• 제목/요약/키워드: Gas generation

검색결과 1,711건 처리시간 0.031초

유전자 알고리즘과 스케일링 기법을 이용한 가스터빈 엔진 구성품 성능선도 개선에 관한 연구 (Component Map Generation of a Gas Turbine Engine Using Genetic Algorithms and Scaling Method)

  • 고성희;공창덕
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2005년도 제25회 추계학술대회논문집
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    • pp.299-303
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    • 2005
  • 본 연구에서는 축척방법에 의한 구성품 성능선도의 부정확성을 개선하기 위해 실험을 통하여 획득한 데이터를 유전자 알고리즘(Genetic Algorithms)으로 압축기 성능전도를 생성하는 방법을 제안하였고, 유전자 알고리즘만 이용할 경우 압축기 성능선도 생성시 서지점들과 쵸크점들을 예측하는데 불분명한 단점이 있어 기존의 구성품 성능선도 생성에 널리 사용하는 스케일링 기법을 보완적으로 이용하여 보다 정확한 구성품 성능선도의 예측을 시도하였다.

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전해부상을 이용한 활성슬러지의 탈수성 향상 (Improvement of Activated Sludge Dewaterability by Electro-flotation)

  • 최영균;박병주;박민정;김윤중;정태학
    • 상하수도학회지
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    • 제20권5호
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    • pp.677-684
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    • 2006
  • Electro-flotation(EF), a novel sludge thickening method, could improve the dewaterability of activated sludge. The gas(microbubbles) generated during EF decreased the solid-liquid separation time below 1/5 of the time required for gravity sedimentation. In addition, over 90% of the sludge volume reduction could be achieved by EF although the settling characteristics of the sludge was very poor. The SRF(specific resistance to filtration) of the thickened sludge by EF was much lower than that of the sludge thickened by gravity sedimentation. The SRF of the thickened sludge decreased exponentially with increase of gas generation rate of the EF system. Gas generation rate could be controlled by varying the current density of the electrode. Degasing of the microbubbles by vigorous mixing of the thickened sludge layer deteriorated the dewaterability of the sludge. Therefore, it is obvious that the gas bubbles entrapped in the thickened sludge play a key role in the observed dewaterability improvement.

동전기적 가스발생방식의 자동윤활주유기 개발 (Development of Automatic Grease Lubricator for Gas Generation Type of Galvanic Electricity)

  • 왕덕현
    • 한국기계가공학회지
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    • 제7권4호
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    • pp.121-127
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    • 2008
  • Automatic grease lubricator is an equipment that provides adequate amount of fresh grease constantly to the shaft and bearings of machines. It minimizes the friction heat and reduces the friction loss of machines to the least. This paper is developing an automatic grease lubricator using a mode of the gas generation type from galvanic electricity. The ultimate goal of this equipment is to lubricate an adequate amount of grease with galvanic corrosion. In an electrolyte, combining anode(Mo) with cathode(Zn) is pressing out hydrogen gas of an galvanic element with galvanic reaction. The characteristics of this method is continuous flowing small hydrogen gas and controling the usage of the amount of the generation of hydrogen gas. The exterior body of grease lubricator was analyzed by Digital Mock-up of CATIA V5 and finite element analysis. The maximum stress is distributed over the outlet part where the grease lubricator suddenly narrowly contracts. The outlet part is analyzed with different constructed angle due to the different loading and setting angles. Using the analyzed design, RP trial products were producted and tested.

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전산 모델링을 통한 모노리스 촉매형 메탄화 반응기의 성능 특성 연구 (Computer Simulation of Methanation Reactor with Monolith Catalyst)

  • 지준화;김성철;홍진표
    • 한국수소및신에너지학회논문집
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    • 제25권4호
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    • pp.425-435
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    • 2014
  • Simulation studies on catalytic methanation reaction in externally cooled tubular reactor filled with monolithic catalysts were carried out using a general purpose modelling tool $gPROMS^{(R)}$. We investigated the effects of operating parameters such as gas space velocity, temperature and pressure of feeding gas on temperature distribution inside the reactor, overall CO conversion, and chemical composition of product gas. In general, performance of methanation reaction is favored under low temperature and high pressure for a wide range of their values. However, methane production becomes negligible at temperatures below 573K when the reactor temperature is not high enough to ignite methanation reaction. Capacity enhancement of the reactor by increasing gas space velocity and/or gas inlet pressure resulted no significant reduction in reactor performance and heat transfer property of catalyst.

