river engineering - translation to ρωσικά
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river engineering - translation to ρωσικά

DELIBERATE HUMAN MODIFICATION OF THE COURSE, FLOW, OR OTHER CHARACTERISTICS OF A RIVER
Stream channelization; River Engineering; Hydromodification; River management; Canalized; Canalised; River regulation; Channelization (rivers); Channelized (river); Channelization (river); River straightening; Channelised
  • The [[Los Angeles River]] is extensively channelized with concrete embankments.
  • The [[Mississippi River]] basin is the largest in the United States.
  • dredge]] [[barge]] on the [[Vistula River]], [[Warsaw]], [[Poland]].
  • Channelized stream ([[Sechler Run]]) in [[Danville, Pennsylvania]]
  • Flood control structures at the [[Thames Barrier]] in London.

river engineering         

строительное дело

регулирование рек (техническая дисциплина)

river engineering         
регулирование рек (техническая дисциплина)
engineering         
  • A water-powered [[mine hoist]] used for raising ore, ca. 1556
  • A drawing for a [[steam locomotive]]. Engineering is applied to [[design]], with emphasis on function and the utilization of mathematics and science.
  • fluid flow]] and the [[heat equation]]s.
  • rotor and stator]] as well as the [[steam cycle]] all need to be carefully designed and optimized.
  • Radar, [[GPS]], [[lidar]], ... are all combined to provide proper navigation and [[obstacle avoidance]] (vehicle developed for 2007 [[DARPA Urban Challenge]])
  • F}}
  • Genetically engineered mice expressing [[green fluorescent protein]], which glows green under blue light. The central mouse is [[wild-type]].
  • Relief map of the [[Citadel of Lille]], designed in 1668 by [[Vauban]], the foremost military engineer of his age.
  • Offshore platform, [[Gulf of Mexico]]
  • [[Hoover Dam]]
  • Kismet]] can produce a range of facial expressions.
  • [[Leonardo da Vinci]], seen here in a self-portrait, has been described as the epitome of the artist/engineer.<ref name="Bjerklie, David"/> He is also known for his studies on [[human anatomy]] and [[physiology]].
  • The ''[[InSight]]'' lander with solar panels deployed in a cleanroom
  • aqueducts]] to bring a steady supply of clean and fresh water to cities and towns in the empire.
  • The [[International Space Station]] is used to conduct science experiments in space
  • The application of the steam engine allowed coke to be substituted for charcoal in iron making, lowering the cost of iron, which provided engineers with a new material for building bridges.  This bridge was made of [[cast iron]], which was soon displaced by less brittle [[wrought iron]] as a structural material
  • Engineers, scientists and technicians at work on target positioner inside [[National Ignition Facility]] (NIF) target chamber
  • Graphic representation of a minute fraction of the WWW, demonstrating [[hyperlink]]s
APPLIED SCIENCE
Engineered; Engeneering; Enginering; Graduate Diploma in Engineering; Technical science; Engineerig; Engineering (profession); Engineering (practice); Engineering (skill); Enginreeing; Science and engineering; Science and Engineering; Engineering subjects; Engineering branch

Ορισμός

Жёлтая река

одна из главных рек Китая; см. Хуанхэ.

Βικιπαίδεια

River engineering

River engineering is a discipline of civil engineering which studies human intervention in the course, characteristics, or flow of a river with the intention of producing some defined benefit. People have intervened in the natural course and behaviour of rivers since before recorded history—to manage the water resources, to protect against flooding, or to make passage along or across rivers easier. Since the Yuan Dynasty and Ancient Roman times, rivers have been used as a source of hydropower. From the late 20th century, the practice of river engineering has responded to environmental concerns broader than immediate human benefit. Some river engineering projects have focused exclusively on the restoration or protection of natural characteristics and habitats.

Hydromodification encompasses the systematic response to alterations to riverine and non-riverine water bodies such as coastal waters (estuaries and bays) and lakes. The U.S. Environmental Protection Agency (EPA) has defined hydromodification as the "alteration of the hydrologic characteristics of coastal and non-coastal waters, which in turn could cause degradation of water resources." River engineering has often resulted in unintended systematic responses, such as reduced habitat for fish and wildlife, and alterations of water temperature and sediment transport patterns.

Beginning in the late 20th century, the river engineering discipline has been more focused on repairing hydromodified degradations and accounting for potential systematic response to planned alterations by considering fluvial geomorphology. Fluvial geomorphology is the study of how rivers change their form over time. Fluvial geomorphology is the cumulation of a number of sciences including open channel hydraulics, sediment transport, hydrology, physical geology, and riparian ecology. River engineering practitioners attempt to understand fluvial geomorphology, implement a physical alteration, and maintain public safety.: 3–13ff 

Παραδείγματα από το σώμα κειμένου για river engineering
1. They have been ripped up." Many scientists believe that one of the reasons Katrina was so devastating was because a century of river engineering and levee building had reduced the delta‘s natural defences.
Μετάφραση του &#39river engineering&#39 σε Ρωσικά