• 제목/요약/키워드: Artificial solar laboratory

검색결과 10건 처리시간 0.026초

인공태양실험실(A. S. Lab.)을 활용한 창호의 열성능 평가에 관한 연구 (Study on Evaluation Analysis on Thermal Performance of Window Using A. S. Lab.(Artificial Solar Laboratory))

  • 강기남;이건호
    • 설비공학논문집
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    • 제22권11호
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    • pp.812-819
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    • 2010
  • Recently residential buildings are characterized with high-rise and high density. Under this circumstance, achieving comfortable and healthy indoor environment with minimized energy consumption becomes a very challenging engineering and societal issue. Along this the increased size and transparency of window as well as light surface caused by high stories lowers the heat shield efficiency of building. Since glass that constitutes building surface has low heat efficiency, it aggravates heat loss of all building considerably, thereby resulting in extreme heating load and cooling load in the country where temperature varies much in summer and winter. The research will check whether experiment can be effectively done by overcoming the limit of existing artificial solar laboratory constructed in the country and properly adjusting controlled variables with simplified function through construction of this experimental set.

Effects of Artificial UV-B and Solar Radiation on Four Species of Antarctic Rhodophytes

  • Han, Tae-Jun;Park, Seon-Joo;Lee, Min-Soo;Han, Young-Seok;Kang, Sung-Ho;Chung, Ho-Sung;Lee, Sang-Hoon
    • Ocean and Polar Research
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    • 제23권4호
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    • pp.389-394
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    • 2001
  • During austral summer 1998 we examined the impacts of artificial UV-B and solar radiation on chlorophyll a content and fresh weight of four species of Antarctic red algae namely, Georgiella confluens, Iridaea cordata, Pantoneura plocamioides and Porphyra endiviifolium. These subject species were taken in consideration of clear demarcations of their vertical distribution and classified as shallow water group (Iridaea and Porphyra) and deep water group (Georgiella and Pantoneura). When irradiated with artificial UV-B at the irradiance of $2.0Wm^{-2}$ the shallow water inhabitants were much more resistant than the algae from deep water the fresh weight of which was reduced by 40-50% relative to control apart from loss of pigmentation. Direct solar radiation was lethal to the deep water group with a sign of complete bleaching whereas the shallow water group did not show any change in the physiological parameters. We were unable to discriminate difference in the algal sensitivity between UV-filtered and UV-transparent treatments since samples tested were either all unaffected or dead. Spectrophotometric measurements of methanolic extracts revealed a strong absorption peak in the UV range in the shallow water group of algae, Iridaea and Porphyra, but not in the deep water counterparts. Species difference in sensitivity to artificial UV-B and solar radiation is discussed in relation to biochemical and morphological characteristics and the role of the radiation in the algal vertical distribution is suggested from ecological perspective.

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연속 광조사 조건에서의 태양전지모듈의 연간 최대출력 저하율 변화 예측 분석 (Analysis of Maximum Generating Power Drop of PV Module Under the Continuous Artificial Light Irradiation Test Condition)

  • 김경수;윤재호
    • Current Photovoltaic Research
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    • 제6권3호
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    • pp.69-73
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    • 2018
  • PV system is consisted with PV module, inverter and BOS(balance of system). To have robustic operation more than 20 years, the expected and guaranteed durability and reliability of products should be met. Almost components of PV system are qualified through IEC standards at test laboratory. But the qualification certificate of product does not ensure long-term nondefective operation. PV module's expected life time is nowadays more than 20 years and annual maximum power degradation ratio would be less than -1%. But the power degradation ratio is basically based on real data more than several years' record. Developing test method for ensuring annual maximum power degradation ratio is very need because there are many new products every month with new materials. In this paper, we have suggested new test method under continuous artificial light irradiation test condition for analyze expected maximum power drop ratio.

