• Title/Summary/Keyword: Stirling cryocooler

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Cool-down test of cryogenic cooling system for superconducting fault current limiter

  • Hong, Yong-Ju;In, Sehwan;Yeom, Han-Kil;Kim, Heesun;Kim, Hye-Rim
    • Progress in Superconductivity and Cryogenics
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    • v.17 no.3
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    • pp.57-61
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    • 2015
  • A Superconducting Fault Current Limiter is an electric power device which limits the fault current immediately in a power grid. The SFCL must be cooled to below the critical temperature of high temperature superconductor modules. In general, they are submerged in sub-cooled liquid nitrogen for their stable thermal characteristics. To cool and maintain the target temperature and pressure of the sub-cooled liquid nitrogen, the cryogenic cooling system should be designed well with a cryocooler and coolant circulation devices. The pressure of the cryostat for the SFCL should be pressurized to suppress the generation of nitrogen bubbles in quench mode of the SFCL. In this study, we tested the performance of the cooling system for the prototype 154 kV SFCL, which consist of a Stirling cryocooler, a subcooling cryostat, a pressure builder and a main cryostat for the SFCL module, to verify the design of the cooling system and the electric performance of the SFCL. The normal operation condition of the main cryostat is 71 K and 500 kPa. This paper presents tests results of the overall cooling system.

Analysis of electric circuit using capacitor for driving linear compressor (콘덴서를 이용한 선형압축기 구동 전기회로 해석)

  • Ko, Jun-Seok;Kim, Hyo-Bong;Park, Seong-Je;Hong, Yong-Ju;Yeom, Han-Kil;Koh, Deuk-Yong
    • Progress in Superconductivity and Cryogenics
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    • v.14 no.3
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    • pp.43-47
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    • 2012
  • A linear compressor generates pulsating pressure and oscillating flow in a cryocooler such as Stirling cryocooler and pulse tube refrigerator. It is driven by AC power source and designed to operate at resonance of piston motion. The driving voltage level is determined by electric parameters of resistance, inductance and thrust constant of linear motor. From voltage equation on linear motor, the power factor of driving power is inherently less than 1. The phase difference between voltage and current of supplied power can be zero using capacitor and this can minimize a supply voltage level. Especially, the linear compressor of kW class requires high voltage and thus can cause a difficulty in selecting power supply unit due to limitation of voltage level. The capacitor in driving electric circuit is useful to settle this problem. In this study, the electric circuit of linear compressor is analytically investigated with assumption of mechanical resonance. The electric parameters of commercial linear motor are used in the analysis. The effects of capacitor on driving voltage level and power factor are investigated. From analytic results, it is shown that the voltage level can be mimized with using capacitor in driving electric circuit.

Cryocoolers for cooling of HTS RF Filter and IR detector (초전도필터 및 적외선검지기 냉각용 극저온냉동기)

  • 홍용주
    • Journal of the Korean Society for Precision Engineering
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    • v.19 no.11
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    • pp.18-23
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    • 2002
  • 고품질의 극저온 환경의 생성 및 유지는 고품질 대용량 정보통신, 의료진단, 초전도 및 고집적반도체 제조공정 등의 차세대 유망 산업 분야에서 필수적인 요소로 자리 잡고 있으며, cryopump, 민수용 및 군수용의 적외선 검지기 및 초전도 RF 필터의 효과적 냉각을 위해 보다 높은 신뢰성과 수명, 고효율의 극저온 냉동기에 대한 수요는 점차 증대될 것으로 기대된다. 스터링 냉동기 및 맥동관 냉동기는 짧은 역사에도 불구하고, 다양한 분야에서 기존의 한제 및 극저온 냉동기를 대치하여 활용될 수 있을 것으로 전망된다.

The study of the Characteristic of the Coaxial Type Inertance Pulse Tube Refrigerators (관성관형 동축 맥동관 냉동기의 특성에 관한 연구)

  • 김양훈;박성제;홍용주;김효봉;이승홍
    • Proceedings of the Korea Institute of Applied Superconductivity and Cryogenics Conference
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    • 2003.02a
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    • pp.33-35
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    • 2003
  • There are three types that geometrical arrangement of the pulse tube and regenerator - in line type, U type, and coaxial type. The most compact and convenient one practical applications is the coaxial type. It can replace Stirling cryocooler without any change to the Dewar or the connection to the cooled devices. To investigate effects of the inertance tube, we perform experiments with varying inertance tube inner diameter and length. The experimental results show that optimum inertance tube inner diameter and length are 1.3mm, 1900mm respectively.

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THERMAL DESIGN OF A PROTOMODEL SPACE INFRARED CRYOGENIC SYSTEM (적외선 우주망원경 냉각시스템 시험모델 열설계)

  • Yang Hyung-Suk;Kim Dong-Lak;Lee Byoung-Seob;Kim Geon-Hee;Lee Dae-Hee;Pak Soo-Jong;Nam Uk-Won
    • Journal of Astronomy and Space Sciences
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    • v.23 no.2
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    • pp.153-160
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    • 2006
  • A Protomodel Space Infrared Cryogenic System (PSICS) cooled by a stirling cry-ocooler has been designed. The PSICS has an IR sensor inside the cold box which is cooled by a stirling cryocooler with refrigeration capacity of 500mW at 80K in a vacuum vessel. It is important to minimize the heat load so that the background thermal noise can be reduced. In order to design the cryogenic system with low heat load and to reduce the remained heat load, we have performed numerical analyses. In this paper, we present the design factors and the results obtained by the thermal analysis of the PSICS.

Development of the Pulse Tube Cryocooler for Infrared Detector (적외선 검출기용 맥동관 극저온 냉동기 기술개발)

  • Yeom, Hankil;Park, Seoung-Je;Hong, Hong-Ju;Ko, Junseok;In, Sehwan;Kim, Hyo-Bong
    • Transactions of the KSME C: Technology and Education
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    • v.3 no.4
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    • pp.241-248
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    • 2015
  • Most of the Stirling cryocoolers used for infrared detector cooling in domestic is imported. Because the cooler has a high price, short life and poor durability, demand for the coolers continues steadily. However, the cooler is highly related to defense and space technology, technology transfer or co-development with the countries having experties in cooler design is very limited. The pulse tube cooler to be developed in this study is such that the mechanical piston in low temperature actuating part is replaced by the gas piston and linear compressor is adopted, which results in low vibration, long life and better durability. It is expected that development of the pulse tube cooler will not only improve our technology to the level of advanced countries, but also enhance the skills in designing and manufacturing of the infrared detector.