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Displaying 1—10 of 1000 matches for query "Radioisotope_Thermoelectric_Generators" retrieved in 0.001 sec with these stats:

  • "radioisotop" found 133 times in 89 documents
  • "thermoelectr" found 83 times in 61 documents
  • "generat" found 2670 times in 1806 documents



... .314 '''Number of Pages''' - 5 Abstract A new generation of radioisotope thermoelectrical generator is proposed for very long space exploration missions. The Advanced Subcritical Assistance Radioisotope Thermoelectric Generator (ASA-RTG) amplify the power from natural decay of ... RTG, and could fit within the type of Radioisotope Thermoelectric Generator developed for NASA space missions as the Multi-Mission Radioisotope Thermoelectric Generator (MMRTG) and the Advanced Stirling Radioisotope Generator (ASRG). '''To BUY this paper click http://www ...
... Volume 64 64 '''Page ''' - 63-69 '''Year''' - 2011 '''Keywords''' - Advanced Stirling Radioisotope Generator (ASRG), Stirling Radioisotope Generator (SRG-550), Advanced Radioisotope Thermoelectric Generator (ARTG), radioisotope power, Radioisotope Electric Propulsion (REP) '''JBIS Reference Code ''' - 2011.64.63 '''Number of Pages''' - 7 Abstract A joint NASA GRC/JPL design study was performed for the NASA Radioisotope Power ...
... the British Interplanetary Society for Volume 64 64 '''Page ''' - 49-53 '''Year''' - 2011 '''Keywords''' - Americium, radioisotope, 238Pu, 241Am, RPS, RTG, RHU '''JBIS Reference Code ''' - 2011.64.49 '''Number of Pages''' - 5 ... must also have suitable thermal properties to ensure maximum energy conversion efficiencies when integrated into radioisotope thermoelectric generators over the required mission durations. In addition, the radiation dose must be low enough for ...
... ''' - 2010 '''Keywords''' - Radioisotope power, Stirling Generator, Convective Heat transfer, Titan '''JBIS Reference Code ''' - 2010.63.9 '''Number of Pages''' - 6 Abstract Like other energy conversion devices, the performance of Radioisotope Power Systems (RPSs ... endoreversible heat engine with a specified heat sink) for the performance of an Advanced Stirling Radioisotope Generator (ASRG) in the dense, cold atmosphere of Titan. We find the power output of an ...
... of the British Interplanetary Society for Volume 64 64 '''Page ''' - 38-42 '''Year''' - 2011 '''Keywords''' - Radioisotope, Mars, ascent vehicle, rocket, propulsion, in-situ propellant, sample return '''JBIS Reference Code ''' - 2011.64 ... methods of housing radioisotopes at the Center for Space Nuclear Research have led to the concept of a radioisotope thermal rocket--a rocket powered by the accumulated heat of radioisotope decay. Heat energy ...
... Interplanetary Society for Volume 60 60 '''Page ''' - 350-357 '''Year''' - 2007 '''Keywords''' - Space infrastructure, requirement generation, stakeholder input '''JBIS Reference Code ''' - 2007.60.350 '''Number of Pages''' - 8 Abstract Despite heavy ... requirements. This argument is supported by both a consideration of the history of the requirement generation phase of past space infrastructure projects, in particular the Space Shuttle, and an analysis of ...
Two approaches are solar power generation and nuclear power generation. Solar power is attractive because it comes free from the Sun, whereas nuclear power must be generated using some sort of reactor and fuels that are brought along in the spacecraft. The apparatus for generating nuclear energy would likely be more compact and lighter than that for solar power but ...
... inspiration and opening the doors of opportunity, we will see the growth of a new generation of space adventurers. We simply need to put our minds to it and make it ... getting involved in future space initiatives. This is particularly important when considering how to inspire generations of future space workers. For students interested in business, understanding how to use space technology ...
There are always more generators—fuel cells and solar cells—than we need as backup units. The Space ...
... the British Interplanetary Society for Volume 60 60 '''Page ''' - 358-366 '''Year''' - 2007 '''Keywords''' - Requirement generation, space infrastructure, Excalibur, Multi-role capsule, crew space transportation '''JBIS Reference Code ''' - 2007.60.358 '''Number of Pages''' - 9 Abstract A "function based" requirement generation process has been proposed as a superior methodology to the conventional "mission based" approach when ...

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