LAPSE:2023.13587
Published Article

LAPSE:2023.13587
Design of a Compact 1-MV-Class Radial Closing Switch for Tesla Type Generator
March 1, 2023
Abstract
The paper presents the development of a megavolt-class SF6-insulated radial switch. The switch is used as a crowbar in a MV Tesla-type generator to produce pulsed electric fields in very large volumes, for proof-of-concept experimentation of a novel non-invasive food processing technology. The main features of the switch include: (1) Using SF6 gas as the insulation gas; (2) a breakdown channel along the radial direction, rather than axial; (3) a compact configuration with its volume limited to 3.2 L. In order to achieve a ruggedized high voltage insulation as well as an enhanced operation safety, the following design techniques were applied: (1) Structures of the switch were well designed to minimize the local electric filed in the cathode triple junctions; (2) the grooves of surface of the insulators that enclose the switch were finely optimized to keep the surface flashover under control; (3) a prolate spheroid geometry of the high voltage electrode was adopted to achieve a better control of the gas breakdown. This paper describes in detail the design and the preliminary test of this switch.
The paper presents the development of a megavolt-class SF6-insulated radial switch. The switch is used as a crowbar in a MV Tesla-type generator to produce pulsed electric fields in very large volumes, for proof-of-concept experimentation of a novel non-invasive food processing technology. The main features of the switch include: (1) Using SF6 gas as the insulation gas; (2) a breakdown channel along the radial direction, rather than axial; (3) a compact configuration with its volume limited to 3.2 L. In order to achieve a ruggedized high voltage insulation as well as an enhanced operation safety, the following design techniques were applied: (1) Structures of the switch were well designed to minimize the local electric filed in the cathode triple junctions; (2) the grooves of surface of the insulators that enclose the switch were finely optimized to keep the surface flashover under control; (3) a prolate spheroid geometry of the high voltage electrode was adopted to achieve a better control of the gas breakdown. This paper describes in detail the design and the preliminary test of this switch.
Record ID
Keywords
HV closing switch, pulse power technology, SF6 insulation, Tesla transformer
Subject
Suggested Citation
Zhao L, Zhou L. Design of a Compact 1-MV-Class Radial Closing Switch for Tesla Type Generator. (2023). LAPSE:2023.13587
Author Affiliations
Journal Name
Energies
Volume
15
Issue
9
First Page
3229
Year
2022
Publication Date
2022-04-28
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en15093229, Publication Type: Journal Article
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LAPSE:2023.13587
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https://doi.org/10.3390/en15093229
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[v1] (Original Submission)
Mar 1, 2023
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