• 제목/요약/키워드: Interior Temperature

검색결과 487건 처리시간 0.023초

내열성 에폭시 수지의 제작조건과 전기적 절연특성에 관한 연구 (A Study on the Dielectric Properties and Fabrication Conditions of Thermo-Setting Epoxy Resin)

  • 안영주;곽영순;조정수;최세원;이종호
    • 대한전기학회:학술대회논문집
    • /
    • 대한전기학회 1988년도 전기.전자공학 학술대회 논문집
    • /
    • pp.761-762
    • /
    • 1988
  • This paper is to investigate dielectric properties, dielectric breakdown strength, varing of interior organization and gelling point temperature as parameter of post-cure conditions of thermo-setting epoxy resin.

  • PDF

석회암 지역에 분포하는 동굴의 내부 온도 변동 특성 (Variation of Air Temperature Inside Carbonate Area Caves)

  • 김련;박영윤;이종희;최재훈;정규성;김중태;김인수
    • 헤리티지:역사와 과학
    • /
    • 제53권1호
    • /
    • pp.52-63
    • /
    • 2020
  • 이 연구는 국내 대표적인 석회 동굴인 대금굴, 온달동굴, 성류굴의 내부 온도 변동의 특성과 기온이 동굴 내부 온도에 미치는 영향을 평가하기 위하여 수행되었다. 2019년 4월 13일부터 2019년 6월 25일까지 대금굴, 온달동굴 및 성류굴의 각 세 지점에서 매시간 온도를 측정하였다. 또한, 같은 기간에 동굴 주변의 기온 자료를 기상청에서 수집하였다. 수집된 자료의 기초 통계, 시간에 따른 변동 특성, 시계열 분석을 수행하였다. 대금굴, 온달동굴 및 성류굴에서 동굴 입구, 동굴수 유입 지점, 중간 지점 순으로 온도 변화가 크게 나타났다. 연구 기간 동안에 동굴 온도는 점차 증가하는 경향을 보였다. 대금굴은 외부로부터 약 150m에 위치한 모노레일 정류장에서 온도 변화가 크게 나타났고, 중간 지점 이후부터는 거의 일정하게 유지되었다. 정류장에서는 관람객의 영향으로 인해 기온의 영향이 크게 나타나지는 않았지만, 동굴 입구에서 내부로 갈수록 기온의 영향이 점차 감소하였다. 온달동굴은 입구에서 기온의 영향으로 온도가 넓은 범위를 보였지만 내부는 거의 일정하게 유지되었다. 그러나 동굴 내 관람 구간 가장 안쪽의 동굴수가 유입되는 지점에서는 유입되는 동굴수의 수온이 동굴 온도에 영향을 주었다. 성류굴은 입구와 중간 지점에서 뚜렷한 온도 변화를 보이고 내부는 거의 일정하게 유지되었다. 입구는 기온의 영향으로 온도 변화가 나타났지만, 중간지점은 기온보다는 호수의 수온에 영향을 더 많이 받은 것으로 추정되었다. 그러나 이번 연구에서는 이를 명확하게 설명하지 못하였다. 시계열 분석 결과 모든 동굴에서 기온이 약 1시간이 지난 후에 동굴 내부 온도에 영향을 주는 것으로 평가되었다. 동굴의 규모, 내부 구조, 동굴수, 동굴 입구의 크기와 형태, 공기의 흐름, 관람객 등이 동굴의 온도에 영향을 줄 수 있으므로 동굴 온도 변동 특성을 명확하게 이해하기 위해서는 이러한 요소들도 함께 고려되어야 한다.

한국잔디식재 옥상녹화의 온도저감 및 증발산량 평가 (Assessment of Temperature Reduction and Evapotranspiration of Green Roof Planted with Zoysia japonica)

