• 제목/요약/키워드: Energy Growth Factor

검색결과 306건 처리시간 0.024초

해양 미세조류 Dunaliella tertiolecta에서 철 공급을 포함한 다중스트레스 인자가 세포성장 및 지질생산에 미치는 영향 (Effects of Multiple Stress Factors Including Iron Supply on Cell Growth and Lipid Accumulation in Marine Microalga Dunaliella tertiolecta)

  • 리즈완 무하마드;무지타바 굴람;이기세
    • 공업화학
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    • 제28권3호
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    • pp.306-312
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    • 2017
  • 해양 미세조류 Dunaliella tertiolecta에서 바이오디젤 원료인 지질생산을 위하여 철 함량 변화 및 빛 공급과 $CO_2$ 공급에 의한 다중스트레스 인자의 조합이 세포성장 및 지질함량의 변화에 미치는 영향을 조사하였다. 1차 스트레스 인자로 정상보다 높거나 부족한 철 함량 조건이 지질 합성을 유도할 수 있음을 확인하였다. 2차 스트레스 인자로 빛 또는$CO_2$ 공급이 제한될 때 지질함량이 증가하였지만 오랜 시간 배양할 때 세포성장이 감소하는 단점이 있었다. 이와 같이 스트레스 조건에서 세포의 성장과 지질생산이 서로 다른 경향을 보이면 단일 배양기에서 지질생산성을 높이기 어려우므로, 세포성장과 지질생산을 분리한 2단계 배양 전략을 적용하였다. 1단계 배양에서는 성장 위주의 조건으로 고농도배양을 얻은 후, 2단계에서 지질생산을 유도하는 스트레스 조건을 부여하는 것이다. 암소 조건이 다른 조건에 비해 세포농도 감소폭이 작고 지질함량이 높아졌기 때문에, 세포 2 g/L의 고농도로 접종한 2단계에서 5X 철 농도(3.25 mg/L as Fe) 및 암소 조건을 사용하여 12 h의 짧은 배양을 통하여 1.44 g/L/d의 높은 지질생산성을 얻을 수 있었다.

신.재생에너지 중장기 인력 수요 전망 및 인력양성 방향 연구 (A Study on Demand for Renewable Energy Workforce and HRD Policy Strategy)

  • 이유아;이동준;허은녕;김민지;최혁준
    • 기술혁신학회지
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    • 제14권4호
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    • pp.736-760
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    • 2011
  • 신 재생에너지 인력은 신 재생에너지 산업의 지속적인 성장을 위한 필수 요소이다. 본 연구에서는 신 재생에너지 산업의 인력 현황을 파악하고, 신 재생에너지 산업성장전망을 반영하여 2015년 신 재생에너지 인력수요를 전망하였다. 정량 분석방법론으로는 미국 노동통계국(BLS)의 저량접근법(stock approach)을 응용하였다. 또한 설문을 통하여 신 재생에너지 인력 수급 및 인력양성 프로그램에 대한 전문가들의 의견을 수렴하였다. 연구결과 신 재생에너지 산업 부문의 인력수요증가가 2010년에 1.4만 명에서 2015년에 3.3만 명으로 증가하여 연평균 20%에 가까운 증가율을 보일 것으로 분석되었다. 전문가 설문에서는 현재 신 재생에너지 인력 공급량 부족으로 앞으로 우리니라 신 재생에너지 보급 및 산업 성장 목표달성을 위하여 인력 공급대책이 조속히 마련되어야 함을 알 수 있었다. 또한, 적절한 신 재생에너지 인력 양성 프로그램 수준 결정을 위한 노력이 필요한 것으로 분석되었다. 본 연구결과는 향후 지속적인 신 재생에너지 산업 발전을 위한 인력 양성 방안에 활용될 수 있을 것이다.

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Harmonic Distortion Contribution for the Transmission Loss Allocation in Deregulated Energy Market: A New Scheme for Industry Consumer

  • Nojeng, Syarifuddin;Hassan, Mohammad Yusri;Said, Dalila Mat;Abdullah, Md.Pauzi;Hussin, Faridah
    • Journal of Electrical Engineering and Technology
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    • 제10권1호
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    • pp.1-7
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    • 2015
  • The industry has rapidly growth and energy supply technology advanced are become main factor which to contribute of the harmonic losses. This problem is one aspect that may affect the capability of the transmission line and also to the efficiency of electricity. This paper proposes a new scheme to allocate the cost pertaining to transmission loss due to harmonics. The proposed method, called as Generalized Harmonic Distribution Factor, uses the principle of proportional sharing method to allocate the losses among the transmission users especially for industry consumers. The IEEE 14- and 30 bus test system is used to compare the proposed method with existing method. The results showed that the proposed method provided a scheme better in allocating the cost of transmission loss, which could encourage the users to minimize the losses.

