• Title/Summary/Keyword: 전기생산량

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Optimal Design of PM Wind Generator Based on Genetic Algorithm Combined with Mesh Adaptive Direct Search (MADS를 결합한 GA 기반의 풍력발전기 최적설계)

  • Ahn, Young-Jun;Park, Ji-Seong;Lee, Chel-Gyun;Kim, Jong-Wook;Kim, Yong-Jae;Jung, Sang-Yong
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.615_616
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    • 2009
  • 유한요소해석(Finite Element Analysis)을 통한 풍력발전기 최적설계시, 해석 특성상 발생하는 막대한 소요시간의 개선이 필요하다. 본 논문에서는 연간 에너지 생산량(Annual Energy Production : AEP)의 최대화를 목표로 GA(Genetic Algorithm)와 MADS(Mesh Adaptive Direct Search)를 결합한 혼합 알고리즘을 이용하여 최적설계를 수행하였다. 또한, 혼합 알고리즘과 병렬분산 유전알고리즘을 이용한 최적설계의 해석 소요시간을 비교 및 검토하였다.

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An Strategy for Developing Power System Operation Technology (계통운영기술 발전 전략에 관한 연구)

  • Choi, S.Y.;Kim, H.J.;Shin, M.C.;Hwang, H.B.;Lee, J.H.
    • Proceedings of the KIEE Conference
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    • 2005.07a
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    • pp.435-437
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    • 2005
  • 전력계통 운영은 시시각각 변화하는 전체 전력계통의 수요에 맞춰서 다양하고 광범위하게 구성된 발전 설비의 전력생산량을 정확히 일치시킴과 동시에 전국에 걸쳐 복잡하고 다단계적으로 망을 형성하고 있는 송전계통을 통하여 전력을 안정하게 유통하는 것이다. 이러한 수급조정과 계통의 안정운용이라는 기본적인 목표와 함께 수요의 급변이나 전력설비의 불시고장정지 등으로 전력 계통상황, 위급해지거나 정전사고를 유발할 경우 신속히 대응, 복수조치를 취할 수 있도록 능력을 확보하는 것 또한 주요 목표이므로 전력계통운영의 기본 목표를 효율적으로 달성하기 위한 기술발전의 목표와 현재의 당면한 기술적 과제를 효과적으로 대처해 나감으로서 중장기적으로 발전시켜 나아가야할 미래지향적 기술 발전 추진계획을 제시하였다.

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Development of Uniform sized(120nm) and Pro-environmental Colloidal Silica Slurry for CMP process (균일한 입도분포를 가진 큰 입자(120nm)로 구성된 친환경적인 반도체 연마제용 Colloidal Silica 개발)

  • Jung, Suk-Jo;Byun, Jung-Hwan;Bae, Sun-Yun;Park, Chul-Jin;Kim, Chang-Hoon;Cho, Kweng-Rae
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.11a
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    • pp.129-131
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    • 2004
  • 전 세계적으로 반도체 연마제용으로 silica를 많이 사용하고 있으며, 주로 fumed silica 및 colloidal silica로 구분되어진다. 반도체 연마제로서의 가장 중요한 요소는 연마율, defect 및 uniformity 등이 있으며, 현재 defect 및 uniformity는 많은 연구개발을 통하여 증진되었지만 반도체 생산량과 직접 관련된 연마율을 증가시키는 기술은 화학약품 및 slurry의 농도 증가로만 가능하다. 이에 연마제의 전반적인 기능을 상승시켜 기존보다 연마율은 높이고, 결함율을 낮추며, 120nm 이상의 입자크기를 제조하여도 근일한 입도 분포도를 나타내어주고, 장기간 안정하게 사용가능하고, 친환경적인 반도체 연마제를 개발하였다.

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Introduction of Joint control system for the Shiwa Tidal Power Plant Construction (시화호 조력발전소건설 Joint Control System 소개)

  • Oh, Mim-Hwan;Kim, Jae-Hoon;Shin, Kwang-Chul
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.2222-2223
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    • 2008
  • JCS(Joint Control System)는 대규모 조력발전소에서의 조력발전소에 설치된 10대(25.4MWx10기)이상의 발전기에 대한 전자동 운전, 운영의 최적화, 운전 모드, 발전소 특성변수, 각종 운전상의 또는 법적 규제치 등을 고려하여 전력생산량을 극대화한다. 또한 발전소 운영의 단순화(종합설정: Global Setting, 부하특성곡선 등) 안전한 운전을 위한 발전소의 각종 변수 및 제한값을 감시하며 발전소의 발전기를 한 대의 발전기처럼 제어할 수 있도록 한다.

