• 제목/요약/키워드: Thermal Cycle

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폐쇄형 해양온도차발전 사이클 효율 향상 방안 (A Study on the Improvement for Cycle Efficiency of Closed-type OTEC)

  • 이호생;김현주;정동호;문덕수
    • Journal of Advanced Marine Engineering and Technology
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    • 제35권1호
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    • pp.46-52
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    • 2011
  • 본 연구에서는 폐쇄형 해양온도차발전 효율 향상 방안으로 재열기, 재생기 및 다단 터빈을 적용하여 각 사이클 성능을 비교 분석하였다. 기화기 증발 열원으로 $26^{\circ}C$의 해양표층수를 이용하고 응축기 냉각 열원으로 $5^{\circ}C$의 해양심층수를 이용하는 것으로 가정하였고, 작동유체로는 암모니아를 적용하였다. 3가지 효율 향상 방안에 대한 사이클 효율, 응축기 및 증발기 용량 등 사이클 성능을 비교 분석하였다. 기본 폐쇄형 해양온도차발전 사이클에 재생기를 적용하기 위해서 사이클 시뮬레이션을 수행한 결과, 재생기 부착을 위한 열교환 라인은 터빈 출구 작동유체와 펌프 출구의 작동유체를 열교환하는 것이 사이클 효율 향상에 기여하는 것으로 나타났다. 또한, 기본 사이클에 유용도 0.9의 재열기를 적용한 결과, 터빈 2기를 적용시 사이클 효율이 3.14%로 증가하였고, 동일 총 출력에 대해서 응축기 및 증발기에 필요한 해양표층수 및 해양심층수량이 감소하였다. 사이클 성능 향상 방안으로 기본적인 폐쇄형 해양온도차발전 사이클에 재생기, 재열기 및 터빈 2기를 적용한 결과 기본 폐쇄형 해양온도차발전 사이클에 비해 효율은 약 6.5% 향상되었다.

1 MW급 유기랭킨 사이클 시스템 개발 (Development of 1MW Organic Rankine Cycle System)

  • 박흥수;조한창;이용국
    • 에너지공학
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    • 제10권4호
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    • pp.318-326
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    • 2001
  • 중저온 배열회수를 통해 열설비의 열효율을 향상시키기 위하여 1 MW급 유기랭킨사이클시스템을 설계, 개발하였다. 포항제철소에 있는 두 대의 100 MW급 기력발전소에서 발생하는 175$^{\circ}C$의 배가스를 산업체에서 발생하는 대표적인 중저온배열원으로 선정하고, 환경오염을 최소화할 수 있는 신냉매인 HCFC-123을 시스템의 작동유체로 선정하였다. 유기냉킨사이클시스템의 시험운전을 통하여 유기랭킨사이클시스템이 산업체의 중저온배열을 회수하는데 유용함을 확인하였다. 열수의 가열, 터빈기동 및 전기투입방법 등의 운전방법을 최적화하였다. 그러나 HCFC-123 공급펌프의 능력부족으로 작동유체의 공급이 부족하여 정격출력보다 낮은 670kW의 전력을 생산할 수 있었다. HCFC-123의 공급유량을 증가시키기 위하여 파이프의 압력손실저하 및 펌프의 성능 향상을 위한 펌프교체 등이 고려되어야 함을 알 수 있었다.

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장-행정 저속 4 사이클 디젤기관의 제작 및 최적 연소조건에 관한 연구 (A Study on Optimal Combustion Conditions with a Design and Manufacture of the Long-Stroke Slow Speed 4 Cycle Diesel Engine)

  • 장태익
    • Journal of Advanced Marine Engineering and Technology
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    • 제28권3호
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    • pp.551-558
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    • 2004
  • Recently, fuel prices have been continually raised in diesel engine. Such a change in the fuel price influences enormously the development trend of marine diesel engines for slow speed, In other words, the focus was shifted from large diameter and high speed to low fuel consumption. Accordingly, more efforts are being made for engine manufacturing and development to develop highly efficient engines. In this study. a single cylinder 4 stroke cycle DI slow speed diesel engine was designed and manufactured, a 4 stroke cycle was configured and basic performances were evaluated. The results are as follows. The optimal fuel injection timing had the lowest value when specific fuel consumption was in BTDC 8~$10^{\circ}$, a little more delayed compared to high speed diesel engines. Cycle variation of engines showed about 5% difference at full loads. This is a significantly small value compared to the cycle variation in which stable operation is possible, showing the high stability of engine operation is good. The torque and brake thermal efficiency of engine increased with an increase of engine 250-450 rpm. but fuel consumption ratio increased from the 450 rpm zone and thermal efficiency abruptly decreased. Mechanical efficiency was maximally 70% at a 400 rpm that was lower than normal engines according to the increase of mechanical frictional loss for cross head part. The purpose of this study was to get more practical engines by comparing the above results with those of slow speed 2 stroke cycle diesel engines.

