Control the Path and Power of Hurricanes like Milton? Forget It, Scientists Say

 Clouds are seen over the beach as Hurricane Milton advances, in Progreso, Mexico, October 7, 2024. (Reuters)
Clouds are seen over the beach as Hurricane Milton advances, in Progreso, Mexico, October 7, 2024. (Reuters)
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Control the Path and Power of Hurricanes like Milton? Forget It, Scientists Say

 Clouds are seen over the beach as Hurricane Milton advances, in Progreso, Mexico, October 7, 2024. (Reuters)
Clouds are seen over the beach as Hurricane Milton advances, in Progreso, Mexico, October 7, 2024. (Reuters)

Hurricanes are humanity’s reminder of the uncontrollable, chaotic power of Earth’s weather.

Milton’s powerful push toward Florida just days after Helene devastated large parts of the Southeast likely has some in the region wondering if they are being targeted. In some corners of the internet, Helene has already sparked conspiracy theories and disinformation suggesting the government somehow aimed the hurricane at Republican voters.

Besides discounting common sense, such theories disregard weather history that shows the hurricanes are hitting many of the same areas they have for centuries. They also presume an ability for humans to quickly reshape the weather far beyond relatively puny efforts such as cloud seeding.

“If meteorologists could stop hurricanes, we would stop hurricanes,” Kristen Corbosiero, a professor of atmospheric and environmental sciences at the University at Albany. “If we could control the weather, we would not want the kind of death and destruction that’s happened.”

Here’s a look at what humans can and can’t do when it comes to weather:

The power of hurricanes, heightened by climate change

A fully developed hurricane releases heat energy that is the equivalent of a 10-megaton nuclear bomb every 20 minutes — more than all the energy used at a given time by humanity, according to National Hurricane Center tropical analysis chief Chris Landsea.

And scientists are now finding many ways climate change is making hurricanes worse, with warmer oceans that add energy and more water in the warming atmosphere to fall as rain, said Chris Field, director of the Stanford Woods Institute for the Environment.

“The amount of energy a hurricane generates is insane,” said Colorado State University hurricane researcher Phil Klotzbach. It’s the height of human arrogance to think people have the power to change them, he said.

But that hasn't stopped people from trying, or at least thinking about trying.

Historical efforts to control hurricanes have failed

Jim Fleming of Colby College has studied historical efforts to control the weather and thinks humans have nowhere near the practical technology to get there. He described an attempt in 1947 in which General Electric partnered with the US military to drop dry ice from Air Force jets into the path of a hurricane in an attempt to weaken it. It didn't work.

“The typical science goes like understanding, prediction and then possibly control,” Fleming said, noting that the atmosphere is far more powerful and complex than most proposals to control it. “It goes back into Greek mythology to think you can control the powers of the heavens, but also it's a failed idea.”

In the 1960s, 1970s and 1980s, the federal government briefly tried Project STORMFURY. The idea was to seed a hurricane to replace its eyewall with a larger one that would make the storm bigger in size but weaker in intensity. Tests were inconclusive and researchers realized if they made the storm larger, people who wouldn’t have been hurt by the storm would now be in danger, which is an ethical and liability problem, the project director once said.

For decades, the National Hurricane Center and its parent agency, the National Oceanic and Atmospheric Administration, have been asked about nuclear-bombing a hurricane. But the bombs aren't powerful enough, and it would add the problem of radioactive fallout, Corbosiero said.

Bringing cooling icebergs or seeding or adding water-absorbing substances also are ideas that just don’t work, NOAA scientists said.

Climate change begets engineering — and lots of questions

Failed historical attempts to control hurricanes differ somewhat from some scientists' futuristic ideas to combat climate change and extreme weather. That's because instead of targeting individual weather events, modern geoengineers would operate on a larger scale — thinking about how to reverse the broad-scale damage humans have already done to the global climate by emitting greenhouse gases.

Scientists in the field say one of the most promising ideas they see based on computer models is solar geoengineering. The method would involve lofting aerosol particles into the upper atmosphere to bounce a tiny bit of sunlight back into space, cooling the planet slightly.

