• 제목/요약/키워드: Window transmittance

검색결과 106건 처리시간 0.022초

저가형 열영상 시스템을 위한 실리콘 윈도우 제작 (Fabrication of Silicon Window for Low-price Thermal Imaging System)

  • 성병목;정동건;방순재;백선민;공성호
    • 센서학회지
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    • 제24권4호
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    • pp.264-269
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    • 2015
  • An infrared (IR) bolometer measures the change of resistance by absorbing incident IR radiation and generates a signal as a function of the radiation intensity. Since a bolometer requires temperature stabilization and light filtering except for the infrared rays, it is essential for the device to be packaged meeting conditions that above mentioned. Minimization of heat loss is needed in order to stabilize temperature of bolometer. Heat loss by conduction or convection requires a medium, so the heat loss will be minimized if the medium is a vacuum. Therefore, vacuum packaging for bolometer is necessary. Another important element in bolometer packaging is germanium (Ge) window, which transmits IR radiation to heat the bolometer. To ensure a complete transmittance of IR light, anti-reflection (AR) coatings are deposited on both sides of the window. Although the transmittance of Ge window is high for IR rays, it is difficult to use frequently in low-price IR bolometer because of its high price. In this paper, we fabricated IR window by utilizing silicon (Si) substrate instead of Ge in order to reduce the cost of bolometer packaging. To enhance the IR transmittance through Si substrate, it is textured using Reactive Ion Etching (RIE). The texturing process of Si substrate is performed along with the change of experimental conditions such as gas ratio, pressure, etching time and RF power.

반투과형 태양전지를 이용한 창호형 BIPV 건물의 환경성능 분석 (Comparison assessment of semi-transparent solar cell for BIPV windows)

  • 정민희
    • 토지주택연구
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    • 제11권1호
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    • pp.87-94
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    • 2020
  • To implement the planning of zero-energy buildings, their energy performance must be improved, and renewable energy applications must also be included. To accelerate the use of renewable energies in such buildings, BIPVs should be actively used in windows and on roofs. Window-type BIPVs are being developed in various forms depending on the size, composition, area ratio of the window, specification of glass, and so on. To analyze the applicability of various solar cells as window-type BIPVs, in this study, we evaluated their applicability, at the current development level, by analyzing the indoor illuminance, heat gain and heat loss; the cooling, heating, and lighting energy levels; and the generation performance of the various solar cells. To enhance the future applicability of window type BIPV, we analyze the overall energy performance of the building, according to changes in visible light transmittance and generation efficiency. The main research results are as follows. The area ratios above the standard illuminance, based on the window type and according to the VLT, were in order of low-e glazing, a-Si window, DSSC window, and c-Si window. The heat gain of the semi-transparent solar cell winodw was remarkably low. The energy consumption of buildings was highest in the order of c-Si window, DSSC window, a-Si window, and clear low-e window. However, in the case of including the power generation performance of the solar cell, the energy consumption was found to be high in order of DSSC window, c-Si window, a-Si window, and clear low-e window. In the future, if a window-type BIPV is developed, we believe that improvement in power generation performance and improvement in visible light transmittance will be needed.

근적외선 연속발진 레이저 조사에 의한 게르마늄 광학창 손상 연구 (Study of Damage in Germanium Optical Window Irradiated by a Near-infrared Continuous Wave Laser)

  • 이광현;신완순;강응철
    • 한국군사과학기술학회지
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    • 제17권1호
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    • pp.82-89
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    • 2014
  • The damage in germanium (Ge) optical window irradiated by a near-infrared continuous wave (CW) laser was studied. Laser-induced heating and melting process were surveyed, and the specific laser power and the irradiance time to melt were estimated by numerical simulation. The experiments were also carried out to investigate the macro and micro structure change on Ge window. Results showed that the surface deformation was formed by melting and resolidification process, the damaged surface had a polycrystalline phase, and the transmittance as an optical performance factor in mid-infrared region was decreased. We confirmed that an abnormal polycrystalline phase and surface deformation effect such as hillock formation and roughness increase reduced the transmittance of Ge window and were the damage mechanism of CW laser induced damage on Ge window.

