• 제목/요약/키워드: coal-fired power plant

검색결과 260건 처리시간 0.034초

Simulation Study on Measuring Pulverized Coal Concentration in Power Plant Boiler

  • Chen, Lijun;Wang, Yang;Su, Cheng
    • Journal of Information Processing Systems
    • /
    • 제15권1호
    • /
    • pp.189-202
    • /
    • 2019
  • During thermal power coal-fired boiler operation, it is very important to detect the pulverized coal concentration in the air pipeline for the boiler combustion stability and economic security. Because the current measurement methods used by power plants are often involved with large measurement errors and unable to monitor the pulverized coal concentration in real-time, a new method is needed. In this paper, a new method based on microwave circular waveguide is presented. High Frequency Electromagnetic Simulation (HFSS) software was used to construct a simulation model for measuring pulverized coal concentration in power plant pipeline. Theoretical analysis and simulation experiments were done to find the effective microwave emission frequency, installation angle, the type of antenna probe, antenna installation distance and other important parameters. Finally, field experiment in Jilin Thermal Power Plant proved that with selected parameters, the measuring device accurately reflected the changes in the concentration of pulverized coal.

고급공정제어 알고리즘을 이용한 1000MW급 차세대화력발전소 시뮬레이터 개발 (Simulator Development of 1000MW Class Ultra Super Critical Coal-Fired Power Plant with Advanced Process Control Algorithm)

  • 오기용;임건표;김호열
    • 대한전기학회:학술대회논문집
    • /
    • 대한전기학회 2008년도 제39회 하계학술대회
    • /
    • pp.1817-1818
    • /
    • 2008
  • Even though efficiency of coal-fired power plant is proportional to operating temperature, increasement of operating temperature is limited by a technological level of each power plant components. It is an alternative plan to increase operating pressure up to ultra super critical point for efficiency enhancement. It is difficult to control in that pressure within safety guideline that many unexpected phenomena are happen because that region is highly nonlinear region. In this paper, Advanced process control algorithm, ARX and Fuzzifier, is introduced. Then power plant control logics applied Unit Step Optimizer, which is combination of ARX and Fuzzifier are proposed. Its performance is tested and analyzed with design guide line.

  • PDF

퍼지 로직 및 모델 예측 제어기 적용을 통한 초초임계압 화력발전소 부하 응답 최적화 운전 방법 설계 (Unit Response Optimizer mode Design of Ultra Super Critical Coal-Fired Power Plant based on Fuzzy logic & Model Predictive Controller)

  • 오기용;김호열
    • 전기학회논문지
    • /
    • 제57권12호
    • /
    • pp.2285-2290
    • /
    • 2008
  • Even though efficiency of coal-fired power plant is proportional to operating temperature, increasement of operating temperature is limited by a technological level of each power plant component. It is an alternative plan to increase operating pressure up to ultra super critical point for efficiency enhancement. It is difficult to control process of power plant in ultra super critical point because that point has highly nonlinear characteristics. In this paper, new control logic, Unit Response Optimizer Controller(URO Controller) which is based on Fuzzy logic and Model Predictive Controller, is introduced for better performance. Then its performance is tested and analyzed with design guideline.

이젝터-다공튜브 희석 샘플링과 ELPI를 이용한 석탄화력발전소 배출 미세먼지의 입자 크기에 따른 성분 분석 (Elemental components analysis according to the size of fine particles emitted from a coal-fired power plant using an ejector-porous tube dilution sampling and ELPI)

  • 신동호;박대훈;조윤희;김영훈;홍기정;이건희;한방우;황정호
    • 한국입자에어로졸학회지
    • /
    • 제18권3호
    • /
    • pp.69-77
    • /
    • 2022
  • In order to understand the characteristics of fine particles emitted from coal-fired power plant stacks, it is important to analyze the size distribution and components of particles. In this study, particle size distributions were measured using the ejector-porous tube dilution device and an ELPI system at a stack in a coal-fired power plant. Main elemental components of particles in each size interval were also identified through TEM-EDS analysis for the particles collected in each ELPI stage. Particle size distributions based on number and mass were analyzed with component distributions from 0.006 to 10 ㎛. The highest number concentration was about 0.01 ㎛. The main component of the particles consisted of sulfur, which indicated that sulfate aerosols were generated by gas-to-particle conversion of SO2. In a mass size distribution, a mono-modal distribution with a mode diameter of about 2 ㎛ was shown. For the components of PM1.0 (particles less than 1 ㎛), the abundance order was F > Mg > S > Ca, and however, for the components of PM10 (particles less than 10 ㎛), it was in the order of Fe > S > Ca > Mg. The elemental components by particle size were confirmed.

석탄 화력발전소 연소공기량 제어 동특성 개선방안 (Dynamic Response Improvement Method for Combustion Air Flow Control in Coal Fired Power Plant)

  • 유광명
    • 조명전기설비학회논문지
    • /
    • 제26권8호
    • /
    • pp.88-95
    • /
    • 2012
  • When controling combustion air flow in coal fired power plant the furnace safety must be considered first prior to plant efficiency. therefore it is very important to set air flow demand exactly for safe operation and maintenance. This paper analyze air flow control loop in power plant and introduce the method to improve dynamic response time. Simulation result shows this scheme is adoptable and provide better performance.

