incorporate a series of integral coolant channels to cont...
A regeneratively-cooled nozzle is a critical component for expansion of the hot gases to enable high...
Additive manufacturing (AM) is being investigated at NASA and across much of the rocket propulsion i...
The nozzle is a major component of a rocket engine, having a significant influence on the overall en...
Production of regeneratively cooled rocket thrust chambers by removable tooling and subsequent hot i...
NASA and industry partners are working towards fabrication process development to reduce costs and s...
A grooved capstrip, to straddle the metal edges of regenerative cooling channels, increases the stre...
Heat exchangers for use in propulsion applications are very critical components because they must be...
Heat exchangers for use in propulsion applications are very critical components because they must be...
Electroforming has proven to be an excellent fabrication method for building liquid rocket regenerat...
Traditional rocket engines require the use of cooling methods in order to prevent system failure thr...
NASA and industry partners are working towards fabrication process development to reduce costs and s...
Empirical heat transfer values and thermodynamic models were verified and expanded for a uni-element...
A conjugate heat transfer computational fluid dynamics (CFD) model to describe regenerative cooling ...