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Snow
is a type of precipitation in the form of crystalline water ice, consisting of a multitude of snowflakes that fall from clouds. Since snow is composed of small ice particles, it is a granular material. It has an open and therefore soft structure, unless packed by external pressure. Snowflakes come in a variety of sizes and shapes. Types which fall in the form of a ball due to melting and refreezing, rather than a flake, are known as graupel, with ice pellets and snow grains as examples of graupel. Snowfall amount, and its related liquid equivalent precipitation amount, are determined using a variety of different rain gauges.
The process of precipitating snow is called snowfall. Snowfall tends to form within regions of upward motion of air around a type of low-pressure system known as an extratropical cyclone. Snow can fall poleward of their associated warm fronts and within their comma head precipitation patterns, which is called such due to its comma-like shape of the cloud and precipitation pattern around the poleward and west sides of extratropical cyclones. Where relatively warm water bodies are present, for example due to water evaporation from lakes, lake-effect snowfall becomes a concern downwind of the warm lakes within the cold cyclonic flow around the backside of extratropical cyclones. Lake-effect snowfall can be locally heavy. Thundersnow is possible within a cyclone's comma head and within lake effect precipitation bands. In mountainous areas, heavy snow is possible where upslope flow is maximized within windward sides of the terrain at elevation, if the atmosphere is cold enough.
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Once on the ground, snow can be categorized as powdery when fluffy, granular when it begins the cycle of melting and refreezing, and eventually ice once it packs down, after multiple melting and refreezing cycles, into a dense mass called snow pack. When powdery, snow moves with the wind from the location where it originally landed, forming deposits called snowdrifts which may have a depth of several meters. After attaching to hillsides, blown snow can evolve into a snow slab, which is an avalanche hazard on steep slopes. The existence of a snowpack keeps temperatures colder than they would be otherwise, as the whiteness of the snow reflects most sunlight, and the absorbed heat goes into melting the snow rather than increasing its temperature. The water equivalent of snowfall is measured to monitor how much liquid is available to flood rivers from meltwater which will occur during the upcoming spring. Snow cover can protect crops from extreme cold. If snowfall stays on the ground for a series of years uninterrupted, the snowpack develops into a mass of ice called glacier. Fresh snow absorbs sound, lowering ambient noise over a landscape due to the trapped air between snowflakes acting to minimize vibration. These acoustic qualities quickly minimize, and reverse once a layer of freezing rain falls on top of snow cover. Walking across snowfall produces a squeaking sound at low temperatures. For motion pictures, the sound of people walking across snow are duplicated through the use cornstarch, salt, and cat litter.
The term snow storm
can describe a heavy snowfall while a blizzard
involves snow and wind, obscuring visibilty. Snow shower
is a term for an intermittent snowfall, while flurry
is used for very light, brief snowfalls. Snow can fall more than a meter at a time during a single storm in flat areas, and meters at a time in rugged terrain, such as mountains. When snow falls in significant quantities, travel by foot, car, airplane and other means becomes highly restricted, but other methods of mobility become possible: the use of snowmobiles, snowshoes and skis. When heavy snow occurs early in the fall, significant damage occurs to trees still in leaf. Areas with significant snow each year can store the winter snow within an ice house, which can be used to cool structures during the following summer.
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SNOW TICKETS
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Cause
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Extratropical cyclones can bring cold and dangerous conditions with heavy rain and snow with winds exceeding ,
[1] (sometimes referred to as
windstorms in Europe). The band of
precipitation that is associated with their
warm front is often extensive, forced by weak upward vertical motion of air over the frontal boundary which
condenses as it cools and produces precipitation within an elongated band,
[2] which is wide and
stratiform, meaning falling out of
nimbostratus clouds.
[3] When moist air tries to dislodge an arctic air mass, overrunning snow can result within the poleward side of the elongated
precipitation band. In the
Northern Hemisphere, poleward is towards the
North Pole, or north. Within the
Southern Hemisphere, poleward is towards the
South Pole, or south.
Within the
cold sector
, poleward and west of the cyclone center,
small scale or
mesoscale bands of heavy snow can occur within a cyclone's comma head pattern. The cyclone's comma head pattern is a comma-shaped area of clouds and precipitation found around mature extratropical cyclones. These snow bands typically have a width of to .
[4] These bands in the comma head are associated with areas of
frontogenesis, or zones of strengthening temperature contrast.
