• 제목/요약/키워드: Dilution Gas

검색결과 266건 처리시간 0.021초

KGS GC101을 통한 가스시설 폭발위험장소의 설정 (Area Classification of Hazardous Gas Facility According to KGS GC101 Code)

  • 김정환;이민경;길성희;김영규;고영규
    • 한국가스학회지
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    • 제23권4호
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    • pp.46-64
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    • 2019
  • 폭발위험장소의 선정과 거리계산에 대한 상세기술기준 KGS GC101 2018(가스시설의 폭발위험장소 종류 구분 및 범위 산정에 관한 기준)이 제정되어, 2018년 7월 12일부터 시행되었다. IEC60079-10-1 2015 (Explosive atmospheres Part 10-1: Classification of areas - Explosive gas atmospheres)에 대한 전수 내용을 정리하고, 모호한 기준의 해석이나 기준에 대한 가이드라인을 추가하여 제정하였다. KGS GC101은 폭발위험장소 종류의 구분을 위한 방법으로 (1)누출등급의 결정 (2)누출 홀 크기의 결정 (3)누출유량의 결정 (4)희석등급의 결정 (5)환기유효성의 결정을 통하여 최종적으로 (6)위험장소의 결정 (7) 폭발위험장소 범위의 산정을 할 수 있다. 이 과정을 쉽게 계산하기 위하여 Visual Basic for Application (Excel) 언어로 구성한 프로그램(KGS-HAC, C-2018-020632)을 한국가스안전공사에서 제작하였고, 현재 시범 사용 중(2019년 4월 1일 현재 v1.14)에 있다. 그럼에도 불구하고 현장에서 어려워하여, 본 논문을 통하여 코드 및 프로그램의 사용법을 설명하는 것으로 해결코자 한다.

MILD 연소로에서 Coanda 노즐 효과를 이용한 배기가스 재순환에 관한 연구 (A Study on the Exhaust Gas Recirculation in a MILD Combustion Furnace by Using the Coanda Nozzle Effect)

  • 하지수;심성훈
    • 대한환경공학회지
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    • 제35권12호
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    • pp.967-972
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    • 2013
  • 질소산화물 저감에 큰 효과가 있는 MILD 연소는 고온의 배기가스가 연소로내에 유입되는 양에 따라 질소산화물 저감 특성이 많은 영향을 받는다. 본 연구에서는 동심원관 형태의 MILD 연소로에서 바깥 원통의 배기가스 통로에서부터 안쪽 원통의 연소통로 사이에 연결관을 설치하고 배기가스를 유입하기 위해 coanda 노즐을 사용하였다. 이러한 coanda 노즐의 기하학적 형상 변화에 따라 고압공기 유량, 배기가스 유입량 특성을 수치해석을 통해 살펴봄으로써 최적의 coanda 노즐 형상을 도출하는 것을 본 연구의 목적으로 하였다. 본 연구의 전산 해석의 결과는 conada 노즐의 노즐 통로 간격이 0.5 mm, 노즐 각도 $4^{\circ}$, 노즐 확관 길이 146 mm일 때 최적의 유입량비가 되었고 노즐 통로 수직 길이는 유입량비에 무관하였다.

ALD 설비의 NH3(Ammonia)누출 시나리오에 대한 내부유동 및 제어 속도 해석 (Analysis of Internal Flow and Control Speed for NH3 (Ammonia) Leakage Scenario of ALD Facility)

  • 이성삼;안형환
    • 한국가스학회지
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    • 제26권5호
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    • pp.22-27
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    • 2022
  • 반도체 생산 설비 중 ALD는 열이나 플라즈마로 분해한 Gas를 Wafer에 증착시켜 원자층을 형성시키는 설비로 주로 인화성 물질인 NH3와 SIH4이 사용된다. 이중 NH3는 연소·폭발 범위가 상한(UFL) 33.6%, 하한(LEL) 15%로 폭발 범위가 비교적 좁지만 많은 양이 갑자기 한곳에 모이면 폭발할 수 있고, 피부에 닿거나 흡입하면 치명적이다. NH3는 ALD Gas inlet의 배관과 전기·기계 기구를 통해 Chamber로 공급되는데 많은 누출 가능점이 존재하여 누출 시 화재·폭발 또는 중독 사고로 이어질 수 있어 NH3 누출 시나리오에 대한 내부 유동과 제어 속도를 이해하고 고환기가 가능한 배기장치를 설계하는 것이 필요하여 본 연구자는 NH3의 누출시나리오를 CFD에 적용하여 내부유동과 제어 속도를 수치 분석하여 설계 시 반영할 수 있도록 하였다.

