• 제목/요약/키워드: combined power and rate

검색결과 250건 처리시간 0.021초

가스터빈 공기량 조절에 따른 열병합발전 성능 변화 (The performance of combined heat and power plant according to gas turbine air mass flow rate change)

  • 김재훈;문승재
    • 플랜트 저널
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    • 제18권2호
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    • pp.32-40
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    • 2022
  • 본 연구에서는 부분부하 운전 시 가스터빈의 공기량 조절에 따른 열병합 발전의 운전데이터 변화를 알아보았다. 가스터빈 부분부하 80%시 시뮬레이션 한 결과 입구가이드베인을 최대 24% 추가로 닫을 수 있었고, 압축기 공기량은 66.11 kg/s 감소, 배기가스 온도는 52℃ 상승시킬 수 있었다. 부분부하 90%는 입구가이드베인을 최대 12% 추가로 닫을 수 있었고, 압축기 공기량은 33.33 kg/s 감소, 배기가스 온도는 23℃ 상승 시킬 수 있었다. 열부하 추종운전 시 부분 부하 80%에서 출력을 최대 5.68 MW 상승, 복합발전 효율을 0.73% 상승, 열병합발전 효율을 1.81% 상승 시킬 수 있었고, 부분부하 90%에서 출력을 최대 2.55 MW 상승, 복합발전 효율을 0.32% 상승, 열병합발전 효율을 0.72% 상승 시킬 수 있었다.

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154kV 혼합송전선로 재폐로 결정에 관한 연구 (A Study on Reclosing Decision on 154kV Combined Transmission Lines)

  • 정채균;박흥석;강지원;이종범
    • 전기학회논문지
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    • 제59권10호
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    • pp.1761-1769
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    • 2010
  • This paper describes switching surge analysis on reclosing decision in 154kV combined transmission line with power cables. Reclosing should be operated in combined transmission line based on the technical evaluation because of insulation problem of power cable section. If the surge strikes on power cable, the breakdown can occur at week point of cable insulation. Therefore the detailed analysis is required by considering several conditions such as length ratio of power cable, arrester, fault resistance, charging rate and grounding resistance, etc.. In addition, sheath voltage on IJ(Insulated Joint) is analyzed to confirm the protective level. Simulation is performed by EMTP/ATP. Analysis results show that reclosing can be operated without any special problem by the single line-to-ground fault with fault resistance of $1\Omega$ to $50\Omega$ occurred at the overhead transmission section in 154kV combined transmission lines and trap charge of 100% and 110%.

무선 Ad Hoc 통신망에서 에너지 소모율(Energy Drain Rate)에 기반한 경로선택 프로토콜 (Route Selection Protocol based on Energy Drain Rates in Mobile Ad Hoc Networks)

  • Kim, Dong-Kyun
    • 한국통신학회논문지
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    • 제28권7A호
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    • pp.451-466
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    • 2003
  • Untethered nodes in mobile ad-hoc networks strongly depend on the efficient use of their batteries. In this paper, we propose a new metric, the drain rate, to forecast the lifetime of nodes according to current traffic conditions. This metric is combined with the value of the remaining battery capacity to determine which nodes can be part of an active route. We describe new route selection mechanisms for MANET routing protocols, which we call the Minimum Drain Rate (MDR) and the Conditional Minimum Drain Rate (CMDR). MDR extends nodal battery life and the duration of paths, while CMDR also minimizes the total transmission power consumed per packet. Using the ns-2 simulator and the dynamic source routing (DSR) protocol, we compare MDR and CMDR against prior proposals for power-aware routing and show that using the drain rate for power-aware route selection offers superior performance results.

