{"id":2597291,"date":"2023-06-17T02:53:43","date_gmt":"2023-06-17T07:53:43","guid":{"rendered":"https:\/\/platoai.gbaglobal.org\/platowire\/installation-of-roll-out-solar-array-completed-by-nasa-spacewalkers-cleantechnica\/"},"modified":"2023-06-17T02:53:43","modified_gmt":"2023-06-17T07:53:43","slug":"installation-of-roll-out-solar-array-completed-by-nasa-spacewalkers-cleantechnica","status":"publish","type":"platowire","link":"https:\/\/platoai.gbaglobal.org\/platowire\/installation-of-roll-out-solar-array-completed-by-nasa-spacewalkers-cleantechnica\/","title":{"rendered":"Installation of Roll-Out Solar Array Completed by NASA Spacewalkers \u2013 CleanTechnica"},"content":{"rendered":"

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NASA astronauts completed the installation of a Roll-Out Solar Array (ROSA) during a recent spacewalk, marking a significant milestone in the development of advanced solar technology for space exploration. The successful installation of ROSA demonstrates the potential for more efficient and lightweight solar arrays that could power future missions to the Moon, Mars, and beyond.<\/p>\n

The ROSA is a flexible, lightweight solar array that rolls out like a tape measure. It is made up of a series of solar panels that are stored in a compact cylinder and can be deployed and retracted as needed. This innovative design offers several advantages over traditional rigid solar panels, including reduced mass, increased power output, and improved durability.<\/p>\n

During the spacewalk, NASA astronauts Shane Kimbrough and Thomas Pesquet attached the ROSA to the International Space Station (ISS) truss structure. The installation process involved carefully unrolling the solar array and securing it in place using a series of bolts and tensioning mechanisms. Once fully deployed, the ROSA spanned a length of 60 feet, making it one of the largest solar arrays ever deployed in space.<\/p>\n

One of the key benefits of the ROSA is its lightweight design. Traditional solar panels are made from rigid materials such as aluminum or glass, which adds significant weight to spacecraft. In contrast, the ROSA is made from a thin, flexible material that weighs significantly less. This reduction in mass allows for more efficient launches and enables spacecraft to carry additional payloads or travel farther distances.<\/p>\n

In addition to its lightweight construction, the ROSA also offers increased power output. The flexible design allows the solar panels to track the Sun as it moves across the sky, maximizing the amount of sunlight they can capture. This tracking capability results in a 20-30% increase in power generation compared to fixed solar panels. The increased power output is crucial for future missions that will require more energy to support advanced scientific experiments and human habitation.<\/p>\n

Furthermore, the ROSA’s flexible material provides improved durability compared to rigid solar panels. The ability to roll up the solar array protects it from micrometeoroids and other space debris that could potentially damage or puncture traditional panels. This enhanced durability reduces the need for costly repairs or replacements, making the ROSA a cost-effective solution for long-duration space missions.<\/p>\n

The successful installation of the ROSA represents a significant step forward in the development of advanced solar technology for space exploration. NASA’s ongoing research and development efforts aim to further improve the efficiency and reliability of solar arrays, ultimately enabling longer and more ambitious missions to explore our solar system.<\/p>\n

As NASA continues to push the boundaries of space exploration, innovative technologies like the ROSA will play a crucial role in powering future missions. The lightweight, flexible design of the ROSA offers numerous advantages over traditional solar panels, including reduced mass, increased power output, and improved durability. With each successful deployment, NASA brings us one step closer to realizing our dreams of exploring distant planets and unlocking the mysteries of the universe.<\/p>\n