• 제목/요약/키워드: Thermal chamber

검색결과 718건 처리시간 0.025초

Kevlar/EPDM 내열고무의 압력 변화에 따른 열반응 비교 (A Comparison with Thermal Reaction Characteristic of Kevlar/EPDM Internal Insulator by Change of Chamber Pressure)

  • 강윤구;박종호
    • 한국추진공학회지
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    • 제20권3호
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    • pp.71-77
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    • 2016
  • 내열고무 성능평가 모사시험장치를 이용하여 고체로켓추진기관 연소관의 내부단열을 위해 사용하는 Kevlar/EPDM 내열고무의 압력변화에 따른 열반응 특성을 비교하였다. 연소실 유효평균압력 및 유효연소시간은 각각 1,030 psi, 35.86 s 및 1,406 psi, 36.63 s이었다. 시험후 시편의 표면 상태는 차이가 없었으며, 열파괴두께는 각각 4.10 mm 및 4.18 mm이었다. 열반응 상수 ${\xi}$, ${\zeta}$ 및 열파괴 속도 $V_{TD}$는 각각 0.7839, -0.1646, 0.1328 및 0.7836, -0.1730, 0.1346이었다. Kevlar/EPDM 내열고무의 열반응 특성은 압력변화에 따른 차이를 보이지 않았다.

복사난방패널 방열량실험의 제어오차요인 분석 (Analysis of Control Error Factors of a Thermal Output Experiment for Radiant Heating Panels)

  • 신대욱
    • 토지주택연구
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    • 제9권4호
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    • pp.33-42
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    • 2018
  • As a radiant heating panel gets more popularity, the need to study on evaluation method of thermal output of the panel also becomes increasing. Generally, the chamber using method is applied to evaluate the thermal output through an experiment. However, the chamber using method cannot be used due to the limitations on space and cost. EN1264 addresses the test equipment to evaluate the thermal output by using simpler experimental setup, and introduces application method in detail. However, there is not enough description of control methods to meet the experiment condition, and it is difficult to meet this when practical experiment. Therefore, this paper analysed the control error factors of when the thermal output experiment is performed. When EN1264 method is applied to evaluate the thermal output of the radiant floor heating panel, the error factor which is caused by the characteristic of test equipment cannot be removed by the control methods of chamber using method. In addition, the error factor can be occurred at the element which is located out of the control system. These possible error factors are defined as the characteristic error factors.

Analysis of the thermal management of a high power LED package with a heat pipe

  • Kim, Jong-Soo;Kim, Eun-Pil
    • Journal of Advanced Marine Engineering and Technology
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    • 제40권2호
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    • pp.96-101
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    • 2016
  • The thermal management of high-power LED components in an assembly structure is crucial for the stable operation and proper luminous function. This study employs numerical tools to determine the optimum thermal design in LEDs with a heat sink consisting of a crevice-type vapor-chamber heat pipe. The effects of the MCPCB are investigated in terms of the substrate thicknesses on which the LEDs are mounted. Further, different placement configurations in a system module are considered. This study found that for a confined area, a power of 40 W/LED is applicable to a high-power package. Furthermore, the thermal conductivity of dielectric layer materials should ideally be greater than 0.9 W/m.K. The temperature conditions of the vapor chamber in a heat pipe greatly affect the thermal performance of the system. At an offset distance of 9.0 mm and a $2^{\circ}C$ increase in the temperature of the heat pipe, the resulting maximum temperature increase is approximately $1.9^{\circ}C$ for each heat dissipation temperature. Finally, at a thermal conductivity of 0.3 W/m.K, it was found that the total thermal resistance changes dramatically. Above 1.2 W/m.K, the resistance change reduces exponentially.

시험 데이터 기반 소형 열진공챔버 시스템 식별에 관한 연구 (A Study on System Identification of Small Thermal Vacuum Chamber Based on Test Data)

  • 박성욱;김승균
    • 한국항공우주학회지
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    • 제49권5호
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    • pp.407-415
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    • 2021
  • 인공위성의 부품은 발사 전 지상에서의 우주 궤도환경 하에서의 성능검증이 필수적이다. 본 논문은 열진공시험을 위한 위성 부품 및 소형 열진공챔버 간의 전도, 복사, 열손실 및 내부 발열의 열환경을 고려한 모델식을 설계하였다. 최근 한국항공우주연구원에서 수행된 열진공시험 20건의 시험데이터를 이용한 시스템 식별을 수행하였다. 시험품 기능시험의 발열이 일정하지 않는 경우를 제외하고 시스템 식별의 정확성을 확인함으로써 개발된 모델식이 유효함을 검증하였다.

열환경인공기후실의 설계 (Design of a Thermal Environmental Artifical Climate Chamber)

  • 고경태;정성일;박종일;김경훈
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 1998년도 봄 학술발표회 논문집
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    • pp.285-290
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    • 1998
  • The purpose of this study is the design of the climate chamber. Experiments was performed in a climate chamber that was running Under Floor Air-Conditioning System(UFAC). The chamber has a diffuser in the middle of the floor, and exhausts on the ceiling, simulating underfloor air conditioning system.