  • 김세창;이현정;박봉주
    • 한국환경과학회지
    • /
    • 제22권11호
    • /
    • pp.1443-1449
    • /
    • 2013
  • This was an experimental study to evaluate temperature reduction and evapotranspiration of extensive green roof. Three test cells with a dimension of $1.2(W){\times}1.2(D){\times}1.0(H)$ meters were built using 4-inch concrete blocks. Ten-centimeter concrete slab was installed on top of each cell. The first cell was control cell with no green roof installed. The second and third cells were covered with medium-leaf type Zoysiagrass (Zoysia japonica) above a layer of soil. Soil thickness on the second cell was 10cm and that on the third cell was 20cm. Air temperature, relative humidity and solar irradiance were measured using AWS (automatic weather system). Temperature on top surface and ceiling of the control cell and temperature on top surface, below soil and ceiling of green roof cells was measured. Evapotranspiration of the green roof cells were measured using weight changes. Compared with temperature difference on the control cell, temperature difference was greater on green roof cells. Between two green roof cells, the temperature difference was greater on the third cell with a thicker soil layer. Temperature differences below soil and on ceilings of green roof cells were found greater than those of the control cell. Between the green roof cells, there was no difference in the temperature reduction effects below soil and on ceilings based on substrate depth. In summary, green roof was found effective in temperature reduction due to evapotranspiration and shading effect.

Growth Responses and Regrowth to Low Temperature of Nine Native Moss Species

  • Gong, Gyeong Yeop;Jeong, Kyeong Jin;Lee, Sang Woo;Yun, Jae Gill
    • 인간식물환경학회지
    • /
    • 제22권6호
    • /
    • pp.575-582
    • /
    • 2019
  • Moss is used as an important material in indoor landscaping as well as outdoor landscaping. Moss is vivid green during growth and excellent in ornamental value. But when temperature drops, moss stops growth, turns brown or loses its ornamental value. In the present experiment, for the purpose of classifying native mosses according to the growth response to low temperature, the temperature of the plant growth chamber was set to 15℃/5℃ (16h/8h, day/night) and 5℃ (24h) for 8 weeks using nine native moss species. Thereafter, the temperature of the plant growth chamber was set to 20℃, and then the changes of moss block area and moss color were measured. The changes of moss block area and moss color were measured using a Photoshop program, after each moss block was photographed. As a result, Atrichum undulatum (Hedw.). Beauv., Etodon luridus (Griff.) A. Jaeger, Bachythecium plumosum (Hedw.) Schimp, Plagiomnium cuspidatum (Hedw.) T.J. Kop, and Hypnum plumaeforme Wilson showed a small decrease in moss block area at low temperature, and their recovery were the fastest at 20℃. These three species had higher green values at low temperature compared to other species, and the greenness increased rapidly at 20℃. On the other hand, Atrichum undulatum (Hedw.). Beauv., Marchantia polymorpha L., and Thuidium cymbifolium (Mitt.) A. Jaeger showed the smallest block area at low temperature and the lowest recovery even at 20℃. Their green values also decreased significantly at low temperature, and maintained low green value even at 20℃. These results showed that these three moss species are sensitive to low temperature. The remaining Myuroclada maximowiczii, Plagiomnium cuspidatum, and H. erectiusculum showed moderate responses to low temperature compared to other six species of mosses.

A novel Fabry-Perot fiber optic temperature sensor for early age hydration heat study in Portland cement concrete

  • Zou, Xiaotian;Chao, Alice;Wu, Nan;Tian, Ye;Yu, Tzu-Yang;Wang, Xingwei
    • Smart Structures and Systems
    • /
    • 제12권1호
    • /
    • pp.41-54
    • /
    • 2013
  • Concrete is known as a heterogeneous product which is composed of complex chemical composition and reaction. The development of concrete thermal effect during early age is critical on its future structural health and long term durability. When cement is mixed with water, the exothermic chemical reaction generates hydration heat, which raises the temperature within the concrete. Consequently, cracking may occur if the concrete temperature rises too high or if there is a large temperature difference between the interior and the exterior of concrete structures during early age hydration. This paper describes the contribution of novel Fabry-Perot (FP) fiber optic temperature sensors to investigate the thermal effects of concrete hydration process. Concrete specimens were manufactured under various water-to-cement (w/c) ratios from 0.40 to 0.60. During the first 24 hours of concreting, two FP fiber optic temperature sensors were inserted into concrete specimens with the protection of copper tubing to monitor the surface and core temperature change. The experimental results revealed effects of w/c ratios on surface and core temperature developments during early age hydration, as well as demonstrating that FP fiber optic sensors are capable of capturing temperature variation in the concrete with reliable performance. Temperature profiles are used for calculating the apparent activation energy ($E_a$) and the heat of hydration (H(t)) of concrete, which can help us to better understand cement hydration.

