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Dust devil

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Dust devil
A dust devil in Arizona
Area of occurrencePrimarily temperate and tropical regions
SeasonMost common in summer
EffectDust and debris lofted into air, possibly wind damage
A dust devil seen in Amboseli National Park, Kenya in 1993.

A dust devil (also known regionally as a dirt devil) is a strong, well-formed, and relatively short-lived whirlwind. Its size ranges from small (18 in/half a metre wide and a few yards/metres tall) to large (more than 30 ft/10 m wide and more than half a mile/1 km tall). The primary vertical motion is upward. Dust devils are usually harmless, but can on rare occasions grow large enough to pose a threat to both people and property.[1][2]

They are comparable to tornadoes in that both are a weather phenomenon involving a vertically oriented rotating column of wind. Most tornadoes are associated with a larger parent circulation, the mesocyclone on the back of a supercell thunderstorm. Dust devils form as a swirling updraft under sunny conditions during fair weather, rarely coming close to the intensity of a tornado.

Formation

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A dust devil in Kraków, Poland

Dust devils form when a pocket of hot air near the surface rises quickly through cooler air above it, forming an updraft. If conditions are just right, the updraft may begin to rotate. As the air rapidly rises, the column of hot air is stretched vertically, thereby moving mass closer to the axis of rotation, which causes intensification of the spinning effect by conservation of angular momentum. The secondary flow in the dust devil causes other hot air to speed horizontally inward to the bottom of the newly forming vortex. As more hot air rushes in toward the developing vortex to replace the air that is rising, the spinning effect becomes further intensified and self-sustaining.[3] A dust devil, fully formed, is a funnel-like chimney through which hot air moves, both upwards and in a circle. As the hot air rises, it cools, loses its buoyancy and eventually ceases to rise. As it rises, it displaces air which descends outside the core of the vortex. This cool air returning acts as a balance against the spinning hot-air outer wall and keeps the system stable.[4]

The spinning effect, along with surface friction, usually will produce a forward momentum. The dust devil may be sustained if it moves over nearby sources of hot surface air.[5]

As available hot air near the surface is channelled up the dust devil, eventually surrounding cooler air will be sucked in. Once it occurs, the effect is dramatic, and the dust devil dissipates in seconds. Usually it occurs when the dust devil is moving slowly (depletion) or begins to enter a terrain where the surface temperatures are cooler.[6]

Certain conditions increase the likelihood of dust devil formation.

  • Flat barren terrain, desert or tarmac: Flat conditions increase the likelihood of the hot-air "fuel" being a near constant. Dusty or sandy conditions will cause particles to become caught up in the vortex, making the dust devil easily visible, but are not necessary for the formation of the vortex.
  • Clear skies or lightly cloudy conditions: The surface needs to absorb significant amounts of solar energy to heat the air near the surface and create ideal dust devil conditions.
  • Light or no wind and cool atmospheric temperature: The underlying factor for sustainability of a dust devil is the extreme difference in temperature between the near-surface air and the atmosphere. Windy conditions will destabilize the spinning effect of a dust devil.

Intensity and duration

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Many dust devils are usually small and weak, often less than 3 feet (0.9 m) in diameter with maximum winds averaging about 45 miles per hour (70 km/h), and they often dissipate less than a minute after forming. On rare occasions, a dust devil can grow very large and intense, sometimes reaching a diameter of up to 300 feet (90 m) with winds in excess of 60 mph (100 km/h+) and can last for upwards of 20 minutes before dissipating.[7] Because of their small diameter, Coriolis force is not significant in the dust devil itself so dust devils with anticyclonic rotation do occur.[8]

Hazards

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Large dust devil in Mexico
Damage to a home from a strong dust devil in IA, USA.
Slight damage to the side of a home from a strong dust devil in Iowa, USA

