• 제목/요약/키워드: fixed pattern

검색결과 674건 처리시간 0.028초

미세 수평 사각 유로에서의 비등 열전달에 대한 실험적 연구 (An Experimental Study on Flow Boiling Heat Transfer within Horizontal Rectangular Channels with Small Heights)

  • 이상용;이한주
    • 대한기계학회논문집B
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    • 제25권9호
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    • pp.1209-1218
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    • 2001
  • The present paper proposes a new correlation for the flow boiling heat transfer coefficients in the low flow rate condition (Re(sub)LF$\leq$200) within horizontal rectangular channels with small gaps (heights). The gap between the upper and the lower plates of each channel ranges from 0.4 to 2mm while the channel width being fixed to 20mm. Refrigerant 113 was used as the test fluid. The mass flux ranges from 50 to 200kg/㎡s and the channel walls were uniformly heated with the heat flux range of 3-15kW/㎡. The quality range covers from 0.19 to 0.76 and the flow pattern is considered to be annular. The measured heat transfer coefficients increase with the mass flux and the local quality; however the effect of the heat flux appears to be minor. At the low mass flux condition, which is more likely with the smaller gap size, the heat transfer is primarily controlled by the liquid film thickness. The proposed F factor for the heat transfer coefficient in the range of Re(sub)LF$\leq$200 well represents the experimental data within the deviation of $\pm$20%. The Kandlikars flow boiling correlation covers the higher flow-rate range(Re(sub)LF>200) within the deviation of $\pm$20%.

합류부 하상고 불일치에 의한 두부침식 및 분리구역 특성분석 (An Analysis for the Characteristics of Headward Erosion and Separation Zone due to Bed Discordance at Confluence)

  • 최흥식;모선재;이삼희
    • 한국수자원학회논문집
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    • 제48권11호
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    • pp.879-889
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    • 2015
  • 본 연구는 지류의 합류각, 지류와 본류의 유량비, 준설 깊이비의 변화에 따른 지류에서의 두부침식 양상과 합류부 이동상 하도에서의 분리구역의 특성을 분석하였다. 분리구역은 지류가 합류되어진 직후 단면에서의 유속이 0(영)인 구간으로 정의하였다. 준설 깊이에 따른 두부침식이 발생치 않은 범위를 제시하였다. 합류각, 유량비, 준설 깊이비 증가에 따른 두부침식 깊이비 및 천급점의 이동거리비는 전반적으로 증가하였으며, 천급점의 이동거리비의 관계식을 제시하였다. 이동상 하도에서의 유량비와 합류각 증가에 따른 분리구역의 길이비 및 폭비는 고정상 하도에서와 같은 양상으로 증가하였다. 준설 깊이비 증가에 따른 분리구역의 길이비는 감소하고 폭비은 증가하여 형상지수는 크게 증가하여 통수단면의 감소로 배수위 현상이 기대된다. 고정상 하도와 이동상하도에서의 합류각, 유량비, 준설 깊이비에 따른 형상지수 관계식을 제안하였다.

STI CMP후 Topology에 따른 Gate Etch, Transistor 특성 변화 (Property variation of transistor in Gate Etch Process versus topology of STI CMP)

