• 제목/요약/키워드: Diameter Ratio of the Channel

검색결과 95건 처리시간 0.021초

Fluttering Characteristics of the Ropes and Nets as an Active Stimulating Device inside the Cod End of a Trawl Net

  • Kim, Yong-Hae
    • Fisheries and Aquatic Sciences
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    • 제16권2호
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    • pp.101-108
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    • 2013
  • An active stimulating device (ASD) consisting of a net panel or ropes fluttering in the turbulence inside the cod end was effective in driving fish near the cod end to reduce juvenile by-catch. The fluttering characteristics of the rope and net panel were examined by video observations and analyzed for fluttering amplitude and period in a water channel and in field experiments with a bottom trawl. The amplitude ratio of the fluttering ropes or nets in the tank test increased with the fluttering index as the diameter of the twine, mesh size, flexibility, and flow velocity changed, whereas the period decreased with the above factors. In bottom trawl experiments, the range of mean depth difference in the fluttering net panel was 12-17% of the length of the fluttering net, and the period of depth difference or three-dimensional (3D) tilt was revealed, with shorter ones ranging from 2 to 6 s. The amplitude as depth difference and period from field measurements were similar to those of nets in tank experiments and also to the period of 3D flow velocity inside the cod end. These results could be used to design an ASD that could be used for to the cod end of actual towed fishing gear to reduce juvenile by-catch.

디젤입자상물질필터의 기하학적 형상변화가 재생과정 중 활성화 특성 및 비정상 온도거동에 미치는 영향에 관한 수치적 연구 (Numerical Study on the Effect of Changes of Geometric Shape of Diesel Particulate Filter on Light-Off Characteristics and Transient Thermal Behavior during Regeneration)

  • 정수진;이상진;김우승;이춘범
    • 한국자동차공학회논문집
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    • 제14권4호
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    • pp.68-76
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    • 2006
  • The minimization of maximum DPF wall temperature and the fast Light-off during regeneration are the targets for the high durability of the DPF system and the high efficiency of regeneration. In order to predict transient thermal response of DPF, one-channel numerical modeling has been adopted. The effect of the ratio of length to diameter(L/D), cell density, the amount of soot loading on temporal thermal response and regeneration characteristics has been numerically investigated under two different running conditions: city driving mode and high speed mode. The results indicate that the maximum wall temperature of DPF increase with increasing 'L/D' in 'High speed mode'. For 'City driving mode', the maximum wall temperature decreases with increasing 'L/D' in the range of $'L/D{\geq}0.6'$. The maximum temperature decreases with increasing cell density because heat conduction and heat capacity are increased. It is also found that the effect of amount of soot loading on light-off time is negligible.

하이브리드 촉매 연소기의 연소특성에 관한 수치적 연구 (Numerical Studies on Combustion Characteristics of a Hybrid Catalytic Combustor)

  • 황철홍;정영식;이창언
    • 대한기계학회논문집B
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    • 제25권4호
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    • pp.583-592
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    • 2001
  • The combustion characteristics of the hybrid catalytic(catalytic+thermal) combustor with a lean methane-air mixture on platinum catalyst were investigated numerically using a 2-D boundary layer model with detailed homogeneous and heterogeneous chemistries. for the more accurate calculations, the actual surface site density of monolith coated with platinum was decided by the comparison with experimental data. It was found that the homogeneous reactions in the monolith had little effect on the change of temperature profile, methane conversion rate and light off location. However, the radicals such as OH and CO were produced rapidly at exit by homogeneous reactions. The effect of operation conditions such as equivalence ratio, temperature, velocity, pressure and diameter of the monolith channel at the entrance were studied. In thermal combustor, the production of N$_2$O was more dominant than that of NO due to the relative importance of the reaction N$_2$+O(+M)→N$_2$O(+M). Finally the productions of CO and NOx by amount of methane addition were studied.