Dust devils typically do not cause injuries, but rare, severe dust devils have caused damage and even deaths in the past.[9] One such dust devil struck the Coconino County Fairgrounds in Flagstaff, Arizona, on September 14, 2000, causing extensive damage to several temporary tents, stands and booths, as well as some permanent fairgrounds structures. Several injuries were reported, but there were no fatalities. Based on the degree of damage left behind, it is estimated that the dust devil produced winds as high as 75 mph (120 km/h), which is equivalent to an EF0 tornado.[10] On May 19, 2003, a dust devil lifted the roof off a two-story building in Lebanon, Maine, causing it to collapse and kill a man inside.[11][12] On June 18, 2008, a woman near Casper, Wyoming was killed when a dust devil caused a small scorer's shed at a youth baseball field to flip on top of her. She had been trying to shelter from the dust devil by going behind the shed.[13] At East El Paso, Texas in 2010, three children in an inflatable jump house were picked up by a dust devil and lifted over 10 feet (3 m), travelling over a fence and landing in a backyard three houses away.[14][15] In Commerce City, Colorado in 2018, a powerful dust devil hurtled two porta-potties into the air; no one was injured.[16][17] In 2019, a large dust devil in Yucheng county, Henan province, China killed 2 children and injured 18 children and 2 adults when an inflatable jump house was lifted into the air.[18]

Dust devils have been implicated in around 100 aircraft accidents.[19] While many incidents have been simple taxiing problems, a few have had fatal consequences. Dust devils are also considered major hazards among skydivers and paragliding pilots as they can cause a parachute or a paraglider to collapse with little to no warning, at altitudes considered too low to cut away, and contribute to the serious injury or death of parachutists.[20][21][22] Such was the case on June 1, 1996, when a dust devil caused a skydiver's parachute to collapse about 30 feet (9.1 m) above the ground. He later died from the injuries he sustained.[23] Dust devils can also contribute to wildfires. One case occurred in Engebæk, Billund Municipality, Denmark in 1868 where a dust devil tossed tuft into a heater, causing a wildfire that possibly extended from 10,000 to 50,000 hectares or more.[24]

Electrical activities

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Dust devils, even small ones, can produce radio noise and electrical fields greater than 10,000 volts per meter.[25] A dust devil picks up small dirt and dust particles. As the particles whirl around, they become electrically charged through contact or frictional charging (triboelectrification). The whirling charged particles also create a magnetic field that fluctuates between 3 and 30 times each second.[26]

These electric fields may assist the vortices in lifting material off the ground and into the atmosphere. Field experiments indicate that a dust devil can lift 1 gram of dust per second from each square metre (10 lb/s from each acre) of ground over which it passes. A large dust devil measuring about 100 metres (330 ft) across at its base can lift about 15 metric tonnes (17 short tons) of dust into the air in 30 minutes. Giant dust storms that sweep across the world's deserts contribute 8% of the mineral dust in the atmosphere each year during the handful of storms that occur. In comparison, the significantly smaller dust devils that twist across the deserts during the summer lift about three times as much dust, thus having a greater combined impact on the dust content of the atmosphere. When this occurs, they are often called sand pillars.[27]

Martian dust devils

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Dust devil on Mars (MGS)
Dust devils cause twisting dark trails on the Martian surface.
Serpent Dust Devil of Mars (MRO)
A dust devil captured by the Curiosity rover in 2020

Martian dust devils are convective atmospheric vortices that occur on the surface of Mars. They were discovered from data reported by NASA's Viking probes, and have been photographed by orbiting satellites and surface rovers in subsequent missions.

Although comparable to terrestrial dust devils in formation and appearance, Martian dust devils can be many times larger than ones found on Earth. They can be powerful enough to pose a threat to rovers and other technology,[28] although some documented encounters have actually benefitted rovers by cleaning them of dust.

Alternate names

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In Australia, a dust devil is more commonly known as "Willy willy".[29] In Ireland, dust devils are known as "sí gaoithe" or "fairy wind".[30][31]

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Snow whirlwind or devil, similar to a dust devil, seen on Mount Royal in Montreal, Canada
Coal devil in Mongolia
An ash devil. The fire was in the Schell Creek and Antelope Mountain ranges.

