• 제목/요약/키워드: LNG Power Plant

검색결과 73건 처리시간 0.019초

초저온 액화 천연 가스용 기화기 핀의 승온 특성에 관한 수치 해석 (Numerical Analysis on the Increasing Temperature Characteristics of Vaporizer Fin for Liquefied Natural Gas with Super Low Temperature)

  • 이중섭;공태우;이효덕;정효민;정한식
    • 동력기계공학회지
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    • 제9권2호
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    • pp.81-87
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    • 2005
  • This study is numerical analysis on the increasing temperature characteristics of vaporizer fin for liquefied natural gas with super low temperature. Existing LNG vaporizers use the direct contact heat transfer mode where the extreme super low temperature LNG of $-162^{\circ}C$ flows inside of the tubes and about $20^{\circ}C$air flows on outside of the fin. Recently, the vaporizers with great enhanced performance compared to conventional type have been developed to fulfill these requirements. The vaporizing characteristic of LNG vaporizer with air as heat source has a fixed iced. These characteristic cause a low efficiency in vaporizer, total plant cost and installing space can be increased. The vaporizing characteristics of LNG via heat exchanger with air are analytically studied for an air heating type vaporizer. This study is intended to supply the design data for the domestic fabrication of the thickness and angle vaporizer fin. Governing conservation equations for mass, momentum and energy are solved by STAR-CD based on an finite volume method and SIMPLE algorithm. Calculation parameter is fin thickness, setup angle and LNG temperature. If the vaporization performance of the early stage and late stage of operating is considered, the case of ${\phi}=90^{\circ}$ was very suitable. In this paper was estimated that the heat transfer was most promoted in case of THF=2mm.

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물질수지 방법을 고려한 액화천연가스 발전소에서의 온실기체 배출량 산정 방법 비교 (Comparison of the CO2 Emission Estimation Methods in a LNG Power Plant Based on the Mass Balance Approach)

  • 김희진;여민주;김용표;장건우;신원근;이명훈;최형욱
    • 한국기후변화학회지
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    • 제4권3호
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    • pp.235-244
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    • 2013
  • 이산화탄소 배출량 산정법은 IPCC 지침에 따라 4가지 산정등급(Tier)으로 구분된다. 본 연구에서는 LNG를 연료로 사용하는 기체 화력발전소에서의 2011년 3월부터 5월까지의 이산화탄소 배출량을 Tier 3과 4의 방법에 따라 산정하여 그 결과를 물질 수지식에 따른 이론적 배출량과 비교하였다. Tier 3과 이론적 배출량의 결과는 유사하게 나타난 반면, Tier 4의 경우 이론적 배출량에 비해 최대 17% 가량 높게 산정되는 것으로 나타났다. 비교 결과는 연속 측정 장비에서의 결측, 비정상, 무효 자료 대체로 인한 오차 가능성을 제시한다. 하지만 정상적인 자료만을 사용하여 상대적인 결과 차이를 볼 경우에도 차이는 다소 경감하나 여전히 존재한다. 이러한 차이는 Tier 4에 해당하는 연속측정 기기 자체, 특히, 유량측정기의 오류 및 정확도에 의한 것으로 보인다.

Floating Gas Power Plants

  • Kim, Hyun-Soo
    • 한국산업융합학회 논문집
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    • 제23권6_1호
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    • pp.907-915
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    • 2020
  • Specification selection, Layout, specifications and combinations of Power Drives, and Ship motions were studied for FGPP(Floating Gas-fired Power Plants), which are still needed in areas such as the Caribbean, Latin America, and Southeast Asia where electricity is not sufficiently supplied. From this study, the optimal equipment layout in ships was derived. In addition, the difference between engine and turbine was verified through LCOE(Levelized Cost of Energy) comparison according to the type and combination of Power Drives. Analysis of Hs(Significant Height of wave) and Tp(spectrum Peak Period of wave) for places where this FGPP will be tested or applied enables design according to wave characteristics in Brazil and Indonesia. Normalized Sloshing Pressures of FGPP and LNG Carrier are verified using a sloshing analysis program, which is CFD(Computational Fluid Dynamics) software developed by ABS(American Bureau of Shipping). Power Transmission System is studied with Double bus with one Circuit Breaker Topology. A nd the CFD analysis allowed us to calculate linear roll damping coefficients for more accurate full load conditions and ballast conditions. Through RAO(Response Amplitude Operator) analysis, we secured data that could minimize the movement of ships according to the direction of waves and ship placement by identifying the characteristics of large movements in the beam sea conditions. The FGPP has been granted an AIP(Approval in Principle) from a classification society, the ABS.

