• 제목/요약/키워드: energy intensity effect

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LMDI 요인 분해분석을 이용한 우리나라 제조업 전력화 현상에 관한 연구 (LMDI Decomposition Analysis for Electricity Consumption in Korean Manufacturing)

  • 한준
    • 에너지공학
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    • 제24권1호
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    • pp.137-148
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    • 2015
  • 그동안 우리나라 산업은 빠르게 전력화가 되어 왔는데, 특히 제조업에서 직접가열용으로 이용되는 에너지는 전체 에너지의 44.0%(2010년 기준)를 차지하면서 전력화가 많이 일어났다. 이 연구는 1992~2012년 기간 동안 우리나라 제조업에서 직접가열용으로 소비되는 전기사용량에 대해 로그 평균 디비지아 방식(Log Mean Divisia Index; LMDI) 분해분석을 이용하여 소비 특성을 분석하였다. 분해요인으로는 전기비중 효과, 직접가열용 비중 효과, 에너지원단위 효과, 부가가치 효과를 포함하였으며, 업종별 소비 양상도 비교하였다. 분석 결과, 우리나라 제조업에서 직접가열용 전기 소비가 증가한 것은 무엇보다 직접가열용 에너지의 전력화 현상으로 인한 영향이 가장 컸다. 업종으로는 석유 화학과 1차금속 업종에서 직접가열용의 전력화 현상이 가장 크게 나타났다.

광합성을 이용한 바이오수소 생산 (Biohydrogen production using photosynthesis)

  • 심상준;김준표
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 춘계학술대회
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    • pp.478-481
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    • 2006
  • Energy is vital to global prosperity, yet dependence on fossil fuels as our primary energy source contributes to global climate change environmental degradation, and health problems. Hydrogen $(H_2)$ offers tremendous potential as a clean renewable energy currency. Hydrogen has the highest gravimetric energy density of any known fuel and is compatible with electrochemical and combustion processes for energy conversion without producing carbon-based emission that contribute to environmental pollution and climate change. Numerous methodologies have been developed for effective hydrogen production. Among them, the biological hydrogen production has gained attention, because hydrogen can be produced by cellular metabolismunder the presence of water and sunlight. The green alga Chlamydomonas reinhardtii is capable of sustained $H_2$ photoproduction when grown under sulfur deprived condition. Under sulfur deprived conditions, PSII and photosynthetic $O_2$ evolution are inactivated, resulting in shift from aerobic to anaerobic condition in the culture. After anaerobiosis, sulfur deprived algal cells induce a reversible hydrogenase and start to evolve $H_2$ gas in the light. According to above principle, we investigated the effect of induction parameters such as cell age, cell density. light intensity, and sulfate concentration under sulfur deprived condition We also developed continuous hydrogen production system by sulfate re-addition under sulfur deprived condition.

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스핀스캔 레티클 탐색기의 DIRCM 재밍효과 분석 (DIRCM Jamming Effect Analysis of Spin-Scan Reticle Seeker)

  • 안상호;김영춘;이광세;김기홍;김성수
    • 한국군사과학기술학회지
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    • 제12권6호
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    • pp.776-784
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    • 2009
  • The function of DIRCM(Directed Infrared Countermeasures) jamming is to cause the missile to miss its intended target by disturbing the seeker tracking process. The DIRCM jamming uses the pulsing flashes of IR energy and its frequency, phase and intensity have influence on the missile guidance system. In this paper, we analysis the DIRCM jamming effect of spin-scan reticle seeker. Simulation results show that the jamming effect is greatly influenced by frequency, phase and intensity of the jammer signal.

우리나라 1차 에너지와 최종 에너지 소비 변화요인 분해 비교분석 (A Comparison of Decomposition Analyses for Primary and Final Energy Consumption of Korea)