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Operational Characteristic Analysis of DC Micro-grid with Detail Model of Distributed Generation (분산전원 세부모델을 적용한 DC Micro-grid의 동작특성 분석)

  • Lee, Ji-Heon;Kwon, Ki-Hyun;Lee, Hye-Yeon;Han, Byung-Moon
    • Proceedings of the KIEE Conference
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    • 2008.10c
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    • pp.151-153
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    • 2008
  • DC 마이크로그리드는 태양광과 연료전지와 같은 DC 출력의 분산전원, 풍력이나 가스엔진과 같은 AC 출력의 분산전원이 이차전지나 수퍼커패시터와 같은 에너지 저장장치와 직류로 결합되어 있는 구조로, 최근 급증하고 있는 디지털부하에 고품질, 고신뢰도 전력을 공급하는 새로운 직류배전시스템이다. 본 연구에서는, 먼저 DC 마이크로그리드의 한 시스템 구성을 가정하고, 이들 분산전원과 에너지저장의 컨버터를 제어하는 기법을 제안하였다. 또한 PSCAD/EMTDC 소프트웨어를 사용하여 각각의 분산전원의 세부모델을 구현하고, 이를 DC 마이크로그리드로 구성한 후 분산전원의 생산량, 에너지저장의 저장량, 부하의 소모량, 연계 계통의 공급량을 타당한 시나리오로 가정하여 전체 마이크로그리드의 동작을 분석하였다.

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Startup of Microbial Electrolysis Cells with different mixing ratio of Anaerobic Digested Sludge and Buffer solution (혐기성소화 슬러지 비율에 따른 미생물전기분해전지의 식종 특성)

  • Song, Geunwuk;Baek, Yunjeong;Seo, Hwijin;Jang, Hae-Nam;Chung, Jae Woo;Lee, Myoung-Eun;Ahn, Yongtae
    • Journal of the Korea Organic Resources Recycling Association
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    • v.27 no.4
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    • pp.51-59
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    • 2019
  • In this study, the influence of anaerobic digested sludge and 50 mM PBS (phosphate buffer solution) mixing ratio (1:1, 1:2, 1:3, 1:4, 1:5, 1:6, 1:7) on hydrogen production and inoculation period were examined. MECs were operated in fed-batch mode with an applied voltage of 0.9 V. As a result, in the 1:1 mixing ratio reactor, 9.8-20.9 mL of hydrogen was produced with the highest hydrogen content of 66.8-79.6%. Hydrogen gas production and power density increased from after 12 days of inoculation for the 1:1 mixing ratio reactor. In case of 1:2, 1:3 and 1:4 mixing ratio reactor, the hydrogen gas production was 3.7-7.1 mL and the hydrogen gas content was 5.8-65.8%. The hydrogen gas yield in 1:5, 1:6 and 1:7 ratio reactors, was 0.50-0.69 mL and hydrogen content range was 1.8-7.1%. The mixing ratio was found to be suitable for hydrogen production and inoculation period by mixing ratio up to 1:4.

Effect of substrate concentration on the operating characteristics of microbial electrolysis cells (기질 농도에 따른 미생물전기분해전지의 운전 특성)

  • Hwijin Seo;Jaeil Kim;Seo Jin Ki;Yongtae Ahn
    • Journal of the Korea Organic Resources Recycling Association
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    • v.31 no.4
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    • pp.41-49
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    • 2023
  • This study examined the effect of input substrate concentration on hydrogen production of microbial electrolysis cells. To compare the performance of MEC according to the input substrate concentration, six laboratory-scale MEC reactors were operated by sequentially increasing the input substrate concentration from 2 g/L of sodium acetate, to 4 g/L, and 6 g/L. The current density, hydrogen production, and SCOD removal rate were analyzed, and energy efficiency and cathodic hydrogen recovery were calculated to compare the performance of MEC. The maximum volumetric current density was obtained at 4 g/L condition (76.3 A/m3) and it decreased to 19.0 A/m3, when the input concentration was increased to 6 g/L, which was a 75% decrease compared to the 4 g/L input condition. Maximum hydrogen production was obtained also at 4 g/L condition (47.3 ± 16.8 mL), but maximum hydrogen yield was obtained at 2 g/L input condition (1.1 L H2/g CODin). Energy efficiencies were also highest in 2 g/L condition; the lowest result was observed at 6 g/L condition. Maximum electrical energy efficiency was 76.4%, and the maximum overall energy efficiency was 39.7% at 2 g/L condition. However, when the substrate concentration increased to 6 g/L, the performance was drastically decreased. Cathodic hydrogen recovery also showed a similar tendency with energy efficiency, with the lowest concentration condition showing the best performance. It can be concluded that operating at low input substrate concentration might be better when considering not only hydrogen yield but also energy efficiency.