동부 심해 울릉분지의 천연가스 하이드레이트 (Natural gas hydrates in the eastern deep-water Ulleung Basin)

  • 류병재;김지훈;정부흥;이영주
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2008년도 춘계학술대회 논문집
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    • pp.610-612
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    • 2008
  • Piston cores retrieved from the eastern part of the deep-water Ulleung Basin were analyzed to access the potential of hydrocarbon gas generation and natural gas hydrate (NGH) formation. Seismic data acquired in the study area were also analyzed to determine the presence of hydrocarbon gas and/or NGH, and to map their distribution. Core analyses revealed high total organic carbon (TOC) contents which favor hydrocarbon generation. The cores recovered from the southern study area showed the sufficient residual hydrocarbon gas concentrations for the formation of significant NGH. These cores also showed the cracks developed parallel to the bedding that suggest significant gas content in situ. A number of seismic blanking zones were observed on seismic data. They are identified as vertical to sub-vertical chimneys caused by the upward migration of pore fluid or gas, and containing of free gas and/or NGH. Often, they are associated with velocity pull-up structures that are interpreted to be the result of high-velocity NGH. The seismic data also showed several bottom-simulating reflectors (BSRs) that are associated with overlying NGH and underlying free gas. The distribution of blanking zones and BSRs would be impacted by the lateral differences of upward methane fluxes.

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The Effectiveness of New Power Generation and Energy Demand Reduction to Achieve Greenhouse Gas Reduction Goals in Building Area

  • Park, Seong-Cheol;Kim, Hwan-Yong;Song, Young-Hak
    • Architectural research
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    • 제18권2호
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    • pp.59-64
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    • 2016
  • Since the massive power outages that hit across the nation in September 2011, a growing imbalance between energy supply and demand has led to a severe backup power shortage. To overcome the energy crisis which is annually repeated, a policy change for deriving energy supply from renewable energy sources and a demand reduction strategy has become essential. Buildings account for 18% of total energy consumption and have great potential for energy efficiency improvements; it is an area considered to be a highly effective target for reducing energy demand by improving buildings' energy efficiency. In this regard, retrofitting buildings to promoting environmental conservation and energy reduction through the reuse of existing buildings can be very effective and essential for reducing maintenance costs and increasing economic output through energy savings. In this study, we compared the energy reduction efficiency of national power energy consumption by unit production volume based on thermal power generation, renewable energy power generation, and initial and operating costs for a building retrofit. The unit production was found to be 13,181GWh/trillion won for bituminous coal-fired power generation, and 5,395GWh/trillion won for LNG power generation, implying that LNG power generation seemed to be disadvantageous in terms of unit production compared to bituminous coal-fired power generation, which was attributable to a difference in unit production price. The unit production from green retrofitting increased to 38,121GWh/trillion won due to the reduced energy consumption and benefits of greenhouse gas reduction costs. Renewable energy producing no greenhouse gas emissions during power generation and showed the highest unit production of 75,638GWh/trillion won, about 5.74 times more effective than bituminous coal-fired power generation.

30kW 급 합성가스 열병합 시스템 개발 및 효율 성능평가 (Development and efficiency evaluation of 30kW scale syngas cogeneration system)

  • 박일건;김상태;노귀성
    • 한국응용과학기술학회지
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    • 제36권4호
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    • pp.1427-1433
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    • 2019
  • 본 연구에서는 합성가스의 에너지화를 위한 가스엔진 성능 평가를 수행하였다. 회전수 1800 rpm 조건에서 공기과잉률이 1, 1.1, 1.2, 1.3, 1.4, 1.5, 1.6 증가에 따른 엔진출력(kWm)과 열효율(%)을 평가한 결과, 공기과잉률 λ 1.4에서 엔진출력 34 kWm를 나타냈으며, 공기과잉률이 증가할수록 엔진 열효율은 전반적으로 감소하는 경향을 보였다. 엔진출력 34 kWm 조건에서 공기과잉률이 1, 1.1, 1.2, 1.3, 1.4 증가시 열효율이 34.2%, 36.9%, 37.2%, 37.4%, 38.1%로 증가하였고, 발전출력을 통한 종합효율은 발전출력 30 kWe 부하조건에서 38.7 kg/h의 연료를 소모하여 32.1%의 발전효율과 냉각수와 배기가스에서의 열회수를 통해 57.3 kW의 폐열을 회수하여 53.8%의 열을 회수하여 총 85.8%의 종합효율을 보이는 것으로 나타났다.