  • 김상용;정헌상;박민우;김창일;장의구
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2001년도 추계학술대회 논문집 Vol.14 No.1
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    • pp.181-184
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    • 2001
  • Chemical Mechanical Polishing(CMP) of Shallow Trench Isolation(STD structure in 0.18 m semiconductor device fabrication is studied. CMP process is applied for the STI structure with and without reverse moat pattern and End Point Detection (EPD) method is tested. To optimize the transistor properties related metal 1 parameters. we studied the correlation between CMP thickness of STI using high selectivity slurry. DOE of gate etch recipe, and 1st metal DC values. Remaining thickness of STI CMP is proportional to the thickness of gate-etch process and this can affect to gate profile. As CMP thickness increased. the N-poly foot is deteriorated. and the P-Poly Noth is getting better. If CD (Critical Dimension) value is fixed at some point,, all IDSN/P values are in inverse proportional to CMP thickness by reason of so called Profile Effect. Weve found out this phenomenon in all around DOE conditions of Gate etch process and we also could understand that it would not have any correlation effects between VT and CMP thickness in the range of POE 120 sec conditions. As CMP thickness increased by $100\AA$. 3.2 $u\AA$ of IDSN is getting better in base 1 condition. In POE 50% condition. 1.7 $u\AA$ is improved. and 0.7 $u\AA$ is improved in step 2 condition. Wed like to set the control target of CD (critical dimension) in gate etch process which can affect Idsat, VT property versus STI topology decided by CMP thickness. We also would like to decide optimized thickness target of STI CMP throughout property comparison between conventional STI CMP with reverse moat process and newly introduced STI CMP using high selectivity slurry. And we studied the process conditions to reduce Gate Profile Skew of which source known as STI topology by evaluation of gate etch recipe versus STI CMP thickness.

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가스터빈 연소실 냉각을 위한 충돌제트/유출냉각기법에서 사각핀 설치에 따른 열/물질전달 특성 (Heat/Mass Transfer Characteristics in Impingement/Effusion Cooling System with Rectangular Fins for Combustor Liner Cooling)

  • 홍성국;이동호;조형희
    • 한국유체기계학회 논문집
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    • 제8권4호
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    • pp.39-47
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    • 2005
  • The present study has been performed to investigate the influences of rectangular fins on heat transfer in an impingement/effusion cooling system with crossflow. To simulate the impingement/effusion cooling system with initial crossflow, two perforated plates are placed in parallel and staggered arrangements with a gap distance of 2 times of the hole diameter. The crossflow passes between the plates, and various rectangular fins are installed on the plates. Reynolds number based on the hole diameter is fixed to 10,000 and the flow rate of crossflow is changed from 0.5 to 1.5 times of that of the impinging jet. A naphthalene sublimation method is used to obtain the heat/mass transfer coefficients on the effusion plate. Also to analyze the flow characteristics, a numerical calculation is performed. When rectangular fins are installed, the flow and heat transfer pattern is changed greatly from the case without fins. In the injection hole region, the jet impinges on effusion plate without deflection and wall jet spreads symmetrically. In the effusion region, the crossflow accelerates due to the decrease of cross-sectional area in the channel. Local heat/mass transfer coefficients are enhanced significantly compared to the case without fins. As the blowing ratio increases, the effect of rectangular fins against the crossflow becomes more significant and then the higher average heat/mass transfer coefficients are obtained than the case without fins. However, the increase of blockage effect gives more pressure loss in the channel.

Numerical Analysis of the Wavelength Dependence in Low Level Laser Therapy (LLLT) Using a Finite Element Method

  • Yoon, Jin-Hee;Park, Ji-Won;Youn, Jong-In
    • The Journal of Korean Physical Therapy
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    • 제22권6호
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    • pp.77-83
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    • 2010
  • Purpose: The aim of this study was to do numerical analysis of the wavelength dependence in low level laser therapy (LLLT) using a finite element method (FEM). Methods: Numerical analysis of heat transfer based on a Pennes' bioheat equation was performed to assess the wavelength dependence of effects of LLLT in a single layer and in multilayered tissue that consists of skin, fat and muscle. The three different wavelengths selected, 660 nm, 830 nm and 980 nm, were ones that are frequently used in clinic settings for the therapy of musculoskeletal disorders. Laser parameters were set to the power density of 35.7 W/$cm^2$, a spot diameter of 0.06 cm, and a laser exposure time of 50 seconds for all wavelengths. Results: Temperature changes in tissue based on a heat transfer equation using a finite element method were simulated and were dominantly dependent upon the absorption coefficient of each tissue layer. In the analysis of a single tissue layer, heat generation by fixed laser exposure at each wavelength had a similar pattern for increasing temperature in both skin and fat (980 nm > 660 nm > 830 nm), but in the muscle layer 660nm generated the most heat (660 nm ${\gg}$ 980 nm > 830 nm). The heat generation in multilayered tissue versus penetration depth was shown that the temperature of 660 nm wavelength was higher than those of 830 nm and 980 nm Conclusion: Numerical analysis of heat transfer versus penetration depth using a finite element method showed that the greatest amount of heat generation is seen in multilayered tissue at = 660 nm. Numerical analysis of heat transfer may help lend insight into thermal events occurring inside tissue layers during low level laser therapy.