Impact of nuclear and renewable energy sources on environment quality: Testing the EKC and LCC hypotheses for South Korea

  • Ugur Korkut Pata;Mustafa Tevfik Kartal
    • Nuclear Engineering and Technology
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    • 제55권2호
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    • pp.587-594
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    • 2023
  • This study investigates the impacts of nuclear energy consumption on environmental quality from a different perspective by focusing on carbon dioxide (CO2) emissions, ecological footprint, and load capacity factor. In this context, the South Korea case, which is a leading country producing and consuming nuclear energy, is investigated by considering also economic growth, and the 1997 Asian crisis from 1977 to 2018. To this end, the study employs the autoregressive distributed lag (ARDL) approach. Different from previous literature, this study proposes a load capacity curve (LCC) and tests the LCC and environmental Kuznets curve (EKC) hypotheses simultaneously. The analysis results reveal that (i) the LCC and EKC hypotheses are valid in South Korea; (ii) nuclear energy has an improving effect on the environmental quality; (iii) renewable energy does not have a significant long-term impact on the environment; (iv) the 1997 Asian crisis had an increasing effect on the load capacity factor; (v) South Korea has not yet reached the turning point, identified as $55,411, where per capita income improves environmental quality. Overall, the results show the validity of the LCC and EKC hypotheses and prove the positive contribution of nuclear energy to South Korea's green development strategies.

Numerical Life Prediction Method for Fatigue Failure of Rubber-Like Material Under Repeated Loading Condition

  • Kim Ho;Kim Heon-Young
    • Journal of Mechanical Science and Technology
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    • 제20권4호
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    • pp.473-481
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    • 2006
  • Predicting fatigue life by numerical methods was almost impossible in the field of rubber materials. One of the reasons is that there is not obvious fracture criteria caused by nonstandardization of material and excessively various way of mixing process. But, tearing energy as fracture factor can be applied to a rubber-like material regardless of different types of fillers, relative to other fracture factors and the crack growth process of rubber could be considered as the whole fatigue failure process by the existence of potential defects in industrial rubber components. This characteristic of fatigue failure could make it possible to predict the fatigue life of rubber components in theoretical way. FESEM photographs of the surface of industrial rubber components were analyzed for verifying the existence and distribution of potential defects. For the prediction of fatigue life, theoretical way of evaluating tearing energy for the general shape of test-piece was proposed. Also, algebraic expression for the prediction of fatigue life was derived from the rough cut growth rate equation and verified by comparing with experimental fatigue lives of dumbbell fatigue specimen in various loading condition.

PERFORMANCE EVALUATION OF U-Mo/Al DISPERSION FUEL BY CONSIDERING A FUEL-MATRIX INTERACTION

  • Ryu, Ho-Jin;Kim, Yeon-Soo;Park, Jong-Man;Chae, Hee-Taek;Kim, Chang-Kyu
    • Nuclear Engineering and Technology
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    • 제40권5호
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    • pp.409-418
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    • 2008
  • Because the interaction layers that form between U-Mo particles and the Al matrix degrade the thermal properties of U-Mo/Al dispersion fuel, an investigation was undertaken of the undesirable feedback effect between an interaction layer growth and a centerline temperature increase for dispersion fuel. The radial temperature distribution due to interaction layer growth during irradiation was calculated iteratively in relation to changes in the volume fractions, the thermal conductivities of the constituents, and the oxide thickness with the burnup. The interaction layer growth, which is estimated on the basis of the temperature calculations, showed a reasonable agreement with the post-irradiation examination results of the U-Mo/Al dispersion fuel rods irradiated at the HANARO reactor. The U-Mo particle size was found to be a dominant factor that determined the fuel temperature during irradiation. Dispersion fuel with larger U-Mo particles revealed lower levels of both the interaction layer formation and the fuel temperature increase. The results confirm that the use of large U-Mo particles appears to be an effective way of mitigating the thermal degradation of U-Mo/Al dispersion fuel.

