• 제목/요약/키워드: Gas Saturation

검색결과 274건 처리시간 0.028초

퇴적층에서의 가스 하이드레이트 생성 특성 (Formation characteristics of gas hydrate in sediments)

  • 이재형;이원석;김세준;김현태;허대기
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.630-633
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    • 2005
  • Some gases can be formed into hydrate by physical combination with water under appropriate temperature and pressure condition. Besides them, it was found that the pore size of the sediments can affect the formation and dissociation of hydrate. In this study, formation temperatures of carbon dioxide and methane hydrate have been measured using isobaric method to investigate the effects of flow rates of gases on formation condition of hydrate in porous rock samples. The flow rates of gases were controlled using a mass flow controller. To minimize Memory effect, system temperature increased for the dissociation of gas hydrates and re-established the initial saturation. The results show that the formation temperature of hydrate decreases with increasing the injection flow rate of gas. This indicates that the velocity of gas in porous media may act as kinds of inhibitor for the formation of hydrate.

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화학기상응축공정(Chemical Vapor Condensation)으로 제조된 Co 나노분말의 미세구조 및 자기적 성질에 미치는 운송기체의 영향 (Effect of Carrier Gas on the Microstructure and Magnetic Properties of Co Nanoparticles Synthesized by Chemical Vapor Condensation)

  • 최철진;;유지훈;김진천;김병기
    • 한국분말재료학회지
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    • 제11권1호
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    • pp.16-21
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    • 2004
  • The nano-sized Co particles were successfully synthesized by chemical vapor condensation (CVC) process using the precursor of cobalt carbonyl ($Co_2(CO)_8$). The influence of carrier gases on the microstructure and magnetic properties of nanoparticles was investigated by means of XRD, TEM, XPS and VSM. The Co nano-particles with different phases and shapes were synthesized with a change of carrier gas : long string morphologies with coexistence of fcc and hcp structure in Ar carrier gas condition; finer Co core in a mass of cobalt oxide with only fcc structure in He; rod type cobalt oxide phase in Ar+6vol%$O_2$. The saturation magnetization and coercivity was lower in Co nanoparticles synthesized in He carrier gas, due to their finer size.

셰일가스 저류층에서의 동적물성 영향 분석 (A Study on the Effect of Flow Properties in Shale Gas Reservoirs)

  • 김정균;강일오;신창훈;이성민;이정환
    • 한국가스학회지
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    • 제21권2호
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    • pp.50-57
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    • 2017
  • 셰일 저류층은 매우 미세한 입자로 구성되어 있으며, 공극의 크기가 나노미터에 불과하다. 본 연구에서는 셰일 암체에서의 크누센 확산영향, 균열대 및 암체에서 상대투과도, 셰일가스 생산에 따른 균열투과도 변화를 적용하여 그 영향을 분석하였다. 이를 위해 캐나다 혼리버 셰일 저류층 모델을 구축하였으며, 장기간 생산을 하는 셰일 저류층에서의 확산 및 선행연구에서 제안된 균열대 상대투과도를 적용하여 생산성에 미치는 영향을 분석하였다. 그리고 암체와 균열대에서 동생수가 생산성에 미치는 영향과 저류층 생산에 따른 균열투과도 변화를 적용하여 생산성을 평가하였다.

Mixed Hydrogen Gas Generator용 전력변환장치 개발 (Development of Mixed Hydrogen Gas Generator Power Conversion System)

  • 정장근;문상필;조길제;김창일
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 학술대회 논문집 전문대학교육위원
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    • pp.88-92
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    • 2007
  • In this paper, the basic experiment, electrolytic cell design and basic manufacturing have been made to interpret the characteristics of Hydrogen-Oxygen-Gas-Generator. As for the detailed matters, the data research on basic technology on Hydrogen-Oxygen-Gas and analysis on characteristics of Hydrogen-Oxygen-Gas from basic experiment. Also the experiment of characteristics and comparative evaluation between constant current source using IGBT converter from existing method and constant current source using new phase shift PWM control method converter. As results when it has injected constant DC current, we has compared Gas quantities by variable ripple frequencies using phase shift PWM control method converter. Therefore, in linear region, it has not different Gas quantities by constant DC current and by phase shift PWM control method converter. Also, it has increased Gas quantities wilder linear region when put ripple frequency at saturation region. Through, Gas quantities and input power, it has acquired higher input power per Gas quantities at put pulse curren. Therefore, when designing converter or inverter for electrolysis, which has ripple current.