Development of Birdcage RF coil for 3T Animal MR Imaging

  • 추명자;최보영;강세권;최치봉;이형구;서태석
    • 한국의학물리학회지:의학물리
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    • 제13권2호
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    • pp.85-89
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    • 2002
  • 목적 : 사람에 비하여 크기가 현저히 작은 동물의 자기공명영상 촬영을 위하여 상용으로 인체에 적용하는 Head 코일보다 원통 반지름이 작은 Low-Pass Type Birdcage 코일을 제작함으로써 보다 큰 신호대잡음비 (Signal-to-Noise Ratio. SNR)를 얻고자 하였다. 방법 : 자기공명영상을 얻기 위해 Spin Echo 펄스시퀀스와 Fast Spin Echo 펄스시퀀스를 사용하였다. T1 강조영상을 얻기 위한 Spin Echo 펄스시퀀스의 매개변수는 TR/TE=300/17 ㎳, Matrix=256$\times$256, Field Of View (FOV)=150 mm, Slice Thickness=2 mm 이었다. T2 강조영상을 얻기 위한 Fast Spin Echo 펄스시퀀스의 매개변수는 TR/TE=3000/96 ㎳, Matrix=256$\times$256, Field Of View (FOV)=150 mm, Slice Thickness=2 mm 이었다. 원통의 지름이 13 cm인 Birdcage 코일은 12개의 elements로 구성되어 있으며 길이는 22 cm로 제작되었다. 결과 : 코일 원통의 반지름의 크기에 따른 SNR을 비교하기 위하여 인체용 Knee 코일과 동물용으로 제작된 코일을 이용하여 각각의 팬톰 영상을 획득하였다. 팬톰 영상으로부터 측정된 SNR의 값을 통해 반지름이 작은 동물용 코일의 SNR이 더 크다는 걸 확인할 수 있었다. 토의 및 결론 : 본 연구를 통하여 같은 형태의 Birdcage 코일일 경우 원통의 반지름에 따라 SNR이 다르며, 특히 반지름이 작을 때 SNR이 더 크다는 것을 알 수 있었다. 따라서 코일의 크기에 비해 촬영하고자 하는 대상물의 부피가 작은 경우 대상물의 부피에 맞추어 코일을 제작하면 SNR이 보다 뛰어난 영상을 얻을 수 있을 것으로 사료된다.

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CFD를 이용한 수평축 조류발전 로터 성능의 기초연구 (Fundamental Study on the HAT Tidal Current Power Rotor Performance by CFD)

  • 조철희;임진영;이강희;채광수;노유호;송승호
    • 신재생에너지
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    • 제5권2호
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    • pp.3-8
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    • 2009
  • Tidal current power system is one of ocean renewable energies that can minimize the environmental impact with many advantages compared to other energy sources. Not like others, the produced energy can be precisely predicted without weather conditions and also the operation rate is very high. To convert the current into power, the first device encountered to the incoming flow is the rotor that can transform into rotational energy. The performance of rotor can be determined by various design parameters including numbers of blade, sectional shape, diameter, and etc. The stream lines near the rotating rotor is very complex and the interference effects around the system is also difficult to predict. The paper introduces the experiment of rotor performance and also the fundamental study on the characteristics of three different rotors and flow near the rotor by CFD.

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집수평면의 신장도에 대한 정량적 평가 (The Quantitative Evaluation of Catchment Plan-Form Elongation)

  • 김주철;이상진;노준우
    • 한국공간정보시스템학회 논문지
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    • 제11권3호
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    • pp.1-8
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    • 2009
  • 본 연구에서는 집수평면의 신장도와 밀집도 그리고 등가타원에 대한 개념을 이론적인 고려와 함께 실제 유역에 적용하여 보았다. GIS를 기반으로 산정된 대상유역들에 대한 집수평면과 등가타원을 상류로부터 하류방향으로 진행하면서 변화 양상을 관찰해 본 결과 현재 논의되고 있는 Hack의 법칙에 대한 두 가설이 무작위적으로 상호작용을 할 경우 나타날 수 있는 유역 형상들에 대한 모집단처럼 보여졌다. 또한 집수평면의 최대 및 최소관성적률의 비 $R_i$가 유로연장과 집수평면에 대한 등적원(等積圓)의 직경 사이의 비 E보다 유역형상의 신장도를 보다 민감하게 평가하는 것으로 나타났다. 집수평면에 대한 밀집도는 정의별로 상이한 양상을 보였다. 이러한 결과는 형상의 정량화가 갖는 난점에 기인하는 것으로 2개 이상의 밀집도들에 대한 복합적 고려를 통한 평가나 프랙탈 이론의 적용 등이 앞으로 수행되어야 할 것으로 보인다.

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난류충돌유동의 질량유량비에 따른 혼합유동구조에 관한 실험적 연구 (An Experimental Study on the Mixing Flow Structure of Turbulent Cross Flow with Respect to the Ratio of Mass Flow Rate)

  • 이대옥;노병준
    • 대한기계학회논문집
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    • 제16권11호
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    • pp.2150-2158
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    • 1992
  • 본 연구에서는 복잡한 유동형태를 지닌 충돌분사류에 대한 유동특성을 연구하 기 위하여 단순화된 실험모델로써 형상이 동일한 두 원형분류의 충돌에 의한 충돌분류 의 혼합현상 및 유동구조 등을 질량유량비의 변화에 따라 유체역학적으로 구명하고자 하였으며, 본 연구 결과는 연소기관에서의 연소효율 증대 및 구조개선등의 공학적 응 용을 위한 기본자료로 활용하고, 이론적 연구에 의한 난류의 유동구조 및 유동특성 에 대한 타당성 입증과 이론적 모델의 보완을 위한 실험자료로 이용하고자 한다. 충돌유동에 영향을 미치는 주요인자는 노즐직경, 충돌각, 충돌질량유량비, 온도, 밀도 등이며, 이 인자들 중에서 충돌질량유량비와 출돌각이 충돌후 형성되는 난류혼합유동 에 지배적인 영향을 미치므로, 본 연구에서는 두 원형분류의 충돌질량유량비를 가변할 수 있는 장치를 고안하였으며, 두 분류의 충돌각을 45˚로 고정하고, 고속측과 저속측 노즐의 질량유량비를 1.0, 0.8, 0.6, 0.4로 설정하여 질량유량비에 따른 혼합 유동구 조의 구명을 위한 실험적인 연구를 수행하였다. 충돌후의 혼합유동의 특성을 연구하 기 위하여 유동중심궤적, 유동반폭, 유동단면, 2차원 및 3차원 유동장, 평균속도분포 등을 온라인 컴퓨터시스템을 이용하여 측정분석하였다.

