Documents / Report
This unclassified Defense Intelligence Reference Document from the Defense Intelligence Agency is dated 2 March 2010. It was produced in FY 2009 under the Advanced Aerospace Weapon System Applications (AAWSA) Program. The report reviews work on using positrons as aerospace fuel. It covers air-breathing turbojet and ramjet engines, unmanned aircraft, missiles, single-stage reusable vehicles, positron rockets and a crewed Mars mission, along with how positrons could be produced and stored. It concludes that a first positron-powered flight around the globe could be possible within 10 years.
UNCLASSIFIED/ ,'F811. 8FFll!l*L 1!1!11! t!IIU:!Y ,000 !cc1530sec v = 7600 msec.140 km t .. 146sec M = 1 8. 10000m 0, 1 J I t=1200sec M = 8, 38 km I I ---- J I I Time ''1500 SC'C Figure 9. Positron SSRV Flight Profile (courtesy Positronics Research LLC) 23 1 = 1650 sec 300km The SSRV takes off horizontally (Figure 9) from Edwards Air Force Base, accelerates to mach 1.8 as a turbojet, and then goes to the ramjet mode. At mach 8 the rocket is ignited and takes the vehicle into LEO. 24 The positron mass budget for a 60,500-kg dry mass for ascension to LEO is 86.9 mg (Table 3). Table 3. Total Positron Requirement for SSRV With a Dry Mass of 60,500 kg 25 Mission Mode Turbojet - Launch Ramjet 10% margin (turbojet mode upon landing, inclination changes, etc.) TOTAL Mass Of e! 2.5 mg 76.5 mg 7.9 mg 86.9 mg An artist's rendition of the SSRV is provided in Figure 10. 10 UNCLASSIFIED/ ,'F811. 8FFll!l*L 1!181! 811L¥
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 35 pages are in the text index: search them above, or from the library's search.