• Title/Summary/Keyword: cryogenic insulation

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Analysis of the Maximum Electric Field for Changing Pressure using Breakdown Characteristic of $N_2+SF_6$, $N_2+CF_4$, $N_2$ Gases in a Cryogenic Environment (극저온 환경을 고려한 기압별 $N_2+SF_6$, $N_2+CF_4$, $N_2$가스의 절연파괴 전압 값을 이용한 최대전계 분석)

  • Oh, Seok-Ho;Lee, Sang-Hwa;Shin, Woo-Ju;Park, Tae-Gun;Seong, Jae-Kyu;Hwang, Jae-Sang;Lee, Bang-Wook
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1548-1549
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    • 2011
  • High voltage cryogenic insulation issues need to be addressed in order to promote the commercialization of high temperature superconducting (HTS) equipment. As a fundamental step in the development of the optimum bushings for HTS devices, the breakdown characteristics of liquid nitrogen mixed with liquefied insulating gases such as $N_2$, $SF_6$, and $CF_4$ have been investigated. In order to investigate the possibility of substituting $CF_4$ gas for $SF_6$ gas for the bushings of HTS electrical equipment, AC withstanding voltage tests have been performed. In this paper, finding the maximum electric field $E_{max}$ using utilization factor ${\eta}$. This result is applicable to developing the real scale HTS equipment of the design parameters.

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Characteristics of Surface Flashover of spacer in Liquid Nitrogen (액체 질소중에서 고체 Spacer에 의한 연면 방전특성)

  • Kim, Y.S.;Back, S.M.;Lee, B.S.;Jang, H.M.;Kim, S.H.
    • Proceedings of the KIEE Conference
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    • 1999.11d
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    • pp.912-914
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    • 1999
  • Composite insulation system of liquid nitrogen and solid spacer is widely applied in high temperature superconducting power machine. This study has three step procedure. As follow, first step is composition of parallel deposited electrode and vertically deposited electrode along the direction of immersion in liquid nitrogen($LN_2$). Second step is investigation into surface flashover voltage of solid spacer under partially immersed in $LN_2$, and last step is comparison the result of this research with that of fully immersed in $LN_2$ and at cryogenic temperature gaseous nitrogen($GN_2$). This result presented that surface flashover voltage along solid spacer half immersed in $LN_2$ was almost the same as that of fully immersed spacer when the thickness of spacer(t) was t<10 mm. In the case of t>10 mm, however, spacer flashover voltage was equal to that obtained in $GN_2$ at cryogenic temperature.

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A Comparative Study on Mechanical Behavior of Low Temperature Application Materials for Ships and Offshore Structures (선박 및 해양구조물용 극저온 재료의 기계적 거동 특성)

  • Park, Woong-Sup;Kang, Ki-Yeob;Chun, Min-Sung;Lee, Jae-Myung
    • Journal of the Society of Naval Architects of Korea
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    • v.48 no.3
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    • pp.189-199
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    • 2011
  • Austenite stainless steel(ASS), aluminum alloy and nickel steel alloy are the most widely used in many cryogenic applications due to superior mechanical properties at low temperature. The Face-Centered Cubic(FCC) and Hexagonal Close-Packed(HCP) materials are used for the primary and secondary insulation barrier of Liquefied Natural Gas(LNG) carrier tank and various kinds of LNG applications currently. In this study, tensile tests of ASS, aluminum alloy and nickel steel alloy were carried out for the acquisition of quantitative mechanical properties under the cryogenic environment. The range of thermal condition was room temperature to $-163^{\circ}C$ and strain rate range was 0.00016/s to 0.01/s considering the dependencies of temperatures and strain rates. The comprehensive test data were analyzed in terms of the characteristics of mechanical behavior for the development of constitutive equation and its application.