Pilot 규모 석탄 가스화기에서의 탄종별 가스화성능 특성 (Effects of Different Coal Type on Gasification Characteristics)

  • 박세익;이중원;서혜경
    • 한국수소및신에너지학회논문집
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    • 제21권5호
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    • pp.470-477
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    • 2010
  • The IGCC (Integrated gasification combined cycle) is known for one of the highest efficiency and the lowest emitting coal fueled power generating technologies. As the core technology of this system is the gasifier to make the efficiency and the continuous operation time increase, the research about different coal's gasification has been conducted. Our research group had set-up the coal gasifier for the pilot test to study the effect of different coals-Shenhua and Adaro coal- on gasification characteristics. Gasification conditions like temperature and pressure were controlled at a fixed condition and coal feed rate was also controlled 30 kg/h to retain the constant experimental condition. Through this study we found effects of coal composition and $O_2$/coal ratio on the cold gas efficiency, carbon conversion rate. The compounds of coal like carbon and ash make the performance of gasifier change. And carbon conversion rate was decreased with reduced $O_2$/coal ratio. The optical $O_2$/coal ratio is 0.8 for the highest cold gas efficiency approximately. At those operating conditions, the higher coal has the C/H ratio, the lower syn-gas has the $H_2$/CO ratio.

플라즈마/광촉매 결합시스템에 의한 톨루엔 제거특성 (Removal Characteristics of Toluene by the Combined Plasma/Photocatalyst System)

  • 여석준;허용숙
    • 동력기계공학회지
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    • 제11권2호
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    • pp.64-71
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    • 2007
  • The main purpose of this study is to analyze the characteristics of toluene removal by plasma, photocatalyst, and plasma/photocatalyst system with the major parameters such as flow rate, inlet toluene concentration and applied voltage, etc., experimentally. In the combined plasma/photocatalyst process, rates of toluene conversion are represented as 99% at flow rate 250, 500 mL/min while, below 97% at flow rate 1000 mL/min due to the low residence time(reaction time) at the same applied voltage 4173 voltage and toluene inlet concentration 50 ppm. The intermediate products are detected by GC/MS analysis showing the small amounts of benzoic acid, benzyl alcohol and residual ozone concentration $0.04{\sim}0.05$ ppm generated by plasma process in the present system.

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유기랭킨사이클을 이용한 직렬 열병합 사이클의 성능 특성 (Performance Characteristics of Combined Heat and Power Generation with Series Circuit Using Organic Rankine Cycle)

  • 김경훈;정영관
    • 한국수소및신에너지학회논문집
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    • 제22권5호
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    • pp.699-705
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    • 2011
  • A combined heat and power cogeneration system driven by low-temperature sources is investigated by the first and second laws of thermodynamics. The system consists of Organic Rankine Cycle (ORC) and an additional process heater as a series circuit. Seven working fluids of R152a, propane, isobutane, butane, R11, R123, isopentane and n-pentane are considered in this work. Maximum mass flow rate of a working fluid relative to that of the source fluid is considered to extract maximum power from the source. Results indicate that the second-law efficiency can be significantly increased due to the combined heat and power generation. Furthermore, higher source temperature and lower turbine inlet pressure lead to lower second-law efficiency of ORC system but higher that of combined system. Results also show that the optimum working fluid varies with the source temperature.

345kV급 가공송전선로와 GIL이 연계된 혼합송전계통에서 개폐과전압 해석 및 검토 (Switching Surge Analysis and Evaluation in Combined Transmission System with 345kV GIL)

  • 장화윤;이종범;김용갑;장태인
    • 전기학회논문지
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    • 제60권10호
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    • pp.1811-1816
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    • 2011
  • This paper describes switching surge analysis for reclosing decision in 345kV combined transmission line with GIL. Reclosing operation should be decided based on the detailed technical analysis in combined transmission line because this line includes power cable section which is week on insulation. Insulation of power cable can be breakdown at the week point in case of reclosing moment. Therefore the detailed analysis has to be carried out by considering several conditions such as charging rate, inserting resistance, arrester, length ratio of power cable section, grounding resistance, etc. Analysis is performed by EMTP/ATP.

