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Uncoupling Coriolis Force and Rotating Buoyancy Effects on Full-Field Heat Transfer Properties of a Rotating Channel
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Uncoupling Coriolis Force and Rotating Buoyancy Effects on Full-Field Heat Transfer Properties of a Rotating Channel

Uncoupling Coriolis Force and Rotating Buoyancy Effects on Full-Field Heat Transfer Properties of a Rotating Channel

DOI:

10:03 min

October 05, 2018

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Chapters

  • 00:04Title
  • 00:44The Rotating Rig Setup and the Heat Transfer Test Module
  • 02:01Collecting Data to Determine the Thermal Emissivity Coefficient for the Infrared Thermography System
  • 03:06Dynamic Balancing of the Rotating Rig
  • 04:02Evaluation of Heat Loss Coefficients
  • 05:19Baseline and Rotating Heat Transfer Tests
  • 07:22Results: Examples of Decoupling Coriolis and Rotating Buoyancy Effects in Rotating Channels
  • 08:56Conclusion

Summary

자동 번역

Here, we present an experimental method for decoupling the interdependent Coriolis-force and rotating-buoyancy effects on full-field heat transfer distributions of a rotating channel.

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