News Release

Was it a bird or was it a plane?

A new study of extinct flying reptiles

Peer-Reviewed Publication

University of Bristol

Model of a Kuehneosaur

image: The model of a Kuehneosaur used in the experiments, superimposed on a background. view more 

Credit: Georg Olechinski.

Archaeopteryx is famous as the world's oldest bird, but reptiles were flying about some 50 million years earlier than that (225 million years ago), even before large dinosaurs roamed the Earth.

A new study of extinct reptiles called kuehneosaurs, by scientists from the University of Bristol, England, shows that these early flyers used extraordinary extensions of their ribs to form large gliding surfaces on the side of the body. The results are published today (15 July) in Palaeontology.

Kuehneosaurs, up to 70 centimetres (two feet) long, were first found in the 1950s in an ancient cave system near Bristol. Their lateral 'wings' were always assumed to be some form of flying adaptation, but their aerodynamic capability had never been studied before.

Koen Stein, who did the work while a student studying for an MSc in palaeobiology at Bristol University, has shown that of the of the two genera found in Britain, Kuehneosuchus was a glider (it has elongate 'wings'), while Kuehneosaurus, with much shorter 'wings', was a parachutist. As the two forms are so alike in other respects, it is possible that they are males and females of the same animal.

Stein said: "We didn't think kuehneosaurs would have been very efficient in the air, but all the work up to now had been speculation, so we decided to build models and test them in the wind tunnel in the Department of Aerospace Engineering at Bristol.

"Surprisingly, we found that Kuehneosuchus was aerodynamically very stable. Jumping from a five-metre tree, it could easily have crossed nine metres distance before landing on the ground. The other form, Kuehneosaurus, was more of a parachutist than a glider."

So that Stein and his colleagues could work out how these creatures controlled their flight they had to model different skin flaps over the wing area."We also built webbed hands and feet and had an extra skin membrane between the legs on the models, but these made the flight of the animals unstable, suggesting that they probably did not have such features."

"This is a fantastic example of interdisciplinary research," said Professor Michael Benton, a member of the research team and Head of Department in Bristol. "Palaeontologists are keen to understand how all the amazing animals of the past operated and by collaborating with aerospace engineers we can be sure that model-making and calculations are more realistic." END

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Notes to Editors:

High resolution images can be downloaded from here: https://www.bris.ac.uk/fluff/u/inclel/EFegDTKYxheQtUSX9xcXqQwy/

They will remain there until 23 July.

Captions for images:

1 Kuehneosauridae in the flesh: What Kuehneosaurus might have looked like, flying over a Triassic landscape. Credit Simon Powell, University of Bristol
2 Kuehneosuchus model flying 1 and 2. The model of Kuehneosuchus used in the experiments. Credit Georg Olechinski.
3 Kuehneosuchus model no background. As above but without a background. Credit Georg Olechinski.
4 Koen Stein with model: The author, Koen Stein, holding a model of Kuehneosaurus. Credit Georg Olechinski.

The paper: "The aerodynamics of the British Late Triassic Kuehneosauridae" by Koen Stein, Colin Palmer, Pamela G. Gill and Michael J. Benton is published in the July 15th issue of Palaeontology. Copies of the paper can be downloaded from here: https://www.bris.ac.uk/fluff/u/inclel/3MYOx9iGCQEJU_sYCOvaiwwy/

Koen Stein is now at the Institut für Paläontologie, Bonn, Germany. Colin Palmer, Pamela Gill and Michael Benton are based in Department of Earth Sciences, University of Bristol.

Palaeontology is published by the Palaeontological Association, a registered charity that promotes the scientific study of fossils. It is one of the world's leading learned societies in this field.

Issued by: Public Relations Office, Communications and Marketing Services, University of Bristol. Contact: Cherry Lewis, Research Communications Manager. Tel: 0117 928 8086, mob: 07729 421885, email: Cherry.lewis@bristol.ac.uk


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