연소 배출가스 중 SO2 농도에 따른 응축성먼지 변화에 관한 연구 (A Study on the Change of Condensable Particulate Matter by the SO2 Concentration among Combustion Gases)

  • 유정훈;임슬기;송지한;이도영;유명상;김종호
    • 한국대기환경학회지
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    • 제34권5호
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    • pp.651-658
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    • 2018
  • Particulate matter (PM) emitted from fossil fuel-combustion facilities can be classified as either filterable or condensable PM. The U.S. Environmental Protection Agency (EPA) defined condensable PM as material that is in the phase of vapor at the stack temperature of the sampling location which condenses, reacts upon cooling and dilution in the ambient air to form solid or liquid in a few second after the discharge from the stack. Condensable PM passed through the filter media and it is typically ignored. But condensable PM was defined as a component of primary PM. This study investigates the change of condensable PM according to the variation in the sulfur dioxide of combustion gas. Domestic oil boilers were used as the source of emission ($SO_2$) and the level of $SO_2$ concentration (0, 50, 80, and 120 ppm) was adjusted by diluting general light oil and marine gas oil (MGO) that contains sulfur less than 0.5%. Condensable PM was measured as 2.72, 6.10, 8.38, and $13.34mg/m^3$ when $SO_2$ concentration in combustion gas were 0, 50, 80, and 120 ppm respectively. The condensable PM tended to increase as the concentration of $SO_2$ increased. Some of the gaseous air pollutants emitted from the stack should be considered precursors of condensable PM. The gas phase pollutants which converted into condensable PM should reduced for condensable PM control.

TIG클래딩 공정에 대한 품질 모니터링기법의 개발 (Development of Welding Quality Monitoring Method for TIG Cladding)

  • 조상명;박정현;손민수
    • Journal of Welding and Joining
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    • 제31권6호
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    • pp.90-95
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    • 2013
  • Pipe inside clad welding is mainly used to the flow pipe of sub-sea or chemical plant. For the inside clad welding to the medium pipe with the diameter of about 12", TIG welding is frequently applied with filler metal. In this case, the clad welding has the very broad weld area over $10m^2$. And, the non-destructive test (NDT) such as ultrasonic test (UT) or radiographic testing (RT) should be conducted on the broad weld area, and it costs very high due to the time-consuming work. Therefore, the present study investigated the variation of arc voltage to develop the in-line quality monitoring system for the pipe inside TIG cladding. The 4 experimental parameters (current, arc length, wire feed position, and shield gas flow rate) varied to observe the change of arc voltage and to establish the model for the monitoring. The arc voltage was decreased when the wire was fed to the backward eccentric position(over 2mm), and the shield gas flow rate was insufficient under 10L/min. In the case of the backward eccentric position over 2mm, the bead appearance was not good and the dilution ratio was increased due to deep penetration. When the shield gas flow rate was lower than 10L/min, the bead surface was oxidized.

가스터빈 연소기 기본형상 결정을 위한 성능실험 (An experimental study for preliminary design of gas turbine combustor)

  • 안국영;김한석;조은성;배진호
    • 대한기계학회논문집B
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    • 제22권6호
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    • pp.840-848
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    • 1998
  • The preliminary design and performance test were carried out for determining dimensions of gas turbine combustor. The combustor design program was developed and applied to design our combustor, and the specific dimensions for swirler, dome and liner holes were determined by the semiempirical manner. Based on the first performance test data, the swirl angle governing the combustion characteristics of primary combustor zone was determined as 40 deg.. Using the second performance test data, the swirler dimensions were readjusted by 24 mm i.d., 34 mm o.d., and swirl angle of 45 deg.. The geometry of liner holes were determined by considering the flame stability and recirculation zone size. It was found that flame can be more easily stabilized by adjusting the swirler dimensions rather than liner holes. The geometry of swirler and liner holes were readjusted by using the final performance test data with dilution holes. Also, the combustor performance and emission characteristics were evaluated by analysis of exhaust gases.

