• 제목/요약/키워드: Solar radiation rate

검색결과 200건 처리시간 0.025초

기상청 동네예보의 영농활용도 증진을 위한 방안: III. 사면 일 최고기온 결정에 미치는 이류효과 보정 (Improving usage of the Korea Meteorological Administration's Digital Forecasts in Agriculture: III. Correction for Advection Effect on Determination of Daily Maximum Temperature Over Sloped Surfaces)

  • 김수옥;윤진일
    • 한국농림기상학회지
    • /
    • 제16권4호
    • /
    • pp.297-303
    • /
    • 2014
  • 기온감률에 의한 고도보정만으로 표현되지 않는 산악지대의 한낮 기온 분포를 추정하기 위해 사면 일사효과모형이 사용되어왔으나 많은 경우 과다추정 경향이 나타났다. 그 원인을 찾고 기존 방법을 개선하기 위한 방안을 모색하기 위해 야외실험을 수행하였다. 경남 하동군 악양집수역의 고밀도 관측망으로부터 2012~2013년의 맑은 날 1500 기온, 1100-1500 적산일사량, 그리고 평균풍속자료를 수집하여 분석한 결과 고도보정 기온추정오차는 풍속과 높은 상관이 확인되었다. 이 결과를 토대로 일사효과모형을 풍속가중치에 의해 보정하는 간단한 방법을 도출하였다. 이 새로운 방법에 의해 2012-2013 기간 중 맑은 날에 대하여 악양집수역 내 10개 검증관측지점의 1500 기온을 추정하여 실측치와 비교하였다. 또한 기존 고도보정 추정치 및 일사효과모형 추정치와도 비교하였다. 그 결과 고도보정에 의한 추정치의 오차특성인 편기성과, 일사효과모형의 과다추정 경향이 새로운 방법에 의해 크게 개선되는 것을 확인할 수 있었다.

기상 데이터와 기상 위성 영상을 이용한 다중 딥러닝 모델 기반 일사량 예측 (Radiation Prediction Based on Multi Deep Learning Model Using Weather Data and Weather Satellites Image)

  • 김재정;유용훈;김창복
    • 한국항행학회논문지
    • /
    • 제25권6호
    • /
    • pp.569-575
    • /
    • 2021
  • 딥러닝은 데이터의 품질과 모델에 따라 예측 성능에 차이를 보인다. 본 연구는 발전량 예측에 가장 영향을 주는 일사량 예측을 위한 최적의 딥러닝 모델을 구축하기 위해 다양한 입력 데이터와 다중 딥러닝 모델을 사용하였다. 입력 데이터는 기상청의 기상 데이터와 천리안 기상영상을 기상청 지역의 영상을 분할하여 사용하였다, 본 연구는 기본적인 딥러닝 모델인 DNN, LSTM, CNN 모델에 대해 중간층의 깊이와 노드를 변경하여 일사량을 예측하여, 비교 평가하였다, 또한, 각 모델에서 가장 좋은 오차율을 가진 모델을 연결한 다증 딥러닝 모델을 구축하여 일사량을 예측하였다. 실험 결과로서 다중 딥러닝 모델인 모델 A의 RMSE는 0.0637이며, 모델 B의 RMSE는 0.07062이며, 모델 C의 RMSE는 0.06052로서 단일 모델보다 모델 A 그리고 모델 C의 오차율이 좋았다. 본 연구는 실험을 통해 두 개 이상의 모델을 연결한 모델이 향상된 예측률과 안정된 학습 결과를 보였다.

Effect of Solar Irradiances on Growth and Pigmentation of Antarctic Red Algae, Kallymenia antarctica and Palmaria decipiens

  • Han, Tae-Jun;Han, Young-Seok;Lee, Min-Soo;Park, Jin-Hee;Cho, Man-Gi;Koo, Jae-Gun;Kang, Sung-Ho
    • Ocean and Polar Research
    • /
    • 제25권4호
    • /
    • pp.427-435
    • /
    • 2003
  • Growth and pigment responses to different levels of solar radiation with or without ultraviolet (UV)-B component $({\lambda}=280-315nm)$ were investigated in Antarctic rhodophytes, Kallymenia antarctica and Palmaria decipiens, collected around King George Island during the summer of 2000. In K. antarctica specific growth rate, based on thallus area or fresh weight, decreased with increasing solar irradiances while P. decipiens were relatively insensitive to the effects of light. It is noticeable that the presence or absence of UV-B had no significant effect on growth for either species. However, K. antarctica showed a more pronounced reduction in chlorophyll (Chl a) concentrations at higher irradiances in the presence of UV-B. In P. decipiens, Chl a concentrations did not differ despite radiation level fluctuations being lower albeit than initial measurements. Thallus thickness was greater in K. antarctica than in P. decipiens. There were higher relative amounts of UV-absorbing pigments (UVAPs) in P. decipiens than in K, antarctica. The single absorbance peak obtained from the methanol extracts was resolved into three (316,332 and 346nm) in K. antarctica and four peaks (315,326,333 and 349 nm) in Palmaria as a result of the fourth-derivative. After 7 days exposure to solar radiation, the amount of UVAPs in K. antarctica was significantly reduced to a similar degree at all light levels, whereas that of P. decipiens remained unchanged except at 5% of surface irradiance. High performance liquid chromatography (HPLC) analysis of purified extracts indicated that P. decipiens possesses porphyra-334 in addition to three other mycosporine-like anlino acids (MAAs; asterina-330, palythine, shinorine), which are commonly present in K. antarctica. Significantly lower tolerance of K. antarctica to high levels of solar radiation may be connected with its usual absence in the eulittoral, while the active growth and elastic pigment responses of P. decipiens over a wide range of solar irradiance levels up to full sunlight seems to correspond well with its wide vertical distribution from rock pools down to 25-30m.

