• Title/Summary/Keyword: $SF_6$ Gas

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Shape Design of Disk Seal in $SF_6$ Gas Safety Valve using Taguchi method (다구찌법을 이용한 $SF_6$가스 안전밸브용 디스크 시일 형상의 설계)

  • Cho Seunghyun;Kim Chungkyun;Kim Younggyu
    • Proceedings of the Korean Society of Tribologists and Lubrication Engineers Conference
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    • 2004.11a
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    • pp.237-240
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    • 2004
  • Sulfur Hexafluoride, SF6 is widely used for leak detection and as a gaseous dielectric in transformers, condensers and circuit breakers. SF6 gas is also effective as a cleanser in the semiconductor industry. This paper presents a numerical study of the sealing force of disk type seal in SF6 gas safety valve. The sealing force on the disk seal is analyzed by the FEM method based on the Taguch's experimental design technique. Disk seals in SF6 gas safety valve are designed with 9 design models based on 3 different contact length, compressive ratio and gas pressure. The calculated results of Cauchy stress and strain showed that the sealing characteristics of Teflon PTFE is more effective compared to that of FKM(Viton), which is related to the stiffness of the materials. And also, the contact length of the disk seal is important design parameter for sealing the SF6 gas leakage in the safety valve.

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Morphological study of $SF_6$ clathrate hydrate crystal ($SF_6$ 하이드레이트 결정 성장의 특성)

  • Lee, Yoon-Seok;Lee, Hyun-Ju;Lee, Eun-Kyung;Kim, Soo-Min;Lee, Ju-Dong;Kim, Yang-Do
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.711-711
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    • 2009
  • Global warming has been widely recognized as a serious problem threatening the future of human beings. It is caused by the buildup in the atmosphere of greenhouse gases, such as carbon dioxide, methane, hydrofluorocarbons (HFCs), and sulfur hexafluoride (SF6). Particularly, SF6 has extremely high global warming potential compare to those of other global warming gases. One option for mitigating this greenhouse gas is the development of an effective process for capturing and separating these gases from anthropogenic sources. In general, gas hydrates can be formed under high pressure and low temperature. However, SF6 gas is known to form hydrate under relatively milder conditions. Therefore, technological and economical effects could be expected for the separation of SF6 gas from waste gas mixtures. In this study, we carried out morphological study for the SF6 hydrate crystals to understand its formation and growth mechanisms. The observations were made in high-pressure optical cell charged with liquid water and SF6 gas at constant pressure and temperature. Initially SF6 hydrate formed at the surface between gas and liquid regions, and then subsequent dendrite crystals grew at the wall above the gas/water interface. The visual observations of crystal nucleation, migration, growth and interference were reported. The detailed growth characteristics of SF6 hydrate crystals were discussed in this study.

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Effects of Surfactant on SF6 Gas Hydrate Formation Rate (가스 하이드레이트 형성 원리를 이용한 SF6 처리 기술에 관한 연구)

  • Lee, Bo-Ram;Lee, Hyun-Ju;Kim, Shin-Ho;Lee, Ju-Dong;Kim, Yang-Do
    • Korean Journal of Materials Research
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    • v.18 no.2
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    • pp.73-76
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    • 2008
  • [ $SF_6$ ] gas has been widely used as an insulating, cleaning and covering gas due to its outstanding insulating feature and because of its inert properties. However, the global warming potential of $SF_6$ gas is extremely high relative to typical global warming gases such as $CO_2$, CFCs, and $CH_4$. For these reasons, it is necessary to separate and collect waste $SF_6$ gas. In this study, the effects of a surfactant (Tween) on the formation rate of $SF_6$ gas hydrates were investigated. The $SF_6$ gas hydrate formation rate increased with the addition of Tween and showed a nearly 6.5 times faster hydrate formation rate with an addition of 0.2 wt.% Tween compared to an addition of pure water. This is believed to be due to the increased solubility of $SF_6$ gas with the addition of the surfactant. It was also found that $SF_6$ gas hydrate in the surfactant solution showed two-stage hydrate formation rates with a formation rate that increased rapidly in the 2nd stage.

