vortex tube - определение. Что такое vortex tube
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Что (кто) такое vortex tube - определение

A DEVICE THAT SEPARATES COMPRESSED GAS BY UTILIZING THE PHENOMENON OF VORTEX FLOW IN THE TUBE INTO HOT AND COLD STREAMS
Vortex cooler; Ranque-Hilsch vortex tube; Hilsch vortex tube; Ranque-Hilsch vortex-tube effect; Hilsch tube
  • Separation of a compressed gas into a hot stream and a cold stream

Vortex tube         
·add. ·- An imaginary tube within a rotating fluid, formed by drawing the vortex lines through all points of a closed curve.
Vortex tube         
The vortex tube, also known as the Ranque-Hilsch vortex tube, is a mechanical device that separates a compressed gas into hot and cold streams. The gas emerging from the hot end can reach temperatures of , and the gas emerging from the cold end can reach .
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
A vortex ring, also called a toroidal vortex, is a torus-shaped vortex in a fluid; that is, a region where the fluid mostly spins around an imaginary axis line that forms a closed loop. The dominant flow in a vortex ring is said to be toroidal, more precisely poloidal.

Википедия

Vortex tube

The vortex tube, also known as the Ranque-Hilsch vortex tube, is a mechanical device that separates a compressed gas into hot and cold streams. The gas emerging from the hot end can reach temperatures of 200 °C (390 °F), and the gas emerging from the cold end can reach −50 °C (−60 °F). It has no moving parts and is considered an environmentally friendly technology because it can work solely on compressed air and does not use Freon. Its efficiency is, however, low, contradicting the environmental advantages.

Pressurised gas is injected tangentially into a swirl chamber and accelerated to a high rate of rotation. Due to the conical nozzle at the end of the tube, only the outer shell of the compressed gas is allowed to escape at that end. The remainder of the gas is forced to return in an inner vortex of reduced diameter within the outer vortex. At up to 1,000,000 RPM, this air stream revolves toward the hot end where some escapes through the control valve. The remaining air, still spinning, is forced back through the center of this outer vortex. The inner stream gives off kinetic energy in the form of heat to the outer stream and exits the vortex tube as cold air. The outer stream exits the opposite end as hot air.