High altitude powered lighter-than-air vehicle as remote sensing platform

  • Onda, Masahiko
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1990년도 한국자동제어학술회의논문집(국제학술편); KOEX, Seoul; 26-27 Oct. 1990
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    • pp.1361-1364
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    • 1990
  • In order to tackle global environmental problems such as destruction of the ozone layer or climatic changes due to atmospheric temperature increase, the acquisition of plentiful and precise data is necessary. Therefore, a means of conducting long-lasting high-resolution measurements over broad areas is required. A feasibility study has been made on a high altitude (20km), super-pressured helium-filled PLTA (Powered Ligher-than-Air) vehicle as an ideal platform for environmental observation. It has a long service life and carries a larger payload than an artificial satellite. This PLTA platform uses an electric propulsion system to maintain position in space against wind currents. The thruster is driven by solar power acquired from solar cells. For night use, solar energy is stored in regenerative fuel cells. This study focuses on energy balance and structural analysis of the hull and platform. The platform is capable of conducting high resolution remote sensing as well as having the capability to serve as a telecommunications relay. The platform could replace a number of ground-based telecommunications relay facilities, guaranteeing sufficient radio frequency intensity to secure good quality telecommunication transmittal. The altitude at which the platform resides has the lowest wind flow in the lower stratosphere, and permits viewing from the ground within a 1,000km range. Because this altitude is much lower than that required of an artificial satellite, the measuring resolution is a couple of thousand times higher than with artificial satellites. The platform can also be used to chase typhoons and observe them from their sources in tropical regions.

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A Study On the Cooling Effect of the Floating Horizontal Solar Cell

  • Jae-hyuk Lee
    • International journal of advanced smart convergence
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    • 제12권2호
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    • pp.182-186
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    • 2023
  • In this study, we measured the power and temperature of the floating horizontal solar cell in a coastal lagoon and compared with those of ground solar cell and water platform solar cell. Because the bottom surface of the floating horizontal solar cell was contacting the water, cooling effect was expected stronger than other cells. As a result of the measurement, the power of floating horizontal cell was 11.7% higher than that of the ground cell and 15% higher than that of the water platform cell. During the measurement, it was observed that water waves were continuously flowed on the top surface of floating horizontal cell by the wind, and it could be assumed that the cooling effect occurred not only on the bottom surface of the cell but also on the top surface. In order to analyze the cooling effect and power increasing of the horizontal cell in the wave situation, we measured power and temperature of the cell while generating artificial waves in a laboratory equipped with Zenon lamp as a solar simulator. At the height of thewater surface, the power of the cell with waves was 3.7% higherthan without waves and temperature was 4.6℃ lower. At 1 cm and 2 cm below the watersurface, power of the cell with waves was decreased by 14% and 11% than without waves while temperature was same . At 3 cm below the water surface, there was no effect of waves.

Temperature distribution prediction in longitudinal ballastless slab track with various neural network methods

  • Hanlin Liu;Wenhao Yuan;Rui Zhou;Yanliang Du;Jingmang Xu;Rong Chen
    • Smart Structures and Systems
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    • 제32권2호
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    • pp.83-99
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    • 2023
  • The temperature prediction approaches of three important locations in an operational longitudinal slab track-bridge structure by using three typical neural network methods based on the field measuring platform of four meteorological factors and internal temperature. The measurement experiment of four meteorological factors (e.g., ambient temperature, solar radiation, wind speed, and humidity) temperature in the three locations of the longitudinal slab and base plate of three important locations (e.g., mid-span, beam end, and Wide-Narrow Joint) were conducted, and then their characteristics were analyzed, respectively. Furthermore, temperature prediction effects of three locations under five various meteorological conditions are tested by using three neural network methods, respectively, including the Artificial Neural Network (ANN), the Long Short-Term Memory (LSTM), and the Convolutional Neural Network (CNN). More importantly, the predicted effects of solar radiation in four meteorological factors could be identified with three indicators (e.g., Root Means Square Error, Mean Absolute Error, Correlation Coefficient of R2). In addition, the LSTM method shows the best performance, while the CNN method has the best prediction effect by only considering a single meteorological factor.

스노우팩-융설 계산을 위한 에너지수지 알고리즘 (An Energy Budget Algorithm for a Snowpack-Snowmelt Calculation)

  • 이정훈;고경석
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제16권5호
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    • pp.82-89
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    • 2011
  • Understanding snowmelt movement to the watershed is crucial for both climate change and hydrological studies because the snowmelt is a significant component of groundwater and surface runoff in temperature area. In this work, a new energy balance budget algorithm has been developed for melting snow from a snowpack at the Central Sierra Snow Laboratory (CSSL) in California, US. Using two sets of experiments, artificial rain-on-snow experiments and observations of diel variations, carried out in the winter of 2002 and 2003, we investigate how to calculate the amount of snowmelt from the snowpack using radiation energy and air temperature. To address the effect of air temperature, we calculate the integrated daily solar radiation energy input, and the integrated discharge of snowmelt under the snowpack and the energy required to generate such an amount of meltwater. The difference between the two is the excess (or deficit) energy input and we compare this energy to the average daily temperature. The resulting empirical relationship is used to calculate the instantaneous snowmelt rate in the model used by Lee et al. (2008a; 2010), in addition to the net-short radiation. If for a given 10 minute interval, the energy obtained by the melt calculation is negative, then no melt is generated. The input energy from the sun is considered to be used to increase the temperature of the snowpack. Positive energy is used for melting snow for the 10-minute interval. Using this energy budget algorithm, we optimize the intrinsic permeability of the snowpack for the two sets of experiments using one-dimensional water percolation model, which are $52.5{\times}10^{-10}m^2$ and $75{\times}10^{-10}m^2$ for the artificial rain-on-snow experiments and observations of diel variation, respectively.