The Analysis of $SF_6/N_2$ Plasma Properties Under the Atmosphere Pressure ($SF_6/N_2$ 혼합기체의 대기압 플라즈마 특성 분석)

  • So, Soon-Youl;Lee, Jin
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.58 no.4
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    • pp.516-520
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    • 2009
  • Atmosphere Plasmas of Gas Discharge (APGD) have been used in plasma sources for material processing such as etching, deposition, surface modification, etc. This study is to investigate and understand the fundamental plasma discharge properties. Especially, $SF_6/N_2$ mixed gas would be used in power transformer, GIS (Gas insulated switchgear) and so on. In this paper, we developed a one dimensional fluid simulation model with capacitively coupled plasma chamber at the atmosphere pressure (760 [Torr]). 38 kinds of $SF_6/N_2$ plasma particles which are an electron, two positive ions (${SF_5}^+$, ${N_2}^+$), five negative ions (${SF_6}^-$, ${SF_5}^-$, ${SF_4}^-$, ${F_2}^-$, ${F_1}^-$), thirty excitation and vibrational particles for $N_2$ were considered in this computation. The $N_2$ gases of 20%, 50%, 80% were mixed in $SF_6$ gas. As the amount of $N_2$ gas was increased, the properties of electro-negative plasma moved toward the electro-positive plasma.

Characteristics of $SF_6$ Gas Recycling Processes ($SF_6$가스 회수 공정들의 특성 연구)

  • Cho, Hoon;Woo, Dae-Sik;Choi, Yu-Mi;Han, Myung-Wan
    • Clean Technology
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    • v.17 no.4
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    • pp.329-335
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    • 2011
  • $SF_6$ gas is well known as a global warming gas. Global warming potential of $SF_6$ gas is 22,000 times higher than that of $CO_2$. Recycling of $SF_6$ gas is an essential technology for the sake of the environment and the economy. The recovery processes of $SF_6$ gas studied in this work were liquefaction, distillation, and crystallization processes because these processes were thought to be easily carried to the fields for recycling waste $SF_6$ gas. The processes were simulated and optimized using Aspen plus. The optimization problems were formulated to minimize energy consumption with satisfying product specification and desired recovery. The performance of the processes was compared based on the optimization results. Effects of major process variables on the recovery performance were investigated and optimal operation guide for changing product specification and product recovery was provided.

A Study on the Flashover along the Spacer Surface SF6-N2 Gas Mixtures Stressed by D.C (SF6및 SF6-N2 가스 중에서 직류전동에 \ulcorner나 스페이서 연면간락에 관한 연구)

  • 김정달;정재길;이동인
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.36 no.11
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    • pp.796-805
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    • 1987
  • The flashover voltages have been investigated for spacer and unbridged-gap in SF6-N2 gas mixtures up to the value of 760(torr. cm), The gap was stressed by DC source The results obtained are as follows` 1) The flashover voltages for an unbridged gap and for a spacer in SF6, N2 and SF6-N2 gas mixtures follow the Paschen's curve. 2) The polarity effects was not observed in both unbridged gap and a spacer which had per ect contact with an electrode. The flashover voltages for negative polatity are lower than those for positive polarity in case of imperfect contact. 3) 3%flashover voltage is decreased by putting a spacer which had perfect contact with an electrode. The spacer which has a gap void shows the lowest flashover voltage. 4) The lowest spacer efficiency was obtained with higher gas pressure & large amount of N2 content. The flashover voltages depend on the gas pressure rather than the spacer efficienty at low value of pd. 5) The flashover voltages of gas mixtures of N2 with SF6 are relatively high, even though the amount of SF6 gas content is small.

