• 제목/요약/키워드: Thermal Storage Wall

검색결과 70건 처리시간 0.028초

축열과 채광조절을 겸한 자연형 태양열 수벽시스템의 집열방식별 성능실험 (Experiment on measures of heat collection for passive solar water wall systems that provide heat storage and natural lighting control)

  • 오영훈;최지은;이철성;윤종호
    • KIEAE Journal
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    • 제16권4호
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    • pp.63-69
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    • 2016
  • Purpose: This preliminary study investigated a potential of the water wall systems that provide heat storage and natural lighting control simultaneously. Method: In order for transparency of the water wall to be controlled, the study first proposed two measures: to adjust transparency of the water wall; to control transparency of water wall surface. The performance of two measures then was verified and compared by experiments. In addition, a trade-off between heat collect and heat storage resulting from using additive for adjusting transparency was investigated. Result: The experiment showed that the two measures are similar in performance. The investigation of trade-off relation showed the additive should have the same heat storage as the water to prevent decrease in thermal performance of the water wall. As an economical measure to control transparency of the water wall, this study suggested a measure of secondary heat transfer systems using shading device that first absorbs solar radiation and then transfers heat to the water wall. The experiment show that performance of the proposed measure is similar to controlling transparency of water wall surface. In conclusion, it is expected that the performance of the water wall can be economically maximized by using the proposed mean in terms of heating, cooling and lighting energy saving.

겨울철 난방시 탑상형 아파트 구조체의 축·방열 특성에 대한 현장측정 연구 (A Field Measurement Study on Heat Storage/Emission Characteristics of Tower Type Apartment Structures in Winter Season)

  • 장현재;조근제
    • 설비공학논문집
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    • 제24권2호
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    • pp.190-195
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    • 2012
  • In this study, as a complementary study of the former study on indoor thermal environment in a tower type apartment house at tropical nights, a field measurement was conducted in winter season. Mainly, characteristics of heat storage and heat emission in apartment structures, in this study, were investigated. As results, indoor air temperature was changed in the range of $22.5^{\circ}C{\pm}1.0^{\circ}C$, and followed not the change of outdoor air temperature but the changed pattern of floor surface temperature. Wall surface temperature was unresponsive to the change of floor surface temperature compared with the change of indoor air temperature because wall structure was composed of concrete which has large heat capacity, and was changed in the range of $22.3^{\circ}C{\pm}0.6^{\circ}C$. Heat was stored continuously into the structures of wall and ceiling through the measurement term. and this means that a large heat capacity of the apartment structure acts as a disadvantage in winter season, too. As a total review of the study with the former study, a large heat capacity of the apartment structure acts against indoor thermal comfort in winter season as well as in summer season.

저온용 저장탱크의 보온계산을 위한 Sol-Air 온도에 관한 연구 (A Study of the Sol-Air Temperature for the Calculation of Insulation in Cryogenic Storage Tank)

  • 손병진;맹주성;홍성민
    • 대한설비공학회지:설비저널
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    • 제14권2호
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    • pp.98-107
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    • 1985
  • In this thesis, the Sol-Air temperature distribution for the side-wall of a cylindrical cryogenic storage tank made of nonhomogenious composite layer was studied, in order to calculate the thermal load by Newton's cooling law, when the solar radiation was applied upon the side wall. In the analysis, the atmospheric slab was assumed to be horizontal and infinitely large, and the Sol -Air temperature, which was found by the Net- Radiation method considering the longwave radiation wi th surroundings, was used for boundary condition. Energy equation and boundary conditions were normalized by the defined reference- temperature, and solved. The solutions were developed by the Fourier cosine series. Then, the Sol-Air temperature distribution for the side-wall of LNG storage tank was calculated.

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충전층을 이용한 암반공동 열에너지저장시스템의 열에너지 수지 분석 (Thermal Energy Balance Analysis of a Packed Bed for Rock Cavern Thermal Energy Storage)

  • 박정욱;류동우;박도현;최병희;신중호;선우춘
    • 터널과지하공간
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    • 제23권3호
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    • pp.241-259
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    • 2013
  • 충전층을 이용한 열에너지저장 시스템은 자갈이나 콘크리트와 같은 열저장매질과 공기나 오일과 같은 열전달유체를 이용하여 현열에너지를 저장하는 방식으로서, 저장매질의 경제성과 화학적 안정성, 시스템 구축의 용이성 등 많은 장점이 갖는다. 본 연구에서는 충전층을 이용한 열에너지저장 기술에 대하여 개략적으로 소개하고, 이러한 열에너지저장소의 에너지 수지와 성능 효율을 분석하기 위한 수치 모델을 제시하였다. 유한차분법을 이용하여 저장소 내 1차원 비정상 열전달 해석을 수행하였으며, 반복적인 주입과 토출에 따른 충전층의 온도분포와 외부로의 손실 에너지를 계산하였다. 해석모델은 AA-CAES(advanced adiabatic compressed air energy storage)와 연계된 고온의 열에너지저장시스템으로 저장소가 지하암반 내에 위치하는 경우와 지상에 위치하는 경우를 모사하고, 성능효율 및 열손실률을 비교 분석하였다.