Ash devils

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Hot cinders underneath freshly deposited ash in recently burned areas may sometimes generate numerous dust devils. The lighter weight and the darker color of the ash may create dust devils that are visible hundreds of feet into the air.

Ash devils form similar to dust devils and are often seen on unstable days in burn scar areas of recent fires.

Coal devils are common at the coal town of Tsagaan Khad in South Gobi Province, Mongolia. They occur when dust devils pick up large amounts of stockpiled coal. Their dark color makes them resemble some tornadoes.

Fire whirls

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Fire whirls or swirls, sometimes called fire devils or fire tornadoes, can be seen during intense fires in combustible building structures or, more commonly, in forest or bush fires. A fire whirl is a vortex-shaped formation of burning gases being released from the combustible material. The genesis of the vortex is probably similar to a dust devil's. As distinct from the dust devil, it is improbable that the height reached by the fire gas vortex is greater than the visible height of the vertical flames because of turbulence in the surrounding gases that inhibit creation of a stable boundary layer between the rotating/rising gases relative to the surrounding gases.[32]

Hay devils

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A "hay devil" is a gentle whirlwind that forms in the warm air above fields of freshly-cut hay. A vortex forms from a column of hot air rising from the ground on calm, sunny days, tossing and swirling stalks and clumps of hay harmlessly through the air, often to the delight of children and onlookers.[33][34][35]

Snow devils

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The same conditions can produce a snow whirlwind, snow devil, or sometimes referred to as a "snownado", although differential heating is more difficult in snow-covered areas.[36]

Steam devils

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Steam devils are a small vortex column of saturated air of varying height but small diameter forming when cold air lies over a much warmer body of water or saturated surface.[37] They are also often observed in the steam rising from power plants.[38]