Creep and creep crack growth behaviors for base, weld, and heat affected zone in a grade 91 weldment

  • Kim, Woo-Gon;Sah, Injin;Kim, Seon-Jin;Lee, Hyeong-Yeon;Kim, Eung-Seon
    • Nuclear Engineering and Technology
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    • 제53권2호
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    • pp.572-582
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    • 2021
  • This study investigated the creep and creep crack growth (CCG) behavior of the base metal (BM), weld metal (WM), and heat affected zone (HAZ) in a Gr. 91 weldment, which was made by a shield metal arc weld process. A series of tensile, creep, and CCG tests were performed for the BM, WM, and HAZ at 550 ℃. Creep behavior of the BM, WM, and HAZ was analyzed in terms of various creep laws; Norton's power-law, Monkman-Grant relation and damage tolerance factor (λ), and their constants were determined. In addition, each CCGR law for the BM, WM, and HAZ was proposed and compared in terms of a C*-fracture parameter. The WM and HAZ revealed faster creep rate, lower rupture ductility, and faster CCGRs than the BM, but they showed a similar behavior in the creep and CCG. The CCGRs obtained in the present study exhibited a marginal difference when compared with those of RCC-MRx of currently elevated design code in France. A creep crack path in the HAZ plane progressed towards a weak fine-grained HAZ adjacent to the BM.

건물(建物) 최대수요전력(最大需要電力)의 효율적(效率的) 운용(運用) 방안(方案) (A Study on the Efficient peak Demand Control Method in Office Buildings)

  • 김세동
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1993년도 하계학술대회 논문집 B
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    • pp.1088-1090
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    • 1993
  • This paper shows efficient peak demand control method in office buildings. With a rapid growth of national economics and living standard, electrical energy consumption markedly increased. Expecially, it is increased electrical energy comsumption in the office buildings and thus an energy conservation through efficient use of electricity became more important. From the data of electric equipment capacity and electric power consumption for 96 buildings, current levels of demand factor and a growth trend of peak loads by office buildings were surveyed and analyzed. In addition the efficient peak demand control method in office buildings were studied.

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Effects of dietary energy and lysine levels on physiological responses, reproductive performance, blood profiles, and milk composition in primiparous sows

  • Hong, Jinsu;Fang, Lin Hu;Kim, Yoo Yong
    • Journal of Animal Science and Technology
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    • 제62권3호
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    • pp.334-347
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    • 2020
  • The adequate intake of energy and lysine for primiparous sows are necessary for maternal growth of sows and growth of their progeny. This study was conducted to evaluate the effects of dietary energy and lysine levels on primiparous sows and their progeny. A total of 48 gilts (Yorkshire × Landrace), with an initial body weight (BW) of 168.1 ± 9.71 kg and at day 35 of gestation, were allotted to eight treatment groups with a 2 × 4 factorial arrangement. The first factor was metabolizable energy levels in diet (3,265 or 3,365 kcal of ME/kg), and the second factor was lysine levels in diet (gestation 0.55%, 0.65%, 0.75%, 0.85%, lactation 0.70%, 0.85%, 1.00%, 1.15%). The BW gain (p = 0.07) and backfat thickness (p = 0.09) in the gestation period showed a tendency to be increased in sows fed the high-energy diets. In the lactation period, sows fed the high-energy diets tended to be greater BW (p = 0.09) and less BW loss (p = 0.05) than those of sows fed the low-energy diets. Sows fed high-energy diets had a tendency of greater piglet weight at day 21 of lactation and greater piglet weight gain (p = 0.08 and p = 0.08, respectively). Although the blood urea nitrogen (BUN) was increased linearly as dietary lysine level increased at day 110 of gestation (Linear, p = 0.03), the BUN was decreased linearly as dietary lysine level increase at day 21 of lactation (Linear, p < 0.01). In the composition of colostrum, sows fed high-energy diets had greater casein, protein, total solid, solid not fat, and free fatty acid concentrations than those of sows fed low-energy diets (p < 0.05). Supplementation of total lysine 0.75% for gestation and 1.00% for lactation with 3,365 kcal of ME/kg energy level could be applied to the primiparous sows' diet to improve performance of sows and growth of their progeny.