• 제목/요약/키워드: Thermal Buffer-zone

검색결과 6건 처리시간 0.019초

용도전환 시설의 계획 특성에 관한 연구 - 일본 동경 G-오피스 빌딩의 사례를 중심으로 - (An Analysis on Design Strategies for Building Conversion - Case Study on the G-Office Building in Japan -)

  • 이승미;강인호
    • 한국실내디자인학회:학술대회논문집
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    • 한국실내디자인학회 2008년도 춘계학술발표대회 논문집
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    • pp.290-294
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    • 2008
  • Conversion of the building can be a core strategy to activate the urban regeneration. Especially in the decayed district, the conversion or retrofit of old building can be a core catalyst to stimulate the urban regeneration. Throughout the case study, a conversion from office to dwelling, there were figured out the design strategies to respond to spatial, functional requirements. The results are as follows ; 1) The main design strategy is to articulate the space by embedding the wall, mass in the rectangular space. 2) to respond to the small size of space, the flexible, movable wall system Is adopted. This gives the selectiveness to the use of space. 3) to secure the livability of interior space, the buffer zone, a terrace space, is fully utilized. This space acts as thermal buffer zone as well as a semi-interior space.

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다층 심지층처분장 열해석에 미치는 암반손상대의 영향 (Effects of Excavation Damaged Zone on Thermal Analysis of Multi-layer Geological Repository)

  • 조원진;김진섭;김건영
    • 방사성폐기물학회지
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    • 제17권1호
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    • pp.75-94
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    • 2019
  • 현재 고려되고 있는 단층 심지층처분장 개념은 부지 소요면적이 지나치게 크기 때문에, 처분밀도를 향상시키기 위한 다층 심지층처분장 개념이 제안되고 있다. 심부암반에 건설된 다층 심지층처분장 주위에 형성된 암반손상대가 심지층처분장의 온도 분포에 미치는 영향이 분석되었다. 다층 심지층처분장의 열해석에는 완충재, 뒤채움재 및 암반에서 일어나는 재포화 현상을 고려한 열-수리 모델이 사용되었다. 암반손상대의 존재는 심지층처분장의 온도 분포에 큰 영향을 미치는 것으로 나타났으며, 손상대의 크기와 열전도도 저하 정도에 따라 복층 및 삼층 심지층처분장의 최고첨두온도를 각각 최대 $7^{\circ}C$$12^{\circ}C$까지 증가시킬 수 있다. 다층 심지층처분장의 첨두온도에 영향을 크게 미치는 인자는 암반손상대에서의 열전도도 저하이며, 처분공 주위에 형성된 암반손상대가 처분터널 주변에 형성된 암반손상대보다 첨두온도에 더 큰 영향을 미친다.

확장형 발코니 공동주택의 창호종류에 따른 결로 및 온열환경에 관한 연구 (A Study on the Condensation and Thermal Environment according to Window Systems Types Installed for a Extended-Balcony Apartment)

  • 윤종호;안영섭;김병수
    • KIEAE Journal
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    • 제7권5호
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    • pp.87-92
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    • 2007
  • As expansion of balconies at apartments has been legalized, the major function of the balconies as a thermal buffer zone is disappearing. This weakens the ability of window to insulate heat and multiplies surface condensation. Thus more and more residents require solutions to increasing surface condensation and aggravation in thermal comfort. This study intends to provide basic data by evaluating performance of triple layered Low-E windows, triple layered clear windows, double layered Low-E windows and double layered clear window used for expanded balconies and marketed within the country in terms of surface condensation and thermal environment through simulation. Results revealed that no surface condensation occurred at double layered Low-E windows and triple layered Low-E windows. Surface condensation took place at double layered clear windows and triple layered clear windows at a relative humidity of 60%. Thermal environment analysis suggested that double layered clear windows showed the most time falling into the range of comfort at $23^{\circ}C$. The figure were $22^{\circ}C$ for triple layered clear windows, $22^{\circ}C$ for double layered Low-E windows and $21^{\circ}C$ for triple layered Low-E windows.