References

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  1. ^ "dust devil". Glossary of Meteorology. American Meteorological Society. 2016.
  2. ^ Glossary of Meteorology. American Meteorological Society. 2000. ISBN 978-1-878220-34-9. Archived from the original on 2009-01-30.
  3. ^ "Dust Devil". weather.gov. National Weather Service. Retrieved 26 May 2021.
  4. ^ Ludlum, David M. (1997). National Audubon Society Field Guide to North American Weather. Knopf. ISBN 978-0-679-40851-2.
  5. ^ Thompson, Andrea. "How Do Dust Devils Form?". Scientific American. Retrieved 26 May 2021.
  6. ^ "What is a Dust Devil?". Death-Valley.us Forums. May 20, 2003. Archived from the original on 2003-06-03. Retrieved 17 May 2023.
  7. ^ "Dust Devils: Ephemeral Whirlwinds Can Stir Up Trouble". Arizona Vacation Planner. Archived from the original on 2012-07-18. Retrieved 2007-10-05.
  8. ^ "Anti-Cyclonic Dust Devil?". 30 May 2005. Archived from the original on 6 April 2023. Retrieved 29 April 2022.
  9. ^ "Dust Devil Events". National Centers for Environmental Information. National Weather Service. Retrieved 11 June 2022.
  10. ^ "Dust Devil". www.weather.gov. Retrieved 11 June 2022.
  11. ^ NCDC: Event Details Archived 2009-01-29 at the Wayback Machine National Climatic Data Center'.' Retrieved 2008-06-05.
  12. ^ "Man Dies In Windstorm". The New York Times. May 21, 2003. Retrieved May 1, 2010.
  13. ^ "Arizona Event Report: Dust Devil". National Centers for Environmental Information. National Weather Service. Retrieved 11 June 2022.
  14. ^ "Legend, Lore & Legacy: Dust Devils Swoop Up as Desert Sideshow|July 2012| TPW magazine". tpwmagazine.com. Retrieved 11 June 2022.
  15. ^ This rare weather incident was the subject of a United States Air Force Weather Squadron study: Clarence Giles, "Air Force Weather Squadron forecasts, studies weather to keep servicemembers safe", https://web.archive.org/web/20150518114436/http://fortblissbugle.com/air-force-weather-squadron-forecasts-studies-weather-to-keep-servicemembers-safe/ archived 2015-05-18 Fort Bliss Bugle, Unit News p.1A (January 12, 2011)
  16. ^ "Watch: Portable toilets spiral into the sky as Colorado park-goers hide from windstorm". Newsweek. 19 June 2018. Retrieved 11 June 2022.
  17. ^ Lane, Damon. "Colorado Dust Devil Tosses Porta-Potties". Texas Storm Watch. Archived from the original on 16 June 2018. Retrieved 16 June 2018.
  18. ^ Two children killed after bouncy castle is swept into air by ‘dust devil’ in central China, South China Morning Post, April 1, 2019
  19. ^ Lorenz, Ralph (2005). "Dust Devil Hazard to Aviation: A Review of US Air Accident Reports" (PDF). Journal of Meteorology. 28 (298): 178–184. Retrieved 17 September 2012.
  20. ^ "Dust Devils". United States Parachute Association. July 9, 2012. Archived from the original on 2017-09-17. Retrieved 2014-08-12.
  21. ^ "Skydiving instructor Tony Rokov killed in accident at Goulburn airport". Sydney Morning Herald. 22 November 2015. Retrieved 22 November 2015.
  22. ^ "Paraglider landed 180km away after being thrown off cliff by dust devil". Sydney Morning Herald. 3 January 2019. Retrieved 3 January 2019.
  23. ^ "Nevada Event Report: Dust Devil". National Centers for Environmental Information. National Weather Service. Retrieved 11 June 2022.
  24. ^ "European Severe Weather Database". Archived from the original on 2023-08-17.
  25. ^ "Stalking Arizona dust devils helps scientists understand electrical, atmospheric effects of dust storms on Mars" (Press release). University of California, Berkeley. 29 May 2002. Retrieved 2006-12-01.
  26. ^ Houser, Jeffrey G.; Farrell, William M.; Metzger, S. M. (2003). "ULF and ELF magnetic activity from a terrestrial dust devil". Geophysical Research Letters. 30 (1): 1027. Bibcode:2003GeoRL..30.1027H. doi:10.1029/2001GL014144. ISSN 1944-8007. S2CID 134000306. Archived from the original on 2021-10-22. Retrieved 2020-11-06.
  27. ^ Kok, J.F.; Renno, N.O. (2006). "Enhancement of the emission of mineral dust aerosols by electric forces" (PDF). Geophysical Research Letters. 33 (Aug. 28): L19S10. Bibcode:2006GeoRL..3319S10K. doi:10.1029/2006GL026284. hdl:2027.42/95661.
  28. ^ Smith, Peter; Renno, Nilton (6 June 2001). "Studying Earth Dust Devils For Possible Mars Mission". UniSci News. Archived from the original on 19 April 2012. Retrieved December 1, 2006.
  29. ^ "willy willy", Wiktionary, 2022-04-25, retrieved 2022-11-18
  30. ^ "fairy wind". Oxford Reference. Retrieved 2020-05-14.
  31. ^ "Heat wave sparks 'fairy wind' in Ireland". MNN – Mother Nature Network. Retrieved 2020-05-14.
  32. ^ Wildfire Modeling, IR Observations and Analysis Archived 2007-03-27 at the Wayback Machine
  33. ^ "Hay devil' whirlwinds spotted in field near Bristol". BBC News. London. 5 July 2019. Retrieved 22 April 2023.
  34. ^ Lumley, Sarah; Taylor, Michael (10 July 2018). "Gigantic 'hay devil' whirlwind rips through field in Somerset countryside". Daily Mirror. London. Retrieved 22 April 2023.
  35. ^ "Hay devil caught on video in Oregon". WTVY News 4 (NBC News Channel). Dothan, Alabama. 10 July 2017. Retrieved 22 April 2023.
  36. ^ "Snow Devil". World Meteorological Organisation. Retrieved 2023-01-11.
  37. ^ "Steam Devil". World Meteorological Organisation. Retrieved 2023-01-11.
  38. ^ Lyons, Walter A. (1997). The Handy Weather Answer Book. Detroit, MI: Visible Ink Press. ISBN 0-7876-1034-8.
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