덧유리 및 방풍재 적용을 통한 슬라이딩 창의 단열 및 기밀성능 개선효과 분석 (The Effect of the Attached Glazing and Windbreak on the Thermal Performance and Air Tightness of Sliding window)

  • 배민정;강재식;최경석;최현중
    • KIEAE Journal
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    • 제17권4호
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    • pp.59-65
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    • 2017
  • Purpose: Thermal performance and air tightness of window are improved for the building energy efficiency. As the deteriorated houses are increased, the improve measures with low cost and easy installation are developed in the energy performance of window. Attached glazing and windbreak can be easily applied to the window with low cost. In this paper, the effect of the attached glazing and windbreak on the thermal performance and air tightness of window is analyzed as the measure to improve performance of window. Method: Thermal transmittance of glazing is evaluated through WINDOW simulation according to thickness of attached glazing and air cavity. Based on the simulation results, thermal transmittance, air tightness and condensation resistance performance of four cases are tested according to Korea standards. One type of PVC sliding double window is chosen as the specimen. For the analysis on low performance of window, the outside of window is excluded in the PVC sliding double window. Result: This study shows that thermal performance of glazing can be increased by the application of attached glazing. Furthermore, lower thermal performance of glazing can obtain the higher effect of attached glazing. The application of attached glazing and windbreak can effect on increasing thermal performance and air tightness of window.

스마트윈도우용 대면적 액정셀 제작과 특성에 대한 연구 (A Study on Fabrication and Characteristics of Large Area Liquid-Crystal Cell for Smart-Window)

  • 이승우
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2019년도 추계학술대회
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    • pp.166-167
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    • 2019
  • Smart windows are used as windows and doors to determine cooling and heating efficiency in the construction field. It's characteristics can increase the energy saving efficiency. In addition, the function of the smart window that can control the light transmittance transmitted from the external environment of the building to the building according to the needs of the user is attracting attention. In this study, a liquid crystal cell capable of controlling light transmittance of 297 × 210 ㎟ was fabricated by using a liquid crystal device as an optical shutter. Analysis of transmittance change according to driving voltage and driving stability according to thermal environment, We confirmed the applicability of building exterior materials as smart windows.

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NFRC 201 실험방법에 의한 내부 차양장치가 적용된 창호의 일사획득계수 평가 (Evaluation on the Solar Heat Gain Coefficient of Glazing System installed in internal shading device by experiments according to the NFRC 201)

  • 임재한;송승영
    • 한국태양에너지학회 논문집
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    • 제30권3호
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    • pp.47-54
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    • 2010
  • Recently the researchers has been interested in the development of the high performance windows such as solar control window using automatic shading devices, air-flow window, selective coating window. In order to assess the energy performance of total fenestration system, the net energy gains or losses through the glazings and windows should be evaluated. It depends on the thermal transmittance (U-value) and the total solar energy transmittance (SHGC, g-value). This study aims to measure the solar heat gain coefficient according to the NFRC 201 standard test method. In results, we could find the result of different SHGC of the glazing system with a different slat angles. The SHGC in case of $90^{\circ}$ of internal slat angle with regard to the window surface is about 0.56, that in case of $45^{\circ}$ is about 0.49 and that in case of $0^{\circ}$ is about 0.33. Significant dependence on the solar radiation intensity and incident angle was found in comparison of the measured and simulated SHGC.

지역별 기후에 따른 비주거 건축물 패시브 수준 단열기준 연구 (Study on Insulation Standards at Passive Level of Non-Residential Buildings by Regional Climate)

  • 김예원;유기형
    • 한국태양에너지학회 논문집
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    • 제37권6호
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    • pp.51-58
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    • 2017
  • This study proposes an appropriate level of insulation standards by region through annual heating energy requirements according to regional climate. The reference buildings out of non-residential buildings approved by the energy saving design standard for buildings were derived in the previous study, in which the annual heating energy requirements for each building were as follows when the insulation standard for building members in four regions (Pyeongchang, Seoul, Gwang-ju, and Jeju) suggested by the energy saving design standard for buildings: $29.8kWh/m^2$ in Pyeongchang, $17.5kWh/m^2$ in Seoul, $14.4kWh/m^2$ in Gwangju, and $16.7kWh/m^2$ in Jeju. To satisfy the passive level of insulation standards for these buildings, in case that roof/floor of buildings in Pyeongchang and Seoul was $0.2W/m^2K$, the minimum window thermal transmittance should satisfy $0.9W/m^2K$ and the minimum wall thermal transmittance should satisfy $0.1W/m^2K$ in the case of Pyeongchang. On the other hand, the minimum window thermal transmittance should satisfy $1.5W/m^2K$ and the minimum wall thermal transmittance should satisfy $0.14W/m^2K$ in the case of Seoul. For Jeju regions, the minimum wall thermal transmittance should satisfy $0.34W/m^2K$ to meet the passive level of buildings. Based on the above results, the thermal transmittance of each member by region should take the outdoor climate condition of the region into consideration to satisfy the passive level of buildings.

