• 제목/요약/키워드: expander cycle

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LNG-FPSO(Liquefied Natural Gas-Floating Production Storage and Offloading)용 질소 팽창 사이클의 효율 개선에 대한 연구 (Investigation on Efficiency Improvement of the Nitrogen Expander Cycle : Natural Gas Liquefaction Process for LNG-FPSO)

  • 백승환;정상권;김선영
    • 설비공학논문집
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    • 제22권7호
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    • pp.442-447
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    • 2010
  • FPSO (Floating Production Strorage and Offloading) method for LNG industry is efficient and facile compared to onshore NG (Natural Gas) treatment facility. Five simple natural gas liquefaction cycles for FPSO are presented and simulated in this paper. SMR (Single Mixed Refrigerant) cycle, SNE (Single Nitrogen Expander) cycle, DNE (Double Nitrogen Expander) cycle, PNE (Precooled Nitrogen Expander) cycle, and PDNE (Precooled Double Nitrogen Expander) cycle are compared. Simple analysis results in this paper show that precooling process and adding an expander in the liquefaction cycle is an effective way to increase liquefaction efficiency.

용적형 팽창기 입구 조건 변화에 따른 유기랭킨사이클 성능 분석 (Analysis of Performance of Organic Rankine Cycle for Inlet Condition of Displacement Type Expander)

  • 신동길
    • 에너지공학
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    • 제26권1호
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    • pp.23-27
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    • 2017
  • 유기랭킨사이클에서 팽창기는 전체 성능과 사이클 효율에 큰 영향을 미치는 중요 부품이다. 유기랭킨사이클에 적용되는 팽창기는 입구 압력과 온도가 팽창기 기계적 특성이나 작동유체 특성 등에 의해 제한받게 되는데, 유기랭킨사이클은 팽창기 입구압력과 온도에 따라 사이클 출력, 흡수 열량 및 효율 등이 변화하게 된다. 본 연구에서는 용적형 팽창기가 적용되는 작동유체 냉매 R134a인 유기랭킨사이클의 성능이 팽창기 입구조건에 따라 유기랭킨사이클의 성능이 어떻게 변화하는지 이론적으로 비교 분석을 수행하였다.

초소형 유기랭킨사이클용 스크롤팽창기 효율 특성 분석 (Analysis of Efficiencies of Scroll Expander for Micro Scale Organic Rankine cycle)

  • 신동길
    • 에너지공학
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    • 제21권4호
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    • pp.398-401
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    • 2012
  • 본 연구에서는 자동차용 엔진 폐열 회수 유기랭킨사이클에 적용하기 위해 개발 중인 스크롤 팽창기의 효율을 상용 스크롤 팽창기와 비교 분석을 수행하였다. 팽창기 효율 특성 시험을 위해 유기랭킨사이클을 운전하면서 팽창기 출력, 팽창기 입구 온도, 압력 및 작동유체(냉매 R134a)의 유량을 측정하였으며, 개발 중인 스크롤 팽창기의 전효율은 상용 스크롤 팽창기의 전효율에 비해 매우 낮은 수준을 나타내었다. 특히 팽창기 내부의 작동유체 누설에 의한 체적효율 저하가 전효율 저하에 큰 영향을 주는 것으로 파악되었기 때문에 향후 팽창기 효율 향상을 위해 팽창기 내부의 누설문제를 필히 해결해야할 것으로 분석되었다.

팽창기를 적용한 이산화탄소 냉방시스템의 성능특성에 관한 해석적 연구 (Simulation Study on the Performance Characteristics of a $CO_2$ Cooling System with an Expander)

  • 조홍현;백창현;류창기;김용찬
    • 설비공학논문집
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    • 제19권9호
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    • pp.630-639
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    • 2007
  • A $CO_2$ cycle shows large throttling loss during the expansion process. The application of an expander into the $CO_2$ cycle can reduce the throttling loss and then improve system performance. In this study, the performance of a transcritical $CO_2$ cycle with an expander was analytically investigated in order to improve the cooling performance of the system. The expander was applied to the single-stage and two-stage compression cycles. The performance was analyzed with the variations of compressor frequency, outdoor temperature, and expander efficiency. The single-stage and two-stage compression cycles with the expander showed COP improvement of 25% and 32%, respectively, over the single-stage cycle with an EEV.

자동차 배기가스 폐열 회수용 팽창기 개념설계 (Conceptual design of an expander for waste heat recovery of an automobile exhaust gas)

  • 김현재;김유찬;김현진
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2009년도 추계학술대회 논문집
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    • pp.237-242
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    • 2009
  • A steam Rankine cycle was considered to recover waste heat from the exhaust gas of an automobile. Conceptual design of a swash plate type expander was practiced to convert steam heat to shaft power. With the steam pressure and temperature of 35 bar and $300^{\circ}C$ at the expander inlet, respectively, the expander was estimated to produce the shaft power output of about 1.93 kW from the exhaust gas waste heat of 20 kW. The expander output increased linearly accordingly to the amount of exhaust gas waste heat in the range of from 10-40 kW, and the Rankine cycle efficiency was more or less constant at about 9.6% regardless of the waste heat amount.

