• 제목/요약/키워드: Thermal Power Generation System

검색결과 341건 처리시간 0.021초

NO96타입 LNG 방열시스템 Divinycell의 극저온 압축 강도 평가 (Evaluation of Cryogenic Compressive Strength of Divinycell of NO 96-type LNG Insulation System)

  • 최영락;김정현;김종민;박성균;박강현;이제명
    • 한국해양공학회지
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    • 제30권5호
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    • pp.349-355
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    • 2016
  • Divinycell, which functions as both insulation and a supporting structure, is generally applied in the NO96-type liquefied natural gas (LNG) insulation system. Polymer-material-based Divinycell, which has a high strength and low weight, has been widely used in the offshore, transportation, wind power generation, and civil engineering fields. In particular, this type of material receives attention as an insulation material because its thermal conductivity can be lowered depending on the ambient temperature. However, it is difficult to obtain research results for Divinycell, even though the component materials of the NO96-type LNG cargo containment system, such as 36% nickel steel (invar steel), plywood, perlite, and glass wool, have been extensively studied and reported. In the present study, temperature and strain-rate dependent compressive tests on Divinycell were performed. Both the quantitative experimental data and elastic recovery are discussed. Finally, the mechanical characteristics of Divinycell were compared to the results of polyurethane foam insulation material.

석탄화력 발전소 탈질설비의 암모니아 분사시스템 설계를 위한 CFD 기법 적용에 관한 연구 (Application of CFD to Design Procedure of Ammonia Injection System in DeNOx Facilities in a Coal-Fired Power Plant)

  • 김민규;김병석;정희택
    • 청정기술
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    • 제27권1호
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    • pp.61-68
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    • 2021
  • 선택적 촉매 혼합법은 대용량의 화력 발전시스템에서 질소산화물을 제거하는 방법으로 많이 사용되고 있다. 분사된 암모니아와 유입된 배기가스의 균일한 혼합은 촉매 층에서의 탈질 환원 과정에서 매우 중요하다. 본 연구에서는 탈질설비의 암모니아 분사시스템 설계과정에 전산해석 기법을 적용하였다. 적용 모델은 현재 가동되고 있는 800 MW급 석탄 화력 발전소의 탈질설비이다. 유동 해석 범위는 암모니아 분사 시스템 입구에서 촉매 층 후단부이다. 2차원 유동장을 선택하였고 비압축성으로 가정하였다. 상용 소프트웨어인 ANSYS-Fluent를 사용하여 정상 상태의 난류 유동을 해석하였다. 설계 변수로는 암모니아 분사 시스템에서의 노즐 배치 간극과 분사 유량으로 4가지 경우에 대해 결과를 분석하였다. 촉매 층 입구에서의 몰 비에 의한 평균제곱근오차 값을 최적화 변수로 선정하였고 실험계획법을 기반으로 한 최적화 알고리즘을 도입하였다. 노즐 피치와 유량을 동시에 조절한 경우가 유동 균일성 관점에서 가장 우수하였다.

SP-Creep 시험기법에 의한 9Cr강의 크리프 손상과 경도 특성 (Creep Damage and Hardness Properties for 9Cr Steel by SP-Creep Test Technique)

  • 백승세;류대영;김정기;권일현;정세희;유효선
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집A
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    • pp.105-110
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    • 2001
  • It has recently been raised main issue how solve the problem of insufficient energy. One of the solution is to increase the thermal efficiency of power generation system. For the purpose of high efficiency, it is necessary to increase the steam temperature and pressure. So, the use of modified $9{\sim}12%Cr$ steel having superior creep rupture strength and oxidation resistance is required to endure such severe environment. The evaluation of creep properties of those heat resistance material is very important to secure the reliability of high temperature and pressure structural components. Since creep properties are determined by microstructural change such as carbide precipitation and coarsening, It is certain that there are some relationship between creep properties and hardness affected by microstructure. In this study, SP-Creep ruptured test for newly developed 9Cr steel being used as boiler valve material was performed, and creep properties of the material were evaluated. Also, hardness test were performed and hardness results were related to the creep properties such as LMP and creep strength to verify the availability of SP-Creep test as creep test method.

