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논문검색

Conceptual design and analysis of rotor for a 1-kW-Class HTS rotating machine

초록

영어

This paper presents a conceptual design and analysis for a 1-kW-class high-temperature superconducting rotating machine (HTSRM) rotor. The designed prototype is a small-scale integration system of a HTSRM and a HTS contactless rotary excitation device (CRED). Technically, CRED and HTSRM are connected in the same shaft, and it effectively charges the HTS coils of the rotor field winding by pumping fluxes via a non-contact method. HTS coils in rotor pole body and toroidal HTS wire in CRED rotor are cooled and operated by liquid nitrogen in cryogen tank located in inner-most of rotor. Therefore, it is crucial to securely maintain the thermal stability of cryogenic environment inside rotor. Especially, we critically consider not only on mechanical characteristics of the rotor but also on cryogenic thermal characteristics. In this paper, we conduct two main tasks covering optimizing a conceptual design and performing operational characteristics. First, rotor parameters are conceptually designed by analytical design codes. These parameters consider to mechanical and thermal performances such as mechanical strength, mechanical rigidity, and thermal heat losses of the rotor. Second, mechanical and thermal characteristics of rotor for 1-kW-class HTSRM are analyzed to verify the feasible operation conditions. Hence, three-dimensional finite element analysis (3D-FEA) method is used to perform these analyses in ANSYS-Workbench platform.

목차

Abstract
 1. INTRODUCTION
 2. PRELIMINARY DESIGN OF 1-KW-CLASS HTS ROTATING MACHINE
 3. CONCEPTUAL DESIGN AND ANALYSIS OF A HTS ROTOR
  3.1. Conceptual structure design of HTS rotor
  3.2. The thermal FEA of HTS rotor
  3.3. The mechanical FEA of HTS rotor
 4. CONCLUSIONS
 ACKNOWLEDGMENT
 REFERENCES

저자정보

  • J. H. Kim Department of Electrical Engineering, Jeju National University, Jeju, Korea
  • C. J. Hyeon Department of Electrical Engineering, Jeju National University, Jeju, Korea
  • H. L. Quach Department of Electrical Engineering, Jeju National University, Jeju, Korea
  • Y. S. Chae Department of Electrical Engineering, Jeju National University, Jeju, Korea
  • J. H. Moon Department of Electrical Engineering, Jeju National University, Jeju, Korea
  • C.-J. Boo Department of Electrical Engineering and Energy, Jeju International University, Jeju, Korea
  • H. M. Kim Department of Electrical Engineering, Jeju National University, Jeju, Korea

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