[5]
Southwest of extratropical cyclones, curved cyclonic flow bringing cold air across the relatively warm water bodies can lead to narrow
lake-effect snow bands. Those bands bring strong localized snowfall which can be understood as follows: Large water bodies such as lakes efficiently store heat that results in significant temperature differences (larger than 13 °C or 23 °F) between the water surface and the air above.
[6] Because of this temperature difference, warmth and moisture are transported upward, condensing into vertically oriented clouds (see satellite picture) which produce snow showers. The temperature decrease with height and cloud depth are directly affected by both the water temperature and the large-scale environment. The stronger the temperature decrease with height, the deeper the clouds get, and the greater the precipitation rate becomes.
[7]
In mountainous areas, heavy snowfall accumulates when air is forced to ascend the mountains and squeeze out precipitation along their windward slopes, which in cold conditions, falls in the form of snow. Because of the ruggedness of terrain, forecasting the location of heavy snowfall remains a significant challenge.
[8]
Snowflakes
Snow crystals form when tiny
supercooled cloud droplets (about 10
µm in diameter)
freeze. These droplets are able to remain liquid at temperatures lower than -18 (-18), because to freeze, a few
molecules in the droplet need to get together by chance to form an arrangement similar to that in an ice lattice; then the droplet freezes around this "nucleus." Experiments show that this "homogeneous" nucleation of cloud droplets only occurs at temperatures lower than ().
[9] In warmer clouds an aerosol particle or "ice nucleus" must be present in (or in contact with) the droplet to act as a nucleus. Ice nuclei are very rare compared to that cloud condensation nuclei on which liquid droplets form. Clays, desert dust and biological particles may be effective,
[10] although to what extent is unclear. Artificial nuclei include particles of
silver iodide and
dry ice, and these are used to stimulate precipitation in
cloud seeding.
[11]
Once a droplet has frozen, it grows in the supersaturated environment, which is one where air is saturated with respect to ice when the temperature is below the freezing point. The droplet then grows by diffusion of water molecules in the air (vapor) onto the ice crystal surface where they are collected. Because water droplets are so much more numerous than the ice crystals due to their sheer abundance, the crystals are able to grow to hundreds of
micrometers or millimeters in size at the expense of the water droplets by a process known as the Wegner-Bergeron-Findeison process. The corresponding depletion of water vapor causes the ice crystals grow at the droplets' expense. These large crystals are an efficient source of precipitation, since they fall through the atmosphere due to their mass, and may collide and stick together in clusters, or aggregates. These aggregates are snowflakes, and are usually the type of ice particle that falls to the ground.
[12] Guinness World Records list the world’s largest snowflakes as those of January 1887 at Fort Keogh, Montana; allegedly one measured wide.
[13] Although the ice is clear, scattering of light by the crystal facets and hollows/imperfections mean that the crystals often appear white in color due to
diffuse reflection of the whole
spectrum of
light by the small ice particles.
[14]
The shape of the snowflake is determined broadly by the temperature and humidity at which it is formed.
The most common snow particles are visibly irregular. Planar crystals (thin and flat) grow in air between and . Between and , the crystals will form needles or hollow columns or prisms (long thin pencil-like shapes). From to the shape reverts back to plate-like, often with branched or dendritic features. At temperatures below , the crystal development becomes column-like, although many more complex growth patterns also form such as side-planes, bullet-rosettes and also planar types depending on the conditions and ice nuclei.
[15] [16] [17] If a crystal has started forming in a column growth regime, at around , and then falls into the warmer plate-like regime, then plate or dendritic crystals sprout at the end of the column, producing so called "capped columns."
A snowflake consists of roughly 10
18 water molecules, which are added to its core at different rates and in different patterns, depending on the changing temperature and humidity within the atmosphere that the snowflake falls through on its way to the ground. As a result, it is extremely difficult to encounter two identical snowflakes.
[18] [19] Initial attempts to find identical snowflakes by
photographing thousands their images under a
microscope from 1885 onward by
Wilson Alwyn Bentley found the wide variety of snowflakes we know about today.
[20] It is more likely that two snowflakes could become virtually identical if their environments were similar enough. Matching snow crystals were discovered in Wisconsin in 1988. The crystals were not flakes in the usual sense but rather hollow
hexagonal
prisms.
