• 제목/요약/키워드: Oil supply pressure

검색결과 97건 처리시간 0.022초

배관 압력을 이용한 방향제어밸브 위상각 대역폭 주파수 측정에 관한 연구 (A Study on the Phase Bandwidth Frequency of a Directional Control Valve Based on the Hydraulic Line Pressure)

  • 김성동;이정은;신대영
    • 드라이브 ㆍ 컨트롤
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    • 제15권4호
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    • pp.1-10
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    • 2018
  • Spool displacement of a direction control valve is the standard signal to measure the bandwidth frequency of the direction control valve. When the spool displacement signal is not available, it is suggested in this study to use the metering hydraulic line as an alternative way to measure - 90 degree phase bandwidth frequency of the hydraulic direction control valve. Dynamics of the hydraulic line is composed of inertia, capacitance, and friction effects. The effect of oil inertia is dominant in common hydraulic line dynamics and the line dynamics is close to a derivative action in a range of high frequency; such as a range of bandwidth frequency of common directional control valves. Phase difference between spool displacement and line load pressure is nearly constant as a valve close to 90 degree. If phase difference is compensated from the phase between valve input and pressure, compensated phase may be almost same as the phase of spool displacement that is a standard signal to measure phase bandwidth frequency of the directional control valve. A series of experiments were conducted to examine the possibility of using line pressure in to measure phase bandwidth frequency of a directional control valve. Phase bandwidth frequency could be measured with relatively high precision based on metering hydraulic line technique and it reveals consistent results even when valve input, oil temperature, and supply pressure change.

고정밀 연삭기 주축용 가변 면적 자기 보상형 리스트릭터 유정압 베어링에 관한 연구 (A study on the hydrostatic bearing using self-controlled restrictor of grinding wheel spindle)

  • 조성만
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 1999년도 추계학술대회 논문집 - 한국공작기계학회
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    • pp.425-431
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    • 1999
  • Nowadays development of electric and optical devices needs precision more and more. This study focuses on hydrostatic journal bearing of grinding wheel spindle. It presents theoretical analysis about cylinder type self-controlled restrictor to control flux of oil flowing into pockets around the hydrostatic journal bearing. As a result of this analysis, optimal properties to maximize bearing stiffness such as initial cross distance, supply pressure, diameter of two supply holes, pre-load of spring and clearance between spindle and housing can be obtained. Therefore, by using them it is possible to estimate bearing stiffness and the performance of grinding wheel spindle can be improved.

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CFD Approach on Gas Explosion for SIL in Gas Fuelled Ship

  • Kim, Ki-Pyoung;Kim, You-Taek;Kang, Ho-Keun
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권2호
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    • pp.195-200
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    • 2015
  • It is envisaged that the effect of increasingly stricter air emissions legislation implemented through IMO Annex VI and other local air quality controls, together with favorable financial conditions for the use of natural gas instead of liquid fuel oil as a bunker fuel, will see an increasing number of DF engine and single gas fuel engine applications to LNG carriers and other vessel types. As part of provision for the current international movements in the shipping industry to reduce GHG emission in air, new design concepts using natural gas as an alternative fuel source for propulsion of large commercial vessels, have been developed by shipyards and research institutes. In this study, an explosion analysis for a gas supply machinery room of LNG-fuelled container ship is presented. The gas fuel concept is employed for the high pressure ME-GI where a leakage in the natural gas double supply pipe to the engines is the subject of the present analysis. The consequences of a leak are simulated with computational fluid dynamics (CFD) tools to predict typical leak scenarios, gas cloud sizes and possible explosion pressures. In addition, capacity of the structure which is subject to explosion loads has been assessed.

