• Title/Summary/Keyword: 내부온도변화

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기체의 유량 및 온도 변화에 따른 진공 펌프의 성능 특성 연구

  • Heo, Jung-Sik;Im, Jong-Yeon;In, Sang-Ryeol
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.16-16
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    • 2010
  • 반도체 및 LCD 공정이 진행되는 진공 챔버는 유량계, 진공 펌프 및 밸브 등을 이용하여 적절한 공정용 기체와 압력을 제어하게 된다. 공정에 따라 매우 높은 온도를 유지해야 하는 경우도 있다. 챔버 내부의 압력은 유입되는 기체의 시간에 따른 유량 변화에 의하여 주기적으로 변화하게 된다. 이러한 유량 변화는 장기적으로는 결국 펌프의 신뢰성(내구수명)에 영향을 주게 되며, 특히 고유량 및 저유량을 반복하게 되는 공정에 있어서는 더욱 큰 영향을 미치게 된다. 또한 챔버 내부는 다양한 화학적 반응이 일어나며 이러한 공정 기체들의 높은 온도는 결국 챔버에 연결된 펌프의 성능 및 신뢰성에도 영향을 주게 된다. 대부분의 반도체 및 LCD 공정이 이루어지는 압력에서는 전도 및 대류의 열전달 형태보다는 열복사에 의한 영향을 받게 되어 챔버를 적절히 설계한다면 펌프에 직접적으로 전달되는 복사량은 상대적으로 낮고, 펌프에 미치는 영향도 크지 않게 된다. 그러나 압력의 변화에 따라 전도 및 대류의 영향이 커지게 되는 경우에는 펌프 자체 및 성능에 큰 영향을 주게 될 것이다. 터보형 펌프의 국내(KS) 및 국제규격(ISO)의 성능시험방법에는 이러한 온도에 따른 펌프의 성능 특성 변화를 다루고 있지 않으며, 크라이오 펌프인 경우 열복사의 영향에 대한 시험방법이 일부 공개되어 있다[J. Vac. Sci. Technol. A 17(5)]. 본 연구에서는 기체의 유량 및 온도 변화에 따른 진공 펌프의 성능 특성 변화를 고찰하고자 하며, 향후 이러한 시험방법에 대한 표준 절차를 확립하고자 한다.

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기체의 유량 및 온도 변화에 따른 진공 펌프의 성능 특성 연구

  • Heo, Jung-Sik;Im, Jong-Yeon;In, Sang-Ryeol
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.328-328
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    • 2010
  • 반도체 및 LCD 공정이 진행되는 진공 챔버는 유량계, 진공 펌프 및 밸브 등을 이용하여 적절한 공정용 기체와 압력을 제어하게 된다. 공정에 따라 매우 높은 온도를 유지해야 하는 경우도 있다. 챔버 내부의 압력은 유입되는 기체의 시간에 따른 유량 변화에 의하여 주기적으로 변화하게 된다. 이러한 유량 변화는 장기적으로는 결국 펌프의 신뢰성(내구수명)에 영향을 주게 되며, 특히 고유량 및 저유량을 반복하게 되는 공정에 있어서는 더욱 큰 영향을 미치게 된다. 또한 챔버 내부는 다양한 화학적 반응이 일어나며 이러한 공정 기체들의 높은 온도는 결국 챔버에 연결된 펌프의 성능 및 신뢰성에도 영향을 주게 된다. 대부분의 반도체 및 LCD 공정이 이루어지는 압력에서는 전도 및 대류의 열전달 형태 보다는 열복사에 의한 영향을 받게 되어 챔버를 적절히 설계한다면 펌프에 직접적으로 전달되는 복사량은 상대적으로 낮고, 펌프에 미치는 영향도 크지 않게 된다. 그러나 압력의 변화에 따라 전도 및 대류의 영향이 커지게 되는 경우에는 펌프 자체 및 성능에 큰 영향을 주게 될 것이다. 터보형 펌프의 국내(KS) 및 국제규격(ISO)의 성능시험방법에는 이러한 온도에 따른 펌프의 성능 특성 변화를 다루고 있지 않으며, 크라이오 펌프인 경우 열복사의 영향에 대한 시험방법이 일부 공개되어 있다[J. Vac. Sci. Technol. A17(5)]. 본 연구에서는 기체의 유량 및 온도 변화에 따른 진공 펌프의 성능 특성 변화를 고찰하고자 하며, 향후 이러한 시험방법에 대한 표준 절차를 확립하고자 한다.