[21]
Types
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Types of snow can be designated by the shape of the flakes, the rate of accumulation, and the way the snow collects on the ground. Types which fall in the form of a ball due to melting and refreezing cycles, rather than a flake, are known as graupel, with ice pellets and
snow pellets as types of graupel associated with wintry precipitation.
[22] [23] Once on the ground, snow can be categorized as
powdery
when fluffy,
granular
when it begins the cycle of melting and refreezing, and eventually
ice
once it packs down into a dense drift after multiple melting and refreezing cycles. When powdery, snow drifts with the
wind from the location where it originally fell,
[24] forming deposits with a depth of several meters in isolated locations.
[25] Snow fences are constructed in order to help control snow drifting in the vicinity of roads, to improve
highway safety.
[26] After attaching to hillsides, blown snow can evolve into a snow slab, which is an avalanche hazard on steep slopes. A frozen equivalent of
dew known as
hoar frost forms on a snow pack when winds are light and there is ample low-level moisture over the snow pack.
[27]
Snowfall's intensity is determined by
visibility. When the visibility is over , snow is considered light. Moderate snow describes snowfall with visibility restrictions between 0.5 and 1 km. Heavy snowfall describes conditions when visibility is less than 0.5 km.
[28] Steady snows of significant intensity are often referred to as "snowstorms".
[29] When snow is of variable intensity and short duration, it is described as a "snow shower".
[30] The term
snow flurry is used to describe the lightest form of a snow shower.
[31]
A
blizzard is a weather condition involving snow which has varying definitions in different parts of the world. In the
United States, a blizzard is occurring when two conditions are met for a period of three hours or more: A sustained wind or frequent gusts to , and sufficient snow in the air to reduce visibility to less than .
[32] In
Canada and the
United Kingdom, the criteria are similar.
[33] [34] While heavy snowfall often occurs during blizzard conditions, falling snow is not a requirement, as
blowing snow can create a
ground blizzard.
[35]
Density
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Snow remains on the ground until it
melts or
sublimates. Sublimation of snow directly into
water vapor is most likely to occur on a dry and windy day such as when a strong downslope wind, such as a
Chinook wind, exists.
[36] The
water equivalent
of a given amount of snow is the depth of a layer of water having the same mass and upper area. For example, if the snow covering a given area has a water equivalent of , then it will melt into a pool of water deep covering the same area.
[37] This is a much more useful measurement to
hydrologists than snow
depth
, as the density of cool freshly fallen snow widely varies. New snow commonly has a density of around 8% of water. This means that of snow melts down to of water.
[38] Cloud temperatures and physical processes in the cloud affect the shape of individual snow crystals. Highly branched or dendritic crystals tend to have more space between the arms of ice that form the snowflake and this snow will therefore have a lower density, often referred to as "dry" snow. Conditions that create columnar or plate-like crystals will have much less air space within the crystal and will therefore be denser and feel "wetter".
[39]
Once the snow is on the ground, it will settle under its own weight (largely due to differential evaporation) until its density is approximately 30% of water. Increases in density above this initial compression occur primarily by melting and refreezing, caused by temperatures above freezing or by direct solar radiation. In colder climates, snow lies on the ground all winter. By late spring, snow densities typically reach a maximum of 50% of water.
[40] When the snow does not all melt in the summer it evolves into
firn, where individual granules become more spherical in nature,
[41] evolving into a glacier as the ice flows downhill.
[42]
Acoustic properties
Under water, snowfall has a unique sound when compared to other forms of precipitation. Despite the different sizes and shapes on individual snowflakes, the sound made when individual flakes fall upon the surface of a freshwater lake are quite similar.
[43] On the ground, newly-fallen snow acts as a sound-absorbing material, which minimizes sound over its surface.
[44] This is due to the trapped air between the individual crystalline flakes which act to trap sound waves and dampen vibrations. Once it is blown around by the wind and exposed to sunshine, snow hardens and its sound-softening quality diminishes.
Snow cover as thin as thick changes the acoustic properties of a landscape. Studies concerning the
acoustic properties of snow have revealed that loud sounds, such as from a
pistol, can be used to measure snow cover permeability and depth.
[45] Within motion pictures, the sound of walking through cornstarch, salt, or cat litter has been found to be similar to that of walking through snow.
[46] [47] [48] When the temperature falls below , snow will squeak when walked upon due to the crushing of the ice crystals within the snow.
[49] If covered by a layer of
freezing rain, the hardened frozen surface acts to echo sounds, similar to
concrete.
