• 제목/요약/키워드: 화력학

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다중센서 융합을 통한 전투차량의 위치추정 성능 개선에 관한 연구 (A Study on the Performance Improvement of Position Estimation using the Multi-Sensor Fusion in a Combat Vehicle)

  • 남윤욱;김성호;김기태;김형남
    • 품질경영학회지
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    • 제49권1호
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    • pp.1-15
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    • 2021
  • Purpose: The purpose of this study was to propose a sensor fusion algorithm that integrates vehicle motion sensor(VMS) into the hybrid navigation system. Methods: How to evaluate the navigation performance was comparison test with the hybrid navigation system and the sensor fusion method. Results: The results of this study are as follows. It was found that the effects of the sensor fusion method and α value estimation were significant. Applying these greatly improves the navigation performance. Conclusion: For improving the reliability of navigation system, the sensor fusion method shows that the proposed method improves the navigation performance in a combat vehicle.

화력발전소 폐쇄와 항만인력 고용의 공정한 전환 (Coal-fired power plants closure and just transition of port labour employment)

  • 우수한;김두리
    • 무역학회지
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    • 제45권5호
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    • pp.55-74
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    • 2020
  • This study examines the policy direction and specific countermeasures for addressing possible port labour issues from the perspective of Just Transition which may be raised by closing coal fired power plants in Korea. Current energy transition policy and port labour policy in Korea are reviewed and case studies in the countries which has experienced closure of coal fired power plants are undertaken. Although it varies from country to country, a similar approach was found that the employment problem of coal fired power plant closures and measures based on Just Transition regime to mitigate the negative impacts that occur in the region are the key to successful transition. It is suggested that countermeasures for port labour should be institutionalized for providing stakeholders with legal stability covering labours not only directly employed by the plants but also employed in entities in the whole supply chains.

화력발전소 석탄회의 희유금속화학, 미세구조, 광물학적 특성 (Rare Metal Chemistry, Microstructures, and Mineralogy of Coal Ash from Thermal Power Plants of Korea)

  • 정기영;김석휘;김강주
    • 한국광물학회지
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    • 제28권2호
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    • pp.147-163
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    • 2015
  • 석탄화력발전 부산물인 석탄회의 희유 금속 재활용을 위한 기반 연구로서 9개 발전소의 석탄회를 대상으로 화학적 및 광물학적 특성을 분석하였다. 석탄회의 희유원소 화학조성은 전반적으로 셰일의 평균 조성과 부합하며, 국외 석탄회와 차이도 거의 없다. 그러나 국산 무연탄 비산재와 수입 유연탄 비산재는 무기원소 조성에서 약간의 차이가 있으며, 무연탄 비산재의 미연 탄소 함유량이 매우 높다. 바닥재와 비교하여 친황원소들이 비산재에 부화되는 경향이 있다. 규산염 유리가 주요 고상이며, 석영, 일라이트(백운모), 멀라이트, 자철석, 생석회, 경석고가 광물로 함유되어 있다. 규산염 유리는 Al과 Si가 주성분이고, Ca, Fe, K, Mg가 다양한 비율로 함유되어 있다. 규산염 유리는 다공성 구형 또는 비정형 부석질 입자들이며, 흔히 잔존 광물이나 산화철구, 또는 다른 유리입자들과 융접되어 있다. 산화철구 입자는 급속 성장한 산화철 미세 입자와 유리 기질로 구성되어 있다. 석탄회로부터 유가 금속 재활용을 위해서는 이상의 화학조성, 미세조직, 광물학적 특성들이 고려되어야 한다.

Multi Axis DOAS를 이용한 대기미량 물질 원격 측정 (Remote Sensing of Atmospheric Trace Species using Multi Axis Differential Optical Absorption Spectroscopy)