EFFECT OF OVER-EXPANSION CYCLE IN A SPARK-IGNITION ENGINE USING LATE-CLOSING OF INTAKE VALVE AND ITS THERMODYNAMIC CONSIDERATION OF THE MECHANISM

  • Shiga, S.;Hirooka, Y.;Miyashita, Y.;Yagi, S.;Machacon, H.T.C.;Karasawa, T.;Nakamura, H.
    • International Journal of Automotive Technology
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    • 제2권1호
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    • pp.1-7
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    • 2001
  • This paper presents further investigation into the effect of over-expansion cycle in a spark-ignition engine. On the basis of the results obtained in previous studies, several combinations of late-closing (LC) of intake valve and expansion ratio were tested using a single-cylinder production engine. A large volume of intake capacity was inserted into the intake manifold to simulate multi-cylinder engines. With the large capacity volume, LC can decrease the pumping loss and then increase the mechanical efficiency. Increasing the expansion ratio from 11 to 23.9 with LC application can produce about 13% improvement of thermal efficiency which was suggested to be caused by the increased cycle efficiency. The decrease of compression ratio from 11 to 5.5 gives little effect on the thermal efficiency if the expansion ratio could be kept constant. Thus, the expansion ratio is revealed to be a determining factor for cycle efficiency, while compression ratio is no more important, which suggests the usefulness of controlling the intake charge with intake valve closure timing. These were successfully explained by simple thermodynamic calculation and thus the mechanism could be verified by the estimation.

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나노구조 제어를 위한 EB-PVD법에 의반 세라믹스 코팅 (Ceramic Coating by Electron Beam PVD for Nanos-Tructure Control)

  • 마쯔바라 히데아기
    • 세라미스트
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    • 제9권6호
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    • pp.24-29
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    • 2006
  • Electron beam physical vapor deposition (EB-PVD) process has currently been applied to thermal barrier coatings (TBCs) for aircraft engines. Due to unique columnar structure, EB-PVD TBCs have advantages in resistances to thermal shock and thermal cycle for their applications, compared to films prepared by plasma spray By the EB-PVD equipment, we successfully obtained yttria-stabilized zirconia (YSZ) layer which has columnar and feather like structure including a large amount of nano size pores and gaps. The EB-PVD technique has been developed for coating functional perovskite type oxides such as (La, Sr)MnO3. Electrode properties have been improved by interface and structural control.

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원전 안전 3 등급 고밀도 폴리에틸렌 매설 배관 맞대기 열 융착부의 인장 피로특성 평가 (Study on Tensile Fatigue Behavior of Thermal Butt Fusion in Safety Class III High-Density Polyethylene Buried Piping in Nuclear Power Plants)

  • 김종성;이영주;오영진
    • 대한기계학회논문집A
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    • 제39권1호
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    • pp.11-17
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    • 2015
  • 최근에 원자력 발전소 안전 3 등급 배관에 적용되고 있는 고밀도 폴리에틸렌 배관은 융착표면을가열한 후 축방향으로 가압하는 열 융착 공정을 이용하여 맞대기 융착되어진다. 이러한 열 융착공정은 맞대기 융착부에 비드 형상을 발생시킨다. 이러한 비드 형상의 응력집중에 기인하여 피로수명이 줄어들 수 있다. 따라서 피로거동에 미치는 맞대기 열 융착부 비드의 효과를 고찰하는 것이 필요하다. 본 연구에서는 응력 제어 조건 하의 인장 피로 시험과 유한요소 탄성응력 해석을 수행하여 맞대기 열 융착부의 인장 피로 거동을 고찰하였다. 고찰 결과, 중주기 및 고주기 피로 영역에선 피로수명에 미치는 비드의 영향이 미미한 반면 저주기 피로 영역에선 비드의 존재가 피로 수명을 감소시킴을 확인하였다.

