• Title/Summary/Keyword: High pressure experiments

검색결과 899건 처리시간 0.028초

세라믹 섬유필터를 이용한 디젤 입자상물질 배출저감에 관한 기초연구 (A Study on the Exhaust Reduction of Diesel Particulates Using Ceramic Fiber Filters)

  • 주용남;홍민선;문수호;이동섭;임우택
    • 한국대기환경학회지
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    • 제19권3호
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    • pp.297-306
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    • 2003
  • Works were focused on back pressure characteristics of ceramic fiber filter on DPF (Diesel Particulate Filter) system and experiments were performed to select appropriate filter which can filter particulates. Filters were installed on metal -support tube which has openings for exhaust gas flow. Ceramic fiber filters with high specific surface area and adequate high temperature strength are commercially available for filtration of diesel particulates and in -situ hot regeneration. Thus, ceramic blanket and ceramic board which are used as insulating media were applied to filter and filtration apparatus was installed on exhaust gas line connected to 2.0 L diesel engine. Alternating filter structure to adapt DPF system, collection efficiency test of diesel particulates was measured. In case of ceramic blanket, pressure drop was low, caused by the destruction of soft structures. Also, particulate collection efficiency was decreased depending on loading time. In case of ceramic board, structure design was altered to reduce back pressure on DPF system. Structure design was altered to induce Z-flow by making 10 mm and 5 mm holes on the surface of media. Alteration of 5 mm hole showed that media have low back pressure but particulate collection efficiency was 77%, while 10 mm hole showed that of 90%.

바이오 디젤 연료의 고압 분무 특성 (Characteristics of High Pressure Bio-diesel Fuel Spray)

  • 홍창호;최욱;최병철;이기영
    • 한국자동차공학회논문집
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    • 제11권2호
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    • pp.56-62
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    • 2003
  • Spray characteristics of conventional diesel fuel and bio-diesel fuel(methyl-ester of soybean oil) were compared, in terms of spray tip penetration and spray angle, by using a commercial high pressure common rail injection system for light-duty DI Diesel engines. The experiments were carried out under the non-evaporating condition at ambient density(8.8, $15.6 kg/\textrm{m}^3$) and injection pressure(75, 135 MPa). The experimental method was based on a laser sheet scattering technique. Spray tip penetrations of bio-diesel fuel were longer, on the whole, than those of conventional diesel fuel, except for lower injection pressure(75 MPa) under lower ambient density$(8.8 kg/\textrm{m}^3)$. But spray near angle and spray far angle of bio-diesel fuel were smaller than those of conventional diesel fuel, implying spray angle is related to the growth rate of spray tip penetration. The experimental results of spray tip penetration agreed well with the calculated values by the Wakuri et al.'s correlation based on the momentum theory.

공압 수직실린더의 쿠션특성에 관한 실험적 연구 (An Experimental Study on Cushion Characteristics of pneumatic Cylinder for Vertically-Mounted.)

  • 김동수;김형의;이상천
    • 연구논문집
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    • 통권28호
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    • pp.73-87
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    • 1998
  • A pneumatic control system of compressed air as a working fluid has a variety of advantages such as low price, high respondence, non-explosion and good control performance and thus has many applications in the field of automobile, electronic and semiconductor industry. However, it has a difficulty in contolling a precise position due to quick response of system and compressibility of working fluid and. in particular, shock stress may occur due to an external load, resulting in fracture of a cylinder cap unless cushion device is equipped in the linear actuator. To avoid this, a cushion device should be installed for damping effect of the external load and the supply pressure as well as for decreasing shock stress and vibration caused by high speed rotation. Previous studies include dimensionless analyses and computer simulations of cushion capability and experiments of horizontally-mounted cylinder performances. A new attempt is experimentally made in this study using a vertically-mounted cylinder under an operation condition of 4, 5 and 6 (bar) as supply pressure and 40, 70 and 100 (kgf) as external load. It turns out that the cushion pressure is mainly a function of the external load rather than the supply pressure. The cushion characteristics was also revealed in the meter-in circuit.