하이브리드용 가솔린 엔진에서 On/Off 방식 EGR적용 및 최적 EGR 율에 관한 연구 (A Study on Application of On/Off Type EGR and Optimal EGR Rate for Gasoline-Hybrid Engine)

  • 박철웅;최영;김창기
    • 한국자동차공학회논문집
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    • 제16권4호
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    • pp.143-150
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    • 2008
  • EGR(exhaust gas recirculation) is an attractive means of improving the fuel economy of spark ignition engines, as it offers the benefits of charge dilution (lower pumping and cooling losses) while allowing stoichiometric fuelling to be retained for applications using the three-way catalysts. However, the occurrence of excessive cyclic variation with high EGR normally prevents substantial fuel economy improvements from being achieved in practice. Therefore, the optimum EGR rate in Gasoline-Hybrid engine should be carefully determined in order to achieve low fuel consumption and low exhaust emission. In this study, 2 liters gasoline engine with E-EGR system was used to investigate the effects of EGR on fuel economy, combustion stability, engine performance and exhaust emissions. EGR tolerance with load variation was found to be more sensitive than with rpm variation. With optimal EGR rates, the fuel consumption was improved by 5.5% while a combustion stability was guaranteed.

배기가스가 혼합된 고온 공기류에서의 CO 소멸특성에 대한 수치해석 연구 (Numerical Study of CO Reduction Characteristics in High-temperature Air Stream Diluted with Exhaust Gas)

  • 박지웅;오창보
    • 한국연소학회지
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    • 제20권3호
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    • pp.8-12
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    • 2015
  • The CO reduction characteristics of hot air stream diluted with exhaust gas in a perfectly stirred reactor (PSR) were investigated numerically. The dilution ratio ($\Omega$), inlet temperature ($T_{in}$), and residence time ($\tau$) were considered as parameters to investigate the effects of those on the emission indices for CO and $CO_2$ (EICO and $EICO_2$). The roles of dominant reactions and the production rates of major species were analyzed. It was found from the EICO trend that the supplied CO in the air stream was consumed. The EICO increased negatively with $T_{in}$ at fixed $\tau$ regardless of $\Omega$. However, the magnitude of EICO and minimum inlet temperature for CO reduction showed complicated trend according to the variation of $\tau$. It was identified that the OH radical, generated from the reactions, $O_2+H{\leftrightarrow}O+OH$ and $2OH{\leftrightarrow}H+H_2O$, affected the CO reduction by the reaction, $CO+OH{\leftrightarrow}H+CO_2$. However, the CO emission ratio increased at sufficiently high inlet temperature range due to the thermal dissociation of $CO_2$.

Sensitivity Study of the Flow-through Dynamic Flux Chamber Technique for the Soil NO Emissions

  • Kim Deug-Soo
    • Journal of Korean Society for Atmospheric Environment
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    • 제21권E3호
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    • pp.75-85
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    • 2005
  • A mathematical sensitivity analysis of the flow-through dynamic flux chamber technique, which has been utilized usually for various trace gas flux measurement from soil and water surface, was performed in an effort to provide physical and mathematical understandings of parameters essential for the NO flux calculation. The mass balance equation including chemical reactions was analytically solved for the soil NO flux under the steady state condition. The equilibrium concentration inside the chamber, $C_{eq}$, was found to be determined mainly by the balance between the soil flux and dilution of the gas concentration inside the chamber by introducing the ambient air. Surface deposition NO occurs inside the chamber when the $C_{eq}$ is greater than the ambient NO concentration ($C_{0}$) introducing to the chamber; NO emission from the soil occurs when the $C_{eq}$ is less than the ambient NO concentration. A sensitivity analysis of the significance of the chemical reactions of NO with the reactive species (i.e. $HO_{2},/CH_{3}O_{2},/O_{3}$) on the NO flux from soils was performed. The result of the analysis suggests that the NO flux calculated in the absence of chemical reactions and wall loss could be in error ranges from 40 to $85\%$ to the total flux.

$H_2/CO/CO_2$ 합성가스화염에서 선호확산 효과에 관한 연구 (A Study on Preferential Diffusion Effects in $H_2/CO/CO_2$ Syn-gas Flames)

  • 김태권;박정;하지수
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권5호
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    • pp.737-746
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    • 2008
  • Numerical study is conducted to grasp preferential diffusion effects on flame characteristics in $H_2/CO$ syn-gas diffusion flames diluted with $CO_2$. The models of Sun et al. and David et al., which have been well known to be best-fitted for $H_2/CO$ synthetic mixture flames. are evaluated for $H_2/CO$ synthetic mixture flames diluted with $CO_2$. Comparison of flame structures with mixture-averaged species diffusion and suppression of the diffusivities of $H_2$ and H was made. The behaviors of maximum flame temperatures with those species diffusion models are not explained by scalar dissipation rate but by the nature of chemical kinetics. Importantly-contributing reaction steps to heat release rate are also compared for the three species diffusion models in $H_2/CO/CO_2$ flames with and without $CO_2$ dilution.