Sensitivity Analysis of Thermal Parameters Affecting the Peak Cladding Temperature of Fuel Assembly

  • Ju-Chan Lee;Doyun Kim;Seung-Hwan Yu;Sungho Ko
    • 방사성폐기물학회지
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    • 제21권3호
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    • pp.359-370
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    • 2023
  • The thermal integrity of spent nuclear fuels has to be maintained during their long-term dry storage. The detailed temperature distributions of spent fuel assemblies are essential for evaluating the integrity of their dry storage systems. In this study, a subchannel analysis model was developed for a canister of a single fuel assembly using the COBRA-SFS code. The thermal parameters affecting the peak cladding temperature (PCT) of the spent fuel assembly were identified, and sensitivity analyses were performed based on these parameters. The subchannel analysis results indicated the presence of a recirculation flow, based on natural convection, between the fuel assembly and downcomer region. The sensitivity analysis of the thermal parameters indicated that the PCT was affected by the emissivity of the fuel cladding and basket, convective heat transfer coefficient, and thermal conductivity of the fluid. However, the effects of the wall friction factor of the canister, form loss coefficient of the grid spacers, and thermal conductivities of the solid materials, on the PCT were predominantly ignored.

LNG 저장탱크용 벽체 멤브레인 개발 (The Development of Wall Membrane for LNG Storage Tank)

  • 오병택;홍성호;윤인수;김영균;서흥석
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집A
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    • pp.907-912
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    • 2001
  • KOGAS had developed the Ring-knot membrane for LNG storage tank. But we found that some modifications were needed in using the Ring-knot membrane for the commercial LNG storage tanks. So, both analytical and experimental studies have been performed to investigate the strength of the new membrane and the reaction force at the anchor point. Using nonlinear FEM code and experiments, the stress analysis of the new corrugated membrane shapes subject to the cryogenic liquid pressure and thermal loading are performed to ensure the stability and fatigue strength of the new membrane. This paper reports on the results of investigations into this new type of membrane.

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LNG 지하 저장탱크 벽체의 비선형 열응력 해석 (Nonlinear Thermal Stress Analysis of In-ground LNG Storage Tank)

  • 곽효경;송종영;이광모
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2000년도 봄 학술발표회논문집
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    • pp.111-118
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    • 2000
  • Concrete cracking due to the temperature gradient across the wall, caused by the difference in temperature between cryogenic liquid natural gas stored and surrounding environment of in-ground LNG storage tank, is investigated in this study. Crack propagation of concrete LNG tank is effectively simulated by using a layered degenerated shell element. In addition, material nonlinearity is taken into consideration on the basis of the nonlinear elastic-orthotropic model. Finally, numerical analysis for a real LNG storage tank is conducted with the objective to verify the efficiency of the introduced model.

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고온을 받는 유황저장탱크의 열팽창에 의한 앵커볼트 영향에 관한 연구 (Study on Effect of Anchor Bolt by Thermal Expansion of Sulfur Storage Tank under High Temperature)

  • 정욱환;김정수;김태민;김문겸
    • 한국전산구조공학회논문집
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    • 제29권5호
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    • pp.483-490
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    • 2016
  • 플랜트의 유황 저장 탱크는 강재로 구성되며, 탱크 저면은 앵커볼트에 의해 Ring Wall 형상의 콘크리트 기초와 연결된다. 탱크 내 유황이 내부 열원에 의해 고온상태를 유지하기 때문에, 유황 저장 탱크는 상온의 유체를 저장하는 다른 탱크에 비해 큰 체적팽창을 겪게 된다. 일반적으로 탱크 기초의 구조설계는 기초의 내외부의 온도차를 하중으로 적용한 구조해석이 수행되는데, 이 방법은 탱크의 열팽창 특성이 앵커볼트에 의해 집중하중 형태로 콘크리트 기초에 전달되는 현상을 고려할 수 없다. 이는 온도하중의 영향을 과소평가하게 되며, 앵커볼트에 인접한 콘크리트의 균열을 야기한다. 본 연구는 앵커볼트에 의한 온도 하중전달 메커니즘을 고려한 하중 평가식을 제안함으로써, 콘크리트 기초에 작용하는 하중을 보다 합리적으로 결정하고자 한다. 이를 위해 탱크 바닥판과 앵커볼트가 포함된 유한요소모델을 이용해 앵커볼트 개수 증감에 따른 온도하중의 변화를 분석하였으며, 분석결과를 이론해와 결합해 앵커볼트에 의해 전달되는 하중을 평가할 수 있는 명시적인 형태로 해를 제시하였다. 제안된 식의 유효성을 확인하기 위해 실제 플랜트 현장의 유황 저장 탱크 설계에 적용하였으며, 실무적으로 사용 가능함을 보였다.

커튼월 내부 공기층의 BACK PANEL 표면온도에 관한 연구 (A Study on the Change of Surface Temperature of Back Panel by Variation of the Air-Space Distances on the Inside of Curtain Wall)

  • 이덕형;손원득;최현상;최영식
    • 한국산업융합학회 논문집
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    • 제14권3호
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    • pp.87-93
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    • 2011
  • When applying back panel(this material is aluminum complex panel coated with fire resistance substances) for curtain wall, solar radiation and heat storage of indoor air occurs to result in thermal warpage for back panel. The purpose of this analysis is to find out the cause of thermal warpage and come up with a solution to prevent changes of back panel and reduce elements that bring negative visual elements. Also to solve this problem analyse that case to reduce heat transfer by inserting additional material and cases to increase air space distance.

단열을 고려한 초저온 액체질소 저장 탱크의 지지대 용접부 설계 (Weldment Design of Supports for Cryogenic Storage Tank considering Insulation)

  • 최동준;오정택;정재현;조종래
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권1호
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    • pp.131-136
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    • 2008
  • The double-walled steel vessel with powder insulation in the space between the walls is used to minimize heat transfer by radiation and conduction in cryogenic storage tank. The vacuum required the insulation is much less extreme than with high-vacuum or multilayer insulations. The solid supports are used to bear the weight of the inner container. Thermal and structural analysis of the tank have been carried out to study the effect of vacuum and weldment geometry of the internal supports. Heat flux in wall is increased with increasing of thermal conductivity of perlite. Heat flux and stress of support is not affected by weldment geometry.