  • 이철규;김영준
    • 대한원격탐사학회지
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    • 제22권2호
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    • pp.141-151
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    • 2006
  • 태양광을 광원으로 하고 천정방향을 포함한 다양한 고도각을 이용하는 자외선/가시광선영역에서의 흡수분광학이 최근에 지상용 대기원격 측정에 개발되어오고 있다. 이를 이용하여 지표부근에 존재하는 대기 미량 물질의 공간적 분포가 유추될 수 있다. 대기질 측정기술 중 하나인 MAX-DOAS (Multi-axis Differential Optical Absorption Spectroscopy) 기술은 광원으로서 태양산란광을 이용하고, 다양한 고도각에서 태양산란광을 기록하고 분석을 통하여 대기 중 미량 물질을 측정한다. 광주과학기술원 환경모니터링 신기술 연구센터에서 개발된 MAX-DOAS 시스템은 9004년 1월, 5월, 10월에 각각 도시대기, 화산플룸, 화력발전소 플룸의 측정에 적용되었다. 각각의 경우에 $SO_2,\;NO_2,\;BrO,\;O_4$를 정량분석하기 위하여 기록된 MAX-DOAS 스펙트럼은 자외선/가시광선 영역에서의 고유 흡수스펙트럼을 이용한 DOAS 기술을 이용하여 분석 되었다. 그 결과는 Slant Column Density (SCD)로 표현되었다. 플룸 측정의 경우에서는 플룸 속에 포함된 $NO_2,\;SO_2$의 공간적 분포를 파악하기 위하여 플룸의 진행방향과 수직적인 방향에서 MAX-DOAS 스캔이 이루어졌다. 이를 통하여 얻은 단면적을 토대로 $SO_2,\;NO_2$ 농도가 계산되었다. 화산플룸에서 $SO_2$는 580ppbv, 화력발전소 플룸에서 $NO_2$는 337ppbv, $SO_2$는 227ppbv 로 계산되었다.

반응표면법을 이용한 석탄 화력 보일러 연소특성 예측 (Prediction of the Combustion Performance in the Coal-fired Boiler using Response Surface Method)

  • 신성우;김신우;이의주
    • 한국안전학회지
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    • 제32권1호
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    • pp.27-32
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    • 2017
  • The experimental design methodology was applied in the real scale coal-fired boiler to predict the various combustion properties according to the operating conditions and to assess the coal plant safety. Response surface method (RSM) was introduced as a design of experiment, and the database for RSM was provided with the numerical simulation of the coal-fired boiler. The three independent variables, high heating value of coal (HHV), overall stoichiometry excess air ratio (OST), and burner-side stoichiometry excess air ratio (BST), were set to characterize the cross section averaged NOx concentration and temperature distribution. The maximum NOx concentration was predicted accurately and mainly controlled by BST in the boiler. The parabola function was assumed for the zone averaged peak temperature distribution, and the prediction was in a fairly good agreement with the experiments except downstream. Also, the location of the peak temperature was compared with that of maximum NOx, which implies that thermal NOx formation is the main mechanism in the coal-fired boiler. These results promise the wide use of statistical models for the fast prediction and safety assessment.

화력발전소 바닥재로 제조된 결정화 유리의 미세구조 (Microstructure of Glass-ceramics Made from Bottom Ash Produced at a Thermal Power Plant)

  • 강승구
    • 한국재료학회지
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    • 제19권2호
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    • pp.95-101
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    • 2009
  • Glass ceramics were made from coal bottom ash by adding CaO and $Li_2O$ as glass modifiers and $TiO_2$ as a nucleating agent in a process of melting and quenching followed by a thermal treatment. The surface of the glass ceramics has 1.6 times more $Li_2O$ compared to the inner matrix. When $TiO_2$ was not added or when only 2 wt% was added, the surface parts of the glass ceramics were crystalline with a thickness close to $130{\mu}m$. In addition, the matrixes showed only the glass phase and not the crystalline phase. However, doping of $TiO_2$ from 4 wt% to 10 wt% began to create small crystalline phases in the matrix with an increase in the quantity of the crystalline. The matrix microstructure of glass ceramics containing $TiO_2$ in excess of 8 wt% was a mixture of dark-gray crystalline and white crystalline parts. These two parts had no considerable difference in terms of composition. It was thought that the crystallization mechanism affects the crystal growth, direction and shape and rather than the existence of two types of crystals.

보령화력 지역의 복잡지형이 대기확산 모델링에 미치는 영향 비교 (Comparison of Complex Terrain Effects in the Air Dispersion Modeling at the Poryong Power Plant Site)

