Uploaded October 2024 | Updated September 2026, 1 week ago
A Space Shuttle Concept
The experts at OKB-1, pioneers behind the Soyuz capsule, were decidedly unimpressed with the winged design of the US shuttle. Their extensive aerodynamic studies, painstakingly conducted during the Soyuz development, revealed daunting weight penalties and troublesome thermal control issues inherent to any winged craft. Instead, their research illuminated a compelling alternative: a lifting body shape capable of executing high angles of bank at hypersonic speeds, which could almost rival winged designs in terms of cross range efficiency. They firmly believed that the parachute and retrorocket landing techniques perfected for Soyuz could be effectively scaled up for a larger spacecraft.
Consequently, the preferred design emerging in 1974 took the form of an unwinged spacecraft. This innovative vehicle featured a conical crew cabin at the forefront, a cylindrical payload section in the middle, and a rear cylindrical section housing the engines necessary for orbital maneuvers. The MTKVA was set to be launched into the cosmos by the Vulkan rocket, and after fulfilling its mission, it would embark on a meticulously controlled re-entry. Utilizing a hypersonic lift-to-drag ratio of 1.0, it could perform expansive cross-range maneuvers, enabling recovery on Soviet territory from nearly any orbit.
As it approached its landing zone, the MTKVA would glide gracefully at low subsonic speeds. The final descent would leverage parachutes for initial deceleration, transitioning to a soft vertical landing facilitated by retrorockets and skid gear. The fusion of these innovative designs and techniques promised a new era of space exploration—one that would challenge conventional wisdom and reshape the future of spacecraft design.
#spaceshuttle #roscosmos
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A Space Shuttle Concept
The experts at OKB-1, pioneers behind the Soyuz capsule, were decidedly unimpressed with the winged design of the US shuttle. Their extensive aerodynamic studies, painstakingly conducted during the Soyuz development, revealed daunting weight penalties and troublesome thermal control issues inherent to any winged craft. Instead, their research illuminated a compelling alternative: a lifting body shape capable of executing high angles of bank at hypersonic speeds, which could almost rival winged designs in terms of cross range efficiency. They firmly believed that the parachute and retrorocket landing techniques perfected for Soyuz could be effectively scaled up for a larger spacecraft.
Consequently, the preferred design emerging in 1974 took the form of an unwinged spacecraft. This innovative vehicle featured a conical crew cabin at the forefront, a cylindrical payload section in the middle, and a rear cylindrical section housing the engines necessary for orbital maneuvers. The MTKVA was set to be launched into the cosmos by the Vulkan rocket, and after fulfilling its mission, it would embark on a meticulously controlled re-entry. Utilizing a hypersonic lift-to-drag ratio of 1.0, it could perform expansive cross-range maneuvers, enabling recovery on Soviet territory from nearly any orbit.
As it approached its landing zone, the MTKVA would glide gracefully at low subsonic speeds. The final descent would leverage parachutes for initial deceleration, transitioning to a soft vertical landing facilitated by retrorockets and skid gear. The fusion of these innovative designs and techniques promised a new era of space exploration—one that would challenge conventional wisdom and reshape the future of spacecraft design.
#spaceshuttle #roscosmos
Royalty Free Music from Tunetank.com
Track: Windwalker by Victor Cooper
tunetank.com/track/3891-windwalker



![Space Elevator
A space elevator, also referred to as a space bridge, star ladder, and orbital lift, is a proposed type of planet-to-space transportation system,] often depicted in science fiction. The main component would be a cable (also called a tether) anchored to the surface and extending into space. An Earth-based space elevator would consist of a cable with one end attached to the surface near the equator and the other end attached to a counterweight in space beyond geostationary orbit (35,786 km altitude). The competing forces of gravity, which is stronger at the lower end, and the upward centrifugal force, which is stronger at the upper end, would result in the cable being held up, under tension, and stationary over a single position on Earth. With the tether deployed, climbers (crawlers) could repeatedly climb up and down the tether by mechanical means, releasing their cargo to and from orbit. The design would permit vehicles to travel directly between a planetary surface, such as the Earths, and orbit, without the use of large rockets. Space Elevator](https://i.ytimg.com/vi/WQBZIIpBFdk/mqdefault.jpg)




![Boeing Dreams
The Boeing doublebody, winged booster, known as Model 832-40
made use of a Dyna-Soar glider as the crew module and escape capsule.
Powered by twin clusters made up of 4 Rocketdyne J-2B rocket engines for vertical boost and 3 hydrogen-fueled, General Electric MF239C Turbofan engines for horizontal flight and landing. Designed for use with a variety of upper stages
Source: https://media.defense.gov/2021/Apr/06/2002615086/-1/-1/0/RECOVERABLE%20BOOSTERS.PDF
Song: Max Brhon - Cyberpunk [NCS Release]
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#boeing #nasa #ksp Boeing Dreams](https://i.ytimg.com/vi/YeDlA4AYOjw/mqdefault.jpg)