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Large-scale Levee Monitoring Experiment Using Fiber-optic Sensor and Distributed Temperature Sensing System (광섬유 센서와 분포형 온도 센싱 시스템을 이용한 실규모 제방 모니터링 실험)

  • Ahn, Myeonghui;Bae, Inhyeok;Ji, Un;Kang, Joongu
    • Ecology and Resilient Infrastructure
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    • v.7 no.3
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    • pp.181-188
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    • 2020
  • In this study, a temperature distribution sensing method using optical fiber was applied to a large-scale levee experiment, and the applicability of wide-area levee or embankment monitoring technology to observe the changes inside the levee was reviewed. The optical fiber was buried in a large-scale levee, and the temporal and spatial temperature changes were measured according to the water level changes in the reservoir. As the water level of the reservoir increased, the temperature of the embankment slope decreased, and as the infiltration progressed, a change in the spatial location of the temperature change was detected. The temperature change due to embankment infiltration varied depending on the time of the infiltration progress, and the change assumed to be the seepage line could be observed. This study has demonstrated that information about temperature changes inside the levee can be interpreted as the information on the locations that are judged to be relatively vulnerable, investigating the changes in the condition inside the levee.

Changes in Greenhouse Temperature and Solar Radiation by Fogging and Shading During Hydroponics in Summer Season (여름철 수경재배 시 포그 분무와 차광에 의한 하우스 내부 온도 및 광 환경 변화)

  • Lim, Mi Young;Jeong, Ho Jeong;Roh, Mi Young;Choi, Gyeong Lee;Kim, So Hui;Choi, Su Hyun
    • Journal of Bio-Environment Control
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    • v.30 no.3
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    • pp.230-236
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    • 2021
  • Changes in greenhouse temperature and solar radiation due to fogging and shading were monitored during hydroponics in high temperature in summer season. Experiment 1 consists of four treatments, namely, Control, Shading, Fogging, and Fogging + Shading based on sunny days August. For Experiment 2, two melon cultivars of 'Dalgona' and 'Sopoong gaza' were cultivated in summer of 2020 using Fogging + Shading with the best result for temperature reduction effect from Experiment 1. As a result of Experiment 1, the effect of Fogging + Shading on temperature reduction was apparent where the inside was about 4℃ (as the lowest temperature) lower than the outside. Fogging + Shading showed the inside was 2-4℃ lower than the outside, and Fogging or Shading treatments had little difference, compared to the Control where the internal temperature of greenhouse was 3-4℃ higher than the external. For solar radiation changes between greenhouse inside and outside, the internal change was in a similar pattern between Fogging and Control, and between Shading and Fogging + Shading, respectively. In case of the Fogging treatment (similar with the Control) only the effect of solar radiation reduction as influenced by plastic greenhouse covering materials was examined. The Fogging + Shading had a very similar change in solar radiation to the Shading. Based on these results, Experiment 2 was conducted in summer of 2020 and resulted in a temperature reduction effect of about 3.9℃ according as the inside of air-conditioned greenhouse was kept 32.4℃ when the maximum temperature of the outside reached 36.3℃ in August during the cultivation period. In addition, the quality of melon fruit was good (1.3-1.5 kg of fruit weight, 12.6-13.3 of soluble solids content. In the case of using Fogging + Shading cooling treatment, it can bring about the effect of reducing the temperature during the high temperature in summer, and normal growth of melon and fruit harvesting were possible.

A study on sensing for abnormality of BUS BAR in motor control center (모터컨트롤센터의 BUS BAR 이상 감지를 위한 실험적 연구)

  • Kim, Sung-Dae
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.12
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    • pp.5838-5842
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    • 2011
  • The study mainly aims to explore how deterioration of motor control center, namely MCC, and vibration put impact on temperature of bus bar as well as temperature change of bolt-nut joint. The motor control center consists of three internal parts (i.e. R, S, T) which are for motor operation of high capacity. Two dimensional mechanism for measuring temperature was designed and manufactured with infrared temperature sensor. Installing it in inner motor control center enabled researcher to monitor temperature of bus bar as well as amount of change of current regularly. Temperature change of bus bar according to load was primarily examined based on a bolted joint in the experiment. It was clearly verified that temperature change of bus bar was proportional to current consumption. Therefore, installing non-contact two dimensional mechanism for measuring temperature in motor control center would be expected to prevent temperature rise owing to overload current and power outage as well as fire accident which can be triggered by poor electrical contact.