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고속 열처리공정 시스템에서의 웨이퍼 상의 온도분포 추정 (Estimation of Temperature Distribution on Wafer Surface in Rapid Thermal Processing Systems)

  • 이석주;심영태;고택범;우광방
    • 제어로봇시스템학회논문지
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    • 제5권4호
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    • pp.481-488
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    • 1999
  • A thermal model based on the chamber geometry of the industry-standard AST SHS200MA rapid thermal processing system has been developed for the study of thermal uniformity and process repeatability thermal model combines radiation energy transfer directly from the tungsten-halogen lamps and the steady-state thermal conducting equations. Because of the difficulties of solving partial differential equation, calculation of wafer temperature was performed by using finite-difference approximation. The proposed thermal model was verified via titanium silicidation experiments. As a result, we can conclude that the thermal model show good estimation of wafer surface temperature distribution.

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열차폐 코팅이 재생냉각 챔버에 미치는 열/구조적인 영향 (Thermo-structural Effects of Thermal Barrier Coating on Regenerative Cooling Chamber)

  • 유철성;이금오;김홍집;최환석
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2009년도 제33회 추계학술대회논문집
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    • pp.421-425
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    • 2009
  • 재생냉각형 액체로켓 연소기 챔버에서 열차폐 코팅이 미치는 열/구조적인 영향에 대하여 유한요소 해석을 통하여 고찰하였다. 열차폐 코팅은 현재 개발하고 있는 연소기에 사용되는 NiCrAlY-$ZrO_2$과 향후 적용할 가능성이 있는 Ni-Cr 두 종류를 적용하였다. 열/구조해석 결과 NiCrAlY-$ZrO_2$ 코팅이 Ni-Cr 코팅에 비하여 열차폐에 의한 온도감소 효과가 크게 나타났다. 결과적으로 냉각채널의 온도와 변형 또한 NiCrAlY-$ZrO_2$ 코팅을 적용하였을 때 Ni-Cr 코팅보다 감소하였다. 외측구조물의 구조안정성에 있어서 Ni-Cr 코팅이 미치는 영향은 없었으나, NiCrAlY-$ZrO_2$ 코팅은 외측구조물의 유효응력을 감소시켜 챔버의 구조안정성을 증가시켰다.

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대형 풍력발전기 부품의 극한 환경 시험을 위한 극저온 챔버의 열유동 해석에 대한 연구 (STUDY ON THE THERMAL-FLUID ANALYSIS OF CRYOGENIC CHAMBER FOR COLD CLIMATE TEST OF LARGE WIND TURBINE PARTS)

  • 김민규;강율호;박원규
    • 한국전산유체공학회지
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    • 제20권3호
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    • pp.8-14
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    • 2015
  • More and more, spaces are decreasing which satisfy multiple requirements for wind power plants. However, areas which have excellent wind resources and are free to civil complaints occupy a large space, although they are exposed to the cryogenic environment. This study conducted a thermal-fluid analysis of a cryogenic chamber for testing large wind turbine parts exposed to the cryogenic environment. The position of supply air is placed to the upper area to compare each cooling performance for each location of various outlets in mixing ventilated conditions. The study carried out CFD analysis for the chamber both with and without a test object. For the cases without the test object, the air temperature of the upper supply and down extract type chamber was cooled faster by 5-100% than the others. However, for the cases with the test object, the object temperature of upper supply and center extract on the opposite side type chamber was cooled faster by 33-132% than the others. The cooling performance by the air inside the chamber and the test object did not show the same pattern, which implicates the need to consider the cooling performance by not only the air but also the test object in the large cryogenic chamber design for testing large parts.

실내기후실험실 단축 실험을 위한 해석 기법 (An Analysis of Shortened Experiments for Environmental Chamber)

  • 최상현;배철호;정모;경남호;서항석
    • 설비공학논문집
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    • 제12권4호
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    • pp.404-413
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    • 2000
  • Environmental chamber (EC) is an experimental facility used to analyze the characteristics of thermal response of testing objects by the artificial control of weather conditions. The EC in KIER can simulate the weather conditions by the control of temperature, humidity, and solar radiation. A two-storied testing building is located inside of EC. For the exact thermal response analysis of testing building, monthly or yearly scheduled operations are necessary. Although this long term operation gives the exact experimental data, it requires a high operational cost, long duration, and lots of manpower. Therefore it is necessary to perform the shortened experiments without sacrificing the validity of the obtained results. Since the characteristics of thermal response from the shortened experiments are different from the full time results, the analytical method to analyze the thermal response from the shortened experiments to estimate a full times results is developed in this study. The thermal response of testing building is performed using commercial software TRNSYS.

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