화력발전용 복수기 폐열 회수를 위한 유기랭킨사이클 시스템 열교환 특성 해석 (A Heat Exchanging Characteristics of Organic Rankine Cycle for Waste Heat Recovery of Coal Fired Power Plant)

  • 정진희;임석연;김범주;유상석
    • 한국수소및신에너지학회논문집
    • /
    • 제26권1호
    • /
    • pp.64-70
    • /
    • 2015
  • Organic Rankine cycle (ORC) is an useful cycle for power generation system with low temperature heat sources ($80{\sim}400^{\circ}C$). Since the boiling point of operating fluid is low, the system is used to recover the low temperature heat source of waste heat energy. In this study, a ORC with R134a is applied to recover the waste energy of condenser of coal fired power plant. A system model is developed via Thermolib$^{(R)}$ under Simulink/MATLAB environment. The model is composed of a refrigerant heat exchanger for heat recovery from coal fired condenser, a drum, turbine, heat exchanger for ORC heat rejection, storage tank, water recirculation pump and water drip pump. System analysis parameters were heat recovery capacity, type of refrigerants, and types of turbines. The simulation model is used to analyze the heat recovery capacity of ORC power system. As a result, increasing the overall heat transfer coefficient to become the largest of turbine power is the most economical.

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

  • Park, Sooman;Lee, Gayoung
    • KEPCO Journal on Electric Power and Energy
    • /
    • 제6권4호
    • /
    • pp.455-460
    • /
    • 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.

500 MW 화력발전소 고압 증기 배관 손상 원인 분석 (Failure Analysis on High Pressure Steam Piping of 500 MW Thermal Power Plant)

  • 김정면;정남근;양경현;박민규;이재홍
    • KEPCO Journal on Electric Power and Energy
    • /
    • 제5권4호
    • /
    • pp.323-330
    • /
    • 2019
  • 500 MW 표준 석탄화력발전소는 국내에서 가장 큰 용량의 규격화된 발전소로써 20년 넘게 국내 전력생산에 중추적인 역할을 수행하고 있다. 장기간 사용으로 인한 경년 열화와 더불어 최근 석탄화력발전소의 대기오염 문제가 대두되면서 석탄화력발전소 가동률 제한 정책에 따른 잦은 기동·정지에 의해 발전 설비의 고장 확률이 증가하고 있다. 그 중 증기 배관은 보일러에서 만들어진 고온·고압의 증기를 전력생산을 위해 터빈으로 이송시키는 중요한 역할을 하는 설비로 최근 국내 대용량 발전소 증기 배관의 고장 사례가 빈번하게 발생하고 있다. 이에 본 연구에서는 국내 500 MW 표준 석탄화력발전소 주증기배관 연결 용접부에 반복적으로 발생된 손상에 대해 손상 해석을 수행하였다. 동일 규격의 타 발전소에서 발생될 수 있는 고장의 사전 예방을 위해 균열부 금속 조직 분석과 배관 응력 해석을 통해 배관 지지 구조에 의한 고 응력에 의해 발생된 원인을 규명하고 고 응력부 응력 저감을 위한 지지 구조 개선 방안을 제시하였다.

화력발전소 회처리장 조성에 따른 환경영향 최소화를 위한 석탄회 재활용 확대방안에 관한 연구 (A Study on Expanding the Recycling of Coal Ash for Minimizing Environmental Impact Imposed by the Establishment of Thermal Power Plant Ash Ponds)

  • 서동환;맹준호
    • 환경영향평가
    • /
    • 제24권5호
    • /
    • pp.472-486
    • /
    • 2015
  • 국내 석탄화력발전소에서는 매년 800만 톤 이상의 석탄회가 배출되고 있으며, 이에 대한 최종적인 처리는 현재 약 70% 수준의 재활용, 그리고 해안 회처리장을 통해 매립 처리하고 있다. 그러나 실질적으로 개별 발전시설의 회처리장마다 수년 내에 만지(포화) 시기의 도래가 예상되며, 석탄회처리장 건설로 인한 환경영향에 대한 우려로 신규 확보도 어려운 상황이다. 향후 "제7차 전력수급기본계획"을 반영하여 추가적으로 건설될 석탄화력 발전시설을 고려했을 때(2020년 기준 1,000만 톤 배출 예상), 회처리장의 신규조성이 불가피하다. 그러나 회처리장 조성으로 인해 기존의 양호한 자연해안지역이 훼손되는 문제가 우려될 수 있다. 따라서 본 연구에서는 석탄회로 인한 환경영향을 최소화하기 위해, 근본적으로 추가적인 석탄화력 발전시설과 회처리장의 건설을 줄여나가고 더불어 배출된 석탄회의 유효이용 및 재활용 활성화를 위한 정책적 방안을 제시하고자 하였다.

500 MW 석탄화력 발전소에서 바이오매스 혼소율이 미분기 운전인자에 미치는 영향 (Effect of Biomass Co-firing Ratio on Operating Factors of Pulverizer in 500 MW Coal-fired Power Plant)

  • 금준호;문승재
    • 플랜트 저널
    • /
    • 제18권3호
    • /
    • pp.28-40
    • /
    • 2022
  • 신재생에너지 발전 비중 확대가 예상됨에 따라 공공 발전사업자들은 바이오매스 혼소의 확대 시행을 적극적으로 검토해야 할 필요가 있다. 본 연구에서는 500MW 석탄화력에서 바이오매스 혼소율을 0wt.%에서 5.0wt.%까지 변화하며 미분기 주요 운전 특성을 측정하였다. 먼저, 목질계 바이오매스에 대한 구성성분 분석과 분쇄 특성을 알아보았고, 혼합연료의 부피 증가가 미분기 보울 압력 차이, 모터 전류, 이물질 처리횟수, 출구 온도, 내부 화재횟수에 미치는 영향을 분석하였다. 혼소율 증가에 따라 미분기 보울 압력 차이와 모터 전류, 이물질 처리횟수는 상승함을 확인하였고, 출구 온도는 상승 폭이 미미하였다. 내부 화재횟수는 명확한 상관관계를 찾기 힘드나, 다른 운전인자와 결합하여 발생할 가능성이 크다는 것을 확인하였다.

  • PDF