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Portuguese scientists study Martian clouds to aid future landings

Created at 21 Jul · 7:11 AM1 source↑ Market-relevant
IN SHORT

Portuguese scientists have analyzed Martian clouds to better understand atmospheric dynamics, a breakthrough aimed at improving future Mars landing missions. The research, using data from the Mars Express mission, focuses on atmospheric waves and their impact on spacecraft friction.

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Key Numbers

23 yearsMars Express mission duration
2029Mars Express mission extension

Who's Involved

Francisco Brasil
Lead author of the study from CIÊNCIAS ULisboa and IA
Pedro Machado
Co-lead author of the study from CIÊNCIAS ULisboa and IA
European Space Agency
Operator of the Mars Express mission
CIÊNCIAS ULisboa
University faculty involved in the study
Institute of Astrophysics and Space Sciences (IA)
Research institute involved in the study
Portuguese scientists study Martian clouds to aid future landings

↳ Why This Matters

This research is critical for the success of future crewed and uncrewed missions to Mars by providing essential data on atmospheric conditions, which directly impacts landing safety and spacecraft design.

Key facts

  • Portuguese scientists have published a study analyzing Martian clouds to improve future landing missions.
  • The research utilized data from the European Space Agency's Mars Express spacecraft.
  • Understanding atmospheric waves and their dynamics is key to controlling friction during landings.
  • Mars' thin atmosphere presents unique challenges, making landings akin to freefall.
  • Clouds on Mars are seasonal and sparse, primarily forming during the northern hemisphere summer.
  • The findings could help optimize mission timing to avoid atmospheric turbulence.

Portuguese scientists have published a study analyzing Martian clouds to enhance future landing missions on the Red Planet. The research, led by Francisco Brasil and Pedro Machado from the Faculty of Sciences of the University of Lisbon and the Institute of Astrophysics and Space Sciences, utilized data from the European Space Agency's Mars Express mission.

The study focused on measuring the altitude and propagation speed of Martian atmospheric waves, which are crucial for understanding energy transport and atmospheric dynamics. This information is vital for controlling the friction experienced by spacecraft during descent, especially given Mars' thin atmosphere, which offers significantly less resistance than Earth's.

Francisco Brasil explained that a lack of detailed atmospheric information has historically made Mars landings difficult, with nearly half of missions since 1960 failing. However, recent advancements in spacecraft technology, including improved parachutes and shock-absorbing systems, have increased landing success rates.

The research also highlighted that clouds on Mars are seasonal and sparse, forming mainly during the northern hemisphere summer due to the evaporation of polar ice caps. This seasonality means that cloud cover and atmospheric turbulence can vary significantly throughout the Martian year.

By understanding these atmospheric conditions, scientists hope to better predict and manage the challenges of landing spacecraft, and eventually humans, on Mars. The planet's atmosphere is also being studied as a natural laboratory for phenomena seen on Earth, such as global dust storms, the triggers for which are still not fully understood.

Frequently asked questions

The main goal was to analyze clouds and atmospheric waves on Mars to improve the success rate of future landing missions.

The study primarily used data from the European Space Agency's Mars Express mission.

Mars has a very thin atmosphere compared to Earth's, resulting in low frictional force, making landings more akin to freefall.

No, clouds on Mars are sparse and seasonal, primarily appearing during the northern hemisphere summer.

What Happens Next

01Future Mars missions will incorporate findings on atmospheric waves and cloud seasonality.
02Further research will aim to understand the triggers for global dust storms on Mars.

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Cadence

How It Developed

Portuguese scientists led a study analyzing Martian clouds.
The research aimed to measure altitude and propagation speed of Martian atmospheric waves.
Data from the European Space Agency's Mars Express mission was utilized.
Understanding atmospheric dynamics is crucial for successful planetary landings.
Mars' thin atmosphere presents unique landing challenges due to low frictional force.
Past Mars missions have faced difficulties due to limited atmospheric data.
Recent missions have seen improved landing success rates due to better cushioning technology.
Martian clouds are seasonal and sparse, forming primarily during the northern hemisphere summer.

Sources

T1
Portuguese scientists study Martian clouds to help future landingsEuronews

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