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직관 마이크로채널 PCHE의 열전달특성 및 압력강하 (Heat Transfer Characteristics and Pressure Drop in Straight Microchannel of the Printed Circuit Heat Exchangers)

  • 김윤호;문정은;최영종;이규정
    • 대한기계학회논문집B
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    • 제32권12호
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    • pp.915-923
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    • 2008
  • The performance experiments for a microchannel printed circuit heat exchanger (PCHE) of high-performance and high-efficiency on the two technologies of micro photo-etching and diffusion bonding were performed in this study. The microchannel PCHE were experimentally investigated for Reynolds number in ranges of 100 $\sim$ 700 under various flow conditions in the hot side and the cold side. The inlet temperatures of the hot side were conducted in range of $40^{\circ}C\;{\sim}\;50^{\circ}C$ while that of the cold-side were fixed at $20^{\circ}C$. In the flow pattern, the counter flow was provided 6.8% and 10 $\sim$ 15% higher average heat transfer rate and heat transfer performance than the parallel flow, respectively. The average heat transfer rate, heat transfer performance and pressure drop increases with increasing Reynolds number in all the experiment. The increasing of inlet temperature in the experiment range has not an effect on the heat transfer performance while the pressure drop decrease slightly with that of inlet temperature. The experimental correlations to the heat transfer coefficient and pressure drop factor as a function of the Reynolds number have been suggested for the microchannel PCHE.

Rapid and massive throughput analysis of a constant volume high-pressure gas injection system

  • Ren, Xiaoli;Zhai, Jia;Wang, Jihong;Ren, Ge
    • Nuclear Engineering and Technology
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    • 제51권3호
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    • pp.908-914
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    • 2019
  • Fusion power shutdown system (FPSS) is a safety system to stop plasma in case of accidents or incidents. The gas injection system for the FPSS presented in this work is designed to research the flow development in a closed system. As the efficiency of the system is a crucial property, plenty of experiments are executed to get optimum parameters. In this system, the flow is driven by the pressure difference between a gas storage tank and a vacuum vessel with a source pressure. The idea is based on a constant volume system without extra source gases to guarantee rapid response and high throughput. Among them, valves and gas species are studied because their properties could influence the velocity of the fluid field. Then source pressures and volumes are emphasized to investigate the volume flow rate of the injection. The source pressure has a considerable effect on the injected volume. From the data, proper parameters are extracted to achieve the best performance of the FPSS. Finally, experimental results are used as a quantitative benchmark for simulations which can add our understanding of the inner gas flow in the pipeline. In generally, there is a good consistency and the obtained correlations will be applied in further study and design for the FPSS.

공동 주위에서의 압력 변화에 대한 연구 (Study on Pressure Variation around an Open Cavity)

  • 허대녕;이덕주
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2004년도 춘계학술대회논문집
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    • pp.843-846
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    • 2004
  • Cavity tone is generated due to the feedback between flow and acoustic wave. It is recognized that the period is determined by the time required for the flow convection in one direction, the time required for the acoustic propagation in the other direction and the time for phase shift depending on the flows and mode. Most of the phenomena have been investigated by experiments and a simple but fundamental theory. But the cause of the phase shift and the correctness of the theory have not been clearly explained so far. In this paper, the phenomena are calculated numerically to obtain detail information of flow and acoustic wave to explain the mechanism including the phase. High order high resolution scheme of optimized high order compact is used to resolve the small acoustic quantities and large flow quantities at the same time. The data are reduced using cross correlation function in space and time and cross spectral density function which has phase information. Abrupt change in pressure near corner in cavity is observed and is relate to phase variation. The time required for the feedback between the flow and acoustic wave is calculated after the numerical simulation f3r various modes. The periods based on the time calculated using the above method and direct observation from the acoustic waves generated and propagated in the numerical simulation are compared. It is found that no phase shift is required if we examine the time required carefully. Rossiter's formula for the cavity tone used for quick estimation needs to be modified far some modes.

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초고층주상복합건물에서 배연창 개방이 연돌효과에 미치는 영향에 대한 실험적 연구 (Experiments on the Influence of Opening of Natural Smoke Ventilators on the Stack Effect in High-rise Mixed-use Residential Buildings)

  • 임채현;김범규;박용환
    • 한국방재학회 논문집
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    • 제9권3호
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    • pp.89-94
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    • 2009
  • 초고층 주상복합 건축물은 구조적으로 수직샤프트의 길이가 길고 24시간 냉난방이 이루어지는 용도적인 특성으로 혹서기 심야시간대에 실내외 온도차에 의한 연돌효과가 다른 건물보다 크게 발생한다. 또한, 하부 층에는 개구율이 높은 판매시설 및 지하주차장 등이 위치하고 있어 중성대가 상대적으로 낮게 형성되는 압력분포 특성을 가지고 있다. 이러한 압력분포는 화재위험도가 높은 하부 층에서 화재발생 시 중성대 이상층 전체가 연기확산의 위험에 노출되고 출입문 개방장애 등의 피난장애를 가져올 수 있음을 예측할 수 있다. 이에 본 연구에서는 초고층주상복합건축물에서의 수직 및 수평 압력분포를 정상조건 및 배연창개방조건에 따라 계단실, 부속실, 복도에서의 압력을 측정하고 압력분포특성을 분석하였다.