Electricity Generations in Submerged-flat and Stand-flat MFC Stacks according to Electrode Connection (침지 및 직립 평판형 MFC 스택에서 전극연결 방식에 따른 전기발생량 비교)

  • Yu, Jaecheul;Park, Younghyun;Lee, Taeho
    • KEPCO Journal on Electric Power and Energy
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    • v.2 no.4
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    • pp.589-593
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    • 2016
  • Microbial fuel cell (MFC) can produce electricity from oxidation-reduction of organic and inorganic matters by electrochemically active bacteria as catalyst. Stacked MFCs have been investigated for overcoming low electricity generation of single MFC. In this study, two-typed stacked-MFCs (submerged-flat and stand-falt) were operated according to electrode connection for optimal stacked technology of MFC. In case of submerged-flat MFC with all separator electrode assembly (SEA) sharing anode chamber, MFC with mixed-connection showed more voltage loss than MFC with single-connection method. And MFC stacked in parallel showed better voltage production than MFC stacked in series. In case of stand-flat MFC, voltage loss was bigger when SEAs sharing anodic chamber only were connected in series. Voltage loss was decreased when SEAs parallel connected SEAs sharing anodic chamber were connected in series.

A Study on the Property of Combustion tower Dust in EAF Process (전기로 연소탑 하단에 포집되는 분진의 특성 연구)

  • Kim, Young-Hwan;Yoo, Jung-Min
    • Resources Recycling
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    • v.26 no.5
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    • pp.48-53
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    • 2017
  • During steelmaking on EAF, 1 ~ 2% of dust is generated. EAF Dust contains 20 ~ 30% of Zn and Fe. Dust contained in Off-gas is passed through combustion tower and cooling tower, and then captured in bag filter. About 15 wt.% of dust is dropped at the bottom of Combustion tower by its specific gravity, which was also carried out to recycle company with more higher charge than Bag filter dust. This study is focused on the combustion tower dust, and seperation as a function of operation period and particle size. As a result, Zn and Fe content of dust is more affected by size factor than operation period.

Effect of Trichoderma sp. GL02 on alleviating Drought Stress in Pepper Plants (Trichoderma sp. GL02에 의한 고추 식물의 건조 스트레스 완화 효과)

  • Kim, Sang Tae;Yoo, Sung-Je;Song, Jaekyeong;Weon, Hang-Yeon;Sang, Mee Kyung
    • Korean Journal of Organic Agriculture
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    • v.28 no.3
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    • pp.417-430
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    • 2020
  • Drought stress is one of major environmental stresses in plants; this leads to reduce plant growth and crop yield. In this study, we selected fungal isolate for mitigating drought stress in pepper plants. To do this, 41 fungi were isolated from rhizosphere or bulk soils of various plants in Jeju, Gangneung, Hampyeong in Korea. Out of 41 isolates, we screened two isolates without phytotoxicity through seed germination of tomato, pepper, and cabbage treated with fungal spores; through following plant assay, we selected GL02 as a candidate for alleviating drought stress in pepper plants. As a result of greenhouse test of pepper plants in drought condition, the stomatal conductance on leaves of pepper plants treated with GL02 was increased, whereras the malondialdehyde (MDA) and electrolyte leakage were decreased compared to that in control plants. When stressed plants were rewatered, stomatal conductance of the plants treated with GL02 was increased; the electrolyte leakage was decreased. Based on internal transcribed spacer (ITS) sequencing analysis, isolate GL02 was belonging to genus Trichoderma. Taken together, drought stress in pepper plants treated with GL02 was alleviated, when it was rewatered after drought-stressed, the plants could be recovered effectively. Therefore, Trichoderma sp. GL02 could be used as a bio-fertilizer to alleviate drought stress in pepper plants.