Human-scale landers require the delivery of much heavier payloads to the surface of Mars than is possible with entry, descent, and landing (EDL) approaches used to date. A conceptual design was developed for a 10 m diameter crewed Mars lander with an entry mass of approx. 75 t that could deliver approx. 28 t of useful landed mass (ULM) to a zero Mars areoid, or lower, elevation. The EDL design centers upon use of a high ballistic coefficient blunt-body entry vehicle and throttled supersonic retro-propulsion (SRP). The design concept includes a 26 t Mars Ascent Vehicle (MAV) that could support a crew of 2 for approx. 24 days, a crew of 3 for approx.16 days, or a crew of 4 for approx.12 days. The MAV concept is for a fully-fueled single-stage...
Develop two evolutionary rigid vehicle concepts to deliver human-scale payloads (20 metric tons) to ...
Rocket propulsion options for small-scale Mars missions are presented and compared, particularly for...
Several technology investments are required to develop Mars human scale Entry, Descent, and Landing ...
A manned Mars mission will require a substantial increase in landed mass compared to previous roboti...
Near-term capabilities for robotic spacecraft include a target of landing 1- 2 metric ton payloads w...
The primary objective of the NASA RASCAL Theme 2 competition is to develop a Minimum Mars Ascent Veh...
The primary objective of the NASA RASCAL Theme 2 competition is to develop a Minimum Mars Ascent Veh...
In an effort to mature the design of the Mid-Lift-to-Drag ratio Rigid Vehicle (MRV) candidate of the...
Execution of a full entry, descent, and landing (EDL) from low Earth orbit is a rare requirement amo...
The United States has successfully landed five robotic systems on the surface of Mars. These systems...
NASAs Entry, Descent and Landing Architecture Study uses a trajectory simulation framework to evalua...
Current NASA Human Mars architectures require delivery of approximately 20 metric tons of cargo to t...
Planetary exploration has always been a very complex and risky engineering problem. Building on the ...
AIAA Space 2006 Conference September 2006, San Jose, CA.The human exploration of Mars presents many...
Planetary exploration has always been a very complex and risky engineering problem. Building on the ...
Develop two evolutionary rigid vehicle concepts to deliver human-scale payloads (20 metric tons) to ...
Rocket propulsion options for small-scale Mars missions are presented and compared, particularly for...
Several technology investments are required to develop Mars human scale Entry, Descent, and Landing ...
A manned Mars mission will require a substantial increase in landed mass compared to previous roboti...
Near-term capabilities for robotic spacecraft include a target of landing 1- 2 metric ton payloads w...
The primary objective of the NASA RASCAL Theme 2 competition is to develop a Minimum Mars Ascent Veh...
The primary objective of the NASA RASCAL Theme 2 competition is to develop a Minimum Mars Ascent Veh...
In an effort to mature the design of the Mid-Lift-to-Drag ratio Rigid Vehicle (MRV) candidate of the...
Execution of a full entry, descent, and landing (EDL) from low Earth orbit is a rare requirement amo...
The United States has successfully landed five robotic systems on the surface of Mars. These systems...
NASAs Entry, Descent and Landing Architecture Study uses a trajectory simulation framework to evalua...
Current NASA Human Mars architectures require delivery of approximately 20 metric tons of cargo to t...
Planetary exploration has always been a very complex and risky engineering problem. Building on the ...
AIAA Space 2006 Conference September 2006, San Jose, CA.The human exploration of Mars presents many...
Planetary exploration has always been a very complex and risky engineering problem. Building on the ...
Develop two evolutionary rigid vehicle concepts to deliver human-scale payloads (20 metric tons) to ...
Rocket propulsion options for small-scale Mars missions are presented and compared, particularly for...
Several technology investments are required to develop Mars human scale Entry, Descent, and Landing ...