+++Integral method of calculating the temperature field of an axial turbine disk--Translations.

Abstract

A method is proposed for calculating the heat transfer from disk to the air and the specific heat capacity of air assuming that the thermal conductivity of the disk material varies with the radius. One lateral surface of the disk is cooled by air bled from under the deflector, and the opposite surface is cooled by air bled from under the housing. The equation is solved by the successive approximations method. The temperature field was calculated for a turbine wheel having the following parameters: gas temperature before turbine, 935 degrees C; gas temperature at turbine blades, 810 degrees C; gas flow rate, 0.91 kg/sec; air temperature at the disk center, 205 degrees C; total air flow rate, 0.011 kg/sec; revolutions, 38,700 rpm; number of blades, 47 (fir tree-type roots). The temperature field of the disk cooled on one side is shown. (Author)

Document Details

Document Type
Technical Report
Publication Date
Apr 08, 1969
Accession Number
AD0694773

Entities

People

  • V. M. Chernin

Organizations

  • National Air and Space Intelligence Center

Tags

DTIC Thesaurus Topics

  • Air Flow
  • Air Temperature
  • Equations
  • Flow
  • Flow Rate
  • Gas Flow
  • Heat Capacity
  • Heat Transfer
  • Specific Heat
  • Thermal Conductivity
  • Turbine Blades
  • Turbine Wheels
  • Turbines

Fields of Study

  • Engineering
  • Physics

Readers

  • Aerodynamics.
  • Combustion and Flow Dynamics.