[50]
Snowfall measurement
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Snowfall is usually evaluated with standard rain gauges having diameters of 100-mm (4-in; plastic) or 200-mm (8-in; metal).
[51] These gages are adjusted to winter by removing the funnel and inner cylinder and allowing the snow/freezing rain to collect inside the outer cylinder.
Antifreeze liquid may be added to melt the snow or ice that falls into the gage.
[52] Once the snowfall/ice is finished accumulating, or as its height in the gage approaches , the snow is melted and the water amount recorded.
[53]
Another type of gage used to measure snowfall is the weighing rain gage.
[54] The wedge and tipping bucket gages will have problems with snow measurement. Attempts to compensate for snow/ice by warming the tipping bucket meet with limited success, since snow may sublimate if the gage is kept much above the freezing temperature. Weighing gages with antifreeze should do fine with snow, but again, the funnel needs to be removed before the event begins.
[55]
Spring snow melt is a major source of water supply to areas in temperate zones near mountains that catch and hold winter snow, especially those with a
prolonged dry summer. In such places, water equivalent is of great interest to water managers wishing to predict spring
runoff and the
water supply of cities downstream. Measurements are made manually at marked locations known as
snow courses
, and remotely using special scales called
snow pillows
.
[56] Snow stakes and simple rulers can be used to determine the depth of the snow pack,
[57] though they will not evaluate either its density or liquid equivalent.
[58]
When a snow measurement is made, various networks exist across the United States and elsewhere where rainfall measurements can be submitted through the Internet, such as
CoCoRAHS or GLOBE.
[59] [60] If a network is not available in the area where one lives, the nearest local weather office will likely be interested in the measurement.
[61]
The world record for the highest seasonal total snowfall was measured in the
United States at
Mount Baker Ski Area, outside of the town
Bellingham, Washington during the 1998–1999 season. Mount Baker received of snow,
[62] thus surpassing the previous record holder,
Mount Rainier,
Washington, which during the 1971–1972 season received of snow.
[63]
Energy balance
Fresh snow reflects 90 percent or more of
ultraviolet radiation
[64] that causes
snow blindness and reduces absorption of sunlight by the ground.
Snow blindness (also known as ultraviolet
keratitis, photokeratitis or niphablepsia) is a painful eye condition, caused by exposure of unprotected
eyes to the
ultraviolet (UV) rays in bright
sunlight reflected from snow or
ice.
[65] This condition is a problem in
polar regions and at high altitudes,
[66] as with every of elevation (above sea level), the intensity of
UV rays increases by four percent.
[67] Snow's large reflection of light makes night skies much brighter, since reflected light is directed back up into the sky.
[68] However, when there is also
cloud cover because snow is falling, light is then reflected back to the ground. This greatly amplifies light emitted from city lights, causing the 'bright night' effect. A similar brightening effect occurs when no snow is falling and there is a full moon and a large amount of snow.
[69]
The energy balance of the snowpack itself is dictated by several heat exchange processes. The snowpack absorbs solar shortwave radiation that is partially blocked by cloud cover and reflected by snow surface. A long-wave heat exchange takes place between the snowpack and its surrounding environment that includes overlying air mass, tree cover and clouds. Heat exchange takes place by
convection between the snowpack and the overlaying air mass, and it is governed by the temperature gradient and wind speed. Moisture exchange between the snowpack and the overlying air mass is accompanied with latent heat transfer that is influenced by vapor pressure gradient and air wind. Rain on snow can add significant amounts of thermal energy to the snowpack. A generally insignificant heat exchange takes place by
conduction between the snowpack and the ground. The small temperature change from before to after a snowfall is a result of the heat transfer between the snowpack and the air.
[70]
Relation to river flow
Many rivers originating in mountainous or high-latitude regions have a significant portion of their flow from snowmelt. This often makes the river's flow highly seasonal resulting in periodic
flooding.
[71] In contrast, if much of the melt is from
glaciated or nearly glaciated areas, the melt continues through the warm season, with peak flows occurring in mid to late summer.
[72]
Effects on human society
thumb, US in 1881
Substantial snowfall can disrupt public infrastructure and services, slowing human activity even in regions that are accustomed to such weather. Air and ground transport may be greatly inhibited or shut down entirely. Populations living in snow-prone areas have developed various ways to travel across the snow, such as
skis,
snowshoes, and
sleds pulled by horses, dogs, or other animals and later,
snowmobiles. Basic utilities such as
electricity,
telephone lines, and
gas supply can also fail. In addition, snow can make roads much harder to travel and vehicles attempting to use them can easily become stuck.
