Key Facts

  • Categorized as a Apollo-class Asteroid
  • Comparable in size to a football field
  • Will pass within 28,380,466 km of Earth in 2025
  • Classified as a Near Earth Asteroid (NEA)
  • Not a Potentially Hazardous Object
  • See orbit simulation

Overview

2016 UP41 is a very small asteroid whose orbit crosses the orbit of Earth. NASA JPL has classified 2016 UP41 as a "Near Earth Asteroid" due to its orbit's proximity to Earth, but it is not considered potentially hazardous because computer simulations have not indicated any imminent likelihood of future collision.

2016 UP41 orbits the sun every 411 days (1.13 years), coming as close as 0.87 AU and reaching as far as 1.29 AU from the sun. Based on its brightness and the way it reflects light, 2016 UP41 is probably between 0.080 to 0.356 kilometers in diameter, making it a small to average asteroid, very roughly comparable in size to a football field.

Close Approaches

2016 UP41's orbit is 0.08 AU from Earth's orbit at its closest point. This means that there is a wide berth between this asteroid and Earth at all times.

2016 UP41 has 40 close approaches predicted in the coming decades:

Date Distance from Earth (km) Velocity (km/s)
Feb. 10, 2025 28,380,466 10.915
Aug. 3, 2026 18,213,076 8.667
Feb. 10, 2034 29,094,249 11.089
Aug. 3, 2035 17,882,202 8.592
Feb. 11, 2043 27,872,182 10.794
Aug. 4, 2044 19,164,815 8.912
Feb. 12, 2052 24,923,742 10.099
Aug. 6, 2053 22,115,233 9.585
Feb. 13, 2061 21,174,568 9.175
Aug. 8, 2062 26,077,587 10.482
Feb. 15, 2070 18,368,038 8.368
Aug. 10, 2071 29,195,778 11.144
Feb. 16, 2079 17,737,292 8.180
Aug. 10, 2080 29,593,935 11.212
Feb. 16, 2088 19,180,346 8.623
Aug. 9, 2089 27,396,137 10.757
Feb. 14, 2097 22,015,583 9.372
Aug. 8, 2098 24,150,567 10.038
Feb. 14, 2106 24,996,639 10.107
Aug. 8, 2107 21,128,467 9.332
Feb. 13, 2115 27,928,886 10.813
Aug. 6, 2116 18,584,440 8.713
Feb. 13, 2124 29,785,807 11.235
Aug. 5, 2125 17,303,624 8.397
Feb. 13, 2133 29,193,250 11.081
Aug. 6, 2134 18,147,440 8.597
Feb. 14, 2142 25,879,965 10.334
Aug. 9, 2143 21,333,537 9.370
Feb. 17, 2151 21,695,319 9.283
Aug. 10, 2152 25,610,867 10.345
Feb. 18, 2160 18,830,411 8.490
Aug. 12, 2161 28,734,281 11.002
Feb. 18, 2169 17,818,279 8.195
Aug. 13, 2170 29,873,506 11.256
Feb. 19, 2178 18,237,035 8.315
Aug. 13, 2179 28,946,993 11.061
Feb. 18, 2187 19,942,715 8.801
Aug. 12, 2188 26,598,003 10.532
Feb. 17, 2196 23,083,146 9.645
Aug. 10, 2197 22,929,969 9.706

Images and Observations

2016 UP41's orbit is determined by observations dating back to Oct. 26, 2016. It was last officially observed on Oct. 13, 2017. The IAU Minor Planet Center records 76 observations used to determine its orbit.

Accessibility and Exploration

2016 UP41 can be reached with a journey of 426 days. This trajectory would require a delta-v of 8.963 km/s. To put this into perspective, the delta-v to launch a rocket to Low-Earth Orbit is 9.7 km/s. There are 26,935 potential trajectories and launch windows to this asteroid.

See more at the NHATS Mission Trajectories table for 2016 UP41.

Similar Objects

These objects have orbits that share similar characteristics to the orbit of 2016 UP41:

References

Search

   or view a random object

Orbital Elements

  • Epoch: 2460200.5 JD
  • Semi-major axis: 1.082 AU
  • Eccentricity: 0.1945
  • Inclination: 5.35°
  • Longitude of Ascending Node: 250.18°
  • Argument of Periapsis: 336.08°
  • Mean Anomaly: 213.15°

Physical Characteristics

  • Diameter: ~0.218 km
  • Magnitude: 21.7

Derived Characteristics

  • Orbit Period: 411 days (1.13 years)
  • Avg. Orbit Speed: 28.64 km/s
  • Aphelion Distance: 1.29 AU
  • Perihelion Distance: 0.87 AU

Map Comparison

Click to load map

Orbit Simulation

Sky Map

The position of 2016 UP41 is indicated by a ◯ pink circle. Note that the object may not be in your current field of view. Use the controls below to adjust position, location, and time.

Size Rendering

The below comparison is an artistic rendering that uses available data on the diameter of 2016 UP41 to create an approximate landscape rendering with New York City in the background. This approximation is built for full-resolution desktop browsers. Shape, color, and texture of asteroid are imagined.