Lunar orbit
Adapted from Wikipedia · Adventurer experience
In astronomy and spaceflight, a lunar orbit is the path an object takes when it circles around Earth's Moon. These orbits are usually not perfect circles.
When a spacecraft is farthest from the Moon, it is called apolune, apocynthion, or aposelene. When it is closest to the Moon, it is called perilune, pericynthion, or periselene. These special names come from the names and titles of the moon goddess.
To enter a lunar orbit, spacecraft use a special move called lunar orbit insertion or LOI. This helps the spacecraft slow down just enough to be caught by the Moon's gravity.
There is also something called low lunar orbit or LLO. This is a very close orbit, less than 100 kilometers above the Moon's surface. It takes about two hours to go around the Moon once in this orbit. Low lunar orbits are important for exploring the Moon. Only a few special paths, called frozen orbits, stay stable for a long time, making them useful for spacecraft that plan to stay near the Moon for many months or even years.
Perturbation effects and low orbits
Further information: [Mass concentration (astronomy) § Lunar mascons](/wiki/Mass_concentration_(astronomy)#Lunar_mascons
Big pieces of rock that hit the Moon long ago made areas under the surface heavier. These heavy spots can change the paths of spacecraft orbiting the Moon. They can make the orbit shift a lot in just a few days. That’s why orbits very close to the Moon, lower than 100 kilometers, can become unstable.
In 1969, during the first mission to land humans on the Moon, astronauts tried to fix this problem. They adjusted their orbit to stay safe, and it turned out to be easier than they thought. When they met up again with the main spacecraft, the orbit was a little bigger than planned but still okay.
Stable low orbits
Scientists found that some orbits around the Moon stay the same forever because of special forces. These orbits happen at angles of 27°, 50°, 76°, and 86° from the Moon's surface. Two small satellites from the Apollo missions, PFS-1 and PFS-2, helped make this discovery. PFS-1 stayed in its orbit for over a year and a half. PFS-2 lasted only 35 days before it fell back to the Moon.
Lunar high orbits
When spacecraft orbit the Moon at heights between 500 to 20,000 km, Earth’s gravity can change their path. Scientists study how three things — Earth, the Moon, and the spacecraft — affect these orbits.
The Moon’s area of influence reaches about 60,000 km, but Earth’s gravity can make orbits unstable closer than 690 km. Special points in the Earth-Moon system, called Lagrange points, help spacecraft stay in stable paths. These include halo orbits and distant retrograde orbits.
Some halo orbits stay above parts of the Moon’s surface. This helps satellites talk to stations on the far side of the Moon. The first to do this was the Queqiao relay satellite in 2019, placed around Earth-Moon L2 about 65,000 km from the Moon. Since 2022, CAPSTONE and Lunar Gateway have used near-rectilinear halo orbits, which also use a Lagrange point.
Orbital transfer
Main articles: Trans-lunar injection and orbit insertion
There are three main ways to get a spacecraft to orbit around the Moon from Earth. These are called direct transfer, low thrust transfer, and low-energy transfer. The time it takes can be different for each method. It can take from a few days to several months.
History of missions to lunar orbit
Further information: List of extraterrestrial orbiters § Moon
First orbiters
The Soviet Union sent the first spacecraft near the Moon, called Luna 1, on January 4, 1959. It came close to the Moon but did not orbit it. Another spacecraft, Luna 3, launched on October 4, 1959, was the first to travel around the Moon and return to Earth. It gave us the first images of the Moon's far side.
In April 1966, Luna 10 became the first spacecraft to orbit the Moon. It studied the Moon's environment until May 30, 1966. A later mission, Luna 11, launched on August 24, 1966, examined the Moon's gravity and space conditions.
The first United States spacecraft to orbit the Moon was Lunar Orbiter 1 on August 14, 1966. Its first orbit was stretched out, but it was later adjusted to a more circular path. This helped find good landing spots for future missions.
Crewed and later orbiters
During the Apollo program, the Command/Service Module stayed in orbit around the Moon while the Lunar Module landed. The spacecraft would first enter a stretched-out orbit and then change to a circular orbit about 60 nautical miles above the Moon. The orbit time was roughly two hours. The Lunar Module would then begin its landing by lowering its orbit. Starting with Apollo 14, the orbit adjustment was changed to save fuel for the landing.
Sun-synchronous lunar orbits
A Sun-synchronous lunar orbit is a special orbit around the Moon. In this orbit, the Moon's position compared to the Sun stays almost the same. To keep this orbit working, it would need to move about 1° each day.
But these orbits around the Moon do not happen naturally. This is because the Moon's gravity is not even. Keeping this orbit would need careful control. Both Earth and the Sun's gravity would also change the orbit.
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