여름철 시설재배에서 일사량에 따른 수시차광이 오이 생육에 미치는 영향 (Effect of Cucumber(Cucumis sativus) Growth on Mobile Shading according to Solar Radiation in Greenhouse during Summer)

  • 우영회;조일환;이관호;홍규현;오대근;강인철
    • 현장농수산연구지
    • /
    • 제16권1호
    • /
    • pp.67-75
    • /
    • 2014
  • 외부일사량이 약 8800W·m-2일 때 90% 수시차광의 시설 내부 일사량은 약 360W·m-2 수준 이었으며 40% 차광은 약 500W·m-2, 무차광은 690W·m-2 수준으로 90% 수시차광이 가장 낮았다. 기온은 무차광이 최고 43.3℃로 가장 높은 수준이었으나 90% 차광은 37.9℃, 40% 차광은 40.6℃이었다. 지온은 90% 차광이 다른 처리구에 비해 2~4℃ 낮은 26.6~28.4℃이었다. 최저 상대습도는 무차광이 33%로 극한 건조 상태를 보였으나 90% 차광은 43%로 다소 상대습도가 높았다. 엽기온차에 의한 stress정도는 무차광이 가장 높았으며, 광합성율은 90% 차광이 다른 처리에 비하여 가장 높았다. 수시차광에 따른 오이 재배 환경의 차이는 오이 생육에도 영향을 미처 90% 수시차광에서 오이 세 품종 모두 생육 및 수량이 타 처리에 비하여 양호하였다.

참나무류(類)의 제습태양열건조(除濕太陽熱乾燥)의 조건(條件), 속도(速度), 결함(缺陷), 수율(收率) 및 열효율(熱效率)과 관행(慣行) 천연(天然), 반온실형(半溫室型) 태양열(太陽熱) 및 열기건조(熱氣乾燥)와의 비교(比較)·분석(分析) (The Comparative Analysis of Drying-Conditions, -Rates, -Defects and Yield, and Heat-Efficiency in Solar-Dehumidification-Drying of Oaks With Those in Conventional Air-, Semi-Greenhouse Type solar-, and Kiln- Drying)

  • 이형우;정희석
    • Journal of the Korean Wood Science and Technology
    • /
    • 제17권1호
    • /
    • pp.22-54
    • /
    • 1989
  • Seasonal semi-greenhouse type solar-drying of 2.5cm-and 5.0cm-thick lumber of Quercus aliena Blume and Quercus variailis Blume was carried out to investigate the possibility of solar-drying of wood and to decide the active solar-drying period in Korea. In the active solar-drying period obtained solar-dehumidification, semi-greenhouse type solar-, air- and kiln-drying of 2.5cm -thick lumber of oaks were carried out to analyze drying-rates. -defects, and -yield in each drying-method and to calculate daily total absorbed solar-radiation the solar dryers. The energy balance equations were set up, considering all the energy requirements, to analyze the heat efficiencies of semi-greenhouse type solar and solar-dehumidification-dryer. In a seasonal drying the drying rate of semi-greenhouse type solar-dryer was highest in summer, and greater in fall, spring, and winter in order. Solar-drying time was 45% in summer to 50% in winter of the air-drying rime, and more serious drying-defects occurred in air-drying than in solar-drying. In the active solar-drying period. April, May, and June, the average drying rate in solar-dehumidification-drying was 1.0%/day and greater than 0.8%/day in semi-greenhouse type solar-drying. In solar-dehumidification-drying the time required to dry lumber to 10% moisture content was less than 60 days, and solar-dehumidification-drying showed the highest drying-yield, 65.01%, than the other drying methods. The daily total absorbed solar radiations were 8.51MJ on the roof collector and 6.22 MJ on the south wall collector. In the energy blance 69.48% of total energy input was lost by heat conduction through walls, roof. and floor 11.68% by heat leakage, 0.33% by heating the internal structures of the solar-dryer and 5.38% by air-venting. Therefore the heat efficiency of semi-greenhouse type solar-dryer 13.13%, was lower than that of solar-dehumidification-dryer, 14.04%. Solar-drying of lumber in Korea showed the possibility to reduce the air-drying-time in every season and the efficiency of solar-dehumidification drying was higher than that of semi-greenhouse type solar-drying.

