Subscribe free to our newsletters via your
. 24/7 Space News .




TIME AND SPACE
Why do puddles stop spreading?
by Staff Writers
Boston MA (SPX) Jul 09, 2015


File image.

When you spill a bit of water onto a tabletop, the puddle spreads - and then stops, leaving a well-defined area of water with a sharp boundary. There's just one problem: The formulas scientists use to describe such a fluid flow say that the water should just keep spreading endlessly. Everyone knows that's not the case - but why?

This mystery has now been solved by researchers at MIT - and while this phenomenon might seem trivial, the finding's ramifications could be significant: Understanding such flowing fluids is essential for processes from the lubrication of gears and machinery to the potential sequestration of carbon dioxide emissions in porous underground formations.

The new findings are reported in the journal Physical Review Letters in a paper by Ruben Juanes, an associate professor of civil and environmental engineering, graduate student Amir Pahlavan, research associate Luis Cueto-Felgueroso, and mechanical engineering professor Gareth McKinley.

"The classic thin-film model describes the spreading of a liquid film, but it doesn't predict it stopping," Pahlavan says. It turns out that the problem is one of scale, he says: It's only at the molecular level that the forces responsible for stopping the flow begin to show up. And even though these forces are minuscule, their effect changes how the liquid behaves in a way that is obvious at a much larger scale.

"Within a macroscopic view of this problem, there's nothing that stops the puddle from spreading. There's something missing here," Pahlavan says.

Classical descriptions of spreading have a number of inconsistencies: For example, they require an infinite force to get a puddle to start spreading. But close to a puddle's edge, "the liquid-solid and liquid-air interfaces start feeling each other," Pahlavan says. "These are the missing intermolecular forces in the macroscopic description." Properly accounting for these forces resolves the previous paradoxes, he says.

"What's striking here," Pahlavan adds, is that "what's actually stopping the puddle is forces that only act at the nanoscale." This illustrates very nicely how nanoscale physics affect our daily experiences, he says.

Whether someone's spilled milk stops on the tabletop or makes a mess all over the floor may seem like an issue of little importance, except to the person who might get soaked, or have to mop up the spill. But the principles involved affect a host of other situations where the ability to calculate how a fluid will behave can have important consequences.

For example, understanding these effects can be essential to figuring out how much oil is needed to keep a gear train from running dry, or how much drilling "mud" is needed to keep an oil rig working smoothly. Both processes involve flows of thin films of liquid.

Many more complex flows of fluids also come down to the same underlying principles, Juanes says - for example, carbon sequestration, the process of removing carbon dioxide from fossil-fuel emissions and injecting it into underground formations, such as porous rock. Understanding how the injected fluid will spread through pores in rock, perhaps displacing water, is essential in predicting how stable such injections may be.

"You start with something very simple, like the spread of a puddle, but you get at something very fundamental about intermolecular forces," Juanes says. "The same process, the same physics, will be at play in many complex flows."

Another area where the new findings could be important is in the design of microchips. As their features get smaller and smaller, controlling the buildup of heat has become a major engineering issue; some new system use liquids to dissipate that heat. Understanding how such cooling fluids will flow and spread across the chip could be important for designing such systems, Pahlavan says.

This initial analysis dealt only with perfectly smooth surfaces. In pursuing the research, Juanes says, a next step will be to extend the analysis to include fluid flows over rough surfaces - which more closely approximate the conditions, for example, of fluids in underground porous formations. "This work puts us in a position to be able to better describe multiphase flows in complex geometries like rough fractures and porous media."


Thanks for being here;
We need your help. The SpaceDaily news network continues to grow but revenues have never been harder to maintain.

With the rise of Ad Blockers, and Facebook - our traditional revenue sources via quality network advertising continues to decline. And unlike so many other news sites, we don't have a paywall - with those annoying usernames and passwords.

Our news coverage takes time and effort to publish 365 days a year.

If you find our news sites informative and useful then please consider becoming a regular supporter or for now make a one off contribution.
SpaceDaily Contributor
$5 Billed Once


credit card or paypal
SpaceDaily Monthly Supporter
$5 Billed Monthly


paypal only


.


Related Links
Massachusetts Institute of Technology
Understanding Time and Space






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








TIME AND SPACE
The ins and outs of QCD
Oak Ridge TN (SPX) Jul 09, 2015
Quarks and antiquarks are the teeny, tiny building blocks with which all matter is built, binding together to form protons and neutrons in a process explained by quantum chromodynamics (QCD). According to QCD, quarks possess one of three charges that allow them to pair in various combinations, such as mesons--elementary particles composed of one quark and its corresponding antiquark. Force ... read more


TIME AND SPACE
Russia to Land Space Vessel on Moon's Polar Region in 2019

Moon engulfed in permanent, lopsided dust cloud

Crashing comets may explain mysterious lunar swirls

Google Lunar X-Prize meets Yoda

TIME AND SPACE
Curiosity rover finds evidence of Mars' primitive continental crust

Never Get Lost on Mars Again With NASA's New Red Planet Map

Opportunity Rover's 7th Mars Winter to Include New Study Area

Opportunity Gets Back to Work

TIME AND SPACE
NASA selects leading-edge concepts for continued study

US selects four astronauts for commercial flight

Docking Adapter Sets Stage for Commercial Crew Crew

Targeted LEDs could provide efficient lighting for plants grown in space

TIME AND SPACE
Chinese earth station is for exclusively scientific and civilian purposes

Cooperation in satellite technology put Belgium, China to forefront

China set to bolster space, polar security

China's super "eye" to speed up space rendezvous

TIME AND SPACE
Student satellite wins green light for Station deployment

'Jedi' astronauts say 'no fear' as they gear for ISS trip

Relief as Russian cargo ship docks at space station

Loss of SpaceX Cargo Resupply Mission No Threat to ISS Crew Security

TIME AND SPACE
Baikonur Cosmodrome to Be Equipped With Viewing Platforms

30 launches planned in next three fiscals: ISRO chief

India to launch its heaviest commercial mission to date

Final payload integration begins for next Ariane 5 launch

TIME AND SPACE
Bricks to build an Earth found in every planetary system

Observing the birth of a planet

Precise ages of largest number of stars hosting planets ever measured

Can Planets Be Rejuvenated Around Dead Stars?

TIME AND SPACE
A cool way to form 2-D conducting polymers using ice

Engineers give invisibility cloaks a slimmer design

Rubber expansion threatens biodiversity and livelihoods

Disney gives sneak peek for planned China theme park




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement All images and articles appearing on Space Media Network have been edited or digitally altered in some way. Any requests to remove copyright material will be acted upon in a timely and appropriate manner. Any attempt to extort money from Space Media Network will be ignored and reported to Australian Law Enforcement Agencies as a potential case of financial fraud involving the use of a telephonic carriage device or postal service.