  • 박성준;김진수
    • 자원ㆍ환경경제연구
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    • 제23권2호
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    • pp.305-330
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    • 2014
  • 그 동안 에너지 소비 변화요인을 규명하기 위한 많은 연구가 이루어져 왔다. 그런데 상당수의 연구에서 최종 에너지를 기준으로 분해분석을 수행, 에너지 소비나 이산화탄소 배출량을 집약도, 구조, 생산 효과로 나누어 분석하였다. 그러나 최종 에너지를 기준으로 할 경우 많은 전환 손실이 발생하는 전력 부문으로 인하여 정확한 소비량 변화 요인의 규명이 어려울 수 있다. 이에 본 연구에서는 전력 소비 위주로 변화하고 있는 우리나라의 에너지 소비 구조를 보다 명확하게 반영하여 에너지 소비 변화 요인을 살펴보고자 1차 에너지 소비를 기준으로 지수분해 분석을 수행하였다. 분석 방법론으로는 Refined Laspeyres 모형과 LMDI 모형을 사용하였다. 분석 결과, 1차 에너지 소비량을 기준으로 분해분석 한 결과와 최종 에너지를 기준으로 분해분석 결과의 차이가 점차 커지는 경향을 확인하였다. 최종 에너지를 기준으로 분석 한 결과 1981년 대비 2011년 집약도 효과는 0.607배 감소, 구조 효과는 0.227배 증가 한 것으로 나타난 반면, 1차 에너지를 기준으로 분해분석 한 결과를 보면 집약도 효과가 0.236배 감소하고, 구조 효과가 0.434배 증가하는 것으로 분석되었다. 따라서 향후 분해분석 연구 수행에 있어서는 반드시 1차 에너지를 기준으로 분석을 수행해야 할 것이다.

Effects of Light Pulse Intensity and Quencher Concentration on the Time-Dependent Fluorescence Quenching Kinetics

  • Yang Mino;Lee Sangyoub;Shin, Kook Joe;Choo Kwang Yul;Lee Duckhwan
    • Bulletin of the Korean Chemical Society
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    • 제13권3호
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    • pp.325-331
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    • 1992
  • By using the general theoretical framework proposed recently for treating the fluorescence quenching kinetics, we investigate the effect of light pulse intensity on the decay of fluorescence which follows excitation of fluorophors by the light pulse of very short but finite duration. It is seen that conventional theory breaks down when the exciting light pulse has a pulse width comparable to the fluorescent lifetime and its intensity is very high. We also find that even when the light intensity is not too high, conventional theory may fail in either of the following cases: (i) when the quencher concentration is high, (ii) when there is an attractive potential of mean force between the fluorophor and quencher, or (iii) when the energy transfer from the fluorophor to the quencher may also occur at a distance, e.g., via dipole-dipole interaction. The validity of the predictions of the present theory may thus be tested by fluorescence quenching experiments performed under such situations.

국내 에너지다소비건물의 용도별.지역별 온실가스 배출원단위분석 연구 (A Study on the Greenhouse Gas Intensity of Building Groups and Regional in Korea)

  • 이충국;서승직
    • 한국태양에너지학회 논문집
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    • 제32권3호
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    • pp.162-169
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    • 2012
  • Our country set the mid-term reduction goal of greenhouse gases up to 2020 in accordance with Bali roadmap agreed in 2007 through the negotiation with UNFCCC in 2009 and specified the proper goal as by the Basic Act on Green Growth that went into effect at April, 2010. First of all the enlargement of green building construction has been suggested as a worldwide strategy to achieve the green house gas reduction. Building area is one of most important sectors for the countermeasure of climate change agreement and the achievement of national green house gas reduction goal and the need to reduce its green house gases has been increased accordingly. The objective of the study is to examine the status and characterization of mass energy consumption local governmental buildings' green house gas emissions depending on usage (hotel, school, apartment, hospital) through the green house gas emission source unit analysis. The result indicated that the energy source unit was proportional to green house gas source unit and hotel showed the highest green house gas emission source unit per open area of construction unit, followed by hospital, apartment, and then school. In case of apartment, green house gas emission source unit per open area of construction unit decreased as year went on. Meanwhile school building showed a striking increase in the annual energy source unit.

A feasibility study on photo-production of 99mTc with the nuclear resonance fluorescence

  • Ju, Kwangho;Lee, Jiyoung;ur Rehman, Haseeb;Kim, Yonghee
    • Nuclear Engineering and Technology
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    • 제51권1호
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    • pp.176-189
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    • 2019
  • This paper presents a feasibility study for producing the medical isotope $^{99m}Tc$ using the hazardous and currently wasted radioisotope $^{99}Tc$. This can be achieved with the nuclear resonance fluorescence (NRF) phenomenon, which has recently been made applicable due to high-intensity laser Compton scattering (LCS) photons. In this work, 21 NRF energy states of $^{99}Tc$ have been identified as potential contributors to the photo-production of $^{99m}Tc$ and their NRF cross-sections are evaluated by using the single particle estimate model and the ENSDF data library. The evaluated cross sections are scaled using known measurement data for improved accuracy. The maximum LCS photon energy is adjusted in a way to cover all the significant excited states that may contribute to $^{99m}Tc$ generation. An energy recovery LINAC system is considered as the LCS photon source and the LCS gamma spectrum is optimized by adjusting the electron energy to maximize $^{99m}Tc$ photo-production. The NRF reaction rate for $^{99m}Tc$ is first optimized without considering the photon attenuations such as photo-atomic interactions and self-shielding due to the NRF resonance itself. The change in energy spectrum and intensity due to the photo-atomic reactions has been quantified using the MCNP6 code and then the NRF self-shielding effect was considered to obtain the spectrums that include all the attenuation factors. Simulations show that when a $^{99}Tc$ target is irradiated at an intensity of the order $10^{17}{\gamma}/s$ for 30 h, 2.01 Ci of $^{99m}Tc$ can be produced.

