• 제목/요약/키워드: Compressor Work

검색결과 173건 처리시간 0.021초

마모발생의 통합 분석을 통한 대형 기계 윤활 시스템의 상태진단기술 적용 (Condition Monitoring Technology for Plant Machinery system Based on Integrated Wear Monitoring)

  • 윤의성;장래혁;공호성;한흥구;권오관;송재수;김재덕;엄형섭
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 1997년도 제26회 추계학술대회
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    • pp.191-199
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    • 1997
  • Condition monitoring technology was applied for an air compressor lubricating system to achieve a proactive maintenance, which could prevent a catastrophic failure and detect root causes of the conditional failure of the system. For this work, various types of wear monitoring technology were used and compared with the results of vibration and temperature measurements. Results generally showed that every technology has a limitation to failure detection, and integrated-based condition monitoring should be performed for the best results. In this work, an idea for the implementing integrated wear monitoring was suggested and demonstrated.

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열상장비용 스터링 극저온 냉동기 특성평가 (IV) : 진동, 소음, 누설시험 (The performance evaluation of Stirling cryocooler for thermal imaging system (IV) : Vibration, Noise, Leak test)

  • 박성제;홍용주;김효봉;김양훈;최상규;나종문
    • 한국초전도저온공학회:학술대회논문집
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    • 한국초전도저온공학회 2003년도 추계학술대회 논문집
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    • pp.167-170
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    • 2003
  • This paper presents the results of a series of performance tests for the Stilting cryocooler. A free piston and free displacer(FPFD) Stilting cryocooler for cooling infrared and cryo-sensors is currently under development at KIMM. Our coolers are specifically designed to work in the thermal imaging device and to meet requirements such as cooling capacity, COP and high reliability. In this work, Stilting cryocooler is designed, manufactured and fabricated, and performance characteristics for the vibration, acoustic noise, EMI and leak rate are evaluated. Vibration outputs are measured to 20KHz for compressor and expander, respectively. And, the objective of noise test is a noise level, less than 30㏈ at 5 m. EMI tests are carried out according to the standard MIL-STD-461C tests RE01 and RE02. Leak test for the Stilting cryocooler is performed by bombing method.

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F급 가스터빈의 압력비 증가 시 운전데이터를 이용한 열효율 변동 예측 (Prediction of the Thermal Efficiency at Increased Pressure Ratio in an F-Class Gas Turbine with Operating Data)

  • 박준철;허기무;윤성훈;문윤재;유호선;이재헌
    • 플랜트 저널
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    • 제10권3호
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    • pp.39-44
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    • 2014
  • 국내 S복합발전본부의 150 MW급 가스터빈 축류압축기(18단)에서 저압단(1~9단)을 교체하여 압축기의 압력비를 기존 13.5에서 증가시킬 때 가스터빈 열효율을 예측하였다. 압력비 13.5일 때의 운전자료로 구한 압축기 단열효율과 터빈 단열효율을 적용하여 압력비 14.2에서 터빈일이 최대가 되는 압력비인 18.2까지 압력비를 1씩 증가하면서 열효율을 예측하였다. 압력비 증가 시 이론 열효율은 각 압력비에 대하여 각각 36.95%에서 38.6%까지 예측되었다. 압축기 저압단 교체 후 압력비가 16.2으로 증가되었을 때 실시한 성능시험 결과 열효율은 35.11%였다. 압력비 16.2일 때의 이론 열효율 37.87%와 비교하여 7.86% 범위에서 일치하였다. 압축기 교체 전 압력비 13.5일 때의 운전자료로 구한 압축기 단열효율과 터빈 단열효율을 이용하여 압력비 증가 시의 열효율을 성능시험 열효율의 7.86%내에서 예측할 수 있다.

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연료전지 자동차 열방출 시스템의 설계 (Design of a Heat Release System for Fuel Cell Vehicles)

  • 김성철;박민수;정승훈;윤석호;김민수
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 제17회 워크샵 및 추계학술대회
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    • pp.545-548
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    • 2005
  • There is a close relation between the heat generation in the fuel cell stack and the fuel cell performance. In PEM fuel Gell vehicles, the stack coolant temperature is about $65^{\circ}C$, which is far lower than that for general automobile engine. Therefore, it is hard to release heat generated in the stack by using a radiator of limited size because of the reduced temperature difference between the coolant and the ambient air. In this study, indirect stack cooling system using $CO_2$ heat pump was designed and its stack cooling performance in releasing heat to the ambient was investigated. This work focuses on a series of processes that grasp the relation among the fuel cell power, the radiator capacity and the stack temperature. The purpose of this work is to find out a way to properly release sufficient amount of heat through the finite sized radiator, so that the stack power general ion can not be deteriorated due to the stack temperature increase. The optimization between the compressor power consumption and the fuel cel1 output power can be carried out to maximize the performance of fuel cell system.

