vortex line - translation to russian
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vortex line - translation to russian

PSEUDOVECTOR FIELD IN CONTINUUM MECHANICS
Vorticity-free; Vortex line; Vortex-line; Vortex-tube; Vortex dynamics; Vortex motion; Vortex flux; Absolute vorticity; Relative vorticity; Vortex lines; Rotationality

vortex (vorticity) line      
вихревая линия
vortex ring         
  • Pappus of the dandelion which produces a separated vortex ring in order to stabilize flight.
  • Flow around an idealized vortex ring
  • The curved arrows indicate airflow circulation about the rotor disc.  The helicopter shown is the [[RAH-66 Comanche]].
TORUS-SHAPED VORTEX IN A FLUID OR GAS
Spherical vortex; Hill's vortex; Vortex ringstate; Toroidal vortex; Hill's Spherical Vortex

общая лексика

вихревое кольцо

vortex line         

общая лексика

вихревая линия

Definition

Ватерлиния
(голл. water-lijn, от water - вода и lijn - линия)

линия соприкасания поверхности воды с корпусом плавающего судна. Грузовая В. совпадает со спокойной поверхностью воды при полной загрузке судна и соответствует наибольшей допускаемой в эксплуатации осадке; положение грузовой В. отмечается грузовой маркой (См. Грузовая марка). Теоретические В., изображаемые на теоретическом чертеже судна, получают сечением поверхности корпуса судна горизонтальными плоскостями. Форма В. и величина очерченной ею площади влияют на характеристики ходкости и остойчивости судна.

Wikipedia

Vorticity

In continuum mechanics, vorticity is a pseudovector field that describes the local spinning motion of a continuum near some point (the tendency of something to rotate), as would be seen by an observer located at that point and traveling along with the flow. It is an important quantity in the dynamical theory of fluids and provides a convenient framework for understanding a variety of complex flow phenomena, such as the formation and motion of vortex rings.

Mathematically, the vorticity ω {\displaystyle {\vec {\omega }}} is the curl of the flow velocity u {\displaystyle {\vec {u}}} :

ω × u , {\displaystyle {\vec {\omega }}\equiv \nabla \times {\vec {u}}\,,}

where {\displaystyle \nabla } is the nabla operator. Conceptually, ω {\displaystyle {\vec {\omega }}} could be determined by marking parts of a continuum in a small neighborhood of the point in question, and watching their relative displacements as they move along the flow. The vorticity ω {\displaystyle {\vec {\omega }}} would be twice the mean angular velocity vector of those particles relative to their center of mass, oriented according to the right-hand rule.

In a two-dimensional flow, ω {\displaystyle {\vec {\omega }}} is always perpendicular to the plane of the flow, and can therefore be considered a scalar field.

What is the Russian for vortex <font color="gray"><i>(vorticity)</i></font> line? Translation of &#3