축소형 초고압 분사 시스템의 노즐 L/d에 따른 초음속 액체 제트의 미립화 특성 (Atomization Effect of Supersonic Liquid Jet by a Nozzle L/d of Subscale High-Pressure Injection System)

  • 신정환;이인철;김희동;구자예
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2011년도 제36회 춘계학술대회논문집
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    • pp.196-199
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    • 2011
  • 고압관, 가압관, 발사관으로 구성된 2단식 경가스 총을 사용하는 축소형 초고압 분사 시스템은 액체 제트를 초음속으로 생성할 수 있다. 이러한 초음속 액체 제트는 전방에 발생하는 충격파로 인한 액적 미립화를 촉진 시킬 수 있다. 본 연구에서는 초음속 액체 제트의 미립화 특성을 파악하기 위해 직선 원추형 노즐을 사용하여 기하학적인 형상 변화에 따른 실험을 진행하였다. 미립화 특성을 나타내는 SMD는 L/d가 증가할수록 $151.2{\mu}m$에서 $52.25{\mu}m$로 감소하는 경향을 나타내었다.

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연돌효과가 급기가압 제연시스템에 미치는 영향에 대한 현장실험 (Field Experiment on Influence of Stack Effect to Pressure Differential System for Smoke Control)

  • 김정엽
    • 한국화재소방학회논문지
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    • 제22권3호
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    • pp.194-200
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    • 2008
  • 고층건물에서 급기가압 제연시스템과 같이 연기제어를 위해 제연구역에서의 압력차를 이용하는 제연시스템을 성공적으로 설계하고 운영하기 위해서는 건물내 압력형성에 영향을 미치는 건축적 요인들을 검토해야 하며 그중 큰 영향을 발휘하는 요인이 연돌효과이다. 본 연구에서는 고충건물의 피난환경과 제연시스템에 대해 연돌효과가 미치는 영향을 검토하기 위해서 여름과 겨울철에 각각국내 고층건물을 대상으로 급기가압 제연시스템을 가동하면서 피난계단, 부속실 및 거실에서의 압력변화를 측정하고 분석하였다. 연돌효과의 영향이 커지는 겨울철의 경우 급기가압 제연시스템이 가동되면 부속실에서 계단쪽으로의 누기현상과 연돌효과가 합쳐지면서 고층부의 계단실내 압력이 크게 상승하여 재실자가 대피를 위해 피난문을 열고자 할 때 문제가 발생할 수 있다.

Type III 고압수소저장용기의 설계 안전성 연구 (A Study on the Design Safety of Type III High-Pressure Hydrogen Storage Vessel)

  • 박우림;전상구;김송미;권오헌
    • 한국안전학회지
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    • 제34권5호
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    • pp.7-14
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    • 2019
  • The type III vessel, which is used to store high-pressure hydrogen gas, is made by wrapping the vessel's liner with carbon fiber composite materials for strength performance and lightening. The liner seals the internal gas and the composite resists the internal pressure. The properties of the fiber composite material depends on the angle and thickness of the fiber. Thus, engineers should consider these various design variables. However, it significantly increases the design cost due to the trial and error under designing based on experience or experiments. And, for aluminum liners, fatigue loads due to using and charging could give a huge impact on the performance of the structure. However, fatigue failure does not necessarily occur in the position under the highest load in use. Therefore, for hydrogen storage vessel, fatigue evaluation according to design patterns is essential because stress distribution varies depend on composite layer patterns. This study performed an optimization analysis and evaluated a high-pressure hydrogen storage vessel to minimize these trial and error and improve the reliability of the structure, while simultaneously conducting fatigue assessment of all patterns derived from the optimization analysis process. The results of this study are thought to be useful in the strength improvement and life design of composite reinforced high-pressure storage vessels.