Natural Wonders & Evolution: air flow in bird lungs (Evolution)

by David Turell @, Tuesday, March 16, 2021, 20:38 (1136 days ago) @ David Turell

Only in one direction:

https://phys.org/news/2021-03-birds-discovery-loop.html

"Birds breathe with greater efficiency than humans due to the structure of their lungs—looped airways that facilitate air flows that go in one direction—a team of researchers has found through a series of lab experiments and simulations.

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"'Unlike the air flows deep in the branches of our lungs, which oscillate back and forth as we breathe in and out, the flow moves in a single direction in bird lungs even as they inhale and exhale," explains Leif Ristroph, an associate professor at NYU's Courant Institute of Mathematical Sciences and the senior author of the paper. "This allows them to perform the most difficult and energetically costly activity of any animal: they can fly, and they can do so across whole oceans and entire continents and at elevations as high as Mount Everest, where the oxygen is extremely thin."

"'The key is that bird lungs are made of looped airways—not just the branches and tree-like structure of our lungs—and we found that this leads to one-way or directed flows around the loops," adds Ristroph. "This wind ventilates even the deep recesses of the lungs and brings in fresh air."

"The one-way flow of air in birds' breathing systems was discovered a century ago. But what had remained a mystery was an explanation of the aerodynamics behind this efficient breathing system.

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"For the experiments, they built piping filled with water—to replicate air flow—and bent the piping to imitate the loop-like structure of birds' lungs—similar to the way freeways are connected by on-ramps and off-ramps. The researchers mixed microparticles into the water, which allowed them to track the direction of the water flow.

"These experiments showed that back-and-forth motions generated by breathing were transformed into one-way flows around the loops.

"'This is in essence what happens inside lungs, but now we could actually see and measure—and thus understand—what was going on," explains Ristroph, director of the Applied Mathematics Lab. "The way this plays out is that the network has loops and thus junctions, which are a bit like 'forks in the road' where the flows have a choice about which route to take."

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"'Inertia tends to cause the flows to keep going straight rather than turn down a side street, which gets obstructed by a vortex," explains NJIT assistant professor and co-author Anand Oza. "This ends up leading to one-way flows and circulation around loops because of how the junctions are hooked up in the network."

"Ristroph points to several potential engineering uses for these findings.

"'Directing, controlling, and pumping fluids is a very common goal in many applications, from healthcare to chemical processing to the fuel, lubricant, and coolant systems in all sorts of machinery," he observes. "In all these cases, we need to pump fluids in specific directions for specific purposes, and now we've learned from birds an entirely new way to accomplish this that we hope can be used in our technologies.'"

Comment: The rate of breathing increases the caloric cost of breathing in increased exercise. The birds use lots of calories in flying, but their system of breathing is a great way to make is easier. A great design not by chance.


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