Seminar 34 -- Thermal and Hydraulic Performance of Low GWP Refrigerants under Flow Condensation PDF

Seminar 34 -- Thermal and Hydraulic Performance of Low GWP Refrigerants under Flow Condensation PDF

Name:
Seminar 34 -- Thermal and Hydraulic Performance of Low GWP Refrigerants under Flow Condensation PDF

Published Date:
2023

Status:
Active

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Publisher:
ASHRAE

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

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$15.6
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This product is a zip file that contains files that consist of PowerPoint slides synchronized with the audio-recording of the speaker, PDF files of the slides, and audio only (mp3 format) as noted.

The environmental impact of conventional HFC refrigerants and their subsequent phasing out has led to the evaluation of heat transfer and pressure drop performance of alternative low-GWP refrigerants. This seminar highlights the flow condensation performance of several low-GWP refrigerants, both pure and HFC/HFO mixtures, in 0.95 mm multi-channels tube, and smooth and internally enhanced microfin tubes of 4 mm to 9 mm diameter. R-32, R-1234yf, R-454C, R-450A, and R-513A were experimentally investigated to compare with R134a and R410A, and with existing correlations. This session benefits engineers with refrigerant selection and design of air-to-refrigerant and liquid-to-refrigerant heat transfer equipment.

  1. Condensation Heat Transfer Performance of R513A and R450A in Minichannel Square Tubes< /br> Melanie Derby, Ph.D., Member, Kansas State University, Manhattan, KS
  2. Condensation Heat Transfer and Pressure Drop for Single Component and Refrigerant Mixtures in Smooth and Enhanced Tube Geometries< /br> Saad Jajja, Ph.D., Oak Ridge National Laboratory, Oak Ridge, TN
  3. Condensation of R32 inside Microfin and Smooth ID 4mm Tubes: A Direct Experimental Comparison< /br> Simone Mancin, Ph.D., University of Padova, Padua, TN, Italy
  4. Condensation of Low Global Warming Potential Non-Azeotropic Mixture R454C in Horizontal Microfin Tubes< /br> Brian Fronk, Ph.D., Member, Oregon State University, Corvallis, OR

File Size : 1 file , 63 MB
Product Code(s) : D-TO22Sem34
Published : 2023

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