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A Study on Thermodynamic Properties of Ethylene Gas Hydrate

  • Lim, Gye-Gyu
    • Journal of Korean Society for Atmospheric Environment
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    • 제23권E1호
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    • pp.10-15
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    • 2007
  • The gas hydrates are probably most sensitive to climate change since they are stable only under specific conditions of high pressure and low temperature. One of the main factors responsible for formation of gas hydrates is the saturation of the gases with water vapor. Quantitative phase equilibrium data and understanding of the roles of water component in the phase behavior of the heterogeneous water-hydrocarbon-hydrate mixture are of importance and of engineering value. In this study, the water content of ethylene gas in equilibrium with hydrate and water phases were analyzed by theoretical and experimental methods at temperatures between 274.15 up to 291.75 K and pressures between 593.99 to 8,443.18 kPa. The experimental and theoretical enhancement factors (EF) for the water content of ethylene gas and the fugacity coefficients of water and ethylene in gas phase were determined and compared with each other over the entire range of pressure carried out in this experiment. In order to get the theoretical enhancement factors, the modified Redlich-Kwong equation of state was used. The Peng-Robinson equations and modified Redlich-Kwong equations of state were used to get the fugacity coefficients for ethylene and water in the gas phase. The results predicted by both equations agree very well with the experimental values for the fugacity coefficients of the compressed ethylene gas containing small amount of water, whereas, those of water vapor do not in the ethylene rich gas at high temperature for hydrate formation locus.

Electrical system design in FLNG offshore unit

  • Kim, Jong-Su;Kim, Deok-Ki
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권10호
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    • pp.1037-1043
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    • 2015
  • In recent years, Floating Liquefied Natural Gas (FLNG) Unit have attracted considerable attention. Generally, liquefied natural gas (LNG) units are produced in onshore liquefaction terminals from gas supplied from onshore gas fields or large-scale offshore gas fields near the coast. However, the development of these gas fields has approached saturation. Large-scale offshore gas fields far from the coast, as well as undeveloped medium- and small-scale offshore gas fields, have recently attracted attention. Among several proposed concepts, the floating LNG plant in the form of the FLNG system was chosen for further evaluation and development, considering worldwide receiving infrastructure. The design of a 2.5 million tonne per annum FLNG unit has been completed with a capacity corresponding to that of modern onshore liquefaction plants. Various simulation tests were performed to evaluate the performance of the electrical power plant, focusing on the efficiency of the electrical system to secure the aspects of plant safety. This design study analyzes the electrical system for the FLNG unit to improve the safety of operation and maintenance in the field.

가스 하이드레이트 부존층의 구조파악을 위한 탄성파 AVO 분석 AVO모델링, AVO역산 (Seismic AVO Analysis, AVO Modeling, AVO Inversion for understanding the gas-hydrate structure)

  • 김건득;정부흥
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.643-646
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    • 2005
  • The gas hydrate exploration using seismic reflection data, the detection of BSR(Bottom Simulating Reflector) on the seismic section is the most important work flow because the BSR have been interpreted as being formed at the base of a gas hydrate zone. Usually, BSR has some dominant qualitative characteristics on seismic section i.e. Wavelet phase reversal compare to sea bottom signal, Parallel layer with sea bottom, Strong amplitude, Masking phenomenon above the BSR, Cross bedding with other geological layer. Even though a BSR can be selected on seismic section with these guidance, it is not enough to conform as being true BSR. Some other available methods for verifying the BSR with reliable analysis quantitatively i.e. Interval velocity analysis, AVO(Amplitude Variation with Offset)analysis etc. Usually, AVO analysis can be divided by three main parts. The first part is AVO analysis, the second is AVO modeling and the last is AVO inversion. AVO analysis is unique method for detecting the free gas zone on seismic section directly. Therefore it can be a kind of useful analysis method for discriminating true BSR, which might arise from an Possion ratio contrast between high velocity layer, partially hydrated sediment and low velocity layer, water saturated gas sediment. During the AVO interpretation, as the AVO response can be changed depend upon the water saturation ratio, it is confused to discriminate the AVO response of gas layer from dry layer. In that case, the AVO modeling is necessary to generate synthetic seismogram comparing with real data. It can be available to make conclusions from correspondence or lack of correspondence between the two seismograms. AVO inversion process is the method for driving a geological model by iterative operation that the result ing synthetic seismogram matches to real data seismogram wi thin some tolerance level. AVO inversion is a topic of current research and for now there is no general consensus on how the process should be done or even whether is valid for standard seismic data. Unfortunately, there are no well log data acquired from gas hydrate exploration area in Korea. Instead of that data, well log data and seismic data acquired from gas sand area located nearby the gas hydrate exploration area is used to AVO analysis, As the results of AVO modeling, type III AVO anomaly confirmed on the gas sand layer. The Castagna's equation constant value for estimating the S-wave velocity are evaluated as A=0.86190, B=-3845.14431 respectively and water saturation ratio is $50\%$. To calculate the reflection coefficient of synthetic seismogram, the Zoeppritz equation is used. For AVO inversion process, the dataset provided by Hampson-Rushell CO. is used.