매립장의 발생가스특성을 이용한 매립장 침하예측 (Prediction of Landfill Settlement Using Gas Generation Characteristics)

  • 안태봉;박대효;공인철
    • 한국지반공학회논문집
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    • 제20권8호
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    • pp.29-39
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    • 2004
  • 폐기물 매립지의 침하량을 예측하는 것은 우리나라와 같은 좁은 국토를 효율적으로 관리하기 위하여 매우 중요하다. 매립장내 유기물이 장기간에 걸쳐 생화학적으로 분해되기 때문에 압밀이론으로 해석하기 곤란하다. 본 연구에서는 실내모델실험을 통하여 매립가스의 발생특성을 분석하였다. 두개의 시험매립조를 만들었는데 하나는 침출수를 재순환한 것과 다른 하나는 재순환하지 않은 것이다. 시간의 변화에 따른 가스발생량과 매립조의 침하량과의 관계를 분석하였다. 수학적 침하량예측모델을 제안하여 장기침하량을 예측하여 실험계측치와 비교하고 수정계수를 사용하도록 제안하였다. 침출수 재순환이 침하를 촉진하는 효과가 있는 것으로 나타났는데 가스모델의 수정계수가 침출수순환을 하지 않은 경우는 1.4, 재순환한 경우는 1.7으로서 약 22%의 촉진효과가 있다.

1300℃급 가스터빈 1단 블레이드의 코팅분석을 이용한 열화평가 (Evaluation of the Degradation of a 1300℃-class Gas Turbine Blade by a Coating Analysis)

  • 송태훈;장성용;김범수;장중철
    • 대한금속재료학회지
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    • 제48권10호
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    • pp.901-906
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    • 2010
  • The first stage blade of a gas turbine was operated under a severe environment which included both $1300^{\circ}C$ hot gas and thermal stress. To obtain high efficiency, a thermal barrier coating (TBC) and an internal cooling system were used to increase the firing temperature. The TBC consists of multi-layer coatings of a ceramic outer layer (top coating) and a metallic inner layer (bond coat) between the ceramic and the substrate. The top and bond coating layer respectively act as a thermal barrier against hot gas and a buffer against the thermal stress caused by the difference in the thermal expansion coefficient between the ceramic and the substrate. Particularly, the bondcoating layer improves the resistance against oxidation and corrosion. An inter-diffusion layer is generated between the bond coat and the substrate due to the exposure at a high temperature and the diffusion phenomenon. A thickness measurement result showed that the bond coat of the suction side was thicker than that of the pressure side. The thickest inter-diffusion zone was noted at SS1 (Suction Side point 1). A chemical composition analysis of the bond coat showed aluminum depletion around the inter-diffusion layer. In this study, we evaluated the properties of the bond coat and the degradation of the coating layer used on a $1300^{\circ}C$-class gas turbine blade. Moreover, the operation temperature of the blade was estimated using the Arrhenius equation and this was compared with the result of a thermal analysis.

셰일 가스 자원의 지화학적 평가 및 특성화 (Geochemical Evaluation and Characterization of the Shale Gas Resources)

  • 이영주
    • 자원환경지질
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    • 제46권4호
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    • pp.359-373
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    • 2013
  • 셰일은 입자의 크기가 매우 작은 쇄설성 퇴적물이 고화되어 형성된 퇴적암으로 암석화되는 과정에서 유기물을 잘 보전하는 특성을 가지고 있어 전통적으로 석유나 가스의 탐사 및 개발에서 탄화수소를 생성하는 근원암의 역할을 하였다. 또한 셰일층은 매우 낮은 투과율 때문에 불투과층으로 인식되어 트랩을 형성하는 덮개암의 역할을 하는 것으로 알려져 있다. 하지만 최근 수평채굴과 수압파쇄 등 시추 기술의 획기적인 발달로 북미를 중심으로 셰일층 내에서 막대한 양의 가스를 발견하고 상업적으로 생산함에 따라 셰일을 석유나 가스를 생산하는 지층뿐만이 아니라 탄화수소를 저장하는 저류층으로 새롭게 인식하게 되었다. 셰일층의 지화학 평가 기술은 셰일 내에 함유된 유기물의 특성을 지화학 분석을 통해 파악하여 유기물의 석유 및 가스 생성 능력을 평가하는 기술인데 최근에는 셰일층내에 생성된 가스가 저장되어 있는 셰일 가스층을 평가하고 탐사하는 데에 적용되고 있다. 셰일 가스층을 정확하게 평가하기 위해서는 탄화수소의 생성과 집적 그리고 매장량 예측에 영향을 미치는 지화학적인 과정과 특성을 정확히 이해하는 것이 매우 중요하다. 본 논문에서는 셰일층 내에서 탄화수소 생성 메카니즘을 살펴보고 셰일층 평가 및 특성화에 활용되는 지화학 분석 기술을 고찰하였다.