LAPSE:2023.2404
Published Article

LAPSE:2023.2404
Self-Circulating Evaporative Cooling System of a Rotor and Its Experimental Verification
February 21, 2023
Abstract
With the development of hydropower, the heat problem of a rotor cannot be ignored. This paper presents a topology of an evaporative cooling system for rotors. The system seals the pole coil in a tank and immerses the coil in the insulating coolant with a suitable boiling point. The latent heat of vaporization during the boiling of coolant is used to control the temperature rise of the pole coil. After explaining the circulation principle of the system, the effectiveness of the cooling system is verified by experiments. A small-scale experimental platform has been set up to test the effectiveness of the new topology. The comparison experiment with air-cooling shows that the phase change cooling system can not only provide hundreds of times the heat transfer capacity of air-cooling, but also the temperature rise of the coil is half that of air cooling. Based on the experimental results, the calculated formula of the heat transfer coefficient of the evaporative cooling system in the rotating state was fitted, and the deviation of the calculated result could be kept at less than 25%. Thanks to the evaporative cooling system, the rotor carries a high current density.
With the development of hydropower, the heat problem of a rotor cannot be ignored. This paper presents a topology of an evaporative cooling system for rotors. The system seals the pole coil in a tank and immerses the coil in the insulating coolant with a suitable boiling point. The latent heat of vaporization during the boiling of coolant is used to control the temperature rise of the pole coil. After explaining the circulation principle of the system, the effectiveness of the cooling system is verified by experiments. A small-scale experimental platform has been set up to test the effectiveness of the new topology. The comparison experiment with air-cooling shows that the phase change cooling system can not only provide hundreds of times the heat transfer capacity of air-cooling, but also the temperature rise of the coil is half that of air cooling. Based on the experimental results, the calculated formula of the heat transfer coefficient of the evaporative cooling system in the rotating state was fitted, and the deviation of the calculated result could be kept at less than 25%. Thanks to the evaporative cooling system, the rotor carries a high current density.
Record ID
Keywords
air cooling, evaporative cooling, heat transfer coefficient, hydro generator
Subject
Suggested Citation
Wang Y, Ruan L. Self-Circulating Evaporative Cooling System of a Rotor and Its Experimental Verification. (2023). LAPSE:2023.2404
Author Affiliations
Wang Y: Institute of Electrical Engineering (IEE), Chinese Academy of Sciences (CAS), Beijing 100190, China; School of Electronic, Electrical and Communication Engineering, University of Chinese Academy of Sciences, Beijing 100049, China [ORCID]
Ruan L: Institute of Electrical Engineering (IEE), Chinese Academy of Sciences (CAS), Beijing 100190, China; School of Electronic, Electrical and Communication Engineering, University of Chinese Academy of Sciences, Beijing 100049, China [ORCID]
Ruan L: Institute of Electrical Engineering (IEE), Chinese Academy of Sciences (CAS), Beijing 100190, China; School of Electronic, Electrical and Communication Engineering, University of Chinese Academy of Sciences, Beijing 100049, China [ORCID]
Journal Name
Processes
Volume
10
Issue
5
First Page
934
Year
2022
Publication Date
2022-05-09
ISSN
2227-9717
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Original Submission
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PII: pr10050934, Publication Type: Journal Article
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LAPSE:2023.2404
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https://doi.org/10.3390/pr10050934
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[v1] (Original Submission)
Feb 21, 2023
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Feb 21, 2023
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