• 제목/요약/키워드: 랭킨스팀 사이클

검색결과 7건 처리시간 0.019초

엔진 폐열 회수를 위한 이중 회로 랭킨 사이클 성능 해석 (Performance Analysis of Two-Loop Rankine Cycle for Engine Waste Heat Recovery)

  • 김영민;신동길;김창기;우세종;최병철
    • 에너지공학
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    • 제21권4호
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    • pp.402-410
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    • 2012
  • 본 연구에서는 가솔린 엔진 자동차에서 엔진 폐열 회수를 위한 이중 회로 랭킨 사이클 성능 해석이 수행되었다. 고온(HT)의 엔진 배기가스 열회수를 위해서는 물을 사용하는 스팀사이클이 적용되었고, 엔진 냉각수열과 고온 사이클로부터의 응축열을 활용하는 저온(LT) 사이클은 R-134a를 사용하는 유기랭킨사이클이 적용되었다. 고온 및 저온 열원을 동시에 활용하는 이중 회로 시스템의 특성을 파악하기 위해 에너지 및 엑서지 분석이 수행되었다. 고온 및 저온 사이클에 사용되는 용적형 팽창기의 체적이 차량적용을 위한 시스템 최적화에 매우 중요하며 시스템 최적화를 위해서는 반드시 고려되어야 한다. 목표로 하는 엔진 운전 조건에서 고온(HT) 팽창기와 저온(LT) 팽창기의 체적을 고려하면서 고온(HT) 사이클의 팽창비와 저온(LT) 사이클의 응축온도가 시스템의 성능에 미치는 영향을 파악하였다. 본 연구에서는 이러한 이중 회로 랭킨 사이클 시스템에 의해 목표 엔진 운전조건에서 엔진 폐열로부터 약 21%의 추가 동력을 얻을 수 있는 것으로 예측되었다.

엔진 냉각수 폐열 회수를 위한 랭킨 스팀 사이클용 보일러의 성능 설계 (Performance Design of Boiler for Waste Heat Recovery of Engine Coolant by Rankine Steam Cycle)

  • 허형석;배석정;황재순;이헌균;이동혁;박정상;이홍열
    • 한국자동차공학회논문집
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    • 제19권5호
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    • pp.58-66
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    • 2011
  • A 2-loop waste heat recovery system with Rankine steam cycles for the improvement of fuel efficiency of gasoline vehicles has been investigated. A high temperature loop(HT loop) is a system to recover the waste heat from the exhaust gas, a low temperature loop(LT loop) is for heat recovery from the engine coolant cold relatively. This paper has dealt with a layout of a LT loop system, the review of the working fluids, and the design of the cycle. The design point and the target heat recovery of the LT boiler, a core part of a LT loop, has been presented and analytically investigated. Considering the characteristics of the cycle, the basic concept of the LT boiler has been determined as a shell-and tube type counterflow heat exchanger, the performance characteristics for various design parameters were investigated.

엔진 폐열 회수를 위한 랭킨 스팀 사이클 설계 및 HT Boiler의 성능 평가 (Design of Rankine Steam Cycle and Performance Evaluation of HT Boiler for Engine Waste Heat Recovery)

  • 허형석;배석정;이동혁;이헌균;김태진
    • 한국자동차공학회논문집
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    • 제20권2호
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    • pp.21-29
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    • 2012
  • A dual loop waste heat recovery system with Rankine steam cycles for the improvement of fuel efficiency of gasoline vehicles has been investigated. A high temperature loop (HT loop) only recovers the heat of the exhaust gas. A low temperature loop (LT loop) recovers the residual heat from the HT loop, the coolant heat and the remaining exhaust gas heat. The two separate loops are coupled with a heat exchanger. This paper has dealt with a layout of the dual loop system, the review of the working fluids, and the design of the cycle. The design point and the target heat recovery of the HT boiler, a core part of a HT loop, have been presented. The prototype of the HT boiler was evaluated by experiment. For the performance evaluation of the HT boiler, inlet temperature of the HT boiler working fluid was set equal to the temperature degree of sub-cool of $5^{\circ}C$ at the condensing pressure. The exit condition was the degree of super-heat set at $5^{\circ}C$. The characteristics of the HT boiler such as heat recovery and pressure drops of fluids were evaluated with varying flow rates and inlet temperatures of exhaust gas under various evaporating pressure conditions.

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.

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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기관 폐열 회수를 위한 열교환기의 Baffle 길이 변경에 따른 성능 예측에 관한 수치 해석적 연구 (An Investigation on Flow and Structural Characteristics of Heat Exchanger in Rankine Steam Cycle for Co-generation System)

  • 류규현;김구성;이영훈;강석호;박기범
    • 신재생에너지
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    • 제9권4호
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    • pp.32-39
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    • 2013
  • A 2-loop waste heat recovery system with Rankine steam cycles for the improvement of fuel efficiency of gasoline vehicles has been investigated. A high temperature loop is used to recover waste heat from exhaust gas and a low temperature loop is used to recover waste heat from cold engine coolant. This paper has dealt with a layout of low temperature loop system, the review of the velocity contours through numerical analysis. According to the result of analysis, the designed heat exchanger. And comparing with flow analysis results, LT Boiler is safe to operation.

폐열 회수 시스템용 공랭식 응축기의 압력 손실 저감 설계 (A Design Process for Reduction of Pressure Drop of Air-cooled Condenser for Waste Heat Recovery System)

  • 배석정;허형석;박정상;이홍열;김찬중
    • 한국자동차공학회논문집
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    • 제21권6호
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    • pp.81-91
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    • 2013
  • A novel design process of a parallel multi-flow type air-cooled condenser of a dual-loop waste heat recovery system with Rankine steam cycles for improving the fuel efficiency of gasoline automobiles has been investigated focusing on reduction of the pressure drop inside the micro-tubes. The low temperature condenser plays a role to dissipate heat from the system by condensing the low temperature loop working fluid sufficiently. However, the refrigerant has low evaporation temperature enough to recover the waste from engine coolant of about $100^{\circ}C$ but has small saturation enthalpy so that excessive mass flow rate of the LT working fluid, e.g., over 150 g/s, causes enormously large pressure drop of the working fluid to maintain the heat dissipation performance of more than 20 kW. This paper has dealt with the scheme to design the low temperature condenser that has reduced pressure drop while ensuring the required thermal performance. The number of pass, the arrangement of the tubes of each pass, and the positions of the inlet and outlet ports on the header are most critical parameters affecting the flow uniformity through all the tubes of the condenser. For the purpose of the performance predictions and the parametric study for the LT condenser, we have developed a 1-dimensional user-friendly performance prediction program that calculates feasibly the phase change of the working fluid in the tubes. An example is presented through the proposed design process and compared with an experiment.