Analysis of Internal Temperature Change according to the Application of Thermal Insulation Paint and Heat Pump in Broilers (육계사의 차열 페인트 및 히트펌프 적용에 따른 내부 기온 변화 분석)

  • Jun-Seop Mun;Rack-Woo Kim;Seung-Hun Lee;Sang Min Lee;Sang Kyu Choi
    • Journal of Bio-Environment Control
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    • v.32 no.3
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    • pp.197-204
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    • 2023
  • Heat stress causes a decrease in immunity and disease occurrence in livestock, increasing mortality and impairing productivity. In particular, chickens are very vulnerable to high temperatures compared to other livestock species because their entire body is covered with feathers and sweat glands are not developed. Currently, air conditioning systems are essential in broiler houses to prevent high-air temperature damage to broilers, but conventional cooling facilities are greatly affected by the external environment, so there are limits to their use. In this study, to propose a cooling method, thermal insulation paint and a heat pump were apply in the broiler houses to evaluate the temperature reduction effect. The heat pump experiment was to analyze the cooling effect according to the change in ventilation rate and propose an appropriate. As a result of the experiment, the heat-insulating paint reduced the temperature of the broiler houses by maximum 1-2℃, and in the broiler houses where the heat pump was operated, the temperature decrease was the largest when the ventilation rate was the lowest. When the air temperature in the house is similar to or lower than the outside air temperature, it is considered to be most effective to use a heat pump while maintaining only the minimum ventilation rate.

CMOS Voltage down converter using the self temperature-compensation techniques (자동 온도 보상 기법을 이용한 CMOS 내부 전원 전압 발생기)

  • Son, Jong-Pil;Kim, Soo-Won
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.43 no.12 s.354
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    • pp.1-7
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    • 2006
  • An on chip voltage down converter (VDC) using the self temperature-compensation techniques is proposed. At a different gate bias voltage, PMOSFET shows different source to drain current characteristic according to the temperature variation. The proposed VDC can reduce its temperature dependency by the source to drain current ratio of two PMOSFET with different gate bias respectively. Proposed circuit is fabricated in Dongbu-anam $0.18{\mu}m$ CMOS process and experimental results show its temperature dependency of $-0.49mV/^{\circ}C$ and external supply dependency of 6mV/V. Total current consumption is only $1.1{\mu}A@2.5V$.

A Study on the Smoldering hazard of Rice bran dust. (쌀겨 분진의 훈소 위험성에 관한 연구)

  • 이창우;김정환;현성호
    • Fire Science and Engineering
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    • v.13 no.2
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    • pp.12-17
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    • 1999
  • We intended to investigate combustion properties of rice bran dust. Combustion properties of h rice bran dust according to size distribution and amount were measured as temperature v variation with time using spontaneous ignition apparatus. Moreover, combustion properties w with blowing or without blowing condition were checked in order to investigate combustion p properties in spontaneous ignition apparatus according to flow condition of air. A As the mass and size of rice bran dust was increased, i띠ti외 smoldering temperature was l lowered. All of combustion forms were smoldering combustion. Initial smold얹ing temperature w was slightly lower with blowing condition than without blowing condition in spontaneous i ignition apparatus, which condition made heating value high.

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Effects of Shading Rate and Method of Inside Air Temperature Change in Greenhouse (차광율 및 차광방법이 온실내부의 온도변화에 미치는 영향)

  • 이석건;이현우;김길동;이종원
    • Journal of Bio-Environment Control
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    • v.10 no.2
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    • pp.80-87
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    • 2001
  • This study was conducted to provide basic data for the design of shading facility of greenhouse. The proper distance between external shading screen and roof surface, transmissivity of shading materials, and shading effects of external and internal shadings were analyzed. About a distance of 10 cm between inclined external shading screen and roof surface was enough to guarantee the external shading effect in the greenhouse without roof vent. The inside temperature of greenhouse installed with 85% internal shading screen was lower the maximum of 4$^{\circ}C$ and mean of 2$^{\circ}C$ than that with 55% internal shading screen in both natural ventilation and no ventilation condition. The difference of soil temperature between shading and no shading greenhouse was great, but the difference by shading rate or shading method was small. The performance of external shading for controlling inside temperature down was superior to that of the internal shading. The externally inclined shading screen parallel to the roof surface of greenhouse was more effective than the externally horizontal shading screen in controlling inside temperature of greenhouse without roof vent.

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A Numerical Analysis on the Thermal Protection System Applied Phase Change Material (상변화물질을 이용한 열방어체계의 수치해석 연구)

  • Oh, Chang-Mook;Yoo, Yung-Joon;Min, Seong-Ki
    • Journal of the Korean Society of Propulsion Engineers
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    • v.16 no.4
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    • pp.80-86
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    • 2012
  • This study is for figuring out a possibility of realization of the thermal protection system(TPS) for temporary use under high temperature condition and improving a design of the future TPS. On this purpose, environmental condition of the system has been simplified: the boundary conditions consist of a internally heating surface and a externally heated surface which is simulating the external high temperature condition. Configuration of the system is simplified as a hexahedon. Melting characteristics of the phase change material(PCM) and air temperature variation of TPS with or without connector have been numerically analyzed and compared. As a result of numerical analysis, the heat from the internally heated surface could not be effectively transferred. Therefore, temperature of inner space has been increased.