Life issues relating to a sodium heat pipe heat transport system are described. The heat pipe system provides heat, at a temperature of 1050 K, to a 50 kWe Stirling engine/linear alternator power converter called the Stirling Space Power Converter (SSPC). The converter is being developed under a National Aeronautics and Space Administration program. Since corrosion of heat pipe materials in contact with sodium can impact the life of the heat pipe, a literature review of sodium corrosion processes was performed. It was found that the impurity reactions, primarily oxygen, and dissolution of alloy elements were the two corrosion process likely to be operative in the heat pipe. Approaches that are being taken to minimize these corrosion process...
The possibilities of producing heat pipes and, especially, the necessary capillary structures are di...
Failure analysis was conducted on a heat pipe from a Stirling Engine test rig which was designed to ...
This final report presents the conceptual design of a liquid fueled external heating system (EHS) an...
High-temperature heat pipes are being evaluated for use in energy conversion applications such as fu...
High-temperature heat pipes are being evaluated for use in energy conversion applications such as fu...
Research is underway to develop a 75-kW heat pipe to transfer solar energy from the focus of a parab...
Over the past decade, Sandia National Laboratories has been involved in the development of receivers...
The Solar Thermal Program at Sandia supports work developing dish/Stirling systems to convert solar ...
NASA has identified the Stirling power converter as a prime candidate for the next generation power ...
The principal objective of this Phase 2 SBIR program was to develop and demonstrate a practically in...
The use of liquid sodium as a heat transfer fluid has shown great promise and application in nuclear...
The conceptual design of a free-piston Stirling Space Engine (SSE) intended for space power applicat...
The Heat Pipe Stirling Engine (HP-1000), a free-piston Stirling engine incorporating three heat exch...
To support development and hardware-based testing of various space reactor concepts, the Early Fligh...
As part of an effort to develop reliable, cost effective spacecraft thermal control heat pipes, life...
The possibilities of producing heat pipes and, especially, the necessary capillary structures are di...
Failure analysis was conducted on a heat pipe from a Stirling Engine test rig which was designed to ...
This final report presents the conceptual design of a liquid fueled external heating system (EHS) an...
High-temperature heat pipes are being evaluated for use in energy conversion applications such as fu...
High-temperature heat pipes are being evaluated for use in energy conversion applications such as fu...
Research is underway to develop a 75-kW heat pipe to transfer solar energy from the focus of a parab...
Over the past decade, Sandia National Laboratories has been involved in the development of receivers...
The Solar Thermal Program at Sandia supports work developing dish/Stirling systems to convert solar ...
NASA has identified the Stirling power converter as a prime candidate for the next generation power ...
The principal objective of this Phase 2 SBIR program was to develop and demonstrate a practically in...
The use of liquid sodium as a heat transfer fluid has shown great promise and application in nuclear...
The conceptual design of a free-piston Stirling Space Engine (SSE) intended for space power applicat...
The Heat Pipe Stirling Engine (HP-1000), a free-piston Stirling engine incorporating three heat exch...
To support development and hardware-based testing of various space reactor concepts, the Early Fligh...
As part of an effort to develop reliable, cost effective spacecraft thermal control heat pipes, life...
The possibilities of producing heat pipes and, especially, the necessary capillary structures are di...
Failure analysis was conducted on a heat pipe from a Stirling Engine test rig which was designed to ...
This final report presents the conceptual design of a liquid fueled external heating system (EHS) an...