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바이오매스를 에너지원으로 하는 유기냉매 사이클 스크롤 팽창기 발전 장치 설계 (Design of Scroll Expander for Electric Power Generation System using Organic Rankine Cycle with Biomass Energy Source)

  • 문제현;유제승;김현진;조남진
    • 동력기계공학회지
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    • 제16권4호
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    • pp.30-36
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    • 2012
  • A scroll expander has been designed to produce a shaft power from a R134a Rankine cycle for electricity generation. Heat was supplied to the Rankine cycle through a heat exchanger, which received heat from another cycle of water. In the water cycle, water was heated up in a boiler using biogenic solid fuel. The designed scroll expander was a horizontal type, and a trochoidal oil pump was employed for oil supply to bearings and Oldham-ring keys. For axial compliance, a back pressure chamber was created on the backside of the orbiting scroll base plate. Numerical study has been carried out to estimate the performance of the designed scroll expander. The expander was estimated to produce the shaft power of about 2.9 kW from a heat supply of 36 kW, when the temperature of R134a was $80^{\circ}C$ and $35^{\circ}C$ at the evaporator and condenser of the Rankine cycle, respectively. The expander efficiency was about 70.5%. When the amount of heat supply varied in the ranges of 7.5~55 kW, the expander efficiency changed in the range of 45.6~70.5%, showing a peak efficiency of 70.5% at the design shaft speed.

초소형 유기랭킨사이클 적용 프로토 타입 베인 팽창기에 관한 실험적 연구 (Experimental Study of Vane Expander Prototype Applied to Micro Organic Rankine Cycle)

  • 신동길;김영민
    • 에너지공학
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    • 제23권4호
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    • pp.230-235
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    • 2014
  • 본 연구에서는 프로토 타입 베인 팽창기가 적용된 초소형 유기 랭킨사이클을 구성하고, 팽창기 전단 온도가 약 $110^{\circ}C$이고, 냉매유량을 일정하게 유지한 조건에서 베인 팽창기 회전수를 변화시키면서, 팽창기 출력, 효율 및 팽창기 전후단 압력, 온도 등을 측정하였다. 베인 팽창기 성능 측정 결과 팽창기 회전수가 증가됨에 따라 팽창기 출력 및 효율이 증가하였다. 팽창기 전효율은 500 rpm 회전수 조건에서 6~7%이고, 1000 rpm 에서는 11~12%임을 보였다. 팽창기 전효율이 낮은 원인은 팽창기 체적효율이 낮기 때문인 것으로 분석되었으며, 향후 체적효율을 향상시키기 위해 팽창기 누설을 개선하기 위한 연구가 진행될 예정이다.

폐열 회수용 사판식 스팀 팽창기 설계 (Design of a Swash Plate Type of Steam Expander for Waste Heat Recovery)

  • 김현재;김현진
    • 설비공학논문집
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    • 제23권5호
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    • pp.313-320
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    • 2011
  • For a steam Rankine cycle to recover waste heat from the exhaust gas of an Internal combustion engine, a swash plate type of expander as a power conversion unit has been designed. Numerical simulation has been carried out to estimate the performance of the designed expander. With the steam pressure and temperature of 35 bar and $300^{\circ}C$ at the expander inlet, respectively, the expander was estimated to produce the shaft power output of about 2.67 kW from the exhaust gas waste heat of 25.2 kW. The expander output increased almost linearly with the amount of exhaust gas waste heat in the range of from 5~40 kW, and the expander and Rankine cycle efficiencies showed gradual decreases in the ranges of 72.2%~69.5% and 10.8%~10.4%, respectively.

엔진 냉각수 폐열 회수용 스크롤 팽창기 설계 (Design of a Scroll Expander for Waste Heat Recovery from Engine Coolant)

  • 유제승;김현재;김현진
    • 설비공학논문집
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    • 제23권12호
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    • pp.815-820
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    • 2011
  • A scroll expander was designed for an energy converter from waste heat of IC engine coolant to useful shaft work. The scroll expander is to run in a Rankine cycle which receives heat energy transferred from engine coolant circulation cycle. The working fluid was Ethanol. For axial compliance, a back pressure chamber was provided on the rear side of the orbiting scroll. Lubrication oil was delivered by a positive displacement type oil pump driven by the shaft rotation. Performance analysis on the scroll expander showed that the expander efficiency was 63.4%. It extracts shaft power of 0.6 kW out of engine coolant waste heat of 17.5 kW, resulting in the Rankine cycle efficiency of 3.43%.

$CO_2$ 초임계 사이클을 위한 일체형 스크롤 팽창기-압축기 성능해석 (Performance Analysis of Scroll Expander-Compressor Unit for $CO_2$ Transcritical Cycles)

  • 김현진;남보영;안종민
    • 설비공학논문집
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    • 제18권5호
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    • pp.434-442
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    • 2006
  • In a two-stage compression $CO_2$ transcritical cycle, application of a scroll expander-compressor unit has been considered in order to improve the cycle COP. For both expander and 1st stage compressor, scroll wrap profile which was originally designed for a R410A air-conditioning cycle mechanism was used with minor modifications: wrap height and involute end angle were adjusted for required displacement volume and built-in volume ratio. For pressure condition of 10 Mpa/3.5 MPa and expander inlet temperature of $35^{\circ}C$, 25% improvement in COP was obtained by using expander-compressor unit. As evaporator pressure increased, COP improvement was lowered mainly due to decreasing compressor peformance.