Comparison of Operation Performance of LNG Reliquefaction Process according to Reverse Brayton Cycle and Claude Cycle

  • Shin, Young-Gy;Seo, Jung-A;Lee, Yoon-Pyo
    • International Journal of Air-Conditioning and Refrigeration
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    • 제17권4호
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    • pp.135-140
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    • 2009
  • A dynamic model to simulate LNG reliquefaction process has been developed. The model was applied to two candidate cycles for LNG reliquefaction process, which are Reverse Brayton and Claude cycles. The simulation was intended to simulate the pilot plant under construction for operation of the two cycles and evaluate their feasibility. According to the simulation results, both satisfy control requirements for safe operation of brazed aluminum plate-fin type heat exchangers. In view of energy consumption, the Reverse Brayton cycle is more efficient than the Claude cycle. The latter has an expansion valve in addition to the common facilities sharing with the Reverse Brayton cycle. The expansion valve is a main cause to the efficiency loss. It generates a significant amount of entropy associated with its throttling and increases circulation flow rates of the refrigerant and power consumption caused by its leaking resulting in lowered pressure ratio. It is concluded that the Reverse Brayton cycle is more efficient and simpler in control and construction than the Claude cycle.

최적전원차성을 위한 절감 시뮬레이션 방법의 개발 (The Development of the Simplified Simulation Technique for the Best Generation Mix)

  • 송길영;최재석
    • 대한전기학회논문지
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    • 제37권6호
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    • pp.339-349
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    • 1988
  • The simplified simulation technique for the best generation mix is developed and the studied results are described. The best generation mix over study time from the economic point of view can be easily constructed by this technique. Generator maintenance, the operation of pumpgenerator and LNG thermal generator with limited energy are simulated variously, so a role of each generator is also easily evaluated. Through parametric analysis, useful planning guide points are obtained for the best generation mix transition, nuclear power plant construction cost, ruanium cost , oil cost, coal cost and midnight factor in the study case corresponding to real power system size model.

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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.

화력발전소의 미세먼지 배출특성 (Emission Characteristics of Fine Particles from Thermal Power Plants)

  • Park, Sooman;Lee, Gayoung
    • KEPCO Journal on Electric Power and Energy
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    • 제6권4호
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    • pp.455-460
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    • 2020
  • In order to identify the characteristics of fine particle emissions from thermal power plants, this study conducted measurement of the primary emission concentration of TPM, PM10 and PM2.5 according to Korea standard test method (ES 01301.1) and ISO 23210 method (KS I ISO 23210). Particulate matters were sampled in total 74 units of power plants such as 59 units of coal-fired power plants, 7 units of heavy oil power plants, 2 units of biomass power plant, and 6 units of liquid natural gas power plants. The average concentration of TPM, PM10, PM2.5 by fuel are 3.33 mg/m3, 3.01 mg/m3, 2.70 mg/m3 in coal-fired plant, 3.02 mg/m3, 2.99 mg/m3, 2.93 mg/m3 in heavy oil plant, 0.114 mg/m3, 0.046 mg/m3, 0.036 mg/m3 in LNG plant, respectively. These results of TPM, PM10 and PM2.5 were satisfied with the standards of fine dust emission allowance in all units of power plants, respectively. Also, this study evaluated the characteristics of fine particle emissions by conditions of power plants including generation sources, boiler types and operation years and calculated emission factors and then evaluated fine particle emissions by sources of electricity generation.

