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Spacecraft Power Systems - MIT OpenCourseWare

Spacecraft Power Systems David W. Miller John Keesee Electrical Power System EPS. Power Energy Power Power Regulation Source Storage Distribution and Control Power Sources Primary Batteries Radioisotope Secondary Battery Thermionic converter Fuel cell Thermoelectric converter Regenerative fuel cell Photovoltaic Chemical dynamic Solar dynamic Nuclear Flywheel Storage Electrodynamics Tethers Propulsion-charged tether Power Source Applicability 100. NUCLEAR THERMIONICS. SOLAR DYNAMIC AND. FUEL CELL PHOTOVOLTAIC. NUCLEAR. LOAD Power (kW). 10. CHEMICAL. DYNAMIC. (APUs) NUCLEAR THERMIONIC. OR SOLAR DYNAMIC. PHOTOVOLTAIC OR. 1 ISTOTOPE - THERMOELECTRIC. PRIMARY MONTHS YEARS. BATTERIES. 1 DAY 10 DAYS 1 2 3 6 12 2 4 6 810. 1 10 100 103 104 105. HOURS. Approximate ranges of application of different Power sources. Design Space for RTGs 107. 106. 105.

Silver zinc Lithium sulfur dioxide Lithium carbon monofluoride Lithium thionyl chloride Energy density (W h/kg) 130 220 210 275 Energy density (W h/dm3) 360 300 320 340 Op Temp (deg C) 0-40 -50 – 75 ? – 82 -40 – 70 Storage Temp (deg C) 0 –30 0 –50 0 –10 0 –30 Storage Life 30-90 days wet, 5 yr dry 10 yr 2 yr 5 yr Open circuit ...

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  Lithium, Mit opencourseware, Opencourseware, Thionyl, Spacecraft, Lithium thionyl

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