NASA Technical Reports Server (NTRS) : Heat pdf

NASA Technical Reports Server (NTRS) : Heat_bookcover

NASA Technical Reports Server (NTRS) : Heat

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A combined experimental and computational study has been performed to investigate the detailed heat transfer coefficient distributions within a complex blade trailing edge passage. The experimental measurements are made using a steady liquid crystal thermography technique applied to one major side of the passage. The geometry of the trailing edge passage is that of a two-pass serpentine circuit with a sharp 180-degree turning region at the tip. The upflow channel is split by interrupted ribs into two major subchannels, one of which is turbulated. This channel has an average aspect ratio of roughly 14:1. The spanwise extent of the channel geometry includes both area convergence from root to tip, as well as taper towards the trailing edge apex. The average section Reynolds numbers tested in this upflow channel range from 55,000 to 98,000. The tip section contains a turning vane near the extreme comer. The downflow channel has an aspect ratio of about 5:1, and also includes convergence and taper.

Turbulators of varying sizes are included in this channel also. Both detailed heat transfer and pressure distribution measurements are presented. The pressure measurements are incorporated into a flow network model illustrating the major loss contributors

  • Creator/s: NASA Technical Reports Server (NTRS
  • Date: 8/22/2000
  • Year: 2000
  • Book Topics/Themes: NASA Technical Reports Server (NTRS), HIGH PRESSURE, TURBINE BLADES, TRAILING EDGES, HEAT TRANSFER COEFFICIENTS, COMPUTATIONAL FLUID DYNAMICS, THERMOGRAPHY, FLOW DISTRIBUTION, LIQUID CRYSTALS, PRESSURE DISTRIBUTION, REYNOLDS NUMBER, ASPECT RATIO, CIRCUITS, VANES, Bunker, Ronald S., Wetzel, Todd G., Rigby, David L

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