land ice - translation to ρωσικά
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land ice - translation to ρωσικά

SEA ICE THAT IS IMMOBILE DUE TO ITS ATTACHMENT TO A COAST, USUALLY EXTENDING OFFSHORE TO ABOUT THE 20-M ISOBATH
Land-fast ice; Landfast ice; Land fast ice; Shore ice; Shore-fast ice
  • ''Fast ice'' (left, along shoreline) versus ''drift ice'' (right) in a hypothetical [[sea ice]] dynamics scenario (the bear provides an approximate scale).

land ice      

общая лексика

материковый лед

география

лед материковый

land ice      
1) прибрежный лед
2) ледяной заберег
3) припай
land ice      
land ice материковый лед

Ορισμός

ЛЭНД-АРТ
(от англ. land art - земляное искусство), направление в изо-искусстве последней трети 20 в., основанное на использовании реального пейзажа в качестве главного художественного материала и объекта. Энтузиасты лэнд-арта (У. де Мариа, Р. Смитсон, М. Хайзер в США, Р. Лонг в Великобритании) прорывают траншеи, создают причудливые нагромождения камней, раскрашивают скалы и т. д., избирая для своих акций обычно безлюдные, "первозданные" и "дикие" ландшафты, тем самым как бы стремясь вернуть искусство в природу. Благодаря своему "первобытному" облику многие акции и объекты такого рода сближаются с археологизмом, а также (поскольку большинство публики может созерцать их лишь в сериях фотографий) с фото-артом.

Βικιπαίδεια

Fast ice

Fast ice (also called land-fast ice, landfast ice, and shore-fast ice) is sea ice that is "fastened" to the coastline, to the sea floor along shoals or to grounded icebergs. Fast ice may either grow in place from the sea water or by freezing pieces of drifting ice to the shore or other anchor sites. Unlike drift (or pack) ice, fast ice does not move with currents and winds.

The width (and the presence) of this ice zone is usually seasonal and depends on ice thickness, topography of the sea floor and islands. It ranges from a few meters to several hundred kilometers. Seaward expansion is a function of a number of factors, notably water depth, shoreline protection, time of year and pressure from the pack ice. In Arctic seas the fast ice extends down to depths of 20 m (65.6 ft), while in the Subarctic seas, the zone extends to depths of about 10 m (32.8 ft). In some coastal areas with abrupt shelf and no islands, e.g., in the Sea of Okhotsk off Hokkaidō, tides prevent the formation of any fast ice. Smaller ocean basins may contain only the fast ice zone with no pack ice (e.g. McMurdo Sound in Antarctica).

The topography of the fast ice varies from smooth and level to rugged (when submitted to large pressures). The ice foot refers to ice that has formed at the shoreline, through multiple freezing of water between ebb tides, and is separated from the remainder of the fast ice surface by tidal cracks. Further away from the coastline, the ice may become anchored to the sea bottom—it is then referred to as bottomfast ice. Fast ice can survive one or more melting seasons (i.e. summer), in which case it can be designated following the usual age-based categories: first-year, second-year, multiyear. The fast ice boundary is the limit between fast ice and drift (or pack) ice—in places, this boundary may coincide with a shear ridge. Fast ice may be delimited or enclose pressure ridges which extend sufficiently downward so as to be grounded—these features are known as stamukhi.

Παραδείγματα από το σώμα κειμένου για land ice
1. Rising seas, expanding from warmth and from the runoff of melted land ice, are encroaching on low–lying island states, especially in the western Pacific.
2. Scientists project that seas expanding from warmth and from the runoff of melting land ice may displace millions of coastal inhabitants worldwide in this century if heat–trapping industrial emissions are not sharply curtailed.
3. In addition to sea and land ice melting, Overpeck warned that permafrost––the permanently frozen layer of soil that underlies much of the Arctic––will melt and eventually disappear in some areas.
4. Aqua, the Latin word for water, has six Earth–observing instruments on board and is collecting information about the Earth‘s water cycle, including evaporation from the oceans, water vapor in the atmosphere, clouds, precipitation, soil moisture, sea ice, land ice and snow cover on the land and ice.
5. "What we did for the first time is really look at how all of those components work together." The team concluded that there were two major amplifying feedbacks in the Arctic system involving the interplay between sea and land ice, ocean circulation in the North Atlantic, and the amounts of precipitation and evaporation in the system.
Μετάφραση του &#39land ice&#39 σε Ρωσικά