• 제목/요약/키워드: Energy variation

검색결과 2,924건 처리시간 0.029초

터널 라이닝 내부에 설치한 열교환기의 현장모니터링 연구 (Study on long-term monitoring of heat exchanger installed in the tunnel lining)

  • 이철호;박문서;최항석;손병후;정재형
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 춘계학술대회 초록집
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    • pp.195.1-195.1
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    • 2011
  • This paper presents an experimental study on a new potential geothermal energy source obtained from tunnel structures. An "energy textile", which is a textile-type ground heat exchanger, was fabricated between a shotcrete layer and a guided drainage geotextile in the tunnel lining system. To examine the long-term thermal behavior of the energy textile, the difference in temperatures of the inlet and outlet fluid circulating through the heat exchange pipe within the energy textile was monitored using a constant-temperature water bath. Daily heat exchange rate of the energy textile during cooling operation was estimated from the measured temperatures of the inlet and outlet fluid through the energy textile. The air and ground temperature was also continuously monitored. The operation of the energy textile as a ground heat exchanger was simulated using a 3D numerical CFD model (Fluent). The thermal conductivity of shotcrete and concrete lining components and temperature variation of air in the tunnel were incorporated in the model. The numerical analysis shows a good agreement with the long-term monitoring result.

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Enhancement of the round-trip efficiency of liquid air energy storage (LAES) system using cascade cold storage units

  • Kim, Jhongkwon;Byeon, Byeongchang;Kim, Kyoung Joong;Jeong, Sangkwon
    • 한국초전도ㆍ저온공학회논문지
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    • 제22권4호
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    • pp.45-50
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    • 2020
  • In this research, the variation of round-trip efficiency in a liquid air energy storage system (LAES) is calculated and an optimal configuration is found. The multiple stages of cold energy storage are simulated with several materials that process latent heat at different temperature ranges. The effectiveness in the charging and discharging processes of LAES is newly defined, and its relationship with the round-trip efficiency is examined. According to defined correlation, the effectiveness of the discharging process significantly affects the overall system performance. The round-trip efficiency is calculated for the combined cold energy storage materials of aqueous dimethyl sulfoxide (DMSO) solution, ethanol, and pentane theoretically. The performance of LAES varies depending on the freezing point of the cold storage materials. In particular, when the LAES uses several cold storage materials, those materials whose freezing points are close to room temperature and liquid air temperature should be included in the cold storage materials. In this paper, it is assumed that only latent heat is used for cold energy storage, but for more realistic analyzes, the additional consideration of the transient thermal situation to utilize sensible heat is required. In the case of such a dynamic system, since there is certainly more increased heat capacity of the entire storage system, the volume of the cold energy storage system will be greatly reduced.

300 kW급 소형 열병합발전기용 배열회수 시스템의 실증운전 성능분석에 관한 연구 (Observation Studies on Field Operation of a Exhausted Heat Recovery System for a 300 kW Class Small Gas Engine Cogeneration System)

  • 김민성;백영진;박성룡;나호상
    • 설비공학논문집
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    • 제22권4호
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    • pp.248-257
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    • 2010
  • An exhausted heat recovery system for a small gas engine cogeneration plant was investigated. The system was designed and built in a 300 kW class cogeneration demonstrative system. The basic performance was tested depending on load variation, and installed to a field site as a bottoming heat and power supply system. The exhaust gas heat exchangers (EGHXs) in shell-and-tube type and shell-and-plate type were tested. The entire efficiency of the cogeneration system was estimated between 85 to 90% under the 100% load condition, of which trend appears higher in summer due to the less thermal loss than in winter. Power generation efficiency and thermal efficiency was measured in a range of 31~33% and 54~57%, respectively.

