• Title/Summary/Keyword: Gas CHP

검색결과 54건 처리시간 0.028초

바이오 가스를 연료로 사용하는 증기분사 가스터빈 열병합발전 시스템의 성능분석 (Performance evaluation of a steam injected gas turbine CHP system using biogas as fuel)

  • 강도원;강수영;김동섭;허광범
    • 한국유체기계학회 논문집
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    • 제13권6호
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    • pp.57-62
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    • 2010
  • MW-class gas turbines are suitable for distributed generation systems such as community energy systems(CES). Recently, biogas is acknowledged as an alternative energy source, and its use in gas turbines is expected to increase. Steam injection is an effective way to improve performance of gas turbines. This study intended to examine the influence of injecting steam and using biogas as the fuel on the operation and performance a gas turbine combined heat and power (CHP) system. A commercial gas turbine of 6 MW class was used for this study. The primary concern of this study is a comparative analysis of system performance in a wide biogas composition range. In addition, the effect of steam temperature and injected steam rate on gas turbine and CHP performance was investigated.

산업단지 내 CHP Hybrid System 최적화 모델에 관한 연구 (Optimization Process Models of Gas Combined Cycle CHP Using Renewable Energy Hybrid System in Industrial Complex)

  • 오광민;김래현
    • 에너지공학
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    • 제28권3호
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    • pp.65-79
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    • 2019
  • 본 연구는 산업단지 내 Gas Combined Cycle CHP와 연계 가능한 신재생에너지원을 조합하여 최적의 설비용량을 산정하고자 하였다. 특히 2013~2016년도 에너지사용계획 협의 대상 산업단지 중 집단에너지 공급대상 지역지정 연료사용량 요건은 연간 3.8만 TOE로 미달되지만, 열밀도가 $92.6Gcal/km^2{\cdot}h$로 높은 세종첨단일반산업단지를 연구 대상으로 하였다. 그리고 신재생에너지 Hybrid System 경제성 분석 프로그램인 HOMER Pro를 이용하여 연료전지와 태양광발전을 연계한 FC-PV Hybrid CHP System의 최적화 운영 모델에 대해 분석하였다. 또 CHP의 주 공급 에너지원인 열에너지에 있어, 열수요량 뿐만 아니라 우점 업종에 대한 열수요 패턴을 분석하여 연구의 신뢰도를 높이고자 하였으며, 경제성 분석을 추가하여 상대적 편익을 비교하고자 하였다. 연구 결과, 신규 조성 중인 세종첨단일반산업단지의 전체 간접열 수요는 연간 378,282 Gcal이며, 이중 제지업종이 연간 293,754 Gcal인 약 77.7%를 우점하고 있었다. 산업단지 전체 간접열 수요에 대해 단일 Combined Cycle CHP의 최적 설비용량은 30,000 kW로, 이때 열생산은 CHP가 275,707 Gcal, 72.8 %를 분담하고, 첨두부하보일러 PLB가 103,240 Gcal, 27.2 %를 분담하는 것으로 분석되었다. 그리고 CHP와 연료전지, 태양광 조합에서는 최적 설비용량이 각 30,000 kW, 5,000 kW, 1,980 kW이며, 이때 열생산은 Combined Cycle CHP가 275,940 Gcal, 72.8%, 연료전지가 12,390 Gcal, 3.3%, PLB가 90,620 Gcal, 23.9%를 분담하였다. 여기서 CHP 용량이 감소하지 않은 것은, CHP 용량 감소에 따른 부족한 열 생산량에 대해 PLB의 과다한 운전이 요구되는 경제적이지 못한 대안이 도출되었기 때문이었다. 한편 우점 업종인 제지업종의 간접열 수요에 대해서는 Combined Cycle CHP, 연료전지, 태양광 조합의 최적 설비용량은 25,000 kW, 5,000 kW, 2,000 kW로, 이때 열생산은 CHP 225,053 Gcal, 76.5%, 연료전지 11,215 Gcal, 3.8%, PLB가 58,012 Gcal, 19.7%를 분담하는 것으로 분석되었다. 그러나, 현행 전력시장 및 가스시장에서의 경제성 분석결과는 모두 투자비 회수가 불가능한 것으로 확인 되었다. 다만, 우점 업종인 제지 업종만을 대상으로 CHP와 연료전지, 태양광을 조합한 CHP Hybrid System이 단일 CHP System에 대해 연간 약 93억원의 경영여건을 개선시킬 수 있음을 확인하였다.

