Instant Landing Pads for Lunar Missions

Author:

Kuhns Matthew1234,Metzger Philip1234,Hasnain Zohaib1234,Zacny Kris1234

Affiliation:

1. Masten Space Systems, Mojave, CA.

2. Univ. of Central Florida, Orlando, FL.

3. Dept. of Mechanical Engineering, Texas A&M Univ., College Station, TX.

4. Honeybee Robotics, Pasadena, CA.

Publisher

American Society of Civil Engineers

Reference8 articles.

1. NASA. A new space policy directive calls for human expansion across solar system. NASA Press Release 17-097 (Dec. 11 2017).

2. Metzger Anderson and Colaprete Experiments and modeling indicate regolith is looser in the lunar polar regions compared to regolith at the lunar landing sites Proceedings of Earth and Space 2018 Cleveland OH (April 9-12 2018).

3. Role of collisions in erosion of regolith during a lunar landing;Anand A.;Physical Review E,2013

4. Metzger P. T. R. C. Latta J. M. III Schuler and C. D. Immer “Craters formed in granular beds by impinging jets of gas ” in Proc. Powders & Grains 2009 July 14-17 2009.

5. Susante P and Metzger P. Design test and simulation of lunar and mars landing pad soil stabilization built with in situ rock utiliz ation Proceeding of Earth and Space 2016 Cleveland OH (2018).

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