[Skip to Content]
Provided by ASME The American Society of Mechanical Engineers
Banner
Turbo Expo 2027
BMO Centre
Calgary, Alberta, Canada

Conference: June 20–25, 2027
Exhibition: June 21–24, 2027
Menu
  • Tracks and Organizers
  • Policies
    • Confirm Co-Authorship
    • Presentation Requirements
    • Conflict in Ukraine
    • Code of Conduct/Anti-Harassment
    • The Role of the Corresponding Author
  • Help/Resources
    • Help Desk Calls
    • Contact Us
    • Organizer Resources
    • Author Resources
      • ASME Plagiarism Screening (iThenticate)
      • ASME Presenter Attendance Policy
      • Turbo Expo Paper Quality Standards
      • ASME Turbo Expo Journal Best Paper Guidelines
      • Conference-Specific Information and Templates
      • Copyright Transfer Form
      • Technical Presentation Tips
      • ​​​​​​​Appeal Process for the Journal of Turbomachinery
      • The Appeal Process for the ASME Journal of Engineering for Gas Turbines and Power Jerzy T. Sawicki, Ph.D., P.E., Editor
      • Indexing
      • Tutorial Handout Template
      • Poster Session Guidelines
      • Authorship and AI Tools
      • Author FAQs
  • Event Site
  • Publication Schedule
  • Home
  • Home
  • Turbo Expo 2021 Session Gallery
  • 11-01: Combustor Heat Transfer and Effusion Cooling
  • Influence of Opposing Dilution Jets on Effusion Cooling

59429 - Influence of Opposing Dilution Jets on Effusion Cooling 

The gas turbine combustion process reaches temperatures that exceed the melting temperature of the combustor liner materials. Cooling the liner is critical to combustor durability and is often accomplished with double-walled liners that contain both impingement and effusion holes. The liner cooling is complicated with the interruption of the effusion cooling by large dilution jets that facilitate the combustion process. Given the presence of the dilution jets, it is important to understand the effect that the dilution jet has on the opposing wall in light of the effusion film. This research included measurements of the local static pressure distribution for a range of dilution jet momentum flux ratios to investigate the impact that the opposing dilution jet has on the effusion film. The interactions with the effusion cooling were also evaluated by measuring the overall effectiveness across the panel.

Measurements showed that the opposing dilution jets did impact the liner at dilution jet momentum flux ratios that were greater than 20. The impacts at high momentum flux ratios were indicated through increased local static pressures. Furthermore, the dilution touchdown decreased the overall effectiveness of the effusion cooling. Results also indicated that the opposing dilution jets changed position on the liner as the dilution jet momentum flux ratio changes.

Custom JS

double-click to edit, do not edit in source

 

Influence of Opposing Dilution Jets on Effusion Cooling

Paper Type

Technical Paper Publication

Description


Session: 11-01: Combustor Heat Transfer and Effusion Cooling

Paper Number: 59429

Start Time: June 7th, 2021, 09:45 AM

Presenting Author: M. Riley Creer

Authors: M. Riley Creer Solar Turbines
Karen A. Thole The Pennsylvania State University
 
 

 













 

This site supports all modern browsers, such as Chrome, Firefox, Safari, and Edge. Microsoft no longer supports IE 11 as of August 2021. If you prefer to or you are required to continue using a Microsoft browser, you can use Edge.

  • ASME.ORG
  • Press
  • Terms of Use
  • Privacy Statement
  • ASME Communication Preferences
  • Community Rules

© The American Society of Mechanical Engineers

Stay Connected