중파자외선에 대한 남극산 해조류의 광합성 및 자외선 흡수물질 형성 반응 (Photosynthesis and Formation of UV-absorbing Substances in Antarctic Macroalgae Under Different Levels of UV-B Radiation)

  • 한태준;박병직;한영석;강성호;이상훈
    • 환경생물
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    • 제20권3호
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    • pp.205-215
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    • 2002
  • 남극에 생육하는 5종의 홍조류(Curdiea racouitzae, Gigartina skottsbergii, Mazzaella obovata, Myriogramme manginii, Palmaria decipiens)를 대상으로 인공 중파 자외선과 태양광선에 대한 종별 생리적 반응을 광합성이라는 파라미터를 사용하여 조사 연구하였다. 실험실연구 결과, 종간에 중파 자외선에 대한 내성 차이가 확인되었으며 이러한 차이는 각 종들이 채집되기 전에 서식하고 있었던 수심과 매우 밀접한 관계가 있어서 20-30m의 수심에서 채집된 M. manginii와 P. decipiens의 자외선 내성이 다른 종들에 비하여 작게 나왔다. 본 연구 결과는 서식지 주변의 광환경이 해조류의 자외선 내성을 결정해 주는 한 요인이라는 가설을 입증해주었을 뿐 아니라 형광 변화를 이용한 광합성 측정법은 자외선 내성을 타진하는데 있어서 매우 신속하고 비파괴적인 방법으로 이용될 수 있음을 입증하였다. 두 종의 흥조류(M. manginii, P. decipiens)를 대상으로 태양광선 하에서의 광합성 효율을 관찰한 결과, 정오에 최저 광합성을 보인 반면 저녁에는 광합성 능력이 회복되는 현상을 나타내었다. 이같은 동적인 광저해 현상(dynamic photoinhibition)은 일종의 광적응 능력으로서 식물이 비교적 강한 태양광선에 노출된 지역에 성공적으로 서식하는데 크게 기여하는 것으로 사료된다. 본 연구에서는 또한 태양광선내 중파자외선 포함 유무에 따라 광합성 회복 속도에 차이가 나는 것을 볼 수 있었는데 중파자외선이 포함된 태양 광선 하에서는 광합성의 회복이 느린 반면, 중파 자외선이 제거된 조건에서는 광합성이 비교적 빨리 회복되는 것을 관찰할 수 있었고 이는 중파 자외선이 광합성 회복 기작을 지연시키는 작용을 한 것으로 해석될 수 있다. 야외에서 자외선 민감성을 비교한 결과, P. decipiens가 M. manginii에 비하여 자외선 내성이 큰 것으로 나타났는데, 두 종 공히 조간대로부터 조하대 상부까지 서식하는 종임에도 불구하고 이러한 내성차이를 보인 이유는 자외선 흡수물질의 정량적인 차이에 기인한다고 할 수 있다. M. manginii와 P decipiens에서 발견된 자외선 흡수물질의 양은 약 1:2 정도의 비율을 보였는데 이러한 정량적 차이가 자외선 민감성에 기여한 것으로 사료된다. 본 연구에서는 또한 계절별 그리고 채집 수심별로 자외선 흡수물질의 정량적 차이를 발견할 수 있었는데 태양광선이 풍부한 여름철에 그리고 고광량이 도달되는 수심 얕은 곳에 서식하는 개체가 더욱 많은 양의 자외선 흡수물질을 함유한 것으로 나타났다.