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혼합수소발생기용 전력변환장치의 특성 (Characteristic of Hydrogen-oxygen Mixed Gas Power Conversion System)

  • 문상필;이해수;정장근;김창일;조길제;김상돈
    • 한국조명전기설비학회:학술대회논문집
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    • 한국조명전기설비학회 2007년도 추계학술대회 논문집
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    • pp.323-326
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    • 2007
  • In this paper, the basic experiment, electrolytic cell design and basic manufacturing have been made to interpret the characteristics of Hydrogen-Oxygen-Gas-Generator. As for the detailed matters, the data research on basic technology on Hydrogen-Oxygen-Gas and analysis on characteristics of Hydrogen-Oxygen-Gas from basic experiment. Also the experiment of characteristics and comparative evaluation between constant current source using SCR converter from existing method and constant current source using new phase shift PWM control method converter. As results when it has injected constant DC current, we has compared Gas quantities by variable ripple frequencies using phase shift PWM control method converter. Therefore, in linear region, it has not different Gas quantities by constant DC current and by phase shift PWM control method converter. Also, it has increased Gas quantities wilder linear region when put ripple frequency at saturation region. Through, Gas quantities and input rower, it has acquired higher input power per Gas quantities at put pulse current. Therefore, when designing converter or inverter for electrolysis, which has ripple current.

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단일절리에서 모세관압을 고려하지 않은 불혼합성 물과 가스의 동시거동 해석 (Numerical Simulation of Immiscible Water-Gas Simultaneous Flow in the absence of Capillary Force in a Single Fracture)

  • 한일영;서일원
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제6권2호
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    • pp.69-81
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    • 2001
  • 매질에서 불혼합성인 물과 가스의 동시거동 해석을 위해서는 모세관압, 포화도, 상대투과계수의 구성관계가 선결되어야 한다. 그러나 모세관력이 무시될 수 있는 흐름에서는 점성마찰력이 흐름을 지배하게 되고 포화도와 상대투과계수의 구성관계가 상대적으로 중요하게 된다. 본 연구에서는 압력에 따른 점성의 변화와 포화도에 따른 상대투과계수의 변화를 절리간극의 크기별로 고려할 수 있는 2차원 유한차분 수치모형을 개발하였다. 수치모형에 이용할 상대투과계수 특성식은 일곱가지의 간극크기별 평판모형실험으로부터 구하였다. 실험으로부터 도출된 포화도와 상대투과계수 관계곡선은 기존의 경험식으로는 표현되기 어려웠으며, 따라서 새로운 경험식으로 로지스틱 방정식을 제시하였다. 이 방정식은 간극의 크기가 포함된 매개변수를 사용하였기 때문에 임의의 절리 간극크기의 적용이 가능한 형태이다. 수치모형의 검증을 위해서 상대투과계수 특성식을 수치모형에 적용하여 가스의 이동을 해석한 후, 모형실험 결과와 비교하였다. 수치모형의 현장적용성을 검토하기 위하여 지하 LPG 저장공동에 인접한 단일절리에 적용한 결과, 지하수와 프로판가스의 동시거동을 적절히 모사할 수 있었다.

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고분자전해질 연료전지의 동작압력에 대한 가스 확산층의 위치 별 전류밀도 및 수분거동에 대한 수치해석 (Numerical Modeling of Current Density and Water Behavior at a Designated Cross Section of the Gas Diffusion Layer in a Proton Exchange Membrane Fuel Cell)

  • 강신조;김영배
    • 대한기계학회논문집B
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    • 제36권2호
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    • pp.161-170
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    • 2012
  • 고분자 전해질 연료전지에서 물 관리는 연료 전지성능에 영향을 미치는 중요한 요인이다. 공급되는 수분의 양이 적을 경우 수소이온의 이동을 담당하는 전해질의 건조현상으로, 수분의 양이 과다할 경우 반응이 일어나는 촉매층과 전해질 삼상 계면에서의 홍수현상으로 성능을 감소시키거나 동작을 멈추게 하므로 이 부분에 대한 많은 연구가 진행되고 있다. 본 논문에서는 연료전지 수분에 영향을 주는 요소 중, 연료극과 공기극에 공급되는 상대습도를 100%로, 동작온도를 $80^{\circ}C$로 설정한 후, 입구 측에 압력을 변화하면서, 다중물리응용 수치해석을 포함하고 유한요소를 통하여 비선형 편미분 방정식이 결부된 상용코드를 이용하여 전체적인 전기화학반응 및 성능에 대한 해석을 수행하고 공기극 측의 가스 확산층에 각 위치별 전류밀도 분포와 수분포화의 분포, 압력차에 의한 동작물질의 속도 등을 분석하여 보았다. 본 연구를 통하여 얻어진 결과는 연료전지의 성능은 압력의 세기에 따라 달라지며 압력이 높을수록 성능과 위치별 최대 전류밀도가 높게 나타났으며, 공기극의 가스 확산층에서의 수분함량은 높은 압력에서보다 낮은 압력에서 수분함량이 많은 것으로 나타났으며 특히 전극의 바로 아래 부분에서의 수분이 더 많이 응축되어 나타났으며 공기극 가스 확산층에서의 동작물질의 속도는 동작물질의 입구방향에서 출구측으로 진행할수록 그 변동 폭이 크게 나타났다.