Passively Q-switched Erbium Doped All-fiber Laser with High Pulse Energy Based on Evanescent Field Interaction with Single-walled Carbon Nanotube Saturable Absorber

  • Jeong, Hwanseong;Yeom, Dong-Il
    • Current Optics and Photonics
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    • 제1권3호
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    • pp.203-206
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    • 2017
  • We report a passive Q-switching of an all-fiber erbium-doped fiber laser delivering high pulse energy by using a high quality single-walled carbon nanotube saturable absorber (SWCNT-SA). A side-polished fiber coated with the SWCNT is employed as an in-line SA for evanescent wave interaction between the incident light and the SWCNT. This lateral interaction scheme enables a stable Q-switched fiber laser that generates high pulse energy. The central wavelength of the Q-switched pulse laser was measured as 1560 nm. A repetition rate frequency of the Q-switched laser is controlled from 78 kHz to 190 kHz by adjusting the applied pump power from 124 mW to 790 mW. The variation of pulse energy from 51 nJ to 270 nJ is also observed as increasing the pump power. The pulse energy of 270 nJ achieved at maximum pump power is 3 times larger than those reported in Q-switched all-fiber lasers using a SWCNT-SA. The tunable behaviors in pulse duration, pulse repetition rate, and pulse energy as a function of pump power are reported, and are well matched with theoretical expectation.

미래 기후변화에 따른 가정 및 상업 부문 에너지수요 변화 추정 (Estimation of Energy Use in Residential and Commercial Sectors Attributable to Future Climate Change)

  • 정지훈;김주홍;김백민;김재진;유진호;오종열
    • 대기
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    • 제24권4호
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    • pp.515-522
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    • 2014
  • In this study it is attempted to estimate the possible change in energy use for residential and commercial sector in Korea under a future climate change senario. Based on the national energy use and observed temperature data during the period 1991~2010, the optimal base temperature for determining heating and cooling degree days (HDD and CDD) is calculated. Then, net changes in fossil fuel and electricity uses that are statistically linked with a temperature variation are quantified through regression analyses of HDD and CDD against the energy use. Finally, the future projection of energy use is estimated by applying the regression model and future temperature projections by the CMIP5 results under the RCP8.5 scenario. The results indicate that, overall, the net annual energy use will decrease mostly due to a large decrease in the fossil fuel use for heating. However, a clear seasonal contrast in energy use is anticipated in the electricity use; there will be an increase in a warm-season demand for cooling but a decrease in a cold-season demand for heating.

Dietary patterns of obese high school girls: snack consumption and energy intake

  • Yoon, Jin-Sook;Lee, Nan-Jo
    • Nutrition Research and Practice
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    • 제4권5호
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    • pp.433-437
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    • 2010
  • In order to develop an obesity management program for teenagers, we compared obese and non-obese girls attending high schools in terms of their dietary practices related to snack consumption. Dietary records were collected for 7 days. No significant differences were found for the average daily energy intake between obese and non-obese girls. However, the highest energy intake was greater for obese girls while not much difference was found for the lowest amount of energy intake. Obese girls had significantly lower intakes in calcium (P < 0.01), vitamin A (P < 0.001) and folate (P < 0.01). Mean energy intake from snack ($594.1{\pm}312.1kcal$) was significantly higher for obese girls than for non-obese girls ($360.1{\pm}173.1kcal$) (P < 0.001). A significant, positive correlation was observed between energy intake from snack and total daily energy intake (r = 0.34 P < 0.01) only for obese girls. In case of dietary behaviors, obese adolescent girls consumed significantly greater number of items for snacks and fewer foods for regular meals compared to non-obese girls (P < 0.05). This study suggested that obesity management programs for adolescents should focus on providing strategies to reduce snack through enhancing balanced regular meals.

신재생에너지 가변열원의 효율적 이용을 위한 유기랭킨 사이클 최적작동점에 관한 연구 (Optimal Operating Points on the Organic Rankine Cycle to Efficiently Regenerate Renewable Fluctuating Heat Sources)

  • 조수용;조종현
    • 신재생에너지
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    • 제10권1호
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    • pp.6-19
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    • 2014
  • Organic Rankine cycle (ORC) has been widely used to convert renewable energy such as solar energy, geothermal energy, or waste energy etc., to electric power. For a small scale output power less than 10 kW, turbo-expander is not widely used than positive displacement expander. However, the turbo-expander has merits that it can operate well at off-design points. Usually, the available thermal energy for a small scale ORC is not supplied continuously. So, the mass flowrate should be adjusted in the expander to maintain the cycle. In this study, nozzles was adopted as stator to control the mass flowrate, and radial-type turbine was used as expander. The turbine operated at partial admission. R245fa was adopted as working fluid, and supersonic nozzle was designed to get the supersonic flow at the nozzle exit. When the inlet operating condition of the working fluid was varied corresponding to the fluctuation of the available thermal energy, optimal operating condition was investigated at off-design due to the variation of mass flowrate.