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부성기체 $SF_6$Gas의 방전특성과 고기압 $SF_6$Gas중에서의 impulse corona에 관한 소고

  • 서국철
    • 전기의세계
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    • v.25 no.6
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    • pp.45-48
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    • 1976
  • 과거 수십년간 전력계통의 절연에 쓰여 온 공기에 대치하여 근년 고기압 SF$_{6}$gas에 의한 gas절연 방식이 급속도로 진전되고 있으며 거기에 수반하여 SF$_{6}$gas의 방전특성 해명이 초고압 장 gap영역에서 급선무로 되어 있다. 또한 초고압송전에 대응하는 각종 전력기기 cable등의 고기압 절연이 실용화 하게 되었으며 신뢰도가 높고 합리적인 gas 절연기기의 설계를 목표로 부성기체 특히 고기압 SF$_{6}$gas의 절연파괴 특성의 연구가 진행되고 있다. 고기압 SF$_{6}$gas는 높은 파괴 전체를 가지므로 극히 적은 원인으로도 절연 특성에 영향을 미치며 공기, 질소등 기체와는 매우 다른 방전 특성을 나타낸다. 여기서는 SF$_{6}$gas의 특이한 방전 특성과 고기압 SF$_{6}$gas 중에서의 impulse corona의 특성을 고찰하려고 한다.

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Study on the Multi-stage Hollow Fiber Membrane Modules for SF6 Gas Separation (불화가스 분리를 위한 중공사막 모듈의 다단 기체분리공정 연구)

  • Jeong, Su Jung;Lim, Joo Hwan;Koh, Hyung Chul;Ha, Seong Yong
    • Membrane Journal
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    • v.26 no.2
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    • pp.159-165
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    • 2016
  • Polyimide hollow fiber membrane modules were prepared in order to investigate the process of multi stage gas separation. The modules performance was carried out using 50/50 of $N_2/SF_6$ mixed gas. The membrane modules has been tested for measuring gas flow rate and concentration under various stage cut at 0.5 MPa. The membrane modules showed a high recovery ratio at the same stage cut as $N_2/SF_6$ selectivity increased. Two stage process was fulfilled for improving $SF_6$ recovery ratio and $SF_6$ concentration. Eventually, two stage process showed higher performance of $SF_6$ recovery ratio and concentration ($SF_6$ recovery ratio = 95%, $SF_6$ conc. = 98%).

Conceptual Design and Operation Results for SF6 Decomposition and Pollution Control System (SF6 분해 및 무해화 시스템의 개념 설계 및 운영 결과)

  • Joongwon, Lee;Miyeong, Kim;Jiho, Ahn;Younghwan, Byun
    • KEPCO Journal on Electric Power and Energy
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    • v.8 no.2
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    • pp.111-118
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    • 2022
  • SF6 is used as an insulating gas because of its excellent electrical insulation properties, non-toxicity, and non-inflammability. On the other hand, the global warming potential of SF6 is 23,900 times higher than that of CO2. The Korea electric power cooperation (KEPCO) is responsible for 80% of the domestic SF6 usage, and approximately 6,000 tons are currently charged in electrical and power facilities. KEPCO will gradually replace the insulating gas with SF6-free gas from 2023. SF6 decomposition facilities are required because more than 60 tons of SF6 will need to be disposed of annually from existing equipment. This study developed a novel decomposition and pollution control system that can process 60 tons of SF6 per year. This facility can decompose more than 97.7% of SF6, with the emissions of hazardous and toxic materials below the legal limit.

Breakdown Characteristics of $SF_6$ Gas under Particle Contaminated Conditions (금속입자 오손시 $SF_6$가스의 절연파괴특성)

  • Kim, Min-Kyu;Moon, In-Wook;Kim, Ik-Soo;Lee, Hyeong-Ho
    • Proceedings of the KIEE Conference
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    • 1995.11a
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    • pp.465-468
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    • 1995
  • The gas-insulated switchgear(GIS) has made high-reliability, high-safety, compact substations possible by using $SF_6$ gas. They are likely to be further developed toward higher voltages and targer capacities, along with greater compactness and lower cost. Although $SF_6$ gas has excellent insulation performance, breakdown voltages are reduced by the conducting particles. Thus, extensive studies have been made on the breakdown characteristics of $SF_6$ gas in particle contaminated conditions. Experiments were carried out for fired particle and free particle in a coaxial electrode system with DC and AC voltages. This paper represents the experimental results of the processes involved in electrical breakdown in compressed $SF_6$ gas, where breakdown is initiated by conducting particles.

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