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스팬드럴용 투광형 결정계 BIPV창호의 후면단열 조건에 따른 연간 온도 및 발전성능 분석 연구 (Annual Base Performance Evaluation on Cell Temperature and Power Generation of c-Si Transparent Spandrel BIPV Module depending on the Backside Insulation Level)

  • 윤종호;오명환;강기환;이재범
    • 한국태양에너지학회 논문집
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    • 제32권4호
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    • pp.24-33
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    • 2012
  • Recently, finishing materials at spandrel area, a part of curtain-wall system, are gradually forced to improve thermal insulation performance in order to enhance the building energy efficiency. Also, Building Integrated Photovoltaics(BIPV) systems have been installed in the exterior side of the spandrel area, which is generally composed of windows. Those BIPVs aim to achieve high building energy efficiency and supply the electricity to building. However, if transparent BIPV module is combined with high insulated spandrel, it would reduce the PV efficiency for two major reasons. First, temperature in the air space, located between window layer and finishing layer of the spandrel area, can significantly increase by solar heat gain, because the space has a few air density relative to other spaces in building. Secondly, PV has a characteristics of decreased Voltage(Voc and Vmp) with the increased temperature on the PV cell. For these reasons, this research analyzed a direct interrelation between PV Cell temperature and electricity generation performance under different insulation conditions in the spandrel area. The different insulation conditions under consideration are 1) high insulated spandrel(HIS) 2) low insulated spandrel(LIS) 3) PV stand alone on the ground(SAG). As a result, in case of 1) HIS, PV temperature was increased and thus electricity generation efficiency was decreased more than other cases. To be specific, each cases' maximum temperature indicated that 1) HIS is $83.8^{\circ}C$, 2) LIS is $74.2^{\circ}C$, and 3) SAG is $66.3^{\circ}C$. Also, each cases yield electricity generation like that 1) HIS is 913.3kWh/kWp, 2) LIS is 942.8kWh/kWp, and 3) SAG is 981.3kWh/kWp. These result showed that it is needed for us to seek to the way how the PV Cell temperature would be decreased.

반응소결 탄화규소 다공체의 기계적 특성 (Mechanical Properties of Porous Reaction Bonded Silicon Carbide)

  • 황성식;박상환;한재호;한경섭;김찬목
    • 한국세라믹학회지
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    • 제39권10호
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    • pp.948-954
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    • 2002
  • 차세대 발전 시스템에서 사용되는 고온 가스 필터용 지지층 소재를 제조하기 위하여 용융 Si 침윤 방법으로 기공율이 32∼36%, 주기공 크기가 37∼90 ${\mu}m$ 범위를 갖는 고강도 다공질 반응소결 탄화규소(RBSC)를 개발하였다. 반응소결 탄화규소 다공체의, 최대 파괴강도는 120MPa이었으며, 용융 Si 침윤 방법으로 제조된 반응소결 탄화규소 다공체에서는 SiC 입자 사이에 SiC/Si로 이루어진 기지상이 형성되어 있기 때문에 파괴 강도 및 열충격 특성이 점토 결합 탄화규소 다공체 보다 우수하였다. 반응소결 탄화규소 다공체의 기공율 및 기공 크기는 잔류 Si의 양 및 성형체에 사용한 SiC 입자 크기에 따라 다르게 나타났다.