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열교환기 온도차에 따른 새로운 LNG 액화사이클의 성능 특성 (Performance Characteristics of New LNG Liquefaction Cycles with Temperature Differences in the Heat Exchangers)

  • 윤정인;손창효
    • 동력기계공학회지
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    • 제18권1호
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    • pp.51-56
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    • 2014
  • In this paper, the performance of the $CO_2-C_2H_6-N_2$ cascade liquefaction cycle with respect to temperature differences in the LNG heat exchangers is analyzed theoretically using HYSYS software and then compared the COP(coefficient of performance) of the cascade liquefaction cycles using $C_3H_8-C_2H_4-C_1H_4$ and $CO_2-N_2O-N_2$. In comparison of COP of three cycles, the cascade liquefaction cycles using $C_3H_8-C_2H_4-C_1H_4$ showed the highest COP. And the liquefaction cycle using $CO_2-C_2H_6-N_2$ and $CO_2-N_2O-N_2$ presented the second and third highest COP, respectively. In case of COP, the $C_3H_8-C_2H_4-C_1H_4$ cascade liquefaction cycle yields better COP. But, in terms of the environment and maintain, it is confirmed that the cascade liquefaction cycle using $CO_2-C_2H_6-N_2$ provides favorable characteristics.

연료전지 자동차 열방출 시스템의 설계 (Design of a Heat Release System for Fuel Cell Vehicles)

  • 김민수;김성철;박민수;정승훈;윤석호
    • 신재생에너지
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    • 제1권4호
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    • pp.49-54
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    • 2005
  • There is close relation between the heat generation in the fuel cell stack and the fuel performance. In PEM fuel cell vehicles, the stack coolant temperature is about $65^{\circ}C$, which is far lower than that for general automobile engine. Therefore, it is hard to release heat generated in the stack by using a radiator of limited size because of the reduced temperature difference between the coolant and the ambient air. In this study, indirect stack cooling system using $CO_2$ heat pump was designed and its stack cooling performance in releasing heat to the ambient was investigated. This work focuses on a series of processes that grasp the relation among the fuel cell power, the radiator capacity and the stack temperature. The purpose of this work is to find out a way to properly release sufficient amount of heat through the finite sized radiator, so that the slack power generation can not be deteriorated due to the stack temperature increase. The optimization between the compressor power consumption and the fuel cell output power can be carried out to maximize the performance of fuel cell system.

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브로칭 가공된 회주철 소재 표면의 마찰 및 마모 특성 (Friction and Wear Characteristics of Gray Cast Iron Surface Processed by Broaching Method)

  • 권문성;강경희;김대은
    • Tribology and Lubricants
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    • 제34권6호
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    • pp.262-269
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    • 2018
  • In this work the friction and wear characteristics of the gray cast iron surface processed by broaching method, which is widely used in the machinery industry, were investigated. The broaching process is mainly used for mass production because it has high dimensional accuracy and processing speed, but the defects on surface can be easily generated. In order to improve the tribological characteristics, the approach was to reduce the roughness and hardness of the surface by adding a machining process to the broaching specimen. The secondary machining process using abrasive grains produces low roughness and hardness than broaching because it has high tool accuracy and removes the work hardened surface. The friction coefficient and the wear rate were assessed using a reciprocating-type tribotester to analyze the effects of surface finishing on the tribological properties. The friction tests were conducted under dry and lubricated conditions. The test results showed that the reduction of surface roughness and hardness through secondary machining process in lubricated condition improved the friction and wear characteristics. The reason why the same results did not appear in a dry condition was that wear occurred more rapidly than in lubricated condition. Thus, the positive effect of roughness and hardness of the surface obtained through the secondary machining process was not observed.