인공위성 탑재품의 환경 스트레스 스크리닝을 위한 열환경시험 테일러링 연구동향 분석 (Research Trends in Tailoring of Thermal Environment Test Requirement for Environmental Stress Screening of Satellite Components)

  • 성아정;박신무;오현웅;이균호;임재혁
    • 항공우주시스템공학회지
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    • 제18권4호
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    • pp.70-80
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    • 2024
  • 본 연구에서는 인공위성 구성품 개발에 사용되는 열환경시험의 목적, 태동 및 역사에 관해 살펴본다. 개발모델에 따라 달라지는 온도마진, 주기 수 등 열진공시험, 열주기시험과 관련된 변수를 정확하게 이해하고 NASA, ESA, MIL 규격 등에 기술된 규격을 분석한다. 또한 최근 큐브위성과 초소형위성에 대한 관심이 고조됨에 따라, 인공위성 개발사업의 예산과 기간에 맞는 테일러링에 대한 연구동향을 파악하고자 한다.

저속 디젤기관에서 흡기밸브 닫힘시기 지연시 고팽창 실현을 위한 열효율 특성 (A Chancteristic of Thermal Efficiency in Order to High Expansion Realization with a Retard of Intake Valve Closing Time in the Low Speed Diesel Engine)

  • 장태익
    • Journal of Advanced Marine Engineering and Technology
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    • 제30권1호
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    • pp.42-49
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    • 2006
  • In this research. the diesel cycle was thermodynamically interpreted to evaluate the possibility of high efficiency by converting diesel engines to the high expansion diesel cycle, and general cycle features were analyzed after comparing these two cycles. Based on these analyses. an experimental single cylinder a long stroke with high expansion-diesel engine. of which S/B ratio was more than 3, was manufactured. After evaluating the base engine through basic experiments, a diesel engine was converted into the high expansion diesel engine by establish VCR device and VVT system Accordingly, the high expansion diesel cycle can be implemented when the quantity of intake air is compensated by supercharge and the effective compression ratio is maintained at its initial level through the reduction of the clearance volume. In this case, heat efficiency increased by $5.0\%$ at the same expansion-compression ratio when the apparent compression ratio was 20 and the fuel cut off ratio was 2. As explained above, when the atkinson cycle was used for diesel cycle, heat efficiency was improved. In order to realize high expansion through retarding the intake value closing time, the engine needs to be equipped with variable valve timing equipment, variable compression ratio equipment and supercharged pressure equipment. Then a high expansion diesel cycle engine is realized.

Effect of simulated double cycle welding on HAZ microstructure for HSLA steels

  • El-Kashif, Emad F.;Morsy, Morsy A.
    • Advances in materials Research
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    • 제7권3호
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    • pp.195-201
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    • 2018
  • High Strength low alloy steels containing various levels of C, Nb and Mn were used and for each of which, a simulated double thermal cycle was applied with the same first peak temperature and different second peak temperatures to produce HAZ microstructure corresponding to multi-pass weld. Effect of double cycle second temperature on the microstructure was observed and compared with single cycle results obtained from previous works, it was found that the percentage of martensite austenite constituent (MA) increases by Nb addition for all steels with the same Mn content and the increase in Mn content at the same Nb content shows an increase in MA area fraction as well. MA area fraction obtained for the double cycle is larger than that obtained for the single cycle for all steels used which imply that MA will have great role in the brittle fracture initiation for double cycle and the inter-pass temperature should be controlled for medium and high-carbon Mn steel to avoid large area fraction of MA. The beneficial effects of Niobium obtained in single pass weld were not observed for the double cycle or multi pass welds.

소형 가솔린 기관의 실린더 블록에 대한 열적 거동 해석 (Analysis of the thermal behaviors of the cylinder block of a small gasoline engine)

  • 김병탁;박진무
    • 오토저널
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    • 제15권3호
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    • pp.55-67
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    • 1993
  • In this study, the thermal behavior characteristics of the cylinder block of a small 3-cylinder, 4-stroke gasoline engine were analyzed, using the 3-dimensional finite element method. Before numerical analyses were conducted, the performance test and the heat transfer experiment of the engine were carried out in order to prepare the input data for the computations. Engine cycle simulation was performed to obtain the heat transfer coefficient and the temperature of the gas and the mean heat transfer coefficient of coolant. Temperature fields as a result of steady-state heat transfer were obtained and compared with experimental results measured at specific points of the inner and the outer walls of the cylinder block. The thermal stress and deformation characteristics resulting from the nonuniform temperature distributions of the block were investigated. The effects of the thermal behaviors of the cylinder block on the engine operations and the unfavourable aspects of excessive thermal loading were examined on the basis of the calculated results.

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