에너지 생산형 하수처리장을 위한 가용 기술과 통합관리 방안 (Available Technology and Integrated Management Plan for Energy-positive in the Sewage Treatment Plant)

  • 송민수;김형호;배효관
    • 한국물환경학회지
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    • 제36권1호
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    • pp.55-68
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    • 2020
  • Because of the intensified environmental problems such as climate change and resource depletion, sewage treatment technology focused on energy management has recently attracted attention. The conversion of primary sludge from the primary sedimentation tank and excessive sludge from the secondary sedimentation tank into biogas is the key to energy-positive sewage treatment. In particular, the primary sedimentation tanks recover enriched biodegradable organic matter and anaerobic digestion process produces methane from the organic wastes for energy production. Such technologies for minimizing oxygen demand are leading the innovation regarding sewage treatment plants. However, sewage treatment facilities in Korea lack core technology and operational know-how. Actually, the energy potential of sewage is higher than sewage treatment energy consumption in the sewage treatment, but current processes are not adequately efficient in energy recovery. To improve this, it is possible to apply chemically enhanced primary treatment (CEPT), high-rate activated sludge (HRAS), and anaerobic membrane bioreactor (AnMBR) to the primary sedimentation tank. To maximize the methane production of sewage treatment plants, organic wastes such as food waste and livestock manure can be digested. Additionally, mechanical pretreatment, thermal hydrolysis, and chemical pretreatment would enhance the methane conversion of organic waste. Power generation systems based on internal combustion engines are susceptible to heat source losses, requiring breakthrough energy conversion systems such as fuel cells. To realize the energy positive sewage treatment plant, primary organic matter recovery from sewage, biogas pretreatment, and co-digestion should be optimized in the energy management system based on the knowledge-based operation.

합성가스/디젤 혼소압축착화 엔진의 합성가스 혼합비와 압축비에 따른 연소 및 배출가스 특성 (Syngas/Diesel Dual Fuel Combustion in a Compression Ignition Engine with Different Composition Ratios of Syngas and Compression Ratios)

  • 이준순;정탄;이용규;김창업;오승묵
    • 한국분무공학회지
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    • 제24권1호
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    • pp.35-42
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    • 2019
  • Syngas is widely produced by incomplete combustion of coal, water vapor, and air (oxygen) in a high-temperature/high-pressure gasifier through a coal-gasification process for power generation. In this study, a simulation syngas which was mainly composed of $H_2$, CO, $CO_2$, and $N_2$ was fueled with diesel. A modified single cylinder compression ignition (CI) engine is equipped with intake port syngas supply system and mechanical diesel direct injection system for dual fuel combustion. Combustion and emission characteristics of the engine were investigated by applying various syngas composition ratios and compression ratios. Diesel fuel injection timing was optimized to increase indicated thermal efficiency (ITE) at the engine speed 1,800 rpm and part load net indicated mean effective pressure ($IMEP_{net}$) 2 to 5 bar. ITE of the engine increased with the $H_2$ concentration, compression ratio and engine load. With 45% of $H_2$ concentration, compression ratio 17.1 and $IMEP_{net}$ 5 bar, ITE of 41.5% was achieved, which is equivalent to that of only diesel fuel operation.

신재생 에너지 최적 활용을 위한 축열조 온도 예측 모델 연구 (A Study on the Thermal Prediction Model cf the Heat Storage Tank for the Optimal Use of Renewable Energy)

  • 오한별;장경민;오지영;이명배;박장우;조용윤;신창선
    • 스마트미디어저널
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    • 제12권10호
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    • pp.63-70
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    • 2023
  • 최근 스마트팜 에너지 비용 중 35% 낸난방비 에너지 소비가 증가되어 에너지 소비 효율화가 요구되며, 전기료 현실화에 대한 우려로 신재생 에너지 중요성이 증가하고 있다. 신재생 에너지는 수력, 풍력, 태양광 등에 속하며, 이중 태양광 에너지는 전기에너지로 변환하는 발전기술로, 이 기술은 에너지원이 환경에 미치는 영향이 적고, 유지 보수가 간편하다는 특징을 갖고 있다. 본 연구에서는 온실 축열조, 히트펌프 데이터 기반으로 축열조 영향을 많이 미치는 요소를 선정하고 축열조 공급 온도예측 모델을 개발하고자 한다. 시계열 데이터 분석 및 예측에 효과적인 LSTM(Long Short-Term Memory)과 다른 앙상블 학습 기법보다 뛰어난 XGBoost 모델을 이용하여 예측한다. 히트펌프 축열조 온도를 예측함으로써 에너지 소비를 최적화하여 시스템 운영을 최적화할 수 있다. 또한, 태양광 활용에 따른 냉난방비 절감 및 농가의 에너지 자립도 개선 등 스마트팜 에너지 통합 운영 시스템에 연계하고자 한다. 플랫폼을 통해 폐열 에너지의 공급을 관리하고 최대 난방부하 및 계절, 시간별 작물생장에 필요한 에너지값을 도출하여 이를 기반으로 최적 에너지 운용방안을 도출하고자 한다.

