• 제목/요약/키워드: Heat Insulation

검색결과 887건 처리시간 0.028초

건축용 합성 단열재의 연소특성에 관한 연구 (A Study on the Combustion Characteristics of Synthetic Insulation for Building)

  • 권현석;이시영;김종북;윤명오
    • 한국화재소방학회논문지
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    • 제32권2호
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    • pp.30-37
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    • 2018
  • 본 연구는 주택이나 창고 등의 건축용 합성 단열재의 연소특성을 분석한 것으로 콘칼로리미터 및 SEM을 활용해 난연 스티로폼, 일반 스티로폼, 우레탄, 석고보드 등 4종의 재료별 연소특성을 실험 및 분석하였다. 시험결과 각 재료별 착화특성으로는 상기 단열재에 대한 착화시간(TTI)은 27 s~43 s로 나타났으며, 이중 난연 스티로폼은 TTI이 가장 낮은 27 s에 착화되었다가 28 s에 소멸됨을 보였다. 또한 각 재료들의 최대열방출율(peak HRR)과 평균열방출율(mean HRR)의 크기는 우레탄>석고보드>난연 스티로폼>일반 스티로폼으로 나타났으며, 총열방출량(Total Heat Release Rate, THR)은 우레탄>난연 스티로폼>일반 스티로폼>석고보드 순으로 나타났다. 또한 총연기방출량(Total smoke release, $m^2/m^2$)은 난연 스티로폼에서 가장 많은 $30.798m^2/m^2$을 보였다. 일반 스티로폼의 CO 방출농도는 0.275 kg/kg, $CO_2$ 방출농도는 12.807 kg/kg값이 나타났다. 잔유물은 위 4가지 재료 중 석고보드에서 가장 많은 0.029 g을 보였다.

플라스틱하우스의 보온피복 재료 및 방법이 보온력과 토마토의 생육 및 수량에 미치는 영향 (Effects of Covering Materials and Methods on Heat Insulation of a Plastic Greenhouse and Growth and Yield of Tomato)

  • 권준국;이재한;강남준;강경희;최영하
    • 생물환경조절학회지
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    • 제13권4호
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    • pp.251-257
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    • 2004
  • 본 연구는 몇가지 보온피복 재료 및 방법이 플라스틱하우스의 보온력과 토마토의 생육과 수량에 미치는 영향을 구명하고자 수행하였다. 다겹보온덮개(카시미론 8온스 1겹+폴리폼(1 mm) 4겹 +부직포 2겹+폴리프로필렌 1겹+흑색네트차광망 1겹)를 이중하우스 구조의 외면에 피복한 것이 이중하우스 구조의 내부에 피복한 것에 비해 하우스내 야간의 기온과 지온은 약 $ 낮았으나 광투과율이 높아서 토마토 상품수량이 약 $2\%$ 증가하였다. 그리고 다곁보온덮개를 피복하지 않고 이중하우스 구조의 내부에 EVA커튼을 설치한 것에 비해서는 하우스내 야간기온이 $3^{\circ}C$ 높게 유지되어 수확기가 약 1일 빨라지고 토마토 과실도$ 19\%$ 증수하였다. 한편 이중하우스 외면에 다겹보온덮개를 피복하고 내부에 보온커튼(알미늄+직물)을 설치한 것은 다겹보온 덮개를 피복하고 보온커튼을 설치하지 않은 것과 이중하우스에 다겹보온덮개를 피복하지 않고 EVA커튼만 설치한 것에 비해 하우스내 기온이 각각 $2.2^{\circ}C$$4.5^{\circ}C$ 높게 유지되었으며 이러한 보온효과에 의해 토마토 과실수량도 각각 $18\%$$37\%$ 가되었다. 따라서 본 연구결과는 남부지역에서 저온기에 다겹보온덮개를 이중 플라스틱하우스 구조의 외면에 피복하고 내부에 보온성이 높은 커튼자재를 사용하면 가온을 하지 않거나 최소한의 난방비로 토마토를 재배할 수 있음을 시사해 주었다.