The Frequency Spectrum Characteristics of the Radiated Electromagnetic Waves during Positive DC Discharge in Liquid Nitrogen (액체질소중 정극성 직류방전시 방사전자파의 주파수 스펙트럼 특성)

  • Park, Gwang-Seo;Sin, Ho-Yeong;Choe, Byeong-Ju;Choe, Sang-Tae;Kim, Gi-Chae;Lee, Gwang-Sik;Lee, Dong-In
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.48 no.9
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    • pp.648-655
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    • 1999
  • In this study, a relationship between DC discharge and the radiated electromagnetic waves is investigated by measuring electromagnetic waves using a biconical antenna and a spectrum analyzer. The characteristics of frequency spectrum ofthe radiated electromagnetic waves was measured at the atmospheric pressure in Liquid Nitrogen $(LN_2)$ during partial discharges in nonuniform and uniform electric field depend on positive DC power. From this experiment results, it was confirmed that when partial discharge was produced in Liquid Nitrogen and Air, the signal of partial discharge was detected by this experiment and the analysis method. It is considered thatthese results obtained from this investigation may be used as fundamental data for diagnosis and prediction of insulation on the equipments ultra-high voltage, superconducting and cryogenic applications.

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A Study on the Electrical Strength of Insulating Materials for High-Tc Superconducting Devices

  • Bae, Duck Kweon;Kim, Chung-Hyeok;Pak, Min-Sun;Oh, Yong-Cheul;Kim, Jin-Sa;Shin, Cheol-Gee;Lee, Joon-Ung;Song, Min-Jong;Choi, Woon-Shik
    • Transactions on Electrical and Electronic Materials
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    • v.6 no.6
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    • pp.294-300
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    • 2005
  • According to the trend for electric power equipment of high capacity and reduction of its size, the needs for the new high performance electric equipments become more and more important. On of the possible solution is high temperature superconducting (HTS) power application. Following the successful development of practical HTS wires, there have been renewed activities in developing superconducting power equipment. HTS equipments have to be operated in a coolant such as liquid nitrogen ($LN_2$) or cooled by conduction-cooling method such as using Gifford-McMahon (G-M) cryocooler to maintain the temperature below critical level. In this paper, the dielectric strength of some insulating materials, such as unfilled epoxy, filled epoxy, and polyimide in $LN_2$ was analyzed. Epoxy is a good insulating material but fragile at cryogenic temperature. The filled epoxy composite not only compensates for this fragile property but enhances its dielectric strength.

A study on the characteristics of arc discharge and radiated electromagnetic wave in liquid nitrogen (액체질소중에 있어서 아크방전 및 방사 전자파의 특성에 관한 연구)

  • Shin, Dong-Hwa;Park, Kwang-Seo;Ju, Jae-Hyun;Choi, Byung-Ju;Kim, Ki-Chai;Lee, Kwang-Sik;Lee, Dong-In
    • Proceedings of the KIEE Conference
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    • 1997.07e
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    • pp.1669-1671
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    • 1997
  • Liquid nitrogen has many adventages. It is cheaper than other cooling medium. It is easy to obtain high purity. It's utilized with easy. In future, liquid nitrogen is able to be accepted cooling medium for the superconducting and cryogenic applicated equipments. Cryogenic liquid may be atmospheric pressure state because thermoinsulation is ineffective, airtight decreasing by long time using and bubble occured by flowing current. If it is to be atmospheric pressure state, the electrical insulation strength is dropped and processed partial discharge, finally breakdown. Processing of breakdown has anticipated by measuring radiated-electromagnetic wave which is happened in time of breakdown. There is a measurement of radiated electromagnetic wave as a method that proceeding breakdown is anticipated. In this paper, radiated electromagnetic wave was measured in arc discharge by above conditions as a basic experiment.

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The Characteristics of Tracking Phenomena and Surface Discharge Using Various Types of Electrode Arrangement in LN2 at the Atmospheric Pressure (대기압하의 액체질소중 전극배치에 따른 고체유전체 표면의 연면방전 및 Tracking현상)

  • 박광서;신호영;최병주;박원주;이광식
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.17 no.3
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    • pp.49-55
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    • 2003
  • This paper studied characteristics of surface discharge and tracking phenomena on the surface of solid insulators in Liquid Nitrogen(LN2) noticed as a cooling medium of high temperature superconductor. In order to investigate the bubble effect which have much influence on electric surface discharge in Liquid Nitrogen, knife type electrode and plane electrode were formed oppositely with A-mode, B-mode and C-mode configuration. It is considered that these result are fundamental data for electric insulation design of superconductor and cryogenic application machinery which will be studied and developed in the future.