SENSOR DATA MINING TECHNIQUES AND MIDDLEWARE STRUCTURE FOR USN ENVIRONMENT

  • Jin, Cheng-Hao;Lee, Yong-Mi;Kim, Hi-Seok;Pok, Gou-Chol;Ryu, Keun-Ho
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.353-356
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    • 2007
  • With advances in sensor technology, current researches on the pertinent techniques are actively directed toward the way which enables the USN computing service. For many applications using sensor networks, the incoming data are by nature characterized as high-speed, continuous, real-time and infinite. Due to such uniqueness of sensor data characteristics, for some instances a finite-sized buffer may not accommodate the entire incoming data, which leads to inevitable loss of data, and requirement for fast processing makes it impossible to conduct a thorough investigation of data. In addition to the potential problem of loss of data, incoming data in its raw form may exhibit high degree of complexity which evades simple query or alerting services for capturing and extracting useful information. Furthermore, as traditional mining techniques are developed to handle fixed, static historical data, they are not useful and directly applicable for analyzing the sensor data. In this paper, (1) describe how three mining techniques (sensor data outlier analysis, sensor pattern analysis, and sensor data prediction analysis) are appropriate for the USN middleware structure, with their application to the stream data in ocean environment. (2) Another proposal is a middleware structure based on USN environment adaptive to above mining techniques. This middleware structure includes sensor nodes, sensor network common interface, sensor data processor, sensor query processor, database, sensor data mining engine, user interface and so on.

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3차원 단열망모델링을 위한 단열수리인자 도출 (Determination of the Fracture Hydraulic Parameters for Three Dimensional Discrete Fracture Network Modeling)

  • 김경수;김천수;배대석;김원영;최영섭;김중렬
    • 대한지하수환경학회지
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    • 제5권2호
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    • pp.80-87
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    • 1998
  • 지하수의 유동로가 시설의 성능에 미치는 영향이 큰 방사성폐기물처분시설에서는 암반블럭규모의 흐름은 단열망개념으로 해석하고 있다. 본 연구는 연구지역의 지하수유동 해석을 위하여 3차원 투수성단열망모델을 구축하기 위한 것으로서, 단열의 기하학적 인자 및 수리인자에 대한 확률분포함수를 도출하고, 3차원 단열망모델링과 수리시험 결과를 이용한 모델 교정까지의 과정을 포함한다. 구간별 정압주입시험의 결과를 Cubic law로서 해석한 결과 단열투수량계수는 lognormal분포일 때 6.12$\times$$10^{-7}$ $m^2$/sec이다. 부정류해석에 의한 유동차원은 주로 방사상 내지 구상유동 특성을 보인다. FracMan 코드를 이용해서 추정된 투수성단열밀도는 1.73이고, 이때 암반블럭규모(l00 m$\times$100 m$\times$100 m)로 모사된 투수성단열의 수는 3,080개이다.다.

