hydrodynamically$36434$ - translation to γερμανικά
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hydrodynamically$36434$ - translation to γερμανικά

SUBDISCIPLINE OF FLUID MECHANICS THAT DEALS WITH FLUID FLOW—THE NATURAL SCIENCE OF FLUIDS (LIQUIDS AND GASES) IN MOTION
Hydrodynamics; Hydrodynamic; Fluid flow; Fluid dynamic; Steady flow; Fluid flow and pump head; Flow properties; Transient flow; Fluid Dynamics; Aquadynamic; Unsteady flow; Fluid motion; Continuous flow; Flow (fluid); Flow characteristic; Flow characteristics; Steady flows; Fluid velocity; Liquid flow; Air motion; Air movement; Gas flow; Hydrodynamical; Fluid flows; Mathematical model of flow processes; Equations of fluid dynamics; Hydrodynamically; Hydrodynamicist; Hydronynamic
  • Flow around an [[airfoil]]
  • date=2016-03-03}}</ref>
  • The transition from laminar to turbulent flow
  • spoiler]]s to the convergent part.

hydrodynamically      
adv. auf hydrodynamische Weise (Untersuchung der Kräfte die durch Bewegung von Flüssigkeiten ausgeübt werden)
steady flow         
ständige Strömung, Dauerströmung
fluid dynamics         
Strömungsdynamik, Teil der Flüssigkeitsmechanik der sich mit Eigenschaften von Flüssigkeiten in Bewegung beschäftigt

Ορισμός

Hydrodynamics
·noun That branch of the science of mechanics which relates to fluids, or, as usually limited, which treats of the laws of motion and action of nonelastic fluids, whether as investigated mathematically, or by observation and experiment; the principles of dynamics, as applied to water and other fluids.

Βικιπαίδεια

Fluid dynamics

In physics, physical chemistry and engineering, fluid dynamics is a subdiscipline of fluid mechanics that describes the flow of fluids—liquids and gases. It has several subdisciplines, including aerodynamics (the study of air and other gases in motion) and hydrodynamics (the study of liquids in motion). Fluid dynamics has a wide range of applications, including calculating forces and moments on aircraft, determining the mass flow rate of petroleum through pipelines, predicting weather patterns, understanding nebulae in interstellar space and modelling fission weapon detonation.

Fluid dynamics offers a systematic structure—which underlies these practical disciplines—that embraces empirical and semi-empirical laws derived from flow measurement and used to solve practical problems. The solution to a fluid dynamics problem typically involves the calculation of various properties of the fluid, such as flow velocity, pressure, density, and temperature, as functions of space and time.

Before the twentieth century, hydrodynamics was synonymous with fluid dynamics. This is still reflected in names of some fluid dynamics topics, like magnetohydrodynamics and hydrodynamic stability, both of which can also be applied to gases.