Numerical Model of Heat Diffusion and Evaporation by LNG Leakage at Membrane Insulation (LNG 화물창 방열재 균열에 따른 액화천연가스의 확산 및 온도 예측을 위한 수치 모델)

  • Lee, Jang Hyun;Kim, YoonJo;Hwang, Se Yun
    • Journal of Ocean Engineering and Technology
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    • v.28 no.6
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    • pp.517-526
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    • 2014
  • The leakage of cryogenic LNG through cracks in the insulation membrane of an LNG carrier causes the hull structure to experience a cold spot as a result of the heat transfer from the LNG. The hull structure will become brittle at this cold spot and the evaporated natural gas may potentially lead to a hazard because of its flammability. This paper presents a computational model for the LNG flow and heat diffusion in an LNG insulation panel subject to leakage. The temperature distribution in the insulation panel and the speed of gas diffusion through it are simulated to assess the safety level of an LNG carrier subject that experiences a leak. The behavior of the leaked LNG is modeled using a multiphase flow that considers the mixture of liquid and gas. The simulation model considers the phase change of the LNG, gas-liquid multiphase interactions in the porous media, and accompanying rates of heat transfer. It is assumed that the NO96-GW membrane storage is composed of glass wool and plywood for the numerical simulation. In the numerical simulation, the seepage, heat diffusion, and evaporation of the LNG are investigated. It is found that the diffusion speed of the leakage is very high to accelerate the evaporation of the LNG.

Analysis of Shear Behavior and Fracture Characteristics of Plywood in Cryogenic Environment (극저온 환경 하 플라이우드의 전단 거동 및 파손 특성 분석)

  • Son, Young-Moo;Kim, Jeong-Dae;Oh, Hoon-Kyu;Kim, Yong-Tai;Park, Seong-Bo;Lee, Jae-Myung
    • Journal of Ocean Engineering and Technology
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    • v.33 no.5
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    • pp.394-399
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    • 2019
  • Plywood is a laminated wood material where alternating layers are perpendicular to each other. It is used in a liquefied natural gas (LNG) carrier for an insulation system because it has excellent durability, a light weight, and high stiffness. An LNG cargo containment system (LNG CCS) is subjected to loads from gravity, sloshing impact, hydrostatic pressure, and thermal expansion. Shear forces are applied to an LNG CCS locally by these loads. For these reasons, the materials in an LNG CCS must have good mechanical performance. This study evaluated the shear behavior of plywood. This evaluation was conducted from room temperature ($25^{\circ}C$) to cryogenic temperature ($-163^{\circ}C$), which is the actual operating environment of an LNG storage tank. Based on the plywood used in an LNG storage tank, a shear test was conducted on specimens with thicknesses of 9 mm and 12 mm. Analyses were performed on how the temperature and thickness of the plywood affected the shear strength. Regardless of the thickness, the strength increased as the temperature decreased. The 9 mm thick plywood had greater strength than the 12 mm thick specimen, and this tendency became clearer as the temperature decreased.

Development of an insulation performance measurement unit for full-scale LNG cargo containment system using heat flow meter method

  • Lee, Jin-sung;Kim, Kyung-su;Kim, Yooil
    • International Journal of Naval Architecture and Ocean Engineering
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    • v.10 no.4
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    • pp.458-467
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    • 2018
  • Efforts have been made in this paper to develop the measuring device for the insulation performance of full scale NO96 LNG CCS. The facility was designed to maintain environmental conditions which are similar to operation conditions of full scale LNG CCS. In the facility, the heat sink boundary was kept cryogenic temperature by cold chamber which contains liquefied nitrogen and heat source boundary was made by external case heated by natural convection. Heat Flow Meter method (HFM) was applied to this facility, hence Heat Flux Sensors (HFS) were attached to specimen. The equivalent thermal conductivity of full scale NO96 unit box was targeted to measure and PUF of same size was used for the calibration test. Additionally, the finite element analysis was carried out to check the performance of the developed test facility and experimental results were also compared with those predicted by the numerical method.