Optical Properties of Oxotitanium (Ⅳ) Meso-tetrakis(4-sulfonatophenyl)porphyrin Intercalated into the Layered Double Hydroxides (LDH) Studied by Laser Spectroscopy

  • Ryu, Su-Young;Yoon, Min-Joong;Choy, Jin-Ho;Hwang, Sung-Ho;Frube, Akihiro;Asahi, Tsuyoshi;Hiroshi, Masuhara
    • Bulletin of the Korean Chemical Society
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    • 제24권4호
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    • pp.446-452
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    • 2003
  • Some new nanohybrid materials have been synthesized by intercalating the oxotitanium(IV) meso-tetrakis(4- sulfonatophenyl) porphyrin$(O=Ti^{(IV)} TSPP)$ into the Zn/Al layered double hydroxides (LDHs), and their structures and photophysical properties have been investigated by various laser spectroscopic techniques. According to the XRD pattern of the synthesized nanohybrid materials, the macrocycle plane of $O=Ti^{(IV)}$ TSPP are grafted perpendicular to the LDH layers. The $O=Ti^{(IV)}$ TSPP-intercalated LDH exhibits band broadening of the absorption spectrum and a blue shift of Q-band as compared to that observed in solution. Resonance Raman spectral measurements demonstrate that the positively charged LDHs give rise to a slight decrease of the electronic density of the porphyrin ring accompanying a small change of the electronic distribution of the $O=Ti^{(IV)}$ TSPP. Consequently the LDH environment affects the energies of the two highest occupied molecular orbitals (HOMOs) of the $O=Ti^{(IV)}$) TSPP, $a_{1u}$ and $a_{2u}$, producing a mixed orbital character. Being consistent with these electronic structural changes of $O=Ti^{(IV)}$ TSPP in LDH, both the fluorescence spectral change and the fsdiffuse reflectance transient measurements imply that the photoexcitation of the $O=Ti^{(IV)}$ TSPP intercalated into LDH undergoes fast relaxation to the O=Ti(IV) $TSPP^+-LDH^- $charge transfer (CT) state within a few picoseconds, followed by a photoinduced electron transfer between the O=Ti(IV) TSPP and LDHs with a rate constant greater than %1×10^{10}S^{-1}$. No evidence is found for back electron transfer. In conclusion, the $O=Ti^{(IV)}$ TSPP intercalated LDH seems to be a possible candidate for an artificial reaction center for an efficient solar energy conversion system.

네트워크 관점에 기반한 사회적 자본 및 실험실 창업팀 다양성이창업 성과에 미치는 영향: I-Corps program을 중심으로 (The Impact of Social Capital and Laboratory Startup Team Diversity on Startup Performance Based on a Network Perspective: Focusing on the I-Corps Program)

  • 이재호;손영우;한정화;이상명
    • 벤처창업연구
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    • 제18권6호
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    • pp.173-189
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    • 2023
  • 혁신 기술 개발이 거듭되며 인공지능, 생명공학, 로봇, 항공우주, 전기차, 태양광 등의 신산업이 창출되며 거시적 경영환경이 급변하고 있다. 이러한 대규모 변화와 복잡성 증가로 인해 창업 전략 차원에서 기술이나 자산의 소유 그 자체보다는 자본이 관계의 중요성 증대로 활용되면서 새로운 가치 창출이 가능한 사회적 자본(Social Capital)의 효과에 주목할 필요가 있다. 사회적 자본은 1916년 Hanifan이 최초로 제안한 개념으로 개인 또는 사회적 구성원들 간의 상호 지속적이며 유기적 관계 또는 축적된 인간관계 네트워크에 잠재되거나 활용이 가능한 능력이나 자원의 전체적 총합을 일컫는다. 또한, 특출한 창업자 1인 보다는 다양한 배경과 특성 및 역량을 갖춘 창업팀 다양성이 각광을 받고 있다. 창업팀 다양성은 창업팀의 인구통계학적 요인이나 신념, 가치 등의 심층적 요소에 대한 다양성을 뜻한다. 거시적 환경 변화로 산업 혁신을 주도하고 국가의 핵심성장동력 창출 역할을 하는 기술창업 및 실험실창업의 중요성이 강조되고 있는데 본 연구에서는 '아이코어(I-Corps)' 프로그램에 주목하였다. 혁신군단을 의미하는 아이코어는 2011년 미연구재단(NSF)이 기업가 정신 및 연구 결과 사업화 장려를 위해 출범된 실험실 창업프로그램으로 교수와 연구원이 참여하는 창업팀 구성과 시장발견활동에 주안점을 두고 있다. 본 연구에서는 이런 특성을 감안하여 네트워크 관점의 사회적 자본과 창업팀 다양성이 아이코어 창업성과에 끼치는 영향을 실증적으로 검증하였다. 분석 결과 창업팀의 학력 다양성이 창업팀의 재무적 성과에 부(-)의 영향을, 성별 다양성과 사회적 자본의 인지적 차원이 창업팀의 재무적 성과에 정(+)의 영향을 끼쳤다. 본 연구는 아이코어 실험실 창업팀 다양성, 사회적 자본과 그 성과 해석에 대한 이론적, 실무적 시사점을 보다 유용하게 제공할 것으로 기대한다.

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