Photoinhibition Induced Alterations in Energy Transfer Process in Phycobilisomes of PS II in the Cyanobacterium, Spirulina platensis

  • Kumar, Duvvuri Prasanna;Murthy, Sistla D.S.
    • BMB Reports
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    • 제40권5호
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    • pp.644-648
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    • 2007
  • Exposure of algae or plants to irradiance from above the light saturation point of photosynthesis is known as high light stress. This high light stress induces various responses including photoinhibition of the photosynthetic apparatus. The degree of photoinhibition could be clearly determined by measuring the parameters such as absorption and fluorescence of chromoproteins. In cyanobacteria and red algae, most of the photosystem (PS) II associated light harvesting is performed by a membrane attached complex called the phycobilisome (PBS). The effects of high intensity light (1000-4000 ${\mu}mol$ photons $m^{-2}s^{-1}$) on excitation energy transfer from PBSs to PS II in a cyanobacterium Spirulina platensis were studied by measuring room temperature PC fluorescence emission spectra. High light (3000 ${\mu}mol$ photons $m^{-2}s^{-1}$) stress had a significant effect on PC fluorescence emission spectra. On the other hand, light stress induced an increase in the ratio of PC fluorescence intensity of PBS indicating that light stress inhibits excitation energy transfer from PBS to PS II. The high light treatment to 3000 ${\mu}mol$ photons $m^{-2}s^{-1}$ caused disappearance of 31.5 kDa linker polypeptide which is known to link PC discs together. In addition we observed the similar decrease in the other polypeptide contents. Our data concludes that the Spirulina cells upon light treatment causes alterations in the phycobiliproteins (PBPs) and affects the energy transfer process within the PBSs.

Shaking table test and numerical analysis of a combined energy dissipation system with metallic yield dampers and oil dampers

  • Zhou, Qiang;Lu, Xilin
    • Structural Engineering and Mechanics
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    • 제17권2호
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    • pp.187-201
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    • 2004
  • A shaking table test on a three-story one-bay steel frame model with metallic yield dampers and their parallel connection with oil dampers is carried out to study the dynamic characteristics and seismic performance of the energy dissipation system. It is found from the test that the combined energy dissipation system has favorable reducing vibration effects on structural displacement, and the structural peak acceleration can not evidently be reduced under small intensity seismic excitations, but in most cases the vibration reduction effect is very good under large intensity seismic excitations. Test results also show that stiffness of the energy dissipation devices should match their damping. Dynamic analysis method and mechanics models of these two dampers are proposed. In the analysis method, the force-displacement relationship of the metallic yield damper is represented by an elastic perfectly plastic model, and the behavior of the oil damper is simulated by a velocity and displacement relative model in which the contributions of the oil damper to the damping force and stiffness of the system are considered. Validity of the analytical model and the method is verified through comparison between the results of the shaking table test and numerical analysis.

Energy Consumption and Exercise Effect of University Students During Automatic Stepper Exercise

  • MOON, Hwang-woon;CHOI, Youn-Jin
    • 식품보건융합연구
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    • 제7권6호
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    • pp.17-24
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    • 2021
  • This study investigates the exercise-physiological changes in stages through the movement of the automatic stepper and to analyze the usefulness of the automatic stepper. For 18 male university students, out of 10 levels, 5 level and 10 level of automatic stepper exercise were performed. At each 10, 20, 30 minutes during exercise, 5 and 10 minutes after exercise stop the subjects were examined to analyze the changes in energy consumption after minutes, respiratory exchange rate, heart rate, oxygen consumption per body weight, METs, cumulative energy consumption, and lactic acid to verify the usefulness of the automatic stepper. The mean and standard deviation were calculated using the SPSS, and one-way ANOVA with repeated measure was performed to verify the difference in the mean between time periods. The LSD method was used for the post-hoc test, and the significance level was set to α = .05. There were no significant changes in both 5 and 10 level, but the cumulative energy consumption over time increased significantly. In addition, as a low-intensity exercise intensity is shown, a low increase in lactic acid indicated a safe exercise level. In future studies, in-depth studies of various variables through regular exercise programs are needed for those who need safe exercise.