가스터빈 열병합발전소 성능저하 분석에 관한 연구 (A Study on Performance Degradation Analysis of Gas Turbine Combined Heat and Power Plant)

  • 김홍주;김병헌;오병수
    • 설비공학논문집
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    • 제28권6호
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    • pp.248-255
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    • 2016
  • In this study, the degree of performance changes between the guaranteed performance and the performance after a certain operating start time is calculated by using the performance test of gas turbine CHP. The reason of the performance degradation will then be analysed. For some results of the CHP plant performance tests the comprehensive electric power output was 8,380 kW lower than the guaranteed performance, and the gas turbine's output was reduced to about 250 kW whenever ambient temperatures rose to $1^{\circ}C$. Also, causes of the performance degradation of gas turbines are ambient temperature rise, temperature aging and air compressor's efficiency drop.

가정용 열병합 시스템의 국내 도입에 따른 온실가스 저감효과 예측 (Impact of Residential CHP Systems on Greenhouse Gas Emissions in Korea)

  • 강병하;윤창호;안준
    • 설비공학논문집
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    • 제25권10호
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    • pp.555-561
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    • 2013
  • The effects of applying the micro CHP system to the domestic sector in Korea were investigated using annual cooling and heating demand data. Four prime movers, micro gas turbine, PEMFC, gas engine and Stirling engine, were compared for three operational modes. Two way buy-back was assumed for both electricity and heat. The Stirling engine gave the lowest $CO_2$ emission per energy for 300kWh monthly electricity production. However, PEMFC became more effective when considering PURPA criteria. PEMFC generated the least greenhouse gas with higher electrical efficiency for cooling. The Stirling engine, however, became competitive for heating with higher total efficiency.

소형 가스엔진 열병합발전의 운전거동 예측을 위한 컴퓨터 시뮬레이션 (Computer Simulation to Predict Operating Behavior of a Gas Engine Driven Micro Combined Heat and Power System)

  • 조우진;이관수;김인규
    • 설비공학논문집
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    • 제22권12호
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    • pp.873-880
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    • 2010
  • The present study developed a computer simulation program to determine the optimum strategy and capacity of a micro combined heat and power(CHP) system. This simulation program considered a part-load electrical/thermal efficiency and transient response characteristics of CHP unit. The result obtained from the simulation was compared with the actual operation of 30 kW gas engine driven micro CHP system. It was found that the simulation could reproduce the daily operation behavior, such as operating hours and mean load factor, closely to the actual behavior of the system and could predict the amount of electrical/thermal output and fuel consumption with the error of less than 12%.

LEAP 모형을 이용한 연료전지 열병합발전설비 도입에 따른 온실가스배출저감 잠재량 분석 (Study of fuel cell CHP-technology on electricity generation sector using LEAP-model)

  • 신승복;전수영;송호준;박종진;;박진원
    • 에너지공학
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    • 제18권4호
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    • pp.230-238
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    • 2009
  • 우리나라는 에너지 절약 및 온실가스 배출저감 기술 중 하나로써 소형 열병합 발전과 소형 연료전지 열병합 발전을 연구해 왔으며 정책적으로 이를 보급하려고 한다. 기존의 석탄화력발전설비, 복합화력발전설비, 석유 화력발전설비를 열병합 발전설비로 대체하는 시나리오를 작성하여 에너지소비량과 온실가스 배출량의 변화추이를 에너지 경제 모델인 LEAP (Long-range Energy Alternative Planning system)을 이용하여 정량적으로 분석하였다. 2019년을 기준으로 열병합 발전설비를 석탄화력발전설비와 교체하였을 경우, 온실가스 배출량이 약 6.34%가 감소하였고 복합화력발전설비와 교체하였을 경우, 온실가스 배출량이 약 0.8%가 증가하였으나 열병합발전설비의 열생산량을 고려해주면 배출량이 감소하는 경향을 보일 것으로 사료된다. 석유화력발전설비를 열병합발전설비로 대체할 경우, 온실가스 배출량이 약 0.8% 감소할 것으로 예상된다.

