• 제목/요약/키워드: solar energy production

검색결과 439건 처리시간 0.022초

Effect of structure configurations and wind characteristics on the design of solar concentrator support structure under dynamic wind action

  • Kaabia, Bassem;Langlois, Sebastien;Maheux, Sebastien
    • Wind and Structures
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    • 제27권1호
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    • pp.41-57
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    • 2018
  • Concentrated Solar Photovoltaic (CPV) is a promising alternative to conventional solar structures. These solar tracking structures need to be optimized to be competitive against other types of energy production. In particular, the selection of the structural parameters needs to be optimized with regards to the dynamic wind response. This study aims to evaluate the effect of the main structural parameters, as selected in the preliminary design phase, on the wind response and then on the weight of the steel support structure. A parametric study has been performed where parameters influencing dynamic wind response are varied. The study is performed using a semi-deterministic time-domain wind analysis method. Unsteady aerodynamic model is applied for the shape of the CPV structure collector at different configurations in conjunction with a consistent mass-spring-damper model with the corresponding degrees of freedom to describe the dynamic response of the system. It is shown that, unlike the static response analysis, the variation of the peak wind response with many structural parameters is highly nonlinear because of the dynamic wind action. A steel structural optimization process reveals that close attention to structural and site wind parameters could lead to optimal design of CPV steel support structure.

재생열에너지 경제성 분석: 균등화열생산비용(LCOH) (Economic Analysis of Renewable Heat Energy: Levelized Cost of Heat (LCOH))

  • 이재석;조일현
    • 신재생에너지
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    • 제20권1호
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    • pp.52-60
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    • 2024
  • This study conducted an economic analysis of renewable heat energy by estimating the levelized cost of heat production (LCOH) of ST and GSHP and comparing it with the cost of alternative fuels. The LCOH of ST ranged from 396.8 KRW/kWh to 578.7 KRW/kWh (small-scale), 270.3 KRW/kWh to 393.3 KRW/kWh (large-scale), and 156.3 KRW/kWh to 220.7 KRW/kWh for GSHP. The economic feasibility of ST and GSHP was analyzed by comparing the calculated LCOH and the fuel costs such as gas and kerosene prices. Moreover, scenario analyses were conducted for installation subsidies under the current system to examine the changes in the economics of renewable thermal energy.

외기 및 순환수 온도조건을 고려한 PVT-water 시스템의 성능실험 (Performance test of PVT-water system considering ambient air and circulating water temperature)

  • 정용대;남유진
    • KIEAE Journal
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    • 제15권5호
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    • pp.83-88
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    • 2015
  • Purpose: Photovoltaic system is a technique for producing electrical power by utilizing solar energy, which can be used over 20 years with simple maintenance. However, in the case of photovoltaic systems, the energy conversion efficiency decreases as the surface temperature of module increases, compared with other renewable energy technologies. In this regard, PVT module can increase the energy utilization of a composite module as producing heat and electricity simultaneously by using solar energy. Currently, many researches have been promoting in order to develop a high efficiency PVT module in Korea. However, there are a few studies about the performance of the modules corresponding the shape of types and various heat exchangers of the PVT module. In this study, the electrical performance was measured by the change of the ambient temperature and the circulating water temperature using the fabricated PVT module. Method: Experiments were performed using a solar simulator. And this experiment was assumed that the weather condition was in each season, as winter, spring, autumn and summer. It was identified that the I-V curve associated with the change of the experimental conditions and confirmed the change in the electrical characteristics. Result: As a result, it was figured out that the surface temperature and the electrical performance changes in case conditions. The electrical performance was calculated in different temperature condition and the power production was confirmed by the change of module temperature.

베이지안 네트워크 기반 계층적 CPV 태양광 추적 시스템 (A Hierarchical CPV Solar Generation Tracking System based on Modular Bayesian Network)