이중외피 건물의 개구부 및 난방설비 제어를 위한 인공지능망의 적용 (Application of Artificial Neural Network for Optimum Controls of Windows and Heating Systems of Double-Skinned Buildings)

  • 문진우;김상민;김수영
    • 설비공학논문집
    • /
    • 제24권8호
    • /
    • pp.627-635
    • /
    • 2012
  • This study aims at developing an artificial neural network(ANN)-based predictive and adaptive temperature control method to control the openings at internal and external skins, and heating systems used in a building with double skin envelope. Based on the predicted indoor temperature, the control logic determined opening conditions of air inlets and outlets, and the operation of the heating systems. The optimization process of the initial ANN model was conducted to determine the optimal structure and learning methods followed by the performance tests by the comparison with the actual data measured from the existing double skin envelope. The analysis proved the prediction accuracy and the adaptability of the ANN model in terms of Root Mean Square and Mean Square Errors. The analysis results implied that the proposed ANN-based temperature control logic had potentials to be applied for the temperature control in the double skin envelope buildings.

세라믹 촉매 담체의 내구 설계 기준에 대한 실험 및 수치해석의 비교 (Comparison of Experimental and Numerical Analysis for Durability Design Criteria in Ceramic Catalyst Substrate)

  • 백석흠;조석수
    • 한국정밀공학회지
    • /
    • 제27권9호
    • /
    • pp.58-66
    • /
    • 2010
  • This study examines thermal safety on three-way catalyst that dominates 70 % among whole exhaust gas purification device in 2003. Three-way catalyst durability in the Korea requires 5 years/80,000 km in 1988 but require 10 years/120,000 km after 2002. Three-way catalyst durability in the USA requires 7 years/120,000 km but require 10 years/160,000 km after 2004. Three-way catalyst maintains high temperature in interior domain but maintains low temperature on outside surface. Therefore this device shows tensile stress on outside surface. Temperature distribution of three-way catalyst was acquired by thermal flow analysis for predicted thermal flow parameter. Thermal stress analysis for three-way catalysis was performed based on this temperature distribution. Thermal safety of three-way catalyst was estimated by power law dynamic fatigue life estimation and strength reduction methods for thermal stress.

삼원 촉매의 열적 내구 성능 평가 (A Estimation of Thermal Fatigue Performance in Three-way Catalyst)

  • 이성룡;조석수
    • 한국산학기술학회논문지
    • /
    • 제14권1호
    • /
    • pp.13-19
    • /
    • 2013
  • 국내 승용차용 삼원촉매의 경우 열적 내구성을 만족시키지 못하고 조기 파손되는 사례가 증가하고 있다. 이것은 차량의 배기가스 정화장치의 신뢰성에 치명적 손상을 유발시키므로 삼원촉매의 내구성 평가 모델을 파악할 필요가 있다. 따라서 본 연구에서는 세라믹 모노리스 담체에서 발생되는 열응력을 구한 뒤 강도저하계수모델과 파손확률을 기초로 삼원촉매의 열적 내구성을 평가하였다.

Strainless steel strip 광휘어닐링로 내의 열전달 해석 (A Numerical Analysis of Heat Transfer in Bright Annealing Furnace of Stainless Steel Strip)

  • 유흥선;정연태;장병록
    • 열처리공학회지
    • /
    • 제22권4호
    • /
    • pp.228-233
    • /
    • 2009
  • In order to predict the temperature distribution of stainless steel strip in Bright Annealing (BA) furnace, we performed the analysis of heat transfer and fluid flow using STAR-CCM+. The analysis model included unsteady fluid flow, heat transfer with radiation and moving grid. Two kinds of radiative properties, emissivity and reflectivity, were applied to the stainless steel strip, one is constant and the other is variable with time. As we call, the BA furnaces of stainless steel strip have two different types, muffle and no-muffle. The using of muffle type has been faced with some problems such as rising in material price and shortening of life cycle, etc. So the development of no-muffle type BA furnace is very important in order to save energy cost, lower environmental load and increase the productivity. The designed (or expected) temperature of stainless steel strip coming out of BA furnace was about $1065^{\circ}C$ while the environment temperature maintains around $1100^{\circ}C$. The result of our calculation was very close (or similar) to design temperature, and the application of radiative properties variable with time produced more accurate result than applying constant ones.