발전소의 대기오염물질 배출 예측 모델 개발 (Development of Predictive Model for Pollutants Emission from Power Plants)

  • 김민석;김경희;이인범
    • 제어로봇시스템학회논문지
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    • 제4권4호
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    • pp.543-550
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    • 1998
  • From the power plant in a steel plant, environment pollutants such as $SO_x$, $NO_x$, CO and $CO_2$ are emitted by combustion reactions of the fuels which are by-product gases, oil and liquefied natural gas(LNG). To reduce the amounts of the pollutants, it is important to build a predictive model for the emission of the pollutants. In this paper, model that predict the amounts of generated pollutants for the used fuel is developed by using Gibbs free energy minimization method[1] with the temperature correction technique. For some data set, the calculation results from this model are compared with the real emission amounts of $SO_x$, $NO_x$, and the result of the calculation by both ASPEN PLUS which is a commercial simulation software. This model shows good results and can be applied to other power plants.

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콘크리트 격납구조물 돔과 링빔의 개선된 설계기법 (An Advanced Design Procedure for Dome and Ring Beam of Concrete Containment Structures)

  • 전세진;김영진
    • 콘크리트학회논문집
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    • 제22권6호
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    • pp.817-824
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    • 2010
  • 약 콘크리트 격납구조물은 구조적 안전성이 뛰어나고 경제적이므로 원자력발전소 격납건물, LNG 저장탱크 등에 널리 사용되고 있다. 격납구조물 중 지붕 돔의 형태는 구조적 안전성, 물량 및 시공 난이도에 큰 영향을 미치므로 최적의 두께와 곡률을 도출하고자 하는 노력이 필요하다. 한편 일반적으로 PSC 구조로 설계되는 링빔은 이러한 돔을 지지하여 벽체의 변형을 최소화시키는 역할을 하며, 단면 크기와 더불어 프리스트레스 수준을 적절히 결정하는 것이 설계의 핵심이 된다. 이 연구에서는 축대칭 회전쉘의 막이론을 적용하여 본설계 시의 유한요소해석에 앞서 돔과 링빔의 초기 형상이나 프리스트레스 수준을 효율적으로 결정할 수 있는 기법을 제안하였다. 이러한 기법을 국내에서 시공된 격납구조물의 돔과 링빔에 적용하여 분석하고 단면 형상이나 프리스트레싱 설계에 대한 개선 방안을 고찰하였다.

Bench-scale 연소로에서 가스 혼소를 통한 초 저 NOx 석탄 버너 개발 연구 (Experimental Evaluation of Developed Ultra-low NOx Coal Burner Using Gas in a Bench-scale Single Burner Furnace)

  • 채태영;이재욱;이영재;양원
    • 청정기술
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    • 제28권2호
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    • pp.117-122
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    • 2022
  • 본 연구는 80 kW 연소로에서 초 저 NOx 버너를 개발하고 실험한 결과를 나타낸 것이다. 실험은 80 kW 단일 버너 연소로에서 진행되었으며, swirl number 변화, 총 당량비, 1차 / 2차 산화제 비율을 변경하여 진행하였다. 본 연구에서는 가스(LNG)를 보조연료로 사용하여 NOx 생성량을 크게 감소 시킬 수 있었다. 화력발전소에서 석탄 연소 시 발생하는 NOx의 양은 약 300 ppm이다. 그러나 본 연구에서 사용된 버너는 LNG를 혼소하여 NOx의 양을 40 ppm까지 감소 시킬 수 있었다. 1차 산화제의 투입량이 보조 연료인 가스가 연소될 만큼만 사용하여 가스와 석탄을 동시에 투입하면 연소가스가 버너 출구에서 고온영역을 형성하여 석탄을 휘발시키므로 N 탈휘발에 포함되어 배출된다. 그러므로 이 후 석탄이 연소 되면 석탄내 포함된 N이 거의 없기 때문에 NOx 생성량이 감소하는 것이다. 본 연구 결과를 바탕으로 실제 화력발전소 버너를 개발한다면 NOx 생성을 연소 초기에 대량 감소시킬 수 있을 것으로 예상된다.