Supporters acknowledge the risks and challenges. But it also "might have quite large benefits, especially for the world’s poorest," said David Keith, a professor at the University of Chicago and founding faculty director of the Climate Systems Engineering initiative.

Two years ago, the largest society of scientists who work on climate issues, the American Geophysical Union, announced it was forming an ethics framework for “climate intervention."

Some scientists warn that tinkering with Earth’s atmosphere to fix climate change is likely to create cascading new problems. Pennsylvania State University climate scientist Michael Mann expressed worries on the ethics framework that just talking about guidelines will make the tinkering more likely to occur in the real world, something that could have harmful side effects.

Field, of Stanford, agreed that the modeling strongly encourages that geoengineering could be effective, including at mitigating the worst threats of hurricanes, even if that's decades away. But he emphasized that it's just one piece of the best solution, which is to stop climate change by cutting greenhouse gas emissions.

“Whatever else we do, that needs to be the core set of activities,” he said.



Sunshine Abounds as the Summer Solstice Arrives

Children cool off as they run through a public fountain in Colmar, eastern France, on August 21, 2023, as France experiences a late summer heatwave. (AFP)
Children cool off as they run through a public fountain in Colmar, eastern France, on August 21, 2023, as France experiences a late summer heatwave. (AFP)
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Sunshine Abounds as the Summer Solstice Arrives

Children cool off as they run through a public fountain in Colmar, eastern France, on August 21, 2023, as France experiences a late summer heatwave. (AFP)
Children cool off as they run through a public fountain in Colmar, eastern France, on August 21, 2023, as France experiences a late summer heatwave. (AFP)

Peak sunshine has arrived in the Northern Hemisphere: the summer solstice.

Friday is the longest day of the year north of the equator, where the solstice marks the start of astronomical summer. It's the opposite in the Southern Hemisphere, where it is the shortest day of the year and winter will start.

The word “solstice” comes from the Latin words “sol” for sun and “stitium” which can mean “pause” or “stop.” The solstice is the end of the sun's annual march higher in the sky, when it makes its longest, highest arc. The bad news for sun lovers: It then starts retreating and days will get a little shorter every day until late December.

People have marked solstices for eons with celebrations and monuments, including Stonehenge, which was designed to align with the sun's paths at the solstices. Here’s what to know about the Earth’s orbit.

Solstices are when days and nights are at their most extreme

As the Earth travels around the sun, it does so at an angle relative to the sun. For most of the year, the Earth’s axis is tilted either toward or away from the sun. That means the sun’s warmth and light fall unequally on the northern and southern halves of the planet.

The solstices mark the times during the year when this tilt is at its most extreme, and days and nights are at their most unequal.

During the Northern Hemisphere’s summer solstice, the upper half of the earth is tilted toward the sun, creating the longest day and shortest night of the year. This solstice falls between June 20 and 22.

Meanwhile, at the winter solstice, the Northern Hemisphere is leaning away from the sun, leading to the shortest day and longest night of the year. The winter solstice falls between December 20 and 23.

The equinox is when there is an equal amount of day and night

During the equinox, the Earth’s axis and its orbit line up so that both hemispheres get an equal amount of sunlight.

The word equinox comes from two Latin words meaning equal and night. That’s because on the equinox, day and night last almost the same amount of time, though one may get a few extra minutes, depending on where you are on the planet.

The Northern Hemisphere’s spring, or vernal, equinox can land between March 19 and 21, depending on the year. Its fall, or autumnal, equinox can land between Sept. 21 and 24.

On the equator, the sun will be directly overhead at noon. Equinoxes are the only time when both the north and south poles are lit by sunshine at the same time.

What's the difference between meteorological and astronomical seasons? These are just two different ways to carve up the year.

While astronomical seasons depend on how the Earth moves around the sun, meteorological seasons are defined by the weather. They break down the year into three-month seasons based on annual temperature cycles. By that calendar, spring starts on March 1, summer on June 1, fall on Sept. 1 and winter on Dec. 1.