Thunder + fiber-optic cabling used for seismic imaging



Things don’t get less complex once the Earth gets involved. The acoustic shock waves may strike soft soil, hard rock, various forms of human infrastructure, and so on, each of which will affect how energy gets transmitted. Some of the energy gets converted into what are called Rayleigh waves, where the energy is transmitted as a wave that moves along the Earth’s surface. The rest go deeper, forming waves that may move through some combination of loose material or the underlying bedrock.

To extract information about the Earth’s structure, you have to understand what the seismic waves from a thunderclap would normally look like. Which, to an extent, requires modeling all of the above processes. Since each thunderquake is going to be unique due to the different locations and conditions, this model is going to be, at best, an approximation. The fear that any approximation wouldn’t be good enough to generate usable data probably kept people from trying to analyze thunderquakes sooner.

To get their approximation, the team started with a software package called SPECFEM3D Cartesian, which is dedicated to 3D reconstructions of seismic waves. Already, that choice necessitates a few compromises. For example, the software treats the atmosphere as a 3.6 km-thick homogeneous layer, even though the atmosphere near a thunderstorm is anything but. The model also updates events at a frequency that’s slower than the waves moving through the Earth-air interface. So, to compensate for that, the researchers simply stretched the top 20 meters of Earth out to cover 200 meters.

These and other factors mean that there were plenty of reasons to think that the model wouldn’t be sufficient to handle real-world data. So, the people who developed it tested it against the real world, using thunderstorms that passed by their campus.

Passing the test

One of the nicer discoveries in seismology has been the realization that the same fiber-optic cables that rush cat pics to your LAN can act as seismometers. And, conveniently, the Penn State campus has a 4 kilometer fiber line that has been set aside for seismic sensing running under the campus. And said campus happens to be located in a part of the US where summer thunderstorms are a regular occurrence.



Source link

  • Related Posts

    Trump’s space transportation policy calls for new spaceport on federal land

    The government will also identify potential locations for additional launch facilities in the United States, improve integration of space launch and reentry operations into airspace and air traffic control modernization efforts,…

    The Unlikely Place at the Center of China’s AI Boom

    Travel just two hours west of Beijing by train, and you’ll find yourself surrounded by the rolling grasslands and ancient cinder cones of Inner Mongolia. This vast, arid land has…

    Leave a Reply

    Your email address will not be published. Required fields are marked *

    You Missed

    Aus vs Ban 2nd Test 2026 – Australia bowl first on Mackay’s Test debut; Shoriful in for Bangladesh

    Aus vs Ban 2nd Test 2026 – Australia bowl first on Mackay’s Test debut; Shoriful in for Bangladesh

    White House space policy directs agencies to send humans to Mars

    White House space policy directs agencies to send humans to Mars

    Trump’s space transportation policy calls for new spaceport on federal land

    Trump’s space transportation policy calls for new spaceport on federal land

    The best time to apply for Amex cards based on offer history

    The best time to apply for Amex cards based on offer history

    New details in Hayden Panettiere’s final moments

    New details in Hayden Panettiere’s final moments

    Fashion People Love Wearing This Fan-Favorite Shoe Trend

    Fashion People Love Wearing This Fan-Favorite Shoe Trend