Coupled Electromagnetic–Fluid–Thermal Analysis of a Fully Air-Cooled Pumped Storage Generator Motor

Author:

Zhang Shukuan123,Wang Fachen1,Wang Hongtao2,Shao Zhe1,Zhao Hongge1,Zhu Jingwei1ORCID

Affiliation:

1. College of Marine Electrical Engineering, Dalian Maritime University, Dalian 116026, China

2. Motor Design and System Control of Fujian Provincial University Engineering Research Center (Ningde Normal University), Fujian Province University, Ningde 352100, China

3. Key Laboratory of Special Machine and High Voltage Apparatus (Shenyang University of Technology), Ministry of Education, Shenyang 110870, China

Abstract

With the continuous increase in the capacity of the pumped storage generator motor, the overheating of the rotor area is becoming increasingly severe, which has a significant effect on the safe and reliable operation of the machine. The heat dissipation of the machine rotor by fully air-cooled is one of the key technologies to develop the new generation of pumped storage generator motors. In this paper, the electromagnetic field and fluid–thermal coupled field of a pumped storage generator motor are analyzed. The 2D transient time-step finite element model of the electromagnetic field of a pumped storage generator motor is established, and the eddy current loss of damping bars of the rotor is calculated by the finite element method. The additional loss of the rotor pole surface is calculated by analytical method. The mathematical and geometric models of the 3D fluid–thermal coupled field of the pumped storage generator motor are established and calculated. The complex fluid velocity distribution and the temperature distribution at different positions of the rotor under fully air-cooled fanless cooling conditions are investigated in detail. The calculated temperature of field winding is compared with the measured value, and the result shows that the calculated result coincident well with the test data. This research provides the technical reference for the development and temperature rise calculation for large pumped storage generator motors.

Funder

Motor Design and System Control of Fujian Provincial University Engineering Research Center (Ningde Normal University), Fujian Province University

Key Laboratory of Special Machine and High Voltage Apparatus (Shenyang University of Technology), Ministry of Education

Stability Support Project of the Laboratory of Science and Technology on Integrated Logistics Support, National University of Defense Technology

Fundamental Research Funds for the Central Universities

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Control and Optimization,Mechanical Engineering,Computer Science (miscellaneous),Control and Systems Engineering

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