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Showing 1 to 3 of 3 for “""Core-Suction" Technique"”.

  1. Development of "Core-Suction" Technique for Fabrication of Highly Doped Fibers for Optical Amplification and Characterization of Optical Fibers for Raman Amplification

    This thesis presents a novel technique named "Core Suction" for fabricating optical fiber preforms for manufacturing highly doped fibers (HDFs) for optical amplification (Raman effect based or Erbium fiber based). The technique involves drawing the molten non-conventional core glass material into …

    vt Repository record for Development of "Core-Suction" Technique for Fabrication of Highly Doped Fibers for Optical Amplification and Characterization of Optical Fibers for Raman Amplification (opens in a new tab)

  2. Showerhead Film Cooling Performance of a Turbine Vane at High Freestream Turbulence in a Transonic Cascade

    … components (blades and vanes) is a widely used technique that allows higher turbine inlet temperatures by maintaining material temperatures within acceptable limits. In this cooling method, air is extracted from the compressor and forced through internal cooling passages within turbine blades …

    vt Repository record for Showerhead Film Cooling Performance of a Turbine Vane at High Freestream Turbulence in a Transonic Cascade (opens in a new tab)

  3. Experimental Study of Gas Turbine Endwall Cooling with Endwall Contouring under Transonic Conditions

    … is necessary to prevent ingestion to the turbine core whereas discrete hole cooling is largely necessary to provide film cooling primarily near leading edge region and mid-passage region. Different coolant to mainstream mass flow ratios (MFR) were investigated for all cooling features at design …

    vt Repository record for Experimental Study of Gas Turbine Endwall Cooling with Endwall Contouring under Transonic Conditions (opens in a new tab)