Research and modeling of the cooling system in steam turbine bearings

A new porous cooling system in which coolant supply is produced by the combined action of capillary and gravitational forces, is proposed and studied for various technical devices and systems developed by the authors. Cooling surface is made of stainless steel, brass, copper, bronze, nickel, glass a...

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Veröffentlicht in:Metalurgija 2021, Vol.60 (1-2), p.145
Hauptverfasser: Genbach, A. A, Baibekova, V. O, Olzhabayeva, K. S, Mergalimova, A, Rasmukhametova, A. S, Begimbetova, A. A, Zhauyt, A
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container_issue 1-2
container_start_page 145
container_title Metalurgija
container_volume 60
creator Genbach, A. A
Baibekova, V. O
Olzhabayeva, K. S
Mergalimova, A
Rasmukhametova, A. S
Begimbetova, A. A
Zhauyt, A
description A new porous cooling system in which coolant supply is produced by the combined action of capillary and gravitational forces, is proposed and studied for various technical devices and systems developed by the authors. Cooling surface is made of stainless steel, brass, copper, bronze, nickel, glass and alundum. The wall thickness was (0,05 - 2)∙10-3m. Visual observations were carried out by using high-speed cameras filming using SCS-IM. Experiments are carried out with water at pressures (0,01 - 10) MPa, sub cooling (0 - 20) K, excess liquid (1 - 14) of steam flow, thermal load (1 - 60)∙104 W / m2, temperature pressure (1 - 60) K and the system orientation (±0 ±90) degrees. The influence of liquid flow on heat exchange in porous materials has been studied. Calculated formulas for optimal fluid flow depending on the heat load and the type of porous structure are obtained. The design principles porous structures of evaporators are constructed. The mechanism of the vaporization process in the proposed porous cooling system using internal boiling characteristics is described.
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source DOAJ Directory of Open Access Journals; EZB-FREE-00999 freely available EZB journals
subjects Bearings turbines
capillary-porous structure
cooling system
modeling
temperature
title Research and modeling of the cooling system in steam turbine bearings
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