• 제목/요약/키워드: GT(Gas Turbine)

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가스터빈의 냉각공기를 고려한 선박동력용 GT/ST 하이브리드시스템의 성능 평가 (Performance Analysis of GT/ST Hybrid System for Marine Power Applications(under Conditions of Air-Cooled Gas Turbine))

  • 김선희;정병건;김명환
    • Journal of Advanced Marine Engineering and Technology
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    • 제36권5호
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    • pp.586-594
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    • 2012
  • 미래형 선박 동력장치는 경제성과 친환경성을 같이 요구하고 있다. 즉, 높은 에너지 효율과 함께 대기오염물질 및 온실가스의 배출을 낮추어야 한다. 최근 가스터빈은 효율과 안전성 면에서 많은 기술적 발전을 이룩하였으며 항공용 이외에 파워플랜트의 GT/ST 하이브리드시스템으로 채용의 사례를 넓히고 있다. 본 논문에서는 선박용으로 GT/ST 하이브리드시스템의 가능성을 평가하기 위하여 대용량이 아닌 수십 MW급에 대한 성능 특성을 시뮬레이션으로 검토하였다. 검토된 GT/ST 하이브리드시스템은 최대 효율이 49 %정도이고 TIT에 대하여 최고 효율점을 갖으며 가스터빈과 증기터빈의 부하분담률이 각각 70~75 % 그리고 25~30 % 정도였다.

한국 전력시장에서의 가스터빈(GT) 발전기 경쟁력 및 시장 미진입 적정성 분석 (Analysis of Gas Turbine Competitiveness and Adequacy of Electricity Market Signal in Korea)

  • 김은환;박용기;박종배;노재형
    • 전기학회논문지
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    • 제66권8호
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    • pp.1172-1180
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    • 2017
  • This study analyzed competition in peak load plants between CCGT and GT instead of competition between base and peak load plants like in previous studies. In common overseas power markets, CCGT and GT claim certain market shares as peak load plants with the latter boasting a high utilization rate as reserve plants. In South Korea, however, there has been no introduction of GT in the market that opened in 2001 with no analysis cases of GT's economy as a peak load plant. The current power market of South Korea is run on the cost-based pool, which allows for no price spikes. Since the capacity payment criteria for compensations for missing money are set based on GT generators, the power market uses GT generators as marginal plants. The purposes of this study were to analyze the competitive edge of GT generators as peak load plants in the domestic power market of South Korea and identify the causes of GT's failure in market entry, thus assessing the adequacy of market signals in the domestic power market.

복합발전기 조합별 증분비 곡선 재설정에 관한 연구 (A Study on the Resetting of Incremental Heat Rate Curve of Combined Cycle Unit by Combination)

  • 홍상범;최준호
    • 전기학회논문지
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    • 제68권1호
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    • pp.8-12
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    • 2019
  • Combined Cycle Unit(CC) generates the primary power from the Gas Turbine(GT) and supplies the remaining heat of the GT to the Steam Turbine(ST) to generate the secondary power from the ST. It plays a major role in terms of energy efficiency and Load Frequency Control(LFC). Incremental Heat Rate(IHR) curves of economic dispatch(ED) of CC is applied differently by GT/ST combination. But It is practically difficult because of performance test by all combinations. This paper suggests a reasonable method for estimating IHR curves for partial combinations(1:1~(N-1):1) using IHR curves when operating with GT alone(1:0) and with all(N:1) combinations of CC.

공급가스 유량에 따른 SOFC/GT 시스템 특성에 관한 연구 (A study on characteristics of SOFC/GT system for the supply gas flow rates)

