2011IEEE Transactions on Applied SuperconductivityRequires access

Development of HTS Insert Cryostat for High Field Superconducting Magnet

Yeon Suk Choi, Dong Lak Kim, Dong Won Shin

Open publisher page 2 citations

Abstract

The development of a 5 T high temperature superconducting (HTS) insert magnet system is underway at the Korea Basic Science Institute (KBSI). The objective of the program is the design and fabrication of HTS insert magnet system for high field superconducting magnet applications. Since the HTS magnet system should be inserted into the conduction-cooled 15 T background magnet with 102 mm room-temperature bore, several ancillary requirements such as space restriction and cryostat structure need technical attention. The design and fabrication of the HTS insert cryostat are completed now. In this paper, the design of the cryostat for the 5 T HTS insert magnet is presented, taking into account the cryogenic loads and inventory of cryogenic liquid. In addition, the structure of the cryostat, minimizing thermal flow from room-temperature to cryogenic-temperature, is described in detail. The preliminary results of performance test of the HTS insert cryostat are also discussed.

About this research paper

What this paper is about

The development of a 5 T high temperature superconducting (HTS) insert magnet system is underway at the Korea Basic Science Institute (KBSI). The objective of the program is the design and fabrication of HTS insert magnet system for high field superconducting magnet applications. Since the HTS magnet system should be inserted into the conduction-cooled 15 T background magnet with 102 mm room-temperature bore, several ancillary requirements such as space restriction and cryostat structure need technical attention. The design and fabrication of the HTS insert cryostat are completed now. In this paper, the design of the cryostat for the 5 T HTS insert magnet is presented, taking into account the cryogenic loads and inventory of cryogenic liquid. In addition, the structure of the cryostat, minimizing thermal flow from room-temperature to cryogenic-temperature, is described in detail. The preliminary results of performance test of the HTS insert cryostat are also discussed.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The development of a 5 T high temperature superconducting (HTS) insert magnet system is underway at the Korea Basic Science Institute (KBSI). The objective of the program is the design and fabrication of HTS insert magnet system for high field superconducting magnet applications. Since the HTS magnet system should be inserted into the conduction-cooled 15 T background magnet with 102 mm room-temperature bore, several ancillary requirements such as space restriction and cryostat structure need technical attention. The design and fabrication of the HTS insert cryostat are completed now. In this paper, the design of the cryostat for the 5 T HTS insert magnet is presented, taking into account the cryogenic loads and inventory of cryogenic liquid. In addition, the structure of the cryostat, minimizing thermal flow from room-temperature to cryogenic-temperature, is described in detail. The preliminary results of performance test of the HTS insert cryostat are also discussed.

Key concepts: Cryostat, Magnet, Superconducting magnet, Insert (composites), Materials science, Cryogenics, Fabrication, Nuclear engineering

Related papers

Back to paper searchBrowse research topicsOriginal source
Development of HTS Insert Cryostat for High Field Superconducting Magnet — Research Paper | ScholarLens