배열 이용도를 고려한 가스터빈 발전시스템의 부분부하 성능 비교분석 (Comparative Part Load Performance Analysis of Gas Turbine Power Generation Systems Considering Exhaust Heat Utilization)

  • 김동섭
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2002년도 유체기계 연구개발 발표회 논문집
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    • pp.290-297
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    • 2002
  • This paper presents analysis results for the effect of power control strategies on the part load performance of gas turbine based power generation systems utilizing exhaust heat of the gas turbine such as cumbined cycle power plants and regenerative gas turbines. For the combined cycle, part load efficiency variations were compared among different single shaft gas turbines representing various technology levels. Power control strategies considered were fuel only control and IGV control. It has been observed that gas turbines with higher design performances exhibit superior part load performances. Improvement of part load efficiency by adopting air flow modulation was analyzed and it is concluded that since the average combined cycle performance is affected by the range of IGV control as well as its temperature control principle, a control strategy appropriate for the load characteristics of the individual plant should be adopted. For the regenerative gas turbine, it is likewise concluded that maintaining exhaust temperature as high as possible by air flow rate modulation is required to increase part load efficiency.

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LDPC로 부호화된 OFDM 시스템에서 수렴 속도를 개선시킨 복호 방법을 적용한 균등 결합 전력 할당 재전송 기법 (Retransmission Scheme with Equal Combined Power Allocation Using Decoding Method with Improved Convergence Speed in LDPC Coded OFDM Systems)

  • 장민호
    • 한국통신학회논문지
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    • 제38A권9호
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    • pp.750-758
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    • 2013
  • 본 논문은 type I 혼합-자동 반복 요구 (hybrid automatic repeat request: H-ARQ) 시스템에서 저밀도 패리티검사 (low-density parity-check: LDPC)로 부호화된 직교 주파수 분할 다중화 (orthogonal frequency division multiplexing: OFDM) 서브프레임의 전송 순서를 균등 결합 전력이 할당되도록 조정한 재전송 방법을 기초로 성능 개선을 채널 용량을 사용하여 분석하고, 계층 복호 방법을 적용하여 H-ARQ 재전송 기법의 수렴 속도 개선을 확인한다. 구체적으로 임의의 서브프레임 재전송 패턴에 대하여 채널 용량이 클수록 비트오류율 (bit error rate: BER) 성능도 우수하다는 사실을 검증한다. 그러므로 각 서브프레임에 대하여 균등 결합 전력 할당을 보장하는 서브프레임 재전송 패턴은 채널 용량을 최대로 하며, 임의의 다른 서브프레임 전송 순서 조정을 통한 재전송 패턴보다 성능이 우수하다. 결국 균등 결합 전력 할당을 만족하도록 서브프레임 순서를 조정하는 재전송 방법은 기존 체이스 결합 (Chase combining)보다 복호 복잡도를 증가시키지 않으면서도 주목할 만한 성능 개선을 보인다.

유기랭킨사이클을 이용한 병렬 열병합 발전시스템의 열역학적 이론 성능 특성 (Theoretical Characteristics of Thermodynamic Performance of Combined Heat and Power Generation with Parallel Circuit using Organic Rankine Cycle)

  • 김경훈
    • 한국태양에너지학회 논문집
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    • 제31권6호
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    • pp.49-56
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    • 2011
  • In this study a novel cogeneration system driven by low-temperature sources at a temperature level below $190^{\circ}C$ is investigated by first and second laws of thermodynamics. The system consists of Organic Rankine Cycle(ORC) and an additional heat generation as a parallel circuit. Seven working fluids of R143a, R22, R134a, R152a, $iC_4H_{10}$(isobutane), $C_4H_{10}$(butane), and R123a are considered in this work. Maximum mass flow rate of a working fluid relative to that of the source fluid and optimum turbine inlet pressure are considered to extract maximum power from the source. Results show that due to a combined heat and power generation, both the efficiencies by first and second laws can be significantly increased in comparison to a power generation, however, the second law efficiency is more resonable in the investigation of cogeneration systems. Results also show that the working fluid for the maximum system efficiency depends on the source temperature.