승용차용 터보과급기의 저널 베어링 마찰 손실 측정 (Measurement of Journal Bearing Friction Loss of Turbocharger in a Passenger Vehicle)

  • 정진은;전세훈
    • 한국산학기술학회논문지
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    • 제19권7호
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    • pp.9-15
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    • 2018
  • 본 연구에서는 터보과급기의 성능을 저해하는 주요 인자 중 하나인 마찰손실에 대한 연구를 수행하였다. 실제 엔진에서 빈번하게 사용되는 저속 구간에서의 승용차용 터보과급기의 마찰손실 측정 장치를 개발하고, 저속 영역에서 작동하는 터보과급기의 마찰손실을 측정하였다. 플로팅 타입의 승용차용 터보과급기 저널 베어링를 실험 대상으로 선정하였으며, 마찰손실 측정 장치는 구동 모터, 오일 공급 시스템, 마그네틱 커플링으로 구성하였다. 실제 차량의 저속 운전 상황을 모사할 수 있도록 설계, 제작되었고, 터보과급기 회전속도, 오일 온도 및 압력을 실험 변수로 선정하였다. 또한, 마찰손실 측정 장치는 로드 셀을 사용하여 발생하는 마찰 토크를 직접 측정하여 마찰손실을 산출하였으며, 커플링을 통해 구동 모터의 동력을 터보과급기 축에 전달하고, 오일 온도 및 압력을 조절하였다. 오일 압력 3bar와 4bar로 오일을 공급하는 상태에서 오일 온도를 $50^{\circ}C$에서 $100^{\circ}C$까지 $10^{\circ}C$ 간격으로 변화시키면서 터보과급기를 회전수 30,000~90,000rpm으로 작동시켰다. 터보과급기 회전속도 증가할 때 마찰손실은 증가하였으며, 과급기 회전속도의 1.6 승에 비례함을 보였다. 오일 온도가 증가함에 따라 마찰손실은 감소하였으며, 오일 압력이 증가함에 따라 마찰손실은 증가하였다. 따라서 적절한 오일 온도와 압력을 유지하는 것이 필요하다.

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.

터빈 시뮬레이터용 틸팅패드 저널베어링의 열윤활 해석 및 패드 온도 측정 (Thermohydrodynamic Analysis and Pad Temperature Measurement of a Tilting Pad Journal Bearing for a Turbine Simulator)

  • 이동현;선경호
    • Tribology and Lubricants
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    • 제33권3호
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    • pp.112-118
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    • 2017
  • Tilting pad journal bearings(TPJBs) are widely used for high speed rotating machinery owing to their rotordynamic stability and thermal management feature. With increase in the rotating speed of such machinery, an increasingly important aspect of TPJB design is the prediction of their thermal behaviors. Researchers have conducted detailed investigations in the last two decades, which provided design tools for the TPJBs. Based on these previous studies, this paper presents a thermohydrodynamic(THD) analysis model for TPJBs. To calculate pressure distribution, we solve the generalized Reynolds equation and to predict the lubricant temperature, we solve the 3D energy equation. We employ the oil mixing theory to calculate pad inlet temperature; further, to consider heat conduction via the pad, we solve the heat conduction equation for the pads. We assume the shaft temperature as the averaged oil film temperature and apply natural convection boundary conditions to the pad side and back surfaces. To validate the analysis model, we compare the predicted pad temperatures with those from previous research. The results show good agreement with previous research. In addition, we conduct parametric studies on a TPJB which was used in a gas turbine simulator system. The predicted results show that film temperature largely depends on the rotating speed and oil supply condition.

해양플랜트·선박용 전기실린더형 액추에이터를 탑재한 L타입 데빗의 설계 및 구조강도에 관한 연구 (A Study on The Design and Structural Strength of L-Type Davit with Electric Cylinder Type Actuator for Offshore Plant and Ship)

  • 김영훈;곽다승;박기현;심재린;조용원
    • 한국산업융합학회 논문집
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    • 제26권1호
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    • pp.175-181
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    • 2023
  • In offshore plants, various equipments including cranes and davits are used for safety management. Hydraulic cylinder type actuators are mainly used for luffing operations such as cranes and davits. However, in the case of a cylinder using hydraulic pressure, a separate power pack is required to supply hydraulic pressure. When used for a long time, maintenance costs such as sticking of hydraulic valves, contamination of hydraulic oil and deterioration of hydraulic hoses occur. In addition, a lot of hydraulic oil is used in the handling of cranes and davits, which causes marine pollution due to management problems. As a result, as interest in marine pollution prevention has increased recently, interest in actuators that do not use hydraulic pressure is also increasing. Therefore, in this study, we intend to develop a davit with an electric cylinder type actuator that uses electricity rather than hydraulic pressure by the SOLAS regulation. In other words, the conceptual design of the davit driven through the linear motion of the ball screw using electricity is performed, and the structural safety of the drive is also reviewed so that it can be utilized in the industrial field.

