Model of Kosmos 482, originally set for Venus
Wikimedia Commons
Over 50 years after its launch, the Soviet spacecraft Cosmos 482 is set to return to Earth. Initially designed to land on Venus, it began to disintegrate in low Earth orbit, never completing its intended mission. After orbiting our planet for decades, it is finally on a path to re-enter.
Kosmos 482 was launched in 1972; however, much about its mission and structure remains classified due to its Cold War origins. The intention to reach Venus is inferred from other Soviet missions focused on the planet at that time, and indications suggest that the spacecraft attempted a maneuver in orbit before fragmenting. The exact reason for its failure is unclear, but three out of four pieces landed in New Zealand shortly after launch.
The last fragment has drifted into a higher orbit, approximately 210 km at its closest to Earth and as far as about 9,800 km. Over time, particles from the Earth’s upper atmosphere have slowed its descent, gradually bringing it closer to re-entering. It is projected to crash on May 9th or 10th.
The capsule remains of the spacecraft are estimated to be over one meter wide and weigh nearly 500 kilograms. Given its size and the possibility that it was engineered to withstand the intense conditions during a Venusian descent, impact speeds may exceed 200 km/h.
Predicting the exact impact site for Kosmos 482 is challenging. Based on its current trajectory, it could land anywhere between the latitudes of 52° south and 52° north, covering a vast area from the southern tip of South America to parts of Canada and Russia. Fortunately, despite the extensive range of potential landing sites, the likelihood of it striking a populated area is minimal. “The numbers are infinitesimally small,” stated Marsin Pilinsky from the University of Colorado Boulder. statement. “The ocean is a likely landing zone.”
Pilinsky is part of a team monitoring the debris. As the re-entry date approaches, landing predictions will become more accurate. Instances of space debris falling to Earth are not rare; for instance, NASA tracks one orbital object entering the atmosphere daily, with most either burning up or landing in oceans. However, Kosmos 482 is notably larger and more robust than typical space debris.
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Source: www.newscientist.com
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