[73]
The combined effects can lead to a "
snow day" on which gatherings such as school, work, or church are officially canceled. In areas that normally have very little or no snow, a snow day may occur when there is only light accumulation or even the threat of snowfall, since those areas are unprepared to handle any amount of snow. In some states, schools are given a yearly quota of snow days (or "calamity days"). Once the quota is exceeded, the snow days must be made up.
[74] [75] [76] In other states, all snow days must be made up.
[77] For example, schools may extend the remaining school days later into the afternoon, shorten
spring break, or delay the start of
summer vacation.
Accumulated snow is
removed to make travel easier and safer, and to decrease the long-term impact of a heavy snowfall. This process utilizes
shovels,
snowplows and is often assisted by sprinkling
salt or other chloride-based chemicals, which reduce the melting temperature of snow.
[78] In areas with abundant snowfall, such as
Northern Japan, people harvest snow and store it surrounded by
insulation in ice houses. This allowed the ice to be used in summer for refrigeration or medical uses, which is one method of conserving electrical usage.
[79]
Agriculture
Snowfall can be beneficial to agriculture by serving as a
thermal insulator, conserving the heat of the Earth and protecting
crops from subfreezing weather. Some agricultural areas depend on an accumulation of snow during winter that will melt gradually in spring, providing water for crop growth. If it melts into water and refreezes upon sensitive crops, such as oranges, the resulting ice will protect the fruit from exposure to lower temperatures.
[80]
Recreation
thumb.
Many
winter sports, such as
skiing,
[81] snowboarding,
[82] snowmobiling,
[83],
snowshoeing, and
ice hockey depend upon snow. Where snow is scarce but the temperature is low enough,
snow cannons may be used to produce an adequate amount for such sports.
[84] Children and adults can play on a
sled or ride in a
sleigh. Although a person's footsteps remain a visible
lifeline within a snow-covered landscape, snow covered is considered a general danger to hiking since the snow obscures landmarks and makes the landscape itself appear uniform.
[85]
One of the recognizable recreational uses of snow is in building
snowmen. A snowman is created by making a man shaped figure out of snow - often using a large, shaped snowball for the body and a smaller snowball for the head which is often decorated with simple household items - traditionally including a
carrot for a nose, and coal for eyes, nose and mouth; occasionally including old clothes such as a
top hat or scarf. Snow can be used to make
snow cones, also known as snowballs, which are usually eaten in the summer months.
[86]
Snow can be used to alter the format of outdoor games such as
Capture the flag,
[87] or for snowball fights. The world's biggest snowcastle, the
SnowCastle of Kemi, is built in
Kemi,
Finland every winter.
[88] Since 1928
Michigan Technological University in
Houghton, Michigan has held an annual Winter Carnival in mid-February, during which a large
Snow Sculpture Contest takes place between various clubs, fraternities, and organizations in the community and the university. Each year there is a central theme, and prizes are awarded based on creativity.
[89] Snowball softball tournaments are held in snowy areas, usually using a bright orange softball for visibility, and burlap sacks filled with snow for the bases.
[90]
Damage
thumb in October 2006
When heavy, wet snow with a snow-water equivalent (SWE) ratio of between 6:1 and 12:1 and a weight in excess of 10 pounds per square foot (~50 kg/m
2)
[91] piles onto trees or electricity lines, significant damage may occur on a scale usually associated with
hurricanes.
[92] An avalanche can occur upon a sudden thermal or mechanical impact upon snow that has accumulated on a mountain, which causes the snow to rush downhill en masse. Preceding an avalanche is a phenomenon known as an avalanche wind caused by the approaching avalanche itself, which adds to its destructive potential.
[93] Large amounts of snow which accumulate on top of man-made structures can lead to structural failure.
[94] During snowmelt, acidic precipitation which previously fell into the snow pack is released, which harms marine life.
[95]
See also
- 2007 Siberian orange snow
- Alberta Clipper
- Cold wave
- Eskimo words for snow
- Frost
- Grit bin
- Igloo
- Knickerbocker Storm
- Quinzhee
- Snow farming
- Snow gauge
- Snowbelt
- Ukichiro Nakaya
- Wilson "Snowflake" Bentley
- Wrong kind of snow
- History of interest and research for snowflake
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