펌프제어밸브를 사용한 취수펌프장에서의 수격현상 (Waterhammer for the Intake Pumping Station with the Pump Control Valve)

  • 김경엽;오상현
    • 한국유체기계학회 논문집
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    • 제4권4호
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    • pp.16-21
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    • 2001
  • The field tests on the waterhammer were carried out for PalDang intake pumping station of the metropolitan water supply 5th stage project. The pumping station was equipped with the pump control valve as the main surge suppression device and the surge relief valve as auxiliary. However, the pump control valve had not been early controlled in the planned closing mode, and the slamming occurred to the valve which abruptly closed during the large reverse flow. Because the pressure wave caused by the pump failure was superposed on the slam surge, the upsurge increased so extremely that the shaft of the valve was damaged. It was desirable that the surge relief valve was installed in the pumping station or near the pump exit for the delay of response. After reforming the oil dashpot of the pump control valve, the sliming disappeared and the measured pressure was in fairly good agreement with the results of simulation. In case of three pumps for ${\phi}2,600$ pipeline being simultaneously tripped, the pressure head in the pumping station increased to 95.6 m, and the upsurge caused by the emergency stop of four pumps for ${\phi}2,800$ pipeline was 89.6m. We concluded that the pumping station acquired the safety and reliability for the pressure surge.

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유압 피스톤 펌프의 슬리퍼 정압베어링에 관한 윤활특성 연구 (A Study on Lubrication Characteristic of Slipper Hydrostatic Bearing in Hydraulic Piston Pump)

  • 정재연;백일현;조인성;송규근;오석형;정석훈
    • 유공압시스템학회논문집
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    • 제4권3호
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    • pp.1-6
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    • 2007
  • The leakage generated from the clearance between the cylinder bore and the piston is one of the most serious problems in the hydraulic piston pump, and it even results in terrible decrease of the volume efficiency at a great velocity and high pressure. In this paper, the lubrication characteristic of the hydrostatic slipper bearing equipped in the hydraulic piston pump has been worked out by experimentation with three model bearings of different shape. Preparatory to this, not only the three models of piston-slipper were designed, but the corresponding experimental apparatus were also manufactured. As a result, it was verified that, according to the supply pressure, the hydrostatic bearing part of the slipper is severely affected by the pocket pressure, land pressure, oil film thickness, and leakage flow.

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바이오디젤의 열적특성에 관한 연구 (A Study on Thermal Characteristics of Biodiesel)

  • 배병목;임우섭;사공성호;목연수;최재욱
    • 한국안전학회지
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    • 제25권6호
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    • pp.92-97
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    • 2010
  • 세계적으로 대기환경문제와 원유가격의 상승 그리고 비산유국의 안정적인 에너지공급의 대체에너지로서 부각된 바이오디젤은 현재까지 많은 연구가 진행되어 왔으나, 온도변화에 대한 열적거동에 관한 연구는 국내에서 수행되지 못했다. 따라서 본 연구에서는 일반디젤과 바이오디젤 그리고 이들 혼합물질의 인화점, 열분해 압력 그리고 열적 거동에 관한 연구를 수행하였으며, 그 결과 인화점과 열분해 압력변화에 있어서 바이오디젤은 일반디젤에 비해 인화점은 $182^{\circ}C$로 일반디젤의 $54^{\circ}C$ 보다 많이 높으며, 열분해압력도 바이오디젤의 경우 40.1bar, 일반 디젤의 경우 29.8bar로 바이오디젤의 열적 안정성이 상당히 높은 것으로 나타났다.