Showing posts with label high. Show all posts
Showing posts with label high. Show all posts

Wednesday, September 25, 2019

Space1 Rocket Retractor

Space Shuttle Discovery Rocket Boosters floating in the ocean 150 miles offshore northeast of Cape Canaveral are wrapped in capturing, towing, and holding tethers. Both boosters were towed back to Hangar AF at the Cape Canaveral Air Force Station.
SPACE1 Rocket Retractor
Humanoido invents the High Tensile Nano Tube Rocket Retractor

The Rocket Retractor maintains physical connection with the rocket after launching, and serves as a simple means to retract and recover the rocket without loss.

The Rocket Retractor is a mechanical automatic dispensing spool that operates by gravity, catchment, and the positional connection to the Earth. It can be used over and over again. As the rocket is launched, the Rocket Retractor automatically unrolls an extremely long length of almost weightless carbon-like high tech high tensile nano constructed microscopic tether. After the rocket returns to Earth, the tether is automatically rewound on a spool core and ends in the result of rocket retrieval. The (RR) is currently best suited for tests and to ensure there are no lost rocket components.

The repeatable RR works especially well in the ocean where rocket retrieval is as simple as the comparison of reeling in a fish. As the SPACE1 Safety Rocket has natural tank oceanic buoyancy, the system works effectively.

Sunday, June 16, 2019

Space1 Moon Landing Made Simple

The Moon is only 240k miles distant. A simple high
technology manned mission to land, look around,
and return immediately to the Earth is less costly,
and should be ready to go for one SPACE1 astronaut 
to land on the Moon in 2019. Image by Humanoido
Moon Landing Made Simple...
No Time to Befriend Moon Creatures

Breaking News!
Tuesday, March 26, 2019
by Humanoido

SPACE1 and Lunar Landing Mission Designer Humanoido are cutting Moon landing mission costs and mission complexity with some innovative ideas to go to the moon as soon as possible. 
No more waiting another ten
years to go there.

This will make a more simple Moon landing. The ideas are to cut complexity making the entire mission more affordable. Just one Astronaut will fast track to the Moon, immediately trek down to the rugged lunar surface without losing a single moment of time, look around for a while at smooth regolith or inside a crater floor, and return home.

A special spacecraft will be constructed with the highest technology components that we have available. These parts, modules, and components are already on hand at SPACE1 Industries and will not need ordering or have any order delays. There is a construction process required to build devices and retrofit our spacecraft for the mission. The soonest the Lunar Landing Mission can take off is in 2019 when there's a perfect window of opportunity.

The process will have one astronaut in one craft going directly to the Moon from the Earth, landing, looking around, and expeditiously returning to the Earth - not staying overnight. This avoids the complexities of many things using this process. For the spacecraft, we are using a tested and sophisticated mobile app that can navigate and provide a window into space. It calculates the lunar orbit, Moon positions, star navigation and flight details. Another large part of the mission will be a built-for-space camcorder to record the mission for posterity and having a record of the historic details for SPACE1. The device will have an automatic light level circuit to compensate for the changing lunar illumination based on changes in lighting due to the sun's orbital position and Earth Shine - the light that reflects from the Earth.

* No need to worry about extended radiation
* No long term power source needed
* Can operate on standard sourced nuclear energy
* No extended oven-like temperatures and super freezing conditions
* Advanced walking Moon spacesuit not needed
* Supplies such as food, oxygen, water can be reduced
* The mission will be ready much sooner
* Ideal flight path dynamics happen in 2019
* Fewer parts & components reduce complexity
* Reduced complexity is more reliable
* More simple mission is easier to implement
* Fewer parts & components cost less
* More simple to send one Astronaut

Saturday, April 13, 2019

Space1 2019 Year of Manned Space Launches

2019 Year of Manned Space Launches
After SPACE1 Industries was founded in 2014, a stretch of intensive rocket and space program development took place over a five year time span.

Suddenly in 2019, the EM Safety Rocket was born and space flight took root, becoming a safe, popular and a routine path into space.

The private space industries goal was safe manned space flight by 2020, for a perfect vision to the future. However, SPACE1 made its goal a full year sooner in 2019 with a precursor schedule leading to dozens and dozens of space rocket launches. Astronaut Humanoido was trained and ready, having honed his astronaut space skills in China with 24 space launches on leased Chinese spacecraft. While rocket development on Rocket X continued, Humanoido invented the EM Safety Rocket which took over the accelerated the path into space by a hundred fold. Celebrating lofty goals achieved only a half decade later paves the path towards greater goals by 2020. Space1 has put its aggressive and ambitious goal schedule and initial sights on the Moon with the following guidelines and a 2020 vision:

SPACE1 2020 Vision High Technology Lunar Rocket Program
* Commemorating March 24th Moon Impact Mission
* Lunar Polar Orbital Mission
* Mission to the Moon's Far Side
* Moon Landing

According to Humanoido, SPACE1 Founder and Director, if all goes according to schedule, SPACE1 could begin rocket launches towards the Moon in mid 2019 and present a high technology landing in 2020.

Sunday, March 17, 2019

Space1 Faster Than a Speeding Bullet

Faster Than Bullets
The EM drive spacecraft is a special kind of space vehicle capable of high power electromagnetic particle radiative travel at speeds faster than a bullet. Exactly how much faster?

At top speed, the EM spacecraft is 232,500 times faster than a speeding bullet. While the new EM spacecraft is ultimately fast, no trips to moons or planets are completed at this time to verify the speed. If they were, here are some rough calculated flight times to get to planets in the Solar System. Planets vary in Earth Sun distance, hence the min and max calculated values.

        AU             Minutes
Planet  Max    Min     Max    Min
Mercury  1.39   0.61    11.56   5.07
Venus    1.72   0.28    14.30   2.33
Mars     2.52   0.52    20.96   4.32
Jupiter  6.20   4.20    51.56  34.93
Saturn  10.54   8.54    87.66  71.02
Uranus  20.22  18.22   168.16 151.53
Neptune 31.06  29.06   258.32 241.68