세라믹스 처리된 나일론 직물의 원적외선 방사성능과 보온효과 (Far IR Emission and Thermal Properties of Ceramics Coated Nylon Fabrics)

  • 여숙영;이동화;김은애
    • 한국의류학회지
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    • 제22권4호
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    • pp.515-524
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    • 1998
  • The purpose of this study was to evaluate the thermal properties of ceramics coated nylon fabrics by determining far infra-red emissive properties, heat storage/release and thermal insulation. Far IR emissivity and emissive power were measured for 7~ 140n at 50'C . Three types of ceramics such as cordierite with $\alpha$-alumina, a-alumina with titanium oxide and a-alumina were chosen as specimens. Cordierite with $\alpha$-alumina was chosen to treat on the fabrics due to the good emissive properties on the fabrics. Add-ons and contents of ceramics were analyzed for ceramics and/or polyurethane coated fabrics. For the physical properties, thickness and air permeability were measured. Results showed a difference in the emissive property between ceramics themselves and ceramics coated fabrics. In the ambient temperature, there was no diffenence in emissivity among the different ceramics contents. Thermography showed that when the fabric was heated with the light, surface mean temperatures of fabrics were increased as the contents of ceramics increased, and the heat storage property was confirmed. In case of same thickness and air permeability, the thermal insulation value increased as the contents of ceramics increased because of increasing heat storage and Far IR reflectivity. So there were absorption and heat storage of ceramics for Far IR from human and reflection to human between ceramics coated fabrics and human.

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사무용 건물에서 전열교환 환기시스템과 일반공조기의 냉방에너지 비교분석에 관한 연구 (A Comparative Analysis on Cooling Energy of Heat Recovery Ventilator and Air Handling Unit in the Office Building)

  • 장지훈;김현수;어진선;이승복;김병선
    • KIEAE Journal
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    • 제16권6호
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    • pp.123-128
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    • 2016
  • Purpose: In order to save the energy consumption of buildings, buildings have been constructed with high performance insulation or airtightness. However, high performance insulation or air tightness has led to a poor indoor air quality. Therefore, HRV(Heat Recovery Ventilator) has received attention to save the energy consumption and insure a good air quality. Because existing research is almost about the performance of HRV in residential buildings, This study analyzed the effect of HRV on cooling energy consumption in commercial office building. Method: This study was proceeded at commercial office building in In-cheon. In order to evaluate the energy consumption of HRV, this study proposed two methods: estimating energy consumption of the room installed AHU(Air Handling Unit) system; estimating energy consumption of the room installed HRV system. Therefore, comparison of two methods was proceeded to evaluate energy performance of each method. Result: As the result of comparison between rooms installed AHU and HRV, the experiment showed that energy consumption of the room installed HRV system is about 22% less than the room of AHU system. This conclusion is considered because the room installed HRV system have maintained temperature well at set point temperature $26^{\circ}C$.

실측실험과 3차원 정상상태 열전달 해석을 통한 발열유리의 온도 및 전열량 분석 (Analysis of Temperature and Total Heat of Heated Glass through Experimental Measurement and Three-Dimensional Steady-State Heat Transfer Analysis)

  • 이도형;윤종호;오명환
    • KIEAE Journal
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    • 제15권1호
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    • pp.111-116
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    • 2015
  • Heat loss from windows and condensation occuring on its surface due to its lower insulation value causes much discomfort to occupants. In this study, Heated glass was used to make a basic study on prevention of condensation on glass surface for its heating functionality through experimental measurement and simulation analysis of total heat flux on the interior and exterior surface of glass. Error between experimental results and three dimensional steady-state heat transfer analysis were caused firstly, beacuse in the experimental chambers, cold chamber and steady temperature and humidity chamber, air temperature setting was not constant but rather ON/OFF control, and secondly, due to error rate in heat flux meter due to heat flux direction even in stable conditions.

Analysis of the Efficiency of Improved Bubble Sheet for Heat Curing in Cold Weather

  • Choi, Hyun-Kyu;Son, Myung-Sik;Han, Cheon-Goo
    • 한국건축시공학회지
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    • 제13권1호
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    • pp.38-47
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    • 2013
  • When building with concrete in cold weather, an insulation method of heat curing must be determined, and a holistic curing plan that considers the characteristics of structures, the heat loss coefficient of a curing sheet, the joint condition of the curing materials and the quantity of heat produced by a heating apparatus is an essential prerequisite for protection against early frost damage. But on a number of national construction sites, there have been serious problems in cold weather concreting due to the unreliability of the information obtained from practical experience. In the construction field in Japan, there is a specification for heat curing prepared by Japanese Architectural Society, which provides an equation for calculating heat quantity. It is also necessary to adopt a detailed specification for a standard heat curing method that is applicable to all national construction sites. In this study, the effect of bubble sheets on the economic feasibility of cold weather concrete is investigated through a comparison with the blue sheets commonly prescribed in national construction sites. In conclusion, this study found that bubble sheets had the effect of reducing the cost of curing materials and the fuel cost consumed by a heating apparatus, compared to the use of blue sheets.