  • 박수상;양견모;조성배
    • 한국정보과학회논문지:소프트웨어및응용
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    • 제41권7호
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    • pp.481-491
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    • 2014
  • 지구 온난화 문제와 화석 연료 양의 한계 때문에 재생 가능한 전력 생산에 대한 관심이 증가하고 있다. 특히 재생 에너지 중 태양광 에너지의 전력 생산 비율은 점차 증가함에 따라 집광형 태양광발전 시스템은 높은 전력 생산량으로 각광받고 있다. 하지만 이 시스템은 태양광 중첩률이 높을 때 가장 높은 발전 효율을 내기 때문에 허용 오차 범위가 작은 정밀 태양 추적 시스템이 필요하다. 본 논문에서는 복잡한 환경에 대응할 수 있는 베이지안 네트워크와 나이브 베이즈 분류기를 이용한 계층적 추적 시스템을 제안한다. 베이지안 네트워크는 불완전하고 불확실한 상황을 모델링 하는데 강력한 모델로 충분한 양의 데이터가 없을 경우에도 도메인 지식을 바탕으로 네트워크를 설계할 수 있다는 장점이 있다. 제안하는 계층적 확률 시스템에서는 불확실한 하늘 상황을 9개로 분류하고 모듈형 베이지안 네트워크를 이용하여 현재 날씨 상황을 추론한다. 또한 나이브 베이즈 분류기를 이용하여 추론된 날씨 상황을 고려한 효율적인 추적 방법을 분류하고 선택한다. 베이지안 네트워크의 유용성을 평가하기 위해 실제 날씨 데이터를 수집하였고 평균 93.9%의 정확도(Accuracy)를 보였다. 또한, 제안하는 시스템과 핀홀 카메라 시스템의 태양광발전 효율을 비교한 결과 약 16.58%의 성능이 향상됨을 확인하였다.

식물-미생물전기화학 기반의 미활용 에너지 회수 기초 연구 (Basic Study for Harvesting Unused Energy based on Plant-Microbial Electrochemical Technology)

  • 유재철;신춘환
    • 한국환경과학회지
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    • 제28권2호
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    • pp.219-224
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    • 2019
  • In this study, we evaluated the energy production from plant-microbial fuel cells using representative indoor plants, such as Scindapsus aureus and Clatha minor. The maximum power density of microbial fuel cell (MFC) using S. aureus ($3.36mW/m^2$) was about 2 times higher than that of the MFC using C. minor ($1.43mW/m^2$). It was confirmed that energy recovery is possible using plant-MFCs without fuel. However, further research is needed to improve the performance of plant-MFCs. Nevertheless, plant-MFCs have proved their potential as a novel energy source to overcome the limitations of the conventional renewable energy sources such as wind power and solar cells, and could be employed to a power source for the sensor in charge of the fourth industrial revolution.

Effects of Nutritional State on Physiological Responses and Heat Production During Exercise of the Animal - a Review

  • Kasa, I Wayan
    • Asian-Australasian Journal of Animal Sciences
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    • 제11권4호
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    • pp.331-336
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    • 1998
  • This review was conducted to analyse the effect of nutrition on physiological responses; heat production of domestic animal during exercise. Overall, it can be concluded that the major factors likely to affect heat production in domestic animals during exercise (including work load) are body weight, speed, the gradients attempted, feed intake, ambient conditions (including temperature and solar radiation) and altitude. On nutrition-exercise interactions, for example, it has been concluded that animals on better quality diets produce more heat than those on poorer quality ones, and that glucose as well as acetate are metabolized as energy sources during both rest and exercise.

낙동감 하구 사구의 갈대, 천일사초 및 갯잔디군락의 생산능력 (Production Dynamics of Phragmites longivalvis, Carex scabrifolia and Zoysia sinica Stand of a Sand Bar at the Negdong River Estuary)

  • Kim, Joon-Ho;Kyung-Je Cho;Hyeong-Tae Mun;Byeong Mee Min
    • The Korean Journal of Ecology
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    • 제9권1호
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    • pp.59-71
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    • 1986
  • Net production, dead material increments were measured, and annual respiration loss was simulated through a year to determine the gross production at the Phragmites longivalvis, Carex scabrifolia and Zoysia sinica stand on Okryudeung, a sand bar of the Nagdong river estuary. The maximum live biomass for above-ground organs of the three stands occured in October, i.e., 1, 985, 744 and 1, 013g/m2, and belowground net productions were estimated to be 650, 440 and 412g/m2, respectively. Materials died or shedding from live aboveground organs during the growth season were estimated to be 167, 81 and 0 g/$m^2$. From the results of simulation, annual variation of respiratiion was primarily dependent on the annual variation of temperature through a year. For annual respiration loss in three stands, 21.893, 6.147 and 5.036kg $CO_2/m^2$ were calculated, respectively. Corresponding gross productions were 72, 203, 22, 109 and 19, 909kcal/$m^2$. Respiration of belowground organs corresponded to 65%, 66% and 37% of the total plant respiration, and annual respiration loss accounted for 85%, 78% and 71% of the annual gross production. In view of efficiency of solar energy utilization, 5.8%, 1.8% and 1.6% of incident light energy were converted to gross production of plants during a year. With incident light energy during the growth season from April to September, energy utilizations for net production were estimated to be 1.2%, 0.4% and 0.6% at the three stands.