병원건물 분산에너지시스템 도입에 따른 경제성분석 (The Basic Study on Economic Evaluation of Distributed Energy System Installed in Hospital)

  • 홍원표;김병수
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2009년도 제40회 하계학술대회
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    • pp.1136_1138
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    • 2009
  • This paper gives a basic Energy performance data of micro gas turbine and Renewable Energy(BIPV and Solar Collector System) installed in Hospital Building. The efficiency of solar collector and BIPV system was 30%, 10% individually, and lower than micro gas turbines. Micro gas turbines are small gas turbines that burn gaseous and liquid fuels to produce a high-energy exhaust gas and to generate the electrical power. Recently the size range for micro gas turbines is form 30 to 500kW and power-only generation or in combined heat and power(CHP) systems. If micro gas turbine was operated only for electric energy, the efficiency was about 30%, but for combined heat and power, the efficiency was about 90%. Finally, installed in large hospital, Micro gas turbine system was operated to CHP mode, was high-efficiency system than Solar collector and BIPV system.

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병원건물의 마이크로터빈과 신재생에너지도입에 따른 경제성평가 기초연구 (The Basic Study on Economic Evaluation of Micro-turbine and Alternative Energy system Installed in Hospital)

  • 김병수;홍원표
    • 한국조명전기설비학회:학술대회논문집
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    • 한국조명전기설비학회 2009년도 춘계학술대회 논문집
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    • pp.439-444
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    • 2009
  • This paper gives a basic Energy performance data of micro gas turbine and Renewable Energy(BIPV and Solar Collector System) installed in Hospital Building. The efficiency of. solar collector and BIPV system was 30%, 10% individually, and lower than micro gas turbines. Micro gas turbines are small gas turbines that bum gaseous and liquid fuels to produce a high-energy exhaust gas and to generate the electrical power. Recently the size range for micro gas turbines is form 30 to 500kW and power-only generation or in combined heat and power(CHP) systems. If micro gas turbine was operated only for electric energy, the efficiency was about 30%, but for combined heat and power, the efficiency was about 90%. Finally, installed in large hospital, Micro gas turbine system was operated to CHP mode, was high-efficiency system than Solar collector and BIPV system.

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하수슬러지 Biogas의 신재생에너지화 타당성 연구 (A Feasibility Study for Renewable Energy from Sewage Sludge Biogas)

  • 강호;이혜미;조상선;박선욱;정지현
    • 한국물환경학회지
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    • 제26권5호
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    • pp.754-760
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    • 2010
  • This study was carried out not only to evaluate optimal operating condition to increase biogas production, but also to estimate feasibility of renewable energy from anaerobic digester of sewage sludge. Semi- continuous Fed and Mixed Reactors (SCFMRs) were operated in various condition to quantify the reactor variables. The result of SCFMR operation showed that the biogas productivity and total volatile solids (TVS) removal of total solids (TS) 4% reactor at hydraulic retention time (HRT) 20 days with Organic Loading Rate (OLR) of $1.45kg/m^3-d$ were $0.39m^3/m^3-d$ and 26.7%, respectively which was two times higher than that of TS 2.5% reactor. Consequently the daily biogas production of $20,000m^3$ would be possible from the total volume of $52,000m^3$ of anaerobic digesters of the municipal wastewater treatment plant in D city. In feasibility study for the Biogas utilization, combined heat and power system (CHP) and CNG gasification were examined. In case of CHP, the withdrawal period of capital cost for gas-engine (GE) and micro gas-turbine (MGT) were 7.7 years and 9.1 years respectively. biogas utilization as Clean Natural Gas (CNG) shows lower capital cost and higher profit than that of CHP system. CNG gasificaion after biogas purification is likely the best alternative for Biogas utilization which have more economic potential than CHP system. The withdrawal period of capital cost appeared to be 2.3 years.

농작물의 $CO_2$ 고정화 연계 LFG-MGT 시스템의 타당성 연구 (Feasibility study of LFG-MGT power generation system with $CO_2$ fixation development)

  • 박정극;허광범;임상규
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2009년도 춘계학술대회 논문집
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    • pp.821-824
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    • 2009
  • LFG-MGT CHP system development project with $CO_2$ enrichment in greenhouses was introduced. LFG is produced from the anaerobic digestion of landfilled waste and it has been utilized for power/heat generation since it contains around 50% of $CH_4$. Utilization of LFG from small scale landfill is also needed as well as large scale landfill. However, due to economy of scale, it is very difficult to develop business model. In this context, combining CHP system with greenhouses is considered as feasible option for LFG utilization. LFG-MGT CHP system with $CO_2$ fixation in greenhouses has been derived as an active greenhouse gas reduction strategy, The focus of the system is beyond carbon neutral LFG utilization to neutral carbon absorption. The system is feasible in terms of direct and indirect $CO_2$ emission reduction with more economical way.

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