선박용 디젤엔진의 NOx를 저감하기 위한 습식 배기가스 처리기술 적용에 관한 실험적 연구 (Experimental study of NOx reduction in marine diesel engines by using wet-type exhaust gas cleaning system)

  • 류영현;김태우;김정식;남정길
    • Journal of Advanced Marine Engineering and Technology
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    • 제41권3호
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    • pp.216-221
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    • 2017
  • 디젤엔진은 내연기관 중에 제동 열효율이 가장 높은 엔진이기 때문에 큰 동력을 필요로 하는 대형트럭과 같은 중 대형 운송 차량 및 선박 등의 수송분야 및 발전시스템 등의 다양한 분야에서 사용되어지고 있다. 하지만, 디젤엔진은 연소과정에서 질소산화물(이하 NOx) 발생량이 많은 단점을 가지고 있다. 따라서 본 연구에서는 선박용 디젤엔진의 NOx를 저감하기 위해서 습식 배기가스 처리 기술인 무격막식 해수 전기분해 방식을 이용하여 NOx 저감을 시도하였다. 실제 해수를 사용하여 디젤엔진에서 배출되는 유해가스에 전기 분해된 해수인 전해수를 분사하여 보았다. 전해수의 pH 농도 및 유효염소농도, 온도에 따른 NO 산화율 및 NOx 감소량을 조사하였다. 본 실험을 통해서 전해수의 pH가 약산성 영역일 경우가 중성일 경우보다 산화탑에서의 NO 산화율이 상승하였고, 유효염소농도가 높을수록 NO 산화율이 증가하는 것을 확인할 수 있었다. 또한, 전해수 온도는 NO 산화율에 영향이 없음을 추가적으로 확인할 수 있었으며 디젤엔진에서 생성된 배기배출물에 전해수를 분사함으로써 NOx가 저감됨을 확인할 수 있었다.

External Gelation 방법을 이용한 구형 UO3 Gel 입자 제조 (Spherical UO3 Gel Preparation Using the External Gelation Method)

  • 정경채;김연구;오승철;조문성;이영우;장종화
    • 한국세라믹학회지
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    • 제42권11호
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    • pp.729-736
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    • 2005
  • HTGR (High Temperature Gas-cooled Reactor) is spotlighted to next generation nuclear power plant for producing the clean hydrogen gas and the electricity. In this study, the spherical $UO_3$ gel particles were prepared by the external gelation process, and the characteristics of these particles were analyzed the particle shape, composition of precipitate, and thermal decomposition characteristics with the Streoscope, FT-IR, and X-ray diffractometer. Raw material of the ADUN (Acid Deficient Uranyl Nitrate) solution, which has [$NO_3$]/[U] mole ratio = 1.75, was obtained from dissolution of the $U_{3}O_{8}$ powder with concentrated $HNO_3$, and its concentration is 3.5 M-U/l. The broth solution is prepared with the ADUN, urea, PVA, and THFA solution. The droplets of the broth solution was made through a nozzle system. From this study, we obtained the following results; 1) an externel chemical gelation process is a suitable method in the spherical $UO_3$ particle production, 2) the particle shape are changed by an urea mixing time, THFA volume, and the viscosity of the broth solution, 3) the amorphous $UO_3$ particles obtained from these experiments was converted to $U_{3}O_{8}$ and then $UO_2$ by heat treatment in hydrogen atmosphere at $600^{\circ}C$.