Awards & Nominations
AEROLITH AMANDAS has received the following awards and nominations. Way to go!

AEROLITH AMANDAS has received the following awards and nominations. Way to go!
Exploring the surface of Venus is difficult because of the intense heat and crushing air pressure. Our project plan is to create an Hexagon sun power solar with the name Aerolith Amandas. SunPower solar is so key to NASA’s research efforts. When no one is around to refuel their tools, SunPower solar panels are there. In 30 mph winds and below-zero temperatures, the SunPower panels on GROVER are collecting and transforming sunlight into clean, renewable energy.Modern Technology has removed much of the space mystery, but there is still more to discover.
Exploring the surface of Venus is difficult because of the intense heat and crushing air pressure. However, currently available batteries cannot operate in the extreme environment on the surface of Venus. The temperature is extremely hot (~460 C) and the high-pressure atmosphere (~93 bar) contains caustic chemicals (SO2, HCl, HF).
My team explore how Nasa solve general energy problems in various projects.
As the International Space Station orbits Earth, its four pairs of solar arrays soak up the sun’s energy to provide electrical power for the numerous research investigations,
conducted every day, as well as the continued operations of the orbiting platform.
More over researchers at NASA Glenn Research Center in Cleveland. The campus houses a center for photovoltaic research used in space energy production, among a multitude of other research projects. Altogether, more than 100 buildings occupy 350 acres beyond the NASA-emblazoned hanger visible from Cleveland Hopkins International Airport
Also through the deep exploration of solar space library , we provide as solution the
Hexagon sun power solar .
Space Solar Power can fulfill the promise of clean, safe, renewable, affordable energy
reliably delivered where and when it is needed.
Space Solar Power is a broad term for power generation and distribution systems that
collects the Sun’s energy in space and delivers it to nearly any point on Earth where the
energy is required. Space Solar Power systems are designed to be safe and will not harm
birds or aircraft in the sky, nor will they harm humans, animals, vehicles.
Solar Power Satellites are
designed to collect the Sun’s energy with
large solar arrays. The amount of energy
that can be collected is determined by the
size of the solar panels, their location in
Earth orbit, of the solar
cells. The satellites also contain the equip-
ment necessary to convert the sunlight
into electricity and transmit it wirelessly to
receiving antennas on Earth.
I used many information from NASA open source database in solar space panels technology and also Venus exploration Databases
During Hackathon I have inspire and become more creative as I do believe I make new discoveries reading all these materials that I didn’t even know that exist.
So the event gives new opportunities to new minds to find solutions in global challenges in space and earth .
https://solarsystem.nasa.gov/planets/venus/overview/
Energy Storage Technologies for Future Planetary Science Missions | NASA Solar System Exploration
NASA Small Business Innovation Research (SBIR) Program - Energy Storage for Extreme Environments
Includes information on the conditions on the surface of Venus
Automaton Rover for Extreme Environments (AREE) | NASA
Automatons have been proposed (storage of mechanical energy in springs) to mitigate the challenges of operating in extreme environments.
https://us.sunpower.com/blog/2016/03/28/sunpower%E2%80%99s-nasa-projects-prove-our-solar-reliable/
https://www.nasa.gov/feature/new-solar-arrays-to-power-nasa-s-international-space-station-research
https://www.solarpowerworldonline.com/2016/03/kind-solar-panels-nasa-use/
NASA Glenn Research Center in Cleveland
https://space.nss.org/space-solar-power-library/
https://space.nss.org/wp-content/uploads/BEI-national-strategy-for-space-solar-power-2021.pdf
https://www.spacesolar.caltech.edu/
https://www.nasa.gov/jpl/news/origami-style-solar-power-20140814/
https://www.space.com/space-based-solar-power-plant-2035
#aerolith, #venus, #amandas #venus exploration #solar panels
Your challenge is to design an energy storage system that will power a surface lander or rover on the surface of Venus for at least 60 days, so that there is a viable energy storage capability for long-duration exploration missions.
