Can a Person Survive Inside a Tornado? This Scientist Did.

Can a person survive inside a tornado? Professor Emeritus of Atmospheric Science, Perry Samson got trapped inside a tornado—and lived to tell us the story. He’s also going to teach us some interesting facts about tornados.

Perry Samson
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Perry Samson, Professor of Atmospheric Science
Perry Samson is Professor Emeritus of Atmospheric Science at the University of Michigan and a Fellow of the American Meteorological Society. He has launched several pioneering...
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Tornadoes can be erratic and extremely dangerous. Brent Koops/NOAA Weather in Focus Photo Contest 2015, CC BY

Can a person survive inside a tornado? I know a girl named Dorothy who was inside a tornado in Kansas once and she survived. 🥴


Q. Can a Person Survive Inside a Tornado?

Here is Professor Emeritus of Atmospheric Science, Perry Samson to tell his story and answer the question:

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I have seen the center of a monster. Most people describe the sound of a tornado as like a freight train, but up close, it’s more like a thousand screaming jet engines. I am one of the few people on Earth who has driven into a tornado and lived to tell the tale.

While it might sound like a scene from a Hollywood blockbuster involving a high-tech armored truck, my experience was much more dangerous and terrifying.

I am an atmospheric scientist who studies tornadoes, but I am only alive today because of split-second decisions and a massive amount of dumb luck. Believe me, I do not want to ever be in that situation again.

Tornado coming down from a black sky. Can a person survive inside a tornado
Tornadoes vary in size and intensity. Hank Schyma, used with permission

The Day the Sky Broke

It started in northwest Kansas, where I was studying supercell thunderstorms – the kind that produce tornadoes – with a team of students from the University of Michigan.

We were positioned under a thunderstorm that was so dark, we had to turn on our vehicles’ headlights in the middle of the day. Suddenly, a tornado formed and began charging directly toward us.

Oberlin abridged

The storm the author survived, filmed by students who were in nearby vehicles at the time.

The students were in other vehicles and got away, but my car was quickly swallowed by a cloud of flying debris so thick that I couldn’t even see my own hood.

With my options disappearing, I made a desperate move: I turned the car directly into the wind, hoping the vehicle’s aerodynamics would keep us pinned to the ground rather than being flipped like a toy.

The Physics of Fear

When you’re inside a tornado’s vortex, your body experiences things the news cameras can’t capture:

  • The pressure change: A tornado is a localized area of rapidly changing pressure. Your ears don’t just “pop” – they ache, as if your head is being squeezed by giant hands.
  • The solid wind: We measured wind speeds of almost 150 mph (241 kph) nearby, but inside the vortex, they were likely much higher. At those speeds, air hits you with the force of a solid object.
  • The soup of darkness: In movies, the “eye” is a clear space. In reality, it’s a debris ball – a brownish-black soup of pulverized soil, trees and buildings. It was so dark that my camera couldn’t even register a picture.
Tornado with debris swirling around near the ground
A tornado’s winds can reach 300 mph (482 kph). Part of the danger is all the debris blowing around at fast speeds. Hank Schyma, used with permission

As debris slammed into my windshield, I was terrified I’d be crushed by flying materials – tornadoes can pick up fences, wood and metal from buildings, tree branches, even cows.

Textbook advice says to get into a ditch so you’re lying flat and might be more protected from flying debris. But the wind was so violent, I couldn’t even open the car door. I just stayed low and prayed.

The Making of a Monster

How does this severe of a storm even happen? It takes a perfect, violent recipe of atmospheric ingredients:

Tornado infographic
Ingredients of a tornado. Perry Samson
  • The dry line: The dry line is where warm, moist air from the Gulf of Mexico and dry air from the west meet. The advancing hot, dry air is actually heavier than muggy air, and this dry air pushes the moist air upward, disrupting the cap.
  • Wind shear: Surface winds from the south and upper winds from the west create a horizontal rolling motion in the atmosphere. When the air is pushed upward, that rotation becomes vertical, creating what’s known as a mesocyclone.
  • The jet stream: About 5 to 7 miles (8 to 11 kilometers) up, the jet stream is a fast-moving river of air. Disturbances within it can create areas that pull air upward from below and lower surface pressure.
The mesocyclone  - alien storms

Together, these ingredients can create the powerful, rotating vortex that you know as a tornado.

These storms can have winds up to 300 mph (482 kph) and leave a long path of destruction, sometimes more than a mile (1.6 kilometers) wide. They can stay on the ground for seconds or many minutes, tearing apart buildings and trees in their path. Where they will travel is hard to predict, so getting to safety should be a priority.

What causes a tornado?

How wind shear makes the winds roll and form tornadoes. NOAA.

The Monster’s Lesson

When the storm passed, the silence was jarring. My rental car was mired in mud, the antenna was bent in half, and bits of straw were embedded in every single seam of the car’s body.

Tornadoes are extremely dangerous. Sixty-one people were killed by tornadoes in the U.S. in 2025, and many more were injured by flying debris. Make sure you know what to do when a tornado alert sounds – follow the alert’s advice and get to safety immediately.

Scientists working with the national severe storms lab watch a thunderstorm’s evolution in kansas.
Scientists working with the National Severe Storms Lab watch a thunderstorm’s evolution in Kansas. Mike Coniglio, NOAA NSSL/VORTEX II, CC BY

When scientists chase storms, they are not trying to experience tornadoes – they are trying to measure the small-scale processes inside storms that cannot be observed in other ways.

Many of the key processes that produce tornadoes occur within a few hundred meters of the ground and evolve over minutes, which means radars, satellites and weather stations often miss them.

Seeing a tornado and the damage it causes is a powerful reminder that people are not in control of everything.

It serves as a warning to be wise and ready for anything. Sophisticated research using drones and radar is the smart way to study these monsters – seeing them from the inside is definitely not.

Willa Connolly, a student at Tappan Middle School in Ann Arbor, Michigan, contributed to this article.

This article is republished from The Conversation under a Creative Commons license. Read the original article.

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Perry Samson is Professor Emeritus of Atmospheric Science at the University of Michigan and a Fellow of the American Meteorological Society. He has launched several pioneering learning and weather-related tools and technologies, including initiating the creation of the Blue Skies application for allowing K-12 students and later the public to access live weather data with rollover map functionality before the existence of the internet. That led to co-founding the Weather Underground, the first online commercial weather company. He also led the development of the LectureTools learning platform that allowed students to ask and answer questions interactively via laptops and phones during class. Samson's research includes chemical meteorology; computer simulation of atmospheric transport and chemistry of contaminants, applications of meteorological and air pollution instrumentation; and educational technology.
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