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거친 바닥 위의 에크만 경계층 내의 흐름의 특성 (Characteristics of the Ekman Layer Flow over a Rough Bottom)

  • 나정열;김태연
    • 한국해양학회지:바다
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    • 제3권2호
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    • pp.53-58
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    • 1998
  • 거친 바닥을 포함하고 있는 laminar 에크만층 내 흐름의 방향변화를 파악하기 위하여 바닥경계조건을 Taylor 급수로 전개하여 에크만방정식의 해를 구하였다. 이때 거친 바닥의 거칠기 정도를 나타내는 변수 h/${\delta}_E$(h, 거칠기의 rms 높이; ${\delta}_E$, 에크만층 두께)의 크기를 변화시켜 거칠기에 의한 에크만층 내 흐름의 방향변화(에크만 veering)를 구하였다. 거칠기 증가시 에크만층 내 일정 수심에서 변회각의 크기가 증가할 뿐만 아니라 이에 따른 cross-isobar 수송량은 도리어 감소함으로써, 결과적으로 내부의 지형류 속도가 감소함을 보여주고 있다. 이러한 이론적 결과를 증명하기 위해 회전반 실험을 실시하였고 관측된 결과는 이론적인 것과 잘 일치하고 있다.

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표고버섯(Lentinus edodes)의 CA 저장 중 탄산가스농도의 효과 (Effect of $CO_2$ Concentration in CA Conditions on the Quality of Shiitake Mushroom (Lentinus edodes) during Storage)

  • 김동만;백형희;윤혜현;김길환
    • 한국식품과학회지
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    • 제21권4호
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    • pp.461-467
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    • 1989
  • 생표고버섯의 신선도 연장을 위하여 $2^{\circ}C$에서 산소의 농도를 2%로 고정하고 탄산가스의 농도를 각각 2%, 4%, 6%로 조절한 CA 저장조건으로 표고버섯을 저장하면서 탄산가스의 농도에 따른 호흡율, off-flavor, 단백질의 전기영동 패턴 등을 비롯한 품질에 관련된 인자들의 변호를 조사하였다. CA 저장한 표고버섯의 호흡율은 대조구와는 달리 저장 40일 후 급격히 증가한 후 다시 저하되었는데 환경가스 조성 중 탄산가스의 농도에 반비례하였으며 off-flavor 성분인 ethanol 및 acetaldehyde의 양은 호흡율이 급속히 증가하기 20일 전에 최대치를 보였다. 한편 탄산가스의 농도에 따라 정미성분인 5'-GMP, 단백질의 전기영동 패턴 등도 차이를 보였는데 환경가스 조성 중 산소의 농도를 2%로 고정시, 탄산가스의 농도를 2%로 유지하는 것이 표고버섯의 품질 보존에 효과적인 것으로 나타났다.

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액체로켓 추진제 공급계에서 캐비테이션 벤튜리의 유량 제어 특성 (Flow Rate Control Characteristics of a Cavitating Venturi in a Liquid Rocket Propellant Feed System)

  • 조원국;문윤완;권오성;조인현
    • 한국항공우주학회지
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    • 제30권6호
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    • pp.46-52
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    • 2002
  • 액체로켓 추진제 공급장치에 정착된 캐비테이션 벤튜리의 유량 제어 특성을 해석하였다. 해석에는 실험과 수치해석이 병행되었으며 캐비테이션이 존재하는 유동에서 두 결과의 유량 차이는 약 10%로 나타났다. 벤튜리 상류의 압력을 $22.8{\times}10^5$pa로 일정하게 유지하고 하류의 압력을 변동시켰을 때 $3{\times}10^5$pa 이상의 압력 차이에 대하여 유량이 증가하지 않음을 확인하였다. 비응축 기체의 농도 변화에 의하여 벤튜리 내부에 발생하는 증기의 분포는 크게 달라지지만 유량은 같은 수준이 유지되어 비응축 기체의 농도가 1.5PPM에서 150PPM로 커질 경우, 유량이 약 2% 감소하였다. 이는 작동유체가 포함하고 있는 비응축 기체의 팽창과 생성된 증기가 압력 회복을 저해하는 영향이 유사하기 때문으로 풀이된다.