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      • KCI등재

        UO$_{2}$ 펠릿 산화로의 분말 비산 방지를 위한 최종속도 측정

        김영환,윤지섭,정재후,진재현,홍동희,Kim Young-Hwan,Yoon Ji-Sup,Jung Jae-Hoo,Jin Jae-Hyun,Hong Dong-Hee 한국방사성폐기물학회 2005 방사성폐기물학회지 Vol.3 No.2

        A voloxidizer for a hot cell demonstration, that handles spent fuels of a high radiation level in a limited space should be small and spent fuel powders should not be dispersed out of the equipment involved. In this study a density rate equation as well as the Stokes'equation has been proposed in order to obtain the theoretical terminal velocity of powders. The terminal velocity of U$_{3}$O$_{8}$ has been predicted by using the terminal velocity of SiO$_{2}$, and then determination has been the optimum air flow rate which is able to prevent powders from scattering. An equation which has shown a relationship between theoretical terminal velocities of U$_{3}$O$_{8}$ and SiO$_{2}$ has been derived with the help of the Stokes'equation, and then an experimental verification made for the theoretical Stokes' equation of SiO$_{2}$ by means of an experimental device made of acryl. The theoretical terminal velocity based on the proposed density rate equation has been verified by detecting U$_{3}$O$_{8}$ powders in a filter installed in the mock-up voloxidizer. As the results, the optimum air flow rates seem to be 20 LPM by the Stokes'equation while they are 14.5 L/min by the density rate equation. At the experiments with the mock-up voloxidizer, a trace amount of U$_{3}$O$_{8}$ seems to be detectable at the air flow rate of 14.5 L/min by the density rate equation, but U$_{3}$O$_{8}$ powders of 7$\mu$m diameter seem detectable at the air flow rate of 20 L/min by the Stokes'equation. It is revealed that 14.5 L/min is the optimum air flowe rate which is capable of preventing U$_{3}$O$_{8}$ powders from scattering in the UO$_{2}$ voloxidizer and the proposed density rate equation is proper to calculate the terminal velocity of U$_{3}$O$_{8}$ powders.

      • KCI등재

        용융전로(熔融轉爐)슬래그와 CaO펠렛의 상호반응(相互反應)에 미치는 $Al_{2}O_{3}$의 영향(影響)

        김영환,고인용,Kim, Young-Hwan,Ko, In-Yong 한국자원리싸이클링학회 2006 資源 리싸이클링 Vol.15 No.2

        용융전로슬래그로부터 일반 포틀랜드 시멘트로의 전환에 관한 기초 연구의 일환으로, 전로슬래그의 $Al_{2}O_{3}$ 농도에 따를 고체 CaO 입자와 용융슬래그간의 계면반응을 알아보고자 하였다. 염기도($B=CaO/SiO_2$)를 1과 2로 조정한 전로슬래그에 소정의 $SiO_2$와 $5{\sim}15wt%\;Al_{2}O_{3}$를 첨가제로 첨가하여 MgO도가니에 넣고 $1500^{\circ}C$에서 30분간 가열 용해하여 균질화 한 후, 같은 온도의 소결 CaO펠렛을 투입하여 $10{\sim}30$분간 반응시켰다. 반응 후 급냉한 시편을 도가니의 직경방항으로 절단해서 펠렛 단면의 CaO직경 변화를 측정하여 슬래그중 $Al_{2}O_{3}$첨가에 따른 CaO의 용해속도를 조사하고, 계면 생성층을 SEM/EDX로 관찰하였다. 그 결과, 슬래그의 염기도가 2인 경우, 염기도가 1인 경우 보다 생성층 $C_{3}S$상의 두께는 $Al_{2}O_{3}$를 15wt.%까지 첨가함에 따라 3.5배 증가하였으며, $C_{6}AF_{2}$ 또는 $C_{4}AF$양도 2배 정도 증가됨을 알 수 있었다. As a basic study on the conversion of molten converter slag to the ordinary portland cement, the effects of $Al_{2}O_{3}$ addition on the interface reaction between solid CaO and molten converter slag has been studied. Alumina added converter slag whose basicity was controlled to 1 and 2 was melted and hold for 30 minutes in MgO crucible at $1500^{\circ}C$. Then sintered CaO pellet heated at the same temperature was dipped into the molten slag and held for 30minutes. After the reaction, the crucible was cooled in air and the specimen was cut off to the horizontal direction of the crucible. The dissolution rate of CaO pellet with the addition of $Al_{2}O_{3}$ was measured by the change of the radius or sintered CaO pellet and the interface layer was observed by SEM/EDX. As a result. At the basicity 2 slag, thickness of created $C_{3}S$ layer increased 3.5 times and quantity of $C_{6}AF_{2}\;or\;C_{4}AF$ phase increase 2 times than baisicy 1 slag.

