Earth's Interior Is Cooling Faster Than Expected: Research

The evolution of our Earth is the story of its cooling.

Advertisement
By ANI | Updated: 17 January 2022 12:41 IST
Highlights
  • The heat flow from the core into the mantle is higher
  • Study is published in the 'Earth and Planetary Science Letters Journal'
  • Thermal energy from Earth's interior set dynamic processes in motion

Over millions of years, Earth's surface cooled to form a brittle crust

Photo Credit: Pixabay

A measuring system that measures the thermal conductivity of bridgmanite in the laboratory, under the pressure and temperature conditions that prevail inside the Earth, has been developed by a team of researchers.

The study has been published in the 'Earth and Planetary Science Letters Journal'.

The evolution of our Earth is the story of its cooling: 4.5 billion years ago, extreme temperatures prevailed on the surface of the young Earth, and it was covered by a deep ocean of magma. Over millions of years, the planet's surface cooled to form a brittle crust. However, the enormous thermal energy emanating from the Earth's interior set dynamic processes in motion, such as mantle convection, plate tectonics, and volcanism.

Advertisement

Still unanswered, though, are the questions of how fast the Earth cooled and how long it might take for this ongoing cooling to bring the aforementioned heat-driven processes to a halt.

Advertisement

One possible answer may lie in the thermal conductivity of the minerals that form the boundary between the Earth's core and mantle.

This boundary layer is relevant because it is here that the viscous rock of the Earth's mantle is in direct contact with the hot iron-nickel melt of the planet's outer core. The temperature gradient between the two layers is very steep, so there is potentially a lot of heat flowing here. The boundary layer is formed mainly of the mineral bridgmanite. However, researchers have a hard time estimating how much heat this mineral conducts from the Earth's core to the mantle because experimental verification is very difficult.

Advertisement

Now, ETH Professor Motohiko Murakami and his colleagues from Carnegie Institution for Science have developed a sophisticated measuring system that enables them to measure the thermal conductivity of bridgmanite in the laboratory, under the pressure and temperature conditions that prevail inside the Earth.

For the measurements, they used a recently developed optical absorption measurement system in a diamond unit heated with a pulsed laser.

Advertisement

"This measurement system let us show that the thermal conductivity of bridgmanite is about 1.5 times higher than assumed," ETH Professor Motohiko Murakami said.

This suggested that the heat flow from the core into the mantle is also higher than previously thought. Greater heat flow, in turn, increases mantle convection and accelerates the cooling of the Earth. This may cause plate tectonics, which is kept going by the convective motions of the mantle, to decelerate faster than researchers were expecting based on previous heat conduction values.

Murakami and his colleagues have also shown that rapid cooling of the mantle will change the stable mineral phases at the core-mantle boundary. When it cools, bridgmanite turns into the mineral post-perovskite.

But as soon as post-perovskite appears at the core-mantle boundary and begins to dominate, the cooling of the mantle might indeed accelerate even further, the researchers estimated, since this mineral conducted heat even more efficiently than bridgmanite.

"Our results could give us a new perspective on the evolution of the Earth's dynamics. They suggest that Earth, like the other rocky planets Mercury and Mars, is cooling and becoming inactive much faster than expected," Murakami explained.

However, he could not say how long it will take, for example, for convection currents in the mantle to stop.

"We still don't know enough about these kinds of events to pin down their timing," he said.

To do that calls first for a better understanding of how mantle convection works in spatial and temporal terms. Moreover, scientists need to clarify how the decay of radioactive elements in the Earth's interior -one of the main sources of heat-affected the dynamics of the mantle.


Why are Galaxy S21 FE and OnePlus 9RT launching now? We discuss this on Orbital, the Gadgets 360 podcast. Orbital is available on Spotify, Gaana, JioSaavn, Google Podcasts, Apple Podcasts, Amazon Music and wherever you get your podcasts.
Affiliate links may be automatically generated - see our ethics statement for details.
 

Get your daily dose of tech news, reviews, and insights, in under 80 characters on Gadgets 360 Turbo. Connect with fellow tech lovers on our Forum. Follow us on X, Facebook, WhatsApp, Threads and Google News for instant updates. Catch all the action on our YouTube channel.

Further reading: Earth, Thermal conductivity
Advertisement

Related Stories

Popular Mobile Brands
  1. Samsung Galaxy S26 Could Miss Camera Upgrades to Keep Prices in Check
  2. Samsung Galaxy S26 Ultra Listed on FCC Website With This Flagship Chipset
  3. Poco X8 Pro Listed on BIS Certification Website, Could Launch in India Soon
  1. Astronomers Spot the Longest Gamma-Ray Burst Ever Seen: What You Need to Know
  2. Operation Undead Is Now Streaming: Where to Watch the Thai Horror Zombie Drama
  3. Aaromaley OTT Release: When, Where to Watch the Tamil Romantic Comedy Online
  4. Mamta Child Factory Now Streaming on Ultra Play: Know Everything About Plot, Cast, and More
  5. Assassin's Creed Mirage, Wo Long: Fallen Dynasty Reportedly Coming to PS Plus Game Catalogue in December
  6. Samsung Galaxy S26 to Miss Camera Upgrades as Company Focuses on Price Control: Report
  7. Realme Narzo 90 Series Display, Battery Specifications Confirmed Ahead of December 16 Launch in India
  8. Google Is Reportedly Testing AI Mode Integration Within Chrome Browser
  9. Instagram’s Edits App Updated With New Templates, Lock Screen Widgets and More
  10. Oppo Reno 15C Key Specifications, Launch Date Revealed via Certification Listing: Report
Gadgets 360 is available in
Download Our Apps
Available in Hindi
© Copyright Red Pixels Ventures Limited 2025. All rights reserved.