이중창 공기층의 최적두께에 관한 수치해석 (Numerical Analysis of Optimum Air-Layer Thickness in a Double Glazing Window)

  • 황호준;최형권
    • 설비공학논문집
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    • 제17권2호
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    • pp.191-199
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    • 2005
  • Double pane window system, in which an air layer with a finite width is filled between glasses, is used in order to increase the insulation efficiency. In the present study, a conjugate heat transfer problem of a double pane window system has been studied numerically in order to investigate the effect of an air layer on the heat transmittance of the double pane window system using a finite element method based on P2P1 basis function. In this study on the conjugate heat transfer of a double pane window system, numerically predicted Nusselt numbers with or without conjugate heat transfer effect have been compared with an available existing empirical formula. It has been found that a Nusselt number from an existing formula for an enclosed space is different from that obtained from the present conjugate heat transfer analysis mainly due to the effects of a very high aspect ratio and conjugate heat transfer mechanism. Furthermore, it has been shown that the numerically estimated optimal air thickness of the double pane window system with conjugate heat transfer effect is a little bit longer than that obtained without considering conjugate heat transfer effect.

Bonding of nano-modified concrete with steel under freezing temperatures using different protection methods

  • Yasien, A.M.;Bassuoni, M.T.
    • Computers and Concrete
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    • 제26권3호
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    • pp.257-273
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    • 2020
  • Concrete bond strength with steel re-bars depends on multiple factors including concrete-steel interface and mechanical properties of concrete. However, the hydration development of cementitious paste, and in turn the mechanical properties of concrete, are negatively affected by cold weather. This study aimed at exploring the concrete-steel bonding behavior in concrete cast and cured under freezing temperatures. Three concrete mixtures were cast and cured at -10 and -20℃. The mixtures were protected using conventional insulation blankets and a hybrid system consisting of insulation blankets and phase change materials. The mixtures comprised General Use cement, fly ash (20%), nano-silica (6%) and calcium nitrate-nitrite as a cold weather admixture system. The mixtures were tested in terms of internal temperature, compressive, tensile strengths, and modulus of elasticity. In addition, the bond strength between concrete and steel re-bars were evaluated by a pull-out test, while the quality of the interface between concrete and steel was assessed by thermal and microscopy studies. In addition, the internal heat evolution and force-slip relationship were modeled based on energy conservation and stress-strain relationships, respectively using three-dimensional (3D) finite-element software. The results showed the reliability of the proposed models to accurately predict concrete heat evolution as well as bond strength relative to experimental data. The hybrid protection system and nano-modified concrete mixtures produced good quality concrete-steel interface with adequate bond strength, without need for heating operations before casting and during curing under freezing temperatures down to -20℃.

자연환기가 가능한 서울시 공동주택의 하절기 실내 온열 쾌적성 평가 (Evaluation of the Indoor Thermal Comfort in Naturally Ventilated Apartment During Summer)

  • 이승재;정창헌;황석호;김태연;이승복
    • KIEAE Journal
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    • 제10권4호
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    • pp.59-66
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    • 2010
  • Natural ventilation is major strategy of 'sustainable building'. It aims to supply fresh air to the indoor, and to remove heat from the indoor during summer. In the latter point of view, natural ventilation can be grouped into two main strategies, daytime ventilation and night cooing. If we take advantage of these two natural ventilation strategies, indoor thermal comfort can be significantly improved. This study focused on grasping the current situation and problem of indoor thermal comfort of the naturally ventilated residential buildings to seek for direction of later studies. Additionally, thermal comfort of residence where the interior blind and exterior insulation were applied was analyzed. It was analyzed that the percentage of the time which satisfy the indoor acceptable operative temperature during summer was 90 ~ 95% and the heat control performance of natural ventilation has a limitation. When the interior blind and exterior insulation were applied, indoor thermal comfort was significantly improved. However, it still need more improvement.