냉동기용 자동 냉매 충전장치 개발 (Development of an Automatic Refrigerant Charging Device for Refrigeration Applications)

  • 김성수;윤희정;홍희기;강용태
    • 에너지공학
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    • 제12권4호
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    • pp.253-258
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    • 2003
  • 냉동기 냉매 충전에는 수동용 매니폴드게이지가 이용되고 있으며 냉매 충전시에는 3가지 호스를 여러번 교체하게 되는데 이에 따라 냉매손실이 수반되고 냉매가 대기중에 방출된다. 본 연구에서는 자동 냉매 충전장치를 개발하고 장치내의 불응축 가스 및 압축기 오일에 미치는 영향을 정량적으로 평가하는 것을 목적으로 한다. 자동 냉매 충전장치는 단 한번의 호스장착과 선택스위치의 조작만으로 전자밸브 및 진공펌프가 자동개폐 및 작동되어 내압시험, 진공시험, 냉매 충전작업이 가능하게 되며 진공펌프를 분리해서 보관하지 않아도 되므로 조작이 매우 간편하다. 진공펌프 흡입 및 토출측 관로에 종래와 같이 호스내의 불응축 가스 제거의 필요성을 배제하여 냉매 손실과 대기오염을 방지하고 냉매 충전시에 종래와 같이 충전호스를 여러번 교체 할 필요가 없으므로 확실한 충전이 가능케 된다. 실험결과 수동 매니폴드게이지를 사용할 때에 비해 실리카겔(SiO$_2$)및 압축기 오일중의 수분량은 1/4 이하로 줄어 오일의 수명과 진공펌프의 수명을 연장할 수 있음을 밝혀내었다.

공회전 제한장치 차량에서 냉방 성능 유지를 위한 축냉 시스템 적용에 대한 연구 (Feasibility Study of Cold Storage System to Maintaining Cooling Performance for ISG Vehicle)

  • 이대웅
    • 설비공학논문집
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    • 제28권1호
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    • pp.7-14
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    • 2016
  • This study explores the feasibility of a cold storage system to provide thermal comfort for idle stop and go (ISG) vehicles. ISG function is the most valuable and environmental friendly technology in the current automobile industry. However, when an ISG vehicle stops, meaning when the engine standstill, the air-conditioning system does not work, because the compressor also stops. Therefore, passenger thermal comfort is not maintained, as cold air is not provided in the cabin. Consequently, many automakers have studied electric air-conditioning systems based on electrically-driven compressors or cold storage systems using phase-change materials. The experiments herein were conducted for the feasibility testing of different types of cold storage heat-exchangers, cold storage mediums, and thermo-expansion valves with current air-conditioners. The auxiliary cold storage system, filled with phase-change materials, was located behind the evaporator and almost stacked on top of it. In the experimental results, the air discharge temperature rate of increase was better than the conventional air-conditioning system when the compressor stopped and thermal comfort was maintained with $1.9{\sim}4.3^{\circ}C$ decreases within 60 seconds. The #1 cold storage heat-exchanger (CSH), #2 thermo-expansion valve (TXV) and #2 phase change material (PCM) were chosen because of the best temperature rise delay. It was concluded that a cold storage system is an effective solution for ISG vehicles to maintain thermal comfort during short engine stops.

50KW 터보제너레이터용 가스터빈 엔진의 설계점/ 탈설계/과도성능해석 (On/Off-Design/Transient Analysis of a 50KW Turbogenerator Gas Turbine Engine)

  • 김수용;박무룡;조수용
    • 연구논문집
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    • 통권27호
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    • pp.87-99
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    • 1997
  • Present paper describes on/off design performance of a 50KW turbogenerator gas turbine engine for hybrid vehicle application. For optimum design point selection, relevant parameter study is carried out. The turbogenerator gas turbine engine for a hybrid vehicle is expected to be designed for maximum fuel economy, ultra low emissions, and very low cost. Compressor, combustor, turbine, and permanent-magnet generator will be mounted on a single high speed (82,000 rpm) shaft that will be supported on air bearings. As the generator is built into the shaft, gearbox and other moving parts become unnecessary and thus will increase the system's reliability and reduce the manufacturing cost. The engine has a radial compressor and turbine with design point pressure ratio of 4.0. This pressure ratio was set based on calculation of specific fuel consumption and specific power variation with pressure ratio. For the given turbine inlet temperature, a rather conservative value of $1100^\circK$ was selected. Designed mass flow rate was 0.5 kg/sec. Parametric study of the cycle indicates that specific work and efficiency increase at a given pressure ratio and turbine inlet temperature. Off design analysis shows that the gas turbine system reaches self operating condition at N/$N_{DP}$ = 0.53. Bleeding air for turbine stator cooling is omitted considering low TIT and for a simple geometric structure. Various engine performance simulations including, ambient temperature influence, surging at part load condition. Transient analysis were performed to secure the optimum engine operating characteristics. Surge margin throughout the performance analysis were maintained to be over 80% approximately. Validation of present results are yet to be seen as the performance tests are scheduled by the end of 1998 for comparison.

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