  • PDF

하절기 복사환경 관측을 통한 석재, 목재, 알루미늄 바닥재의 열특성 평가 (A Study of the Thermal Characteristics of Flooring Materials, Wood, Rock, Aluminum through Observation of its Radiant Environment in the Summer)

  • 최동호;이부용
    • 한국태양에너지학회 논문집
    • /
    • 제28권3호
    • /
    • pp.35-44
    • /
    • 2008
  • In this study, the experiment of the measuring of four different types of flooring materials' thermal characteristics was conducted and examined during the summer. The experimental materials were arranged on the existing slab of the roof, and then its thermal characteristics were examined from the point of view of thermal radiation analysis. The aim of this study is ultimately to draw the fundamental data for improvements in a building's thermal function and reduce the urban heat island phenomena through optimizing the thermal characteristics of the surface covering materials of a building. The results from this study are as follows; 1) Each experimental material's albedo was calculated as 0.83 on the aluminum panel, 0.40 on the rock block, 0.37 on the wood deck and 0.21 on the concrete. It shows that the concrete material, which has the lowest short wave reflective rate, absorbed the most radiation energy and the aluminium panel has absorbed the lowest radiation energy. 2) From the each experimental object's value of the long wave radiation, the concrete material measured the highest, at $628W/m^2$, and the aluminium panel measured the lowest at $412W/m^2$. Therefore, it verifies that the experimental objects' own radiation rate determines the amount of the long wave radiation. 3) The degree of energy absorbency of a building's surface covering materials is greatly influenced by its own albedo and radiation rate, Therefore, it needs to be considered for the improvements in a building's thermal function and reducing the urban heat island phenomena. 4) According to the evaluation result of the each experimental object's overall heat transmission screening function on the roof of a building, the wooden deck is proven to be an excellent material for excluding the outside temperature differences effectively with its characteristic of low heat capacity and conduction. Also its surface temperature on the roof slab and the temperature difference during the day were both measured at low.

태양열(太陽熱) 집열기개발(集熱器開發)에 관(關)한 연구(硏究) - 포물반사곡면(抛物反射曲面)으로된 2차원(二次元) 집광식(集光式) 태양열(太陽熱) 집열기(集熱器)의 성능분석(性能分析) - (Development of a Solar Collector Performance of Cylindrical Parabolic Concentrating Solar Collector)

  • 송현갑;연광석;조성찬
    • Journal of Biosystems Engineering
    • /
    • 제10권1호
    • /
    • pp.54-68
    • /
    • 1985
  • It is desirable to collect the solar thermal energy at relatively high temperature in order to minimize the size of thermal storage system and to enlarge the scope of solar thermal energy utilization. So far the concentrating solar collector has been developed to collect solar thermal energy at relatively high temperature, but it has some difficulties in maintaining the volumetric body of solar collector for long term utilization. On the other hand, the flat-plate solar collector has been developed to collect the solar thermal energy at low temperature, and it has advantages in maintaining the system for long term utilization, since it's thickness is thin and not volumetric. In this study, to develop a solar collector that has both advantages of collecting solar thermal energy at high temperature and fixing conveniently the collector system for long term period, a cylindrical parabolic concentrating solar collector was designed, which has two rows of parabolic reflectors and thin thickness such as the flat-plate solar collector, maintaining the optical form of concentrating solar collector. The characteristics of the concentrating parabolic solar collector newly designed was analysed and the results are summarized as follows; 1. The temperature of the air enclosed in solar collector was all the same as $50^{\circ}C$ in both cases of the open and closed loop, and when the heat transfer fluid was not circulated in tubular absorber, the maximum surface temperature of the absorber was $118-120^{\circ}C$, this results suggested that the heat transfer fluid could be heated up to $118^{\circ}C$. 2. In case of longitudinal installation of the solar collector, the temperature difference of heat transfer fluid between inlet and outlet was $4^{\circ}-6^{\circ}C$ at the flow rate of $110-130{\ell}/hr$, and the collected solar energy per unit area of collector was $300-465W/m^2$. 3. The collected solar energy per unit area for 7 hours was 1960 Kcal/$m^2$ for the open loop and 220 Kcal/$m^2$ for the closed loop. Therefore it is necessary to combine the open and closed loop of solar collectors to improve the thermal efficiency of solar collector. 4. The thermal efficiency of the solar collector (C.P.C.S.C.) was proportional to the density of solar radiation, indicating the maximum thermal efficiency ${\eta}_{max}=58%$ with longitudinal installation and ${\eta}_{max}=45%$ with lateral installation. 5. The thermal efficiency of the solar collector (C.P.C.S.C.) was increased in accordance with the increase of flow rate of heat transfer fluid, presenting the flow rate of $110{\ell}/hr$ was the value of turning point of the increasing rate of the collector efficiency, therefore the flow rate of $110{\ell}/hr$ was considered as optimum value for the test of the solar collector (C.P.C.S.C.) performance when the heat transfer fluid is a liquid. 6. In both cases of longitudinal and lateral installation of the solar collector (C.P.C.S.C.), the thermal efficiency was decreased linearly with an increase in the value of the term ($T_m-T_a$)/Ic and the increasing rate of the thermal efficiency was not effected by the installation method of solar collector.

