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Space Concepts Improve Life In The Desert

Date:
October 21, 2005
Source:
European Space Agency
Summary:
An innovative tent, developed with the use of space concepts, is now on display at the 'SAFE: Design On Risk' exhibition at The Museum of Modern Art in New York. Designed for desert use, it exploits the inhospitable environment to improve life in the desert.

Desert Seal is an inflatable tent for use in extreme environments. It was designed as a result of a study on the use of inflatable technologies in hot and extreme environments carried out for the European Space Agency’s Technology Transfer Programme.
Credit: Architecture and Vision

An innovative tent, developed with the use of space concepts, is now on display at the 'SAFE: Design On Risk' exhibition at The Museum of Modern Art in New York. Designed for desert use, it exploits the inhospitable environment to improve life in the desert.

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Called Desert Seal, the tent is a prototype for a one-person inflatable tent for use in desert conditions. It is light, easy to transport and simple to set-up. Best of all, it takes advantage of the extreme desert temperatures to make travelling in the desert more comfortable.

“Desert Seal is the result of a study on the use of inflatable technologies in hot and extreme environments carried out for ESA’s Technology Transfer Programme. We looked at different solutions and tent sizes,” says Andreas Vogler from Switzerland, who together with Arturo Vittori from Italy created Desert Seal.

“Rather than using specific space technologies, Desert Seal is derived from the methodology and principles used in space design and development. To design habitation for humans on Mars, completely autonomous solutions must be found. How can a construction be extremely light and easy to transport? How can the surrounding environment be controlled?”

The architects Vogler and Vittori started by analysing a hot desert environment and working out how these conditions could be used to create living quarters that are cool during the day yet protect against the cool desert nights.

“Designing habitats for space makes architects think about how they could also be used on Earth. Desert Seal is based on a research-driven design methodology, which investigates available in-situ resources and optimises designs to ensure they are light and have the minimum of energy requirements,” emphasises Vogler.

Innovative tent for desert nomads

In 2003, Vittori and Vogler set up Architecture and Vision, a design company based in Munich and London that focuses on product design and extreme environment architecture. Both have a background in aerospace architecture design and this can be seen in the conception and construction of the project. Vittori worked as an architect at Airbus in Toulouse and Vogler has carried out research in space architecture for the International Space Station and the Human Mars Mission at the University of Technology in Munich.

They designed Desert Seal specifically for hot arid environments where the air becomes considerably cooler the more distant it is from the Earth’s surface. During the day, the temperature can easily reach 60C and beyond at ground level, while just 3 metres above it could be 40C lower. Vittori and Vogler decided to use this characteristic to their advantage.

During the day, an electric fan in the top of the tent, 2.26 m above the ground, constantly blows cooler air inside, thus reducing the temperature inside the tent. The fan is powered by batteries charged by a flexible solar panel mounted outside the tent.

During the night, the desert radiates heat off to space and quickly reaches temperature below zero degree Celsius. Since air acts as a good insulator, on higher levels it stays considerably warmer. The fan on top now runs on batteries and blows warmer air into the tent, protecting from the chilly desert nights.

The tent consists of an air beam structure made of polyethylene-coated material. It has an awning in silver-coated high-strength textile to reflect the heat and provide protection from direct sunshine. The L-shaped tent allows upright entry and also minimises the aerodynamic load.

To make the tent, a number of space-related applications have been ‘borrowed’ from the aerospace industry such as the methods used to make parachutes, emergency inflatable objects and the flexible solar power panels that generate electricity. The Italian company Aero Sekur provided the technology and manufacturing skills to build the prototype. The Flexcell solar panel was developed by VHF-Technologies in Switzerland. Low volume and weight, inflatable construction for easy deployment, active environmental control and heat reflection are also key concepts and technologies transferred from the aerospace industry.

“However, the main spin-off from space used to create Desert Seal is not the use of clever new materials or the use of an elaborated software simulation, but the way a ‘space architect’ employs a research-based methodology,” explains Andreas Vogler.

SAFE: Design Takes On Risk exhibition

Desert Seal will be on display at The Museum of Modern Art, New York, in the 'SAFE: Design Takes On Risk' exhibition until 2 January 2006. The exhibition features more than 300 contemporary design objects and prototypes from all over the world. These range from protecting body and mind from dangerous or stressful circumstances to designs that provide a sense of comfort and security.


Story Source:

The above story is based on materials provided by European Space Agency. Note: Materials may be edited for content and length.


Cite This Page:

European Space Agency. "Space Concepts Improve Life In The Desert." ScienceDaily. ScienceDaily, 21 October 2005. <www.sciencedaily.com/releases/2005/10/051021121049.htm>.
European Space Agency. (2005, October 21). Space Concepts Improve Life In The Desert. ScienceDaily. Retrieved October 30, 2014 from www.sciencedaily.com/releases/2005/10/051021121049.htm
European Space Agency. "Space Concepts Improve Life In The Desert." ScienceDaily. www.sciencedaily.com/releases/2005/10/051021121049.htm (accessed October 30, 2014).

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