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시스템 생태학적 접근법에 의한 가막만 패류생산의 지속성 평가 3. 가막만 패류 양식업의 에너지 모델링 (Sustainability Evaluation of Shellfish Production in Gamak Bay Based on Systems Ecology 3. Energy Modeling of Shellfish Aquaculture Production in Gamak Bay)

  • 오현택;이석모;이원찬;정래홍;홍석진;김남국
    • 한국환경과학회지
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    • 제17권9호
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    • pp.969-980
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    • 2008
  • This research was performed to simulate shellfish production systems and sales in Gamak Bay, South Korea. To study the way the shellfish system generates maxima, a numerical model was developed to simulate the model under a control and a number of different scenarios. The program calculates the EMERGY flows by multiplying the flows of energy and materials by the appropriate solar transformity. In this study, an energy systems model was built to simulate the variation of sustainability for oyster aquaculture. The results of the simulation based on 2005 data that as oyster production yield slightly increases, money and assets increase to a steady state. When the program is run control simulation, the system reaches carrying capacity after 8 years. The simulation of models with price of purchased inputs increased with 3.5% inflation rate per year showed maximum benefit of shellfish production occurs after 6 years but amounts are less than control simulation, and then decreases slightly in money and yield results. The results with 3.5% inflation and increase of oyster price annually showed steady and slightly increase of money and yield.

태양광모듈 생산 증설투자에 대한 의사결정: 실물옵션모형에 의한 경영유연성 가치 분석 (On Determining the Size and the Timing of the Capacity Expansion in PV Module Manufacturing: Management Flexibility in Real Options Model)

  • 김경남;선우석호
    • 신재생에너지
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    • 제7권2호
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    • pp.18-27
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    • 2011
  • Management flexibility to adapt its future actions in response to altered future market conditions can expand the value of an investment opportunity by improving its upside potential without the change in the downside losses. Module manufacturers in solar industry continuously have to decide how much and when its production capacity should be expanded with regards to the demand in the global markets. Either over- or under-investment can cause sunk and/or opportunity costs to the module manufacturers. Option of exercising the additional investments only on favorable opportunities can increase total value of the investment. This paper analyzes the case which shows that the expansion of production capacity with more expandibility can have more value than the rigid plan of capacity expansion. The expansion option value is equivalent to KRW 38.286 billion, thus switching the negative NPV of the initial investment opportunity into the positive value. High volatility and the high growth in the cashflows as the major business features of the renewable energy provide condition where real options can play the crucial role in increasing the investment value as well as in determining the size and timing of capacity expansion in the course of capital budgeting process.

海岸 鹽濕地 生態系의 에너지 流轉 (Energy Flow in a Coastal Salt Marsh Ecosystem)

  • Kim, Joon-Ho;Beung Tae Ryu
    • The Korean Journal of Ecology
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    • 제8권3호
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    • pp.153-161
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    • 1985
  • Energy flow through the trophic levels was studied at a salt marsh ecosystem distinguished into low and high marsh. Gross primary productions of Suaedeto-Salicornietum and Artemisieto-Limonietum at low marsh were 8, 299 and 13, 154kca/$m^2$/yr, and those of Calama-grostetum and Sonchuso-Setaetum at high marsh were 17, 899 and 15, 177kca/$m^2$/yr, respectively. Efficiencies of solar energy utilization of plants were 1.7 and 2.6% at the former, and were 3.6 and 3.2% at the latter. Of gross productions, net primary productions were 3, 977 and 5, 280kca/m2/yr at low marsh and were 6, 354 and 5, 329kca/$m^2$/yr at high marsh, and the remainder, 52~67%, was consumed by respiration of plants. A small amount (0.03~0.04%) of the net primary production was flowed through grazing food chain and most amout was transferred into dead parts. Of dead parts, 40% was accuulated as litter and the rest was decomposed into detritus. In the detritus food chain, a little energy was utilized by detritus feeder, and a major by microorganism. The amounts of energy flowed through grazing and detritus feeders at high marsh were much more than those at low marsh, but tertary production as spider was Vice versa.

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