  • 오현선;김영성;김진영;문길주;홍욱희
    • 한국대기환경학회지
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    • 제13권6호
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    • pp.427-437
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    • 1997
  • Complex terrain which is rather typical topographic character in Korea would greatly influence the dispersion of air pollutant. In this study, we investigated how the complex terrain in the vicinity of the coal-fired plant affects the air dispersion modeling results by using several US EPA models: SCREEN, CTSCREEN, ISCLT3, ISCST3, and RTDM. Screening analysis was followed by long-term analysis, and the plume movement over the terrain was precisely tracked for selected cases. Screening analysis revealed that the highest concentration of sulfur dioxide occurs at the downwind distance of 1.3 km under the unstable conditions with weak winds. However, this highest level of $SO_2$ could be raised by 4 times even in the presence of a hill of 170 m at a distance of 2 to 3 km. Seasonal and annual average concentrations predicted with the ISCLT3, ISCST3, and RTDM models showed a rapid incrase of $SO_2$ levels in front of the high mountains which are located more than 15 km away fromt the source. The highest concentrations predicted with ISCST3 were significantly higher than those with ISCLT3 and RTDM mainly because ISCST3 chooses simple-terrain model calculations for receptors between stack height and plume height. Although the highest levels under the stable conditions were usually found in the areas beyond 15 km or more, their absolute values were not so high due to enough dispersion effects between the source and the receptors.

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석탄화력발전소 현장의 석탄연소 배가스 고도처리용 건식 분류층 반응 실증장치에서의 $SO_2$ 제거성능 특성 (Removal Characteristics of $SO_2$ in the Coal Combustion Flue Gas Treatment Convergence System)

  • 전성민;박형상;박영옥
    • 한국입자에어로졸학회지
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    • 제9권4호
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    • pp.239-246
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    • 2013
  • The purpose of this study is to determine the feasibility of dry-type desulfurization process for actual application to coal-fired power plant. We used actual exhaust gas from Facility Y, Plant #2 to fabricate a demo-scale testing device to attempt to improve the efficiency of desulfurization. A spout-bed circulating dry scrubber convergence system connecting turbo reactor with bag filter was devised, then analyzed for performance characteristics of $SO_2$ removal for Ca/S mole ratio, superficial gas velocity, and ammonia injection, and for secondary reaction characteristics of the non-reactive sorbent at the bag filter. As a result, the installation of spout-bed circulating dry scrubber convergence system showed better economy and efficiency for removing sulfur than the existing wet/semidry-type desulfurization process. In addition, the best efficiency for desulfurization occurred when connected to the bag filter, with differential pressure maintained at 150 $mmH_2O$.

연료와 CO2 농도분석을 이용한 아역청탄 화력발전소의 온실가스 배출계수 개발 (Development of CO2 Emission Factor by Fuel and CO2 analysis at Sub-bituminous Fired Power Plant)

  • 전의찬;사재환
    • 한국환경보건학회지
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    • 제36권2호
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    • pp.128-135
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    • 2010
  • The main purpose of this study was to develop the greenhouse gas emission factor for power plant using sub-bituminous coal. In Korea, Fired power plant are a major source of greenhouse gases within the fossil fuel combustion sectors, thus the development of emission factors is necessary to understand the characteristics of the national specific greenhouse gas emission and to develop nation specific emission factors. These emission factors were derived from the $CO_2$ concentrations measurement from stack and fuel analysis of sub-bituminous coal. Caloric value of sub-bituminous coal used in the power plants were 5,264 (as received basis), 5,936 (air-dried basis) and 6,575 kcal/kg (dry basis). The C emission factors by fuel analysis and $CO_2$ concentration measurement was estimated to be 26.7(${\pm}0.9$), 26.3(${\pm}2.8$)tC/MJ, respectively. Our estimates of C emission factors were comparable with IPCC default value.

미분탄 화력발전소 연료로서 고수분 인도네시아탄의 연소특성 (Combustion Characteristics of High Moisture Indonesia Coal as a Pulverized Fuel at Thermal Power Plant)

  • 김재관;이현동
    • 한국연소학회지
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    • 제14권3호
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    • pp.16-23
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    • 2009
  • It is strongly desired for coal-fired power plants to utilize not only low-rank coals with high moisture contents, but also lowering cost with diversifying fuel sources. In this study, combustion characteristics of low rank coal with high moisture, and standard pulverized coals are experimentally investigated using TGA (Thermogravimetric Analysis) and DTF (drop tube furnace). The coals tested are three kinds of coal with moisture content ranging from 8.32 to 26.82%. The results show that under the air combustion condition, the burn-out time at TGA rises as moisture content increases, and standard pulverized coal with 8.32% moisture content showed the lowest activation energy of 55.73 kJ/mol. In case of the high amount of moisture, the combustion efficiency decreases due to evaporation heat loss, and unburned carbon in ash produced at combustion process in DTF increased. Aslo, initial deformation temperature of slag attached in alumina tube of DTF decreased with lowering the crytallinity of anorthite and augite. To improve the combustion reactivity and efficiency, it is effective to upgrade through drying the high moisture coal to moisture level (less than 10%) of standard pulverized coal.

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