      • KCI등재

        고리원전의 온배수 방출이 주변 해조군집에 미치는 영향

        김영환,안중관,윤희동,장민아,Kim, Young-Hwan,Ahn, Jung-Kwan,Yoon, Hee-Dong,Jang, Min-A 한국조류학회(藻類) 2007 ALGAE Vol.22 No.4

        This study is intended to clarify the effects of heated effluents on intertidal benthic marine algal community in Korea. The species composition and biomass of marine algae at the discharge canal of Gori nuclear power plant on the southeastern coast of Korea were investigated seasonally from February 2001 to October 2006. As a result, 54 species (7 blue-green, 12 green, 9 brown and 26 red algae) of marine algae were found at the discharge canal during the past six years. In general, the number of species observed was abundant during winter to spring and less in autumn. Enteromorpha compressa, E. intestinalis, E. prolifera and Caulacanthus ustulatus were common species found more than 80% frequency during the study period. Seasonal fluctuations of mean biomass were 1-440 g dry wt m?2 and dominant species in biomass were Enteromorpha spp. (contribution to a total biomass proportion 28%), Sargassum horneri (14%) and Amphiroa beauvoisii (14%). It is evident from the floristic composition and biomass data that unique micro-environment of the discharge canal support different communities from those on the intake or control area. Results from the large numbers of surveys before and during plant operation showed that, in the regions influenced by thermal effluents such as the discharge canal of power plants, the process of ecological succession has been proceeded. It is assumed that the uni-directional water flow and the time of overhaul largely affect the development and succession of benthic marine algal communities of the discharge canal.

      • KCI등재

        설계 모델을 이용한 $UO_2$ 펠릿 20 kg HM/batch용 분말화 장치 제작

        김영환,윤지섭,정재후,홍동희,엄재법,Kim Young-Hwan,Yoon Ji-Sup,Jung Jae-Hoo,Hong Dong-Hee,Uhm Jae-Beop 한국방사성폐기물학회 2006 방사성폐기물학회지 Vol.4 No.3

        Vol-oxidizer is a device to convert $UO_2$ pellets into $U_3O_8$ powder and to feed a homogeneous powder into a Metal Conversion Reactor in the ACP(Advanced Spent Fuel Conditioning Process). In this paper, we propose a design model of the vol-oxidizer, develop the new vol-oxidizer with a capacity of 20 kg HM/batch in $UO_2$ pellets, and conduct a verification for the device. Design considerations include the internal structure, the capacity, the heating position of the device, and the size. The dimensions of the new vol-oxidizer are decided by the design model. We determine a permeability test of the $U_3O_8$ measuring the temperature distribution, and the volume of $UO_2$ and $U_3O_8$. We manufactured the new vol-oxidizer for a 20 kg HM/batch in $UO_2$ pellets, and then analyzed the characteristics of the $U_3O_8$ powder for the verification. The experimental results show that the permeability of the $U_3O_8$ throughout mesh enhance more than old vol-oxidizer, the oxidation time takes only 8 hours when compared with the 13 hours of the old device, and the average distribution of particle size is $40{\mu}m$. The capacities of new vol-oxidizer for a 20 kg HM/batch in $UO_2$ pellets were agree well with the predictions of design model.

      • KCI등재

        용융전로(熔融轉爐)슬래그와 $C_3A(3CaO{\cdot}Al_2O_3)$ 펠렛사이의 계면반응(界面反應)

        김영환,고인용,Kim, Young-Hwan,Ko, In-Yong 한국자원리싸이클링학회 2005 資源 리싸이클링 Vol.14 No.5

        As a basic study for recycling molten converter slag as an ordinary portland cement (OPC) by a conversion process, the reaction mechanism and the rate of the formation of $C_4AF$ which is one of the main components of OPC were investigated. The converter slag whose basicity was controlled by adding reagent grade $SiO_2$ was melted and hold for 30 minutes in MgO crucible at $1300^{\circ}C{\sim}1350^{\circ}C$. Then, the sintered CaO pellet heated at the same temperature was dipped into the molten slag and hold for $10{\sim}30$minutes. After the reaction, the crucible was cooled in air and the specimen was cut off to the horizontal direction of the crucible. The dissolution rate of $C_3A$ pellet was measured by the change of radius of the sintered $C_3A$ pellet, and the formed phase of $C_4AF$ was observed by SEM/EDX. As a result, the dissolution rate of $C_3A$ pellet into molten slag was increased from $0.75{\times}10^{-4}(cm/sec)$ at $1300^{\circ}C$ to $1.67{\times}10^{-4}(cm/sec)$ at $1350^{\circ}C$, and the mixed layer of $C_4AF$ and $C_{12}A_7$ was found between slag and $C_3A$ pellet. 용융전로슬래그를 일반 포틀랜드 시멘트로 활용하기 위하여, 용융슬래그와 $C_3A(3CaO{\cdot}Al_2O_3)$가 반응하여 시멘트의 구성상인 $C_4AF$가 생성되는 기구와 생성속도를 조사하고자 한다. 전로슬래그에 소정의 $SiO_2$를 첨가하여 MgO도가니에 넣고 $1300^{\circ}C{\sim}1350^{\circ}C$에서 30분간 가열 용해하여 균질화 한 후, 같은 온도로 가열해 둔 소결 $C_3A$펠렛을 투입하여 $10{\sim}30$분간 반응시켰다. 반응 후, 급냉한 시편을 도가니의 직경방향으로 절단해서 펠렛 단면의 $C_3A$직경 변화를 측정하여 $C_3A$의 용해속도를 조사하고, 계면반응 생성상을 SEM/EDX로 관찰하였다. 그 결과 $C_3A$ 펠렛의 슬래그로의 용해속도는 $1300^{\circ}C$에서 $0.75{\times}10^{-4}(cm/sec)$으로부터 $1350^{\circ}C$에서 $1.67{\times}10^{-4}(cm/sec)$으로 증가하였으며, 슬래그와 $C_3A$ 펠렛 사이에 $C_4AF$와 $C_{12}A_7$의 혼합층이 생성됨을 알 수 있었다.