a-C:H Films Deposited in the Plasma of Surface Spark Discharge at Atmospheric Pressure. Part I: Experimental Investigation

  • Chun, Hui-Gon;K.V. Oskomov;N.S. Sochungov;Lee, Jing-Hyuk;You, Yong-Zoo
    • 한국표면공학회지
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    • 제36권5호
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    • pp.357-363
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    • 2003
  • The aim of this work is the synthesis of a-C:H films from methane gas using surface spark discharge at the atmospheric pressure. Properties of these films have been investigated as functions of energy W delivered per a methane molecule in the discharge. The method enables the coatings to be deposited with high growth rates (up to $100 \mu\textrm{m}$/hour) onto large-area substrates. It is shown that the films consist of spherical granules with diameter of 20∼50 nm formed in the spark channel and then deposited onto the substrate. The best film characteristics such as minimum hydrogen-to-carbon atoms ratio H/C=0.69, maximum hardness $H_{v}$ =3 ㎬, the most dense packing of the granules and highest scratch resistance has been obtained under the condition of highest energy W of 40 eV. The deposited a-C:H coatings were found to be more soft and hydrogenated compared to the diamond-like hydrogenated (a-C:H) films which obtained by traditional plasmaenhanced chemical vapor deposition methods at low pressure (<10 Torr). Nevertheless, these coatings can be potentially used for scratch protection of soft plastic materials since they are of an order harder than plastics but still transparent (the absorption coefficient is about $10^4$$10^{5}$ $m^{-1}$ At the same time the proposed method for fast deposition of a-C:H films makes this process less expensive compared to the conventional techniques. This advantage can widen the application field of. these films substantially.y.

비공비 혼합냉매 R-410A를 적용한 납작한 알루미늄 마이크로 멀티 튜브에서의 마찰손실에 관한 연구 (A study on the friction head loss in flat aluminum micro multi tubes with nonazeotropic refrigerant mixtures R-410A)

  • 이정근;민경호
    • Design & Manufacturing
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    • 제13권2호
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    • pp.37-43
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    • 2019
  • This study conducted a research as to condensation heat transfer friction loss headby using three types of flat micro multi-channel tubes with different processing of micro-fin and number of channels inside the pipes and different sizes of appearances. In addition, identical studies were conducted by using smoothing circular tubes with 5mm external diameter to study heat enhancement factor and pressure drop penalty factor. 1) The friction head loss showed an increase as the vapor quality and mass flux increased. In case of saturation temperature, it shows an increase as it gets lower. These factors are the reason occurring as the lower the saturation temperature is, the higher the density of refrigerant vapor gets. The influence of heat flux is similar as the dryness is low, but as it gets higher, it lowers in heat flux, and as the high temperature of high heat flux, it is a factor that occurs as the density gets lower. 2) RMS error of the in case of friction head loss, it showed to be predicted as 0.45~0.67 by Chisholm, Friedel, Lockhart and Martinelli. 3) As forfriction head loss penalty factor, the smaller the aspect ratio is, the larger the penalty factor gets, and as for the effect of micro-fin, the penalty factor increased because it decreases to the gas fluid the way groove for the refrigerant's flow.

고온 히트파이프식 태양열 흡수기의 후벽 각도 변화에 따른 열전달 특성의 수치해석 (Numerical Analysis on Heat Transfer Characteristics of a Heat Pipe Type Solar Thermal Receiver Depending on End Wall Angle Variation)

  • 박영학;정의국;부준홍;강용혁
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2008년도 추계학술발표대회 논문집
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    • pp.226-231
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    • 2008
  • The heat transfer characteristics of a solar high-temperature receiver with heat pipes was investigated by numerical simulation. The concentration ratio of the solar receiver ranges 1000 and the concentrated heat is required to be transported to a certain distance for specific applications. This study deals with internal geometry variation of a solar receiver incorporating high-temperature heat pipe. The isothermal characteristics in the receiver section is of major concern. The diameter of the solar thermal receiver was 120 mm and the length was 400 mm. The angle of receiver end wall was varied between $0^{\circ}$ and $45^{\circ}$. The wall thickness of the heat pipe channel was 4mm and 48 axial channels of the same dimensions were attached to the outer wall of the receiver with even spacing in the circumferential direction. The channels are changed to high-temperature sodium heat pipes. Commercial softwares were employed to deal with the radiative heat transfer inside the receiver cavity and the conduction heat transfer along the channels. The numerical results are compared and analyzed from the view Point of high-temperature solar receiver.

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