  • 박상균;이주희;박정대;최재혁
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권7호
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    • pp.765-772
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    • 2015
  • 본 연구는 SOFC/GT(Solid Oxide Fuel Cell/Gas Turbine)시스템의 SOFC 스택으로 공급되는 공기, 메탄 및 물의 유량변화에 따른 SOFC/GT시스템의 온도, 스택 출력 및 시스템 효율의 특성에 관하여 조사하였다. 이 때 SOFC 스택의 애노드 및 캐소드로 공급되는 가스 온도는 외부 열원의 추가 없이 시스템에서 배출되는 배기가스를 활용하여 일정하게 유지하였다. 그 결과 본 연구의 범위 내에서 외부 열원의 추가 없이 SOFC/GT시스템의 배기가스를 활용하여 SOFC 스택으로 공급되는 애노드 및 캐소드 가스 공급온도를 1000(K)로 일정하게 유지하는 것이 가능하였다. 시스템 효율은 공급 공기 유량은 많을수록, 공급 메탄 유량은 적을수록 높아짐을 알 수 있었고, 터빈으로 공급되는 배기 가스의 유량이 시스템 효율에 큰 영향을 미침을 알 수 있었다. 또한, SOFC/GT시스템의 운전 조건에 따라서 SOFC 스택 효율은 51~57%, 시스템 효율은 57~73%의 값을 얻을 수 있었다.

HTGR PROJECTS IN CHINA

  • Wu, Zongxin;Yu, Suyuan
    • Nuclear Engineering and Technology
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    • 제39권2호
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    • pp.103-110
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    • 2007
  • The High Temperature Gas-cooled Reactor (HTGR) possesses inherent safety features and is recognized as a representative advanced nuclear system for the future. Based on the success of the HTR-10, the long-time operation test and safety demonstration tests were carried out. The long-time operation test verifies that the operation procedure and control method are appropriate for the HTR-10 and the safety demonstration test shows that the HTR-10 possesses inherent safety features with a great margin. Meanwhile, two new projects have been recently launched to further develop HTGR technology. One is a prototype modular plant, denoted as HTR-PM, to demonstrate the commercial capability of the HTGR power plant. The HTR-PM is designed as $2{\times}250$ MWt, pebble bed core with a steam turbine generator that serves as an energy conversion system. The other is a gas turbine generator system coupled with the HTR-10, denoted as HTR-10GT, built to demonstrate the feasibility of the HTGR gas turbine technology. The gas turbine generator system is designed in a single shaft configuration supported by active magnetic bearings (AMB). The HTR-10GT project is now in the stage of engineering design and component fabrication. R&D on the helium turbocompressor, a key component, and the key technology of AMB are in progress.

A New Methodology for Advanced Gas Turbine Engine Simulation

  • M.S. Chae;Y.C. Shon;Lee, B.S.;J.S. Eom;Lee, J.H.;Kim, Y.R.;Lee, H.J.
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2004년도 제22회 춘계학술대회논문집
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    • pp.369-375
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    • 2004
  • Gas turbine engine simulation in terms of transient, steady state performance and operational characteristics is complex work at the various engineering functions of aero engine manufacturers. Especially, efficiency of control system design and development in terms of cost, development period and technical relevance implies controlling diverse simulation and identification activities. The previous engine simulation has been accomplished within a limited analysis area such as fan, compressor, combustor, turbine, controller, etc. and this has resulted in improper engine performance and control characteristics because of limited interaction between analysis areas. In this paper, we propose a new simulation methodology for gas turbine engine performance analysis as well as its digital controller to solve difficulties as mentioned above. The novel method has particularities of (ⅰ) resulting in the integrated control simulation using almost every component/module analysis, (ⅱ) providing automated math model generation process of engine itself, various engine subsystems and control compensators/regulators, (ⅲ) presenting total sophisticated output results and easy understandable graphic display for a final user. We call this simulation system GT3GS (Gas Turbine 3D Graphic Simulator). GT3GS was built on both software and hardware technology for total simulation capable of high calculation flexibility as well as interface with real engine controller. All components in the simulator were implemented using COTS (Commercial Off the Shelf) modules. In addition, described here includes GT3GS main features and future works for better gas turbine engine simulation.

