axial flow compressor - traducción al ruso
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axial flow compressor - traducción al ruso

PRESSURE PRODUCING MACHINE
Axial-flow compressor; Axial-flow; Axial flow; Axial-flow turbojet; Axial flow compression; Axial supercharger; Axial compressors; Turbo compressor; Turbo-compressor
  • stators]].
  • Olympus BOl.1]] turbojet.
  • Velocity triangle of the swirling fluid entering and exiting the rotor blade
  • Reasons stating difference in ideal and actual performance curve in an axial compressor
  • Off design characteristics curve of an axial compressor.  Stage loading coefficient (<math>\psi\,</math>) as function of flow coefficient (<math>\phi\,</math>)
  • Various points on the performance curve depending upon the flow rates and pressure difference
  • The compressor in a [[Pratt & Whitney TF30]] [[turbofan engine]].

axial flow compressor      

строительное дело

осевой компрессор

axial flow compressor      
осевой компрессор
axial flow         
осесимметричный поток

Definición

Compressor
·noun Anything which serves to compress.
II. Compressor ·noun A muscle that compresses certain parts.
III. Compressor ·noun A machine for compressing gases; especially, an air compressor.
IV. Compressor ·noun An instrument for compressing an artery (·esp., the femoral artery) or other part.
V. Compressor ·noun An apparatus for confining or flattening between glass plates an object to be examined with the microscope;
- called also compressorium.

Wikipedia

Axial compressor

An axial compressor is a gas compressor that can continuously pressurize gases. It is a rotating, airfoil-based compressor in which the gas or working fluid principally flows parallel to the axis of rotation, or axially. This differs from other rotating compressors such as centrifugal compressor, axi-centrifugal compressors and mixed-flow compressors where the fluid flow will include a "radial component" through the compressor.

The energy level of the fluid increases as it flows through the compressor due to the action of the rotor blades which exert a torque on the fluid. The stationary blades slow the fluid, converting the circumferential component of flow into pressure. Compressors are typically driven by an electric motor or a steam or a gas turbine.

Axial flow compressors produce a continuous flow of compressed gas, and have the benefits of high efficiency and large mass flow rate, particularly in relation to their size and cross-section. They do, however, require several rows of airfoils to achieve a large pressure rise, making them complex and expensive relative to other designs (e.g. centrifugal compressors).

Axial compressors are integral to the design of large gas turbines such as jet engines, high speed ship engines, and small scale power stations. They are also used in industrial applications such as large volume air separation plants, blast furnace air, fluid catalytic cracking air, and propane dehydrogenation. Due to high performance, high reliability and flexible operation during the flight envelope, they are also used in aerospace rocket engines, as fuel pumps and in other critical high volume applications.

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