      • 도로 상황인식을 위한 배경 및 로컬히스토그램 기반 객체 추적 기법

        김영환,박순영,오일환,최경호,Kim, Young Hwan,Park, Soon Young,Oh, Il Whan,Choi, Kyoung Ho 한국공간정보학회 2013 한국공간정보학회지 Vol.21 No.3

        도로에서 발생되는 차량간 충돌사고, 교통 소통 상황, 보행자 사고 등 다양한 도로 상황을 모니터링 및 자동으로 인식하여 교통정보를 제공하거나 긴급구난 서비스를 제공하기 위한 다양한 기술이 개발되고 있다. 도로 모니터링을 통한 다양한 객체 추적 및 상황인식을 위해서는 잡음 및 겹침 등에 강인한 객체 추적 기술이 요구된다. 본 논문에서는 외부 환경에서 Background Subtraction, LK-Optical Flow, 지역 기반 히스토그램 특징의 결합을 통해 추적을 위한 몇 가지 추정 인자를 생성하고 이를 통해 변화가 있는 객체, 잡음에도 비교적 강인한 추적 방법을 제안한다. 구체적으로는 객체의 초기 움직임 정보를 검출하기 위해 옵티컬 플로우를 적용하여 컬러 정보 및 밝기 변화에 무관한 이동 정보를 측정한다. 측정된 정보를 기반으로 하여 지역 히스토그램 기반 검증을 통해 신뢰도를 판단한다. 신뢰도가 낮을 경우 배경 제거 정보와 지역 히스토그램 트래커의 정보를 혼합하여 새로운 위치를 추정한다. 실험을 통해 제안된 기법이 객체를 추적하고 있는 도중 나타날 수 있는 충돌, 새로운 특징의 등장, 크기 변화 상황에 강인하게 동작함을 제시한다. Compared with traditional video monitoring systems that provide a video-recording function as a main service, an intelligent video monitoring system is capable of extracting/tracking objects and detecting events such as car accidents, traffic congestion, pedestrian detection, and so on. Thus, the object tracking is an essential function for various intelligent video monitoring and surveillance systems. In this paper, we propose a background and local histogram-based object tracking approach for intelligent video monitoring systems. For robust object tracking in a live situation, the result of optical flow and local histogram verification are combined with the result of background subtraction. In the proposed approach, local histogram verification allows the system to track target objects more reliably when the local histogram of LK position is not similar to the previous histogram. Experimental results are provided to show the proposed tracking algorithm is robust in object occlusion and scale change situation.

      • SCIESCOPUSKCI등재

        Evaluation of Environmental Circumstance Within Swine and Chicken Houses in South Korea for the Production of Safe and Hygienic Animal Food Products

        김영환,서형주,김진만,정연훈,문경환,Kim, Young-Hwan,Suh, Hyung-Joo,Kim, Jin-Man,Jung, Yeon-Hoon,Moon, Kyong-Whan Korean Society for Food Science of Animal Resource 2008 한국축산식품학회지 Vol.28 No.5

        This study was undertaken to determine the concentrations of airborne bacteria, fungi, particles, and endotoxin in swine and chicken houses. Six swine buildings and seven chicken houses were randomly selected in southern Gyonggi Province, South Korea. The geometric mean concentrations of airborne bacteria in swine and chicken houses were $2.7{\times}10^5\;CFU/m^3$ and $5.6{\times}10^7\;CFU/m^3$, respectively. The airborne bacteria concentrations in chicken houses were significantly higher than those of swine houses (p<0.05). The geometric mean concentration of airborne fungi in swine houses was $4.9{\times}10^3\;CFU/m^3$, which was higher than the value of $2.1{\times}10^3\;CFU/m^3$ found in chicken houses. The mean concentrations of airborne particles and endotoxin in swine houses were $3.48\;mg/m^3$ and $943.1\;EU/m^3$, and they were $15.43\;mg/m^3$ and $1,430.5\;EU/m^3$ in chicken houses, respectively. A significant difference between swine and chicken houses was found for total dust (p<0.05), but not for endotoxin. In this study, the concentrations of endotoxin in both swine and chicken houses as well as particles in chicken houses were high, and in about 50% of the samples exceeded the worker health safety levels of $614\;EU/m^3$ suggested in previous studies. These results may indicate a considerable respiratory hazard for workers in these environments.

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