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상용 유한요소 해석 프로그램을 이용한 가스터빈 간극 설계의 가시화 방법 (Visualization method of Clearance Design of Gas Turbine using Commercial Finite Element Analysis program)

  • 한도원;김영춘;김경천
    • 한국가시화정보학회지
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    • 제17권1호
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    • pp.78-84
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    • 2019
  • A gas turbine is the main equipment of a power plant that generates electricity by high-speed rotation of the rotor in a high-temperature environment. In particular, in the case of medium to large-sized gas turbines, the rotor is composed of a plurality of stages, and each component is exposed to different physical environments. Especially, in the case of the tip clearance of the turbine, it is a very important factor in the performance of the design items and the operation of the stable turbine, and a design considering the physical behavior of all major parts should be done. In this study, we will discuss the process of visualizing the physical behavior of turbine operating conditions and the method of designing tip clearance for stable operation by using commercial finite element analysis program for gas turbine assembly model and single product.

선박동력용 SOFC/GT(무냉각) 하이브리드시스템의 성능 평가 (Performance Analysis of Hybrid SOFC/Uncooled GT System for Marine Power Applications)

  • 김명환;길병래
    • Journal of Advanced Marine Engineering and Technology
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    • 제36권8호
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    • pp.1050-1060
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    • 2012
  • SOFC시스템 고효율화의 한 방법으로 SOFC/GT 하이브리드시스템은 유효하다. 그러나 시스템의 출력 규모가 수십 MW급의 선박용이라면 하부시스템으로 사용되는 GT시스템의 냉각방식 도입은 장치를 복잡하게 만들고 제어 또한 쉽지 않게 된다. 따라서 선박용으로는 SOFC/GT(유냉각) 하이브리드시스템보다 SOFC/GT(무냉각) 하이브리드시스템이 더 적합해 보인다. 본 연구는 SOFC/GT(무냉각) 하이브리드시스템을 구축하고 그 시스템에 대한 스택의 작동온도와 전류밀도, 가스터빈의 압력비, TIT가 시스템의 성능에 미치는 영향 등을 시뮬레이션을 통하여 검토한 것으로 공기압축기 소요 동력의 증가에도 불구하고 전기적 효율은 상승되며 TIT에는 운전을 위한 제한된 온도범위가 존재한다는 것을 알 수 있었다.

GT24 가스터빈용 EV 버너의 수소혼소에 따른 질소산화물 배출 특성에 대한 실험적 연구 (An Experimental Study on NOx Emissions with Hydrogen and Natural gas Co-firing for EV burner of GT24)

  • 황정재;이원준;민경욱;강도원;김한석;김민국
    • 한국가스학회지
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    • 제27권4호
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    • pp.85-91
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    • 2023
  • 본 연구에서는 GT24 가스터빈의 1단 연소기인 EV버너를 대상으로 수소연료 혼소에 대한 화염거동, 연소 진동 및 NOx 배출 특성에 대한 실험적 연구를 수행하였다. 수소 혼소율이 증가할수록 NOx 배출 농도가 증가하는 결과를 확인하였다. 이러한 변화는 연료 밀도 변화로 인한 침투깊이 변화, 화염전파속도 증가에 따른 화염위치 변화에 기인한 연료 혼합도 감소와 연소진동으로 인한 시간적 혼합도 섭동 영향이 복합적으로 작용한 결과로 판단되었다. 1.3~3.1bar 범위의 가압 시험을 통해 고압 운전 조건의 NOx 배출 특성을 예측하고 이를 토대로 천연가스용 EV 버너의 수소혼소 한계를 평가하였다.

네트워크 모델링 기법을 이용한 환형 가스터빈 연소기(GT24)에서의 음향장 해석 (Acoustic Analysis in an Annular Gas Turbine Combustor (GT24) Network Modeling Approach)

  • 장재우;노현구;김대식
    • 한국분무공학회지
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    • 제28권3호
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    • pp.119-125
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    • 2023
  • In this research, a network model was developed to predict combustion instability in an annular gas turbine combustor (GT24) for power generation. The model consisted of various acoustic elements such as several ducts and area changes which could represent a real combustor with a complex geometry, applied mass, momentum, and energy equations to each element. In addition, a one-dimensional network model through a cylindrical coordinate system has been proposed to predict various acoustic modes. As a result of the analysis, the key resonant frequencies such as longitudinal, circumferential, and complex modes were derived from the EV combustor of GT24, and the reliability of the current model was verified through comparison with the 3D Helmholtz solver.