An analytical and computational study on energy dissipation along fracture process zone in concrete

  • Zhao, Yanhua;Xu, Shilang;Li, Zongjin
    • Computers and Concrete
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    • 제1권1호
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    • pp.47-60
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    • 2004
  • The influence of the fracture process zone (FPZ) on the fracture properties is one of the hottest topics in the field of fracture mechanics for cementitious materials. Within the FPZ in front of a traction free crack, cohesive forces are distributed in accordance with the softening stress-separation constitutive relation of the material. Therefore, further crack propagation necessitates energy dissipation, which is the work done by the cohesive forces. In this paper $g_f$, the local fracture energy characterizing the energy consumption due to the cohesive forces, is discussed. The computational expression of $g_f$ in the FPZ can be obtained for any stage during the material fracture process regarding the variation of FPZ, whether in terms of its length or width. $G_{fa}$, the average energy consumption along the crack extension region, has also been computed and discussed in this paper. The experimental results obtained from the wedge splitting tests on specimens with different initial notch ratios are employed to investigate the property of the local fracture energy $g_f$ and the average value $G_{fa}$ over the crack extension length. These results can be used to indicate the influence of the FPZ. Additionally, changes in the length of the FPZ during the fracture process are also studied.

분리판의 채널 높이에 따른 1 kWe 급 고체산화물 연료전지 스택 수치 해석 (Numerical Analysis in a 1 kWe SOFC Stack for Variation of the Channel Height in Separators)

  • 윤호원;김영진;이근우;김현진;윤경식;유지행
    • 한국수소및신에너지학회논문집
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    • 제33권5호
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    • pp.550-556
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    • 2022
  • In this study, the flow uniformity was analyzed by performing numerical analysis on the 1 kWe internal manifold type solid oxide fuel cell stack according to the channel height of the separator. Also, it was examined by varying the fuel utilization rate and oxygen utilization rate. From the calculation results, we found that as the channel height of the separator decreased, the pressure drop increased exponentially. In addition, it was found that as the channel height of the separator decreased, the gas flow resistance inside the unit cell increased, and the flow resistance increased the pressure drop, thereby improving the flow uniformity inside the stack. Finally, the calculation results showed that as the fuel and oxygen utilization increased, the flow uniformity also improved.

스마트폰을 활용한 위치 기반 그린 홈 서비스 (A Location-based Green Home Service using a Smart Phone)

  • 최진엽;전병찬;이상정
    • 한국인터넷방송통신학회논문지
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    • 제12권3호
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    • pp.89-97
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    • 2012
  • 최근 환경 문제가 전 세계적으로 대두가 되면서 효율적인 에너지 관리 기술이 요구 되고 있다. 이러한 추세에 따라 앞으로의 홈 네트워크 서비스는 효율적인 에너지 관리 기술을 중심으로 한 스마트 홈 서비스 가 대두가 될 것으로 보이며 사용자 중심의 실시간 에너지 감시 및 제어 시스템의 통합 기술이 요구가 되고 있다. 본 논문에서는 주택 내 효율적인 에너지 사용 관리를 위하여 스마트폰을 이용하여 위치 기반 그린 홈 서비스를 제시한다. 단독 주택에 그린 홈 서비스를 적용하기 위한 그린 홈 네트워크 시스템을 설계하고 홈 네트워크를 구성하는 각 기기들과 연계하여 통합 게이트웨이를 구현한다. 스마트폰을 활용하여 가전 제어 서비스와 실내 위치 서비스를 구현하고 각 방의 신호세기 변화에 따른 위치 측위를 시행하여 사용자의 재실 여부를 확인한다. 에너지의 절감 여부를 확인하기 위해 에너지 사용 패턴에 대한 시나리오를 설정하고 스마트 미터를 활용하여 실내 위치 서비스 적용에 따른 에너지 변화를 비교하였다. 제안 시스템 적용 전과 적용 후의 에너지 사용량 비교 결과 최대 30%의 에너지 절감 효과를 보여 주택 내 에너지 비용의 절감 효과를 볼 수 있을 것으로 기대된다.