wind load - определение. Что такое wind load
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Что (кто) такое wind load - определение

WIDE RANGING SUBJECT CONCERNING THE EFFECTS OF WIND ON THE NATURAL AND BUILT ENVIRONMENT
Wind Engineering; Wind loading; Windtechnologie; Wind technology; Wind load
  • Wind engineering covers the aerodynamic effects of buildings
  • Computer simulation of the airflow downwind of a hangar which caused damage to [[Ameristar Charters Flight 9363]]
  • Damaged wind turbines due to hurricane Maria
  • Wind baffles being installed to mitigate wind comfort issues at the [[Bridgewater Place]] skyscraper in Leeds, UK
  • Wind Tunnel Model of One Post Office Square, Boston
  • [[Flow visualization]] of wind speed contours around a house

wind load         
(also wind loading)
¦ noun Engineering the force on a structure arising from the impact of wind on it.
Wind engineering         
Wind engineering is a subset of mechanical engineering, structural engineering, meteorology, and applied physics that analyzes the effects of wind in the natural and the built environment and studies the possible damage, inconvenience or benefits which may result from wind. In the field of engineering it includes strong winds, which may cause discomfort, as well as extreme winds, such as in a tornado, hurricane or heavy storm, which may cause widespread destruction.
Load (computing)         
  • [[htop]] displaying a significant computing load (top right: ''Load average:'')
AMOUNT OF COMPUTATIONAL WORK PERFORMED
Load average; Unix load average; System load; Load Averages; Load averages; Load Average; System load average; Load times; Loadavg; IOtop (Unix); Load (Unix)
In UNIX computing, the system load is a measure of the amount of computational work that a computer system performs. The load average represents the average system load over a period of time.

Википедия

Wind engineering

Wind engineering is a subset of mechanical engineering, structural engineering, meteorology, and applied physics that analyzes the effects of wind in the natural and the built environment and studies the possible damage, inconvenience or benefits which may result from wind. In the field of engineering it includes strong winds, which may cause discomfort, as well as extreme winds, such as in a tornado, hurricane or heavy storm, which may cause widespread destruction. In the fields of wind energy and air pollution it also includes low and moderate winds as these are relevant to electricity production and dispersion of contaminants.

Wind engineering draws upon meteorology, fluid dynamics, mechanics, geographic information systems, and a number of specialist engineering disciplines, including aerodynamics and structural dynamics. The tools used include atmospheric models, atmospheric boundary layer wind tunnels, and computational fluid dynamics models.

Wind engineering involves, among other topics:

  • Wind impact on structures (buildings, bridges, towers)
  • Wind comfort near buildings
  • Effects of wind on the ventilation system in a building
  • Wind climate for wind energy
  • Air pollution near buildings

Wind engineering may be considered by structural engineers to be closely related to earthquake engineering and explosion protection.

Some sports stadiums such as Candlestick Park and Arthur Ashe Stadium are known for their strong, sometimes swirly winds, which affect the playing conditions.