Documents / Report

Defense Intelligence Reference Document Space Access Where We ve Been And Where We Could Go

Defense Intelligence Agency · 56 pages · text from the file's own layer

This Defense Intelligence Reference Document, prepared by the Defense Intelligence Agency and dated 8 March 2010, was produced under the Advanced Aerospace Weapon System Applications (AAWSA) Program. It gives a historical and technical review of how to reach space and return. It covers hypersonic gliders, air-breathing and rocket propulsion, thermodynamics and materials, and launch options. It argues that reliable, schedulable access to low Earth orbit is mainly a hardware and propulsion problem rather than a technology one.

  • p. 2 …FY 2009 Advanced Aerospace uestions pertaining to AAWSA Program Bldg 6000, Washington, under the Defense Intelligence…
  • p. 5 …Among the many advances in space access that will be possible in the future,' the key…
  • p. 10 UNCLASSIFIED/,Sf81il 8ffll!ltllt ~!II!! SHLY McDonnell Aircraft Advanced Design Dept. 1958 to 1967 Mr. H…
  • p. 11 …Louis) Advanced Design organization. The vehicle concept initially conceived in the late 1950s and early 1960s…
  • p. 23 …The photo in Figure 16 is from a Society of Automotive Engineers book titled Advanced Engine…
  • p. 30 …to advance beyond a demonstration tube ended in frustration. Any attempt to open the tube results…
  • p. 32 …Propulsion The photo in Figure 27 is from the Society of Automotive Engineers book, Advanced Engine…
  • p. 38 …These solution areas represent the entire propulsion spectrum, from all-rocket (far right) to advanced air…
  • p. 39 …the launcher can return with payload and fuel residuals onboard), use legacy correlations from McDonnell Advanced…
  • p. 45 …why have we advanced so little (as illustrated in Figure 43)? Like the pioneers' Conestoga wagons…
  • p. 47 …to advance beyond a solitary orbital station with limited capabilities. Figure 44 identifies the elements necessary…
  • p. 56 …6 KOchemann, D., "The Aerodynamic Design of Aircraft - A Detailed Introduction to the Current Aerodynamic Knowledge…
UNCLASSIFIED/ ;<F&lil: 8FFIIItliL ~81!! 8HLY
Russian HOTOL. However, NPO Molnyia provided a unique approach to space access by
decoupling the attachment to a few fixed base operations and opening up space access
to a global clientele, and not from a remote nation, but from Russia. NPO Molnyia's
approach also removed the noise and smoke from a rocket launch to a mundane takeoff
of a turbofan-powered transport.
The upper payload limit of the An-225 is 300 metric tons for the structural mounts on
the top of the fuselage. With a conventional rocket, that limit was reached for the
Russian HOTOL at 5.45 metric tons, not the 7 tons desired. With the addition of an air-
breathing rocket to the initial part of the trajectory and the FDL-7/Model 176
configuration, that limit now is not reached with even an 11-ton payload.
The An-225 has the empennage modified from the An-124 single vertical and horizontal
to an 'H' configuration. This permits the powered hypersonic glider to easily lift off the
top of the vehicle, as the MBB Sanger wind tunnel test demonstrated. A second
modified transport would be modified to carry the liquid hydrogen and liquid air to fuel
the hypersonic vehicle, along with maintenance and support crew. The intent was to
use the automatic launch checkout the author witnessed at Baikanour in 1988, wherein
a Soyuz that arrived on its train carrier at 0500 hours launched carrying a Progress
capsule at 1715 hours the same day. That should make a local launch possible within
hours of arriving at the specified airport launch departure site. Again, we can thank the
Russian design bureaus for arriving with a concept that might be the first economically
viable global launch concept not tied to a fixed geographical launch site that employs
robust, proven carrier aircraft.
As illustrated in Figure 31, a LACE system operating to mach 5.5 that has the same
operational weight empty and ?-metric ton (15,435-lb) payload as an all-rocket reduces
the liftoff gross weight of a HOTOL concept operating from atop a transport by 150
metric tons (330,000 lb). That enables a transport launch platform to carry an orbital
launcher with a functional payload greater than 11 metric tons (24,225 lb). Payloads
greater than 11 tons are determined by the size of the launcher atop the transport.
The launcher can become too large for the transport to maintain stability and control.
The exhaust temperature and therefore velocity of a LACE rocket are less than those of
a hydrogen/oxygen rocket, resulting in a quieter launch and making launch from a
transport more favorable. The LACE-powered vehicle is physically smaller than the
rocket vehicle because the propellant weight and volume are less. The green line in
Figure 31 is the propellant weight for the sized LACE orbital launcher. The important
thing to remember is that the air-breathing rocket motor is the same as the all-rocket
motor; only the propellant mix is different.
28
UNCLASSIFIED/ /F8lil: 8FFI&I.«1k W&liii Ollk¥

Not linked to a story yet.

About this file

Report, from the dia collection. The PDF is mirrored here; the original link is above. 56 pages are in the text index: search them above, or from the library's search.