1300℃급 가스터빈 1단 블레이드의 코팅분석을 이용한 열화평가 (Evaluation of the Degradation of a 1300℃-class Gas Turbine Blade by a Coating Analysis)

  • 송태훈;장성용;김범수;장중철
    • 대한금속재료학회지
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    • 제48권10호
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    • pp.901-906
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    • 2010
  • The first stage blade of a gas turbine was operated under a severe environment which included both $1300^{\circ}C$ hot gas and thermal stress. To obtain high efficiency, a thermal barrier coating (TBC) and an internal cooling system were used to increase the firing temperature. The TBC consists of multi-layer coatings of a ceramic outer layer (top coating) and a metallic inner layer (bond coat) between the ceramic and the substrate. The top and bond coating layer respectively act as a thermal barrier against hot gas and a buffer against the thermal stress caused by the difference in the thermal expansion coefficient between the ceramic and the substrate. Particularly, the bondcoating layer improves the resistance against oxidation and corrosion. An inter-diffusion layer is generated between the bond coat and the substrate due to the exposure at a high temperature and the diffusion phenomenon. A thickness measurement result showed that the bond coat of the suction side was thicker than that of the pressure side. The thickest inter-diffusion zone was noted at SS1 (Suction Side point 1). A chemical composition analysis of the bond coat showed aluminum depletion around the inter-diffusion layer. In this study, we evaluated the properties of the bond coat and the degradation of the coating layer used on a $1300^{\circ}C$-class gas turbine blade. Moreover, the operation temperature of the blade was estimated using the Arrhenius equation and this was compared with the result of a thermal analysis.

비진공 나노입자 코팅법을 이용한 CIGS 박막 태양전지 제조 (Fabrication of CIGS Thin Film Solar Cell by Non-Vacuum Nanoparticle Deposition Technique)

  • 안세진;김기현;윤경훈
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 춘계학술대회
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    • pp.222-224
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    • 2006
  • A non-vacuum process for $Cu(In,Ga)Se_2$ (CIGS) thin film solar cells from nanoparticle precursors was described in this work CIGS nanoparticle precursors was prepared by a low temperature colloidal route by reacting the starting materials $(CuI,\;InI_3,\;GaI_3\;and\;Na_2Se)$ in organic solvents, by which fine CIGS nanoparticles of about 20nm in diameter were obtained. The nanoparticle precursors were mixed with organic binder material for the rheology of the mixture to be adjusted for the doctor blade method. After depositing the mixture of CIGS with binder on Mo/glass substrate, the samples were preheated on the hot plate in air to evaporate remaining solvents ud to burn the organic binder material. Subsequently, the resultant (porous) CIGS/Mo/glass simple was selenized in a two-zone Rapid Thermal Process (RTP) furnace in order to get a solar ceil applicable dense CIGS absorber layer. Complete solar cell structure was obtained by depositing. The other layers including CdS buffer layer, ZnO window layer and Al electrodes by conventional methods. The resultant solar cell showed a conversion efficiency of 0.5%.

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활성화 이온빔 처리된 Sapphire기판 위에 성장시킨 MOCVD-GaN 박막의 격자변형량 측정 (Measurements of Lattice Strain in MOCVD-GaN Thin Film Grown on a Sapphire Substrate Treated by Reactive Ion Beam)

  • 김현정;김긍호
    • Applied Microscopy
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    • 제30권4호
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    • pp.337-345
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    • 2000
  • 사파이어 기판을 이용한 GaN 박막성장에서 완충층의 사용과 기판의 질화처리는 GaN 박막 내의 격자결함을 줄이는 가장 보편적인 방법이다. GaN박막의 초기 핵생성과 성장 거동을 향상시키기 위한 새로운 방법으로 사파이어 표면을 질소 활성화 이온빔으로 처리하는 방법이 시도되었다. 활성화 이온빔 처리의 결과 약 10nm두께의 비정질 $AlO_xN_y$ 층이 형성되었으며 GaN의 성장온도에서 부분적으로 결정화되어 계면 부위에 고립된 비정질 영역으로 존재하였다. 계면에 존재하는 비정질 층은 기판과 박막사이에서 발생하는 열응력을 효과적으로 감소시키는 역할이 가능하며 이를 확인하기 위하여 활성화 이온빔 처리에 의한 GaN박막 내의 격자변형량 차이를 비교하였다. GaN박막에서 얻어진 $[\bar{2}201]$ 정대축고차 Laue도형을 전산모사 도형과 비교하여 격자변형량을 측정하였다. 본 연구의 결과 활성화 이온빔 처리를 하지 않은 기판 위에 성장시킨 GaN박막의 격자변형량은 처리한 경우에 비해 6배 이상 높은 값을 가졌으며 따라서 활성화 이온빔 처리에 의해 GaN박막의 열응력은 크게 감소함을 확인하였다.

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