스마트윈도우 응용을 위한 FTO 기판 위에 증착된 VO2 박막의 광학적 특성 (Optical Properties of VO2 Thin Film Deposited on F:SnO2 Substrate for Smart Window Application)

  • 강소희;한승호;박승준;김형근;양우석
    • 한국재료학회지
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    • 제23권4호
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    • pp.215-218
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    • 2013
  • Vanadium dioxide ($VO_2$) is an attractive material for smart window applications where the transmittance of light can be automatically modulated from a transparent state to an opaque state at the critical temperature of ${\sim}68^{\circ}C$. Meanwhile, F : $SnO_2$ (F-doped $SnO_2$, FTO) glass is a transparent conductive oxide material that is widely used in solar-energy-related applications because of its excellent optical and electrical properties. Relatively high transmittance and low emissivity have been obtained for FTO-coated glasses. Tunable transmittance corresponding to ambient temperature and low emissivity can be expected from $VO_2$ films deposited onto FTO glasses. In this study, FTO glasses were applied for the deposition of $VO_2$ thin films by pulsed DC magnetron sputtering. $VO_2$ thin films were also deposited on a Pyrex substrate for comparison. To decrease the phase transition temperature of $VO_2$, tungsten-doped $VO_2$ films were also deposited onto FTO glasses. The visible transmittance of $VO_2$/FTO was higher than that of $VO_2$/pyrex due to the increased crystallinity of the $VO_2$ thin film deposited on FTO and decreased interface reflection. Although the solar transmittance modulation of $VO_2$/FTO was lower than that of $VO_2$/pyrex, room temperature solar transmittance of $VO_2$/FTO was lower than that of $VO_2$/pyrex, which is advantageous for reflecting solar heat energy in summer.

창세트 전체 열관류율(Uw) 평가 방법에 따른 시뮬레이션 결과 비교 분석 - 단창 창세트에 대한 시뮬레이션 결과 비교를 중심으로 - (A comparative analysis of the simulation results of total window thermal transmittance(Uw) according to the evaluation method - Focused on comparison of the single window simulation results -)

  • 이용준;오은주;김사겸;최현중;김유민
    • KIEAE Journal
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    • 제16권3호
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    • pp.77-82
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    • 2016
  • Purpose: The aim of this study is to calculate U-factor of the window using international standard methods and compare quantitative and tendency difference focused on ISO standard 15099 and ISO standard 10077. And the result of ISO standard calculation methods is verified using thermal performance experiment to evaluate applicability of domestic certification system. This study is utilized a basis for activation of domestic window certification system. Method: First, 16 cases are selected that is combined a variety of frame, Glazing, spacer, etc. The selected cases were simulated using WINDOW&THERM based on ISO 15099 and 10077 calculation method. Second, experiment was conducted based on Korean standard condition. Then, it was compared the error of experiment and simulation results. Through this process, ISO 15099 and 10077 calculation methods were evaluated accuracy and utilization. Result: The results show that the difference of ISO 15099 and ISO 10077-2 is maximum 5.4%. The results of comparing U-factor errors based on the Korea standard experiment test found 2.4%. Consequently, it will be possible to combination calculation methods of ISO 15099 and ISO 10077 for a single window.

λ/2 Retardation Film을 이용한 3단계 투과율 가변 스마트윈도우 제작 (Fabrication of 3-Step Light Transmittance-variable Smart Windows based on λ/2 Retardation Film)

  • 김일구;양호창;박영민;서요한;홍영규;이승현
    • 마이크로전자및패키징학회지
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    • 제30권3호
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    • pp.78-82
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    • 2023
  • 본 연구에서는 Reactive mesogen (RM) 기반 λ/2 위상지연 필름과 편광필름을 이용하여 3단계로 투과율 가변이 가능한 스마트윈도우 제조 기술을 제안한다. λ/2 위상지연 필름은 위상차 (Γ) 값이 π (Δn·d=λ/2)이며, 위상지연 필름에 입사된 빛의 진행방향을 필름의 광축에 대칭된 각도로 변환시키는 특징이 있다. 위상지연 필름의 Δn·d 값이 λ/2에 근접할수록 변환 특성이 우수하기 때문에 본 연구에서는 복굴절 물질인 RM 두께별 retardation (Δn·d) 특성 평가를 통해 Δn·d가 λ/2(=275 nm@550 nm)에 근접한 276.1 nm의 값을 갖는 위상지연 필름을 제작하였다. 최종적으로 (편광필름)/(유리기판)/(배향막)/(λ/2 retardation film) 구조의 스마트윈도우를 제작하여 투과모드, 반투과모드, 차단모드에서의 광 투과 특성을 평가하였다. 평가결과 투과율은 각각 35.8%, 27.8%, 18.2%의 값을 나타내었으며, 이를 통해 λ/2 위상지연 필름을 이용하여 3단계로 투과율 제어 가능함을 확인하였다. 또한 150×200 mm2 크기의 스마트윈도우를 구현함으로써 건축물, 자동차 등 다양한 분야의 활용 가능성을 확인하였다.