  • PDF

태양열 축열조가 없는 변유량 제어 방식의 지역난방용 태양열시스템 실증시험연구 (The Development of the Climatic Design Tool for Energy Efficient Building Design)

  • 백남춘;신우철;이진국;윤응상;윤석만
    • 한국태양에너지학회 논문집
    • /
    • 제28권5호
    • /
    • pp.21-27
    • /
    • 2008
  • In this study, the design of the solar heating system for district heating as well as it's operating characteristics and the performance analysis was carried out. This solar district heating system was composed of two different types of solar collector circuit, flat plate and vacuum tube solar collector, in a system. This system supply constant temperature of hot water without solar buffer tank. For this, the proportional(variable flow rate) control was used. The experimental facility for this study was used the Bundang district solar heating system which was installed in the end of 2006. The operating characteristics and behaviour of each collector circuits are investigated especially for the system design and control. The yearly solar thermal efficiency is 47.5% on the basis of aperture area and 39.8% on the basis of gross area of collector. As a result this solar heating system without solar buffer tank and with proportional controller was testified a very effective and simplified system for district heating. It varied especially depend on the weather condition like as solar radiation and ambient temperature.

접시형 태양열 시스템을 이용한 2단계 열화학 싸이클의 수소 생산과 PID 온도 제어 기법 연구 (A Study on Pill Temperature Control method and Hydrogen Production with 2-step Thermochemical Cycle Using Dish Type Solar Thermal System)

  • 김철숙;김동연;조지현;서태범
    • 한국태양에너지학회 논문집
    • /
    • 제33권3호
    • /
    • pp.42-50
    • /
    • 2013
  • Solar thermal reactor was studied for hydrogen production with a two step thermochemical cycle including T-R(Thermal Reduction) step and W-D(Water Decomposition) step. NiFe2O4 and Fe3O4 supported by monoclinic ZrO2 were used as a catalyst device and Ni powder was used for decreasing the T-R step reaction temperature. Maintaining a temperature level of about $1100^{\circ}C$ and $1400^{\circ}C$, for 2-step thermochemical reaction, is important for obtaining maximum performance of hydrogen production. The controller was designed for adjusting high temperature solar thermal energy heating the foam-device coated with nickel- ferrite powder. A Pill temperature control system was designed based on 2-step thermochemical reaction experiment data(measured concentrated solar radiation and the temperature of foam device during experiment). The cycle repeated 5 times, ferrite conversion rate are 4.49~29.97% and hydrogen production rate is 0.19~1.54mmol/g-ferrite. A temperature controller was designed for increasing the number of reaction cycles related with the amount of produced hydrogen.

열목지 경유센서에 의한 멜론 경유양의 측정 (Measurement of Mass Flow of Water in the Stem of Musk Melon by Sap Flow Gauge)

  • 강곡명;양원모
    • 생물환경조절학회지
    • /
    • 제7권3호
    • /
    • pp.268-274
    • /
    • 1998
  • 열수지 경류센서에 의한 멜론의 흡수량 측정오차는 최저 0.3%에서 최대 31.8% 범위 내에 있었으며, 일사량 20MJ.m$^{-2}$ .d$^{-1}$에서는 오차가 적었으나 일사량이 이보다 많아지면 많아질수록 센서측정 경류량이 실측양액 소비량보다 적어지는 경향이었고 일사량이 적어질수록 센서측정 경류량이 실측양액 소비량보다 많아지는 경향이었다. 센서간의 오차는 최저 0.1%에서 최대 13.0%의 오차율을 보였다. 열수지센서측정 경류량은 일사량이나 온도와 고도의 부의 상관관계를 보였다. 그러므로 이를 이용 보정계수를 산출하면 보다 정확한 멜론의 경류량을 측정할 수 있을 것으로 판단되었다.

  • PDF