• 제목/요약/키워드: Co-current flow

검색결과 257건 처리시간 0.023초

Anodic Alumina와 Retriculate Vitreous Carbon을 전극으로 사용하여 수용액에서 중금속이온의 제거 (Removal of Heavy Metal Ions in the Aqueous Solution Using Anodic Alumina and Retriculate Vitreous Carbon Electrodes)

  • 조승구;이건주
    • 유기물자원화
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    • 제11권4호
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    • pp.120-129
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    • 2003
  • 0.3M의 옥살산 용액에서 anodic alumina를 제작하였으며 barrier 층을 제거하기 위하여 20wt% 황산 용액에서 한시간 동안 방치시켰다. 이 anodic alumina를 전극으로 사용하여 수용액에서 $Cd^{2+}$, $Co2^{+}$$Pb^{2+}$이온들을 환원시켜 제거하였다. XRD와 SBM으로 anodic alumina의 구조를 분석하였고, SEM 결과 anodic alumina에는 60nm의 pore가 존재함을 확인할 수 있었으며, 20wt% 황산 용액으로 처리 후 anodic alumina의 표면이 황산에 약간 녹기 때문에 anodic alumina의 표면의 규칙성이 떨어지는 결과를 보였다. anodic alumina를 음극, 그리고 탄소를 양극으로 각각 사용하여 $Cd(NO_3)_2{\cdot}4H_2O$, $Co(NO_3)_2{\cdot}6H_2O$$PbSO_4$ 수용액에 24시간동안 직류전류를 흘려주었을 때, 전류를 흘려준 시간에 따라 전압이 각각 4.6, 3.4 및 5.1V 까지 증가하다가 4.2, 2.7 및 2.4V로 일정해지는 결과를 얻었다. 전류를 흘려준 시간이 18시간까지는 시간이 증가할수록 용액내의 금속이온의 농도는 감소하였으며 음극인 anodic alumina의 표면에 각 금속들이 석출되는 것을 확인할 수 있었다. anodic alumina로 금속이온을 제거한 수용액을 retriculate vitreous carbon(RVC)를 작업전극으로 하는 flow cell로 제2차 금속이온 제거를 수행하였다. $Cd^{2+}$$Co^{2+}$이온의 농도는 용액을 flow cell에 20분간 흘려줄 때까지만 감소하였고 $Pb^{2+}$이온 농도는 30분까지 감소하였다. 이 경우 $Cd^{2+}$, $Co^{2+}$$Pb^{2+}$이온들 제거효율은 각각 34.78, 28.79 및 86.38% 이었다. 또한 $Cd^{2+}$$Co^{2+}$이온이 동시에 RVC전극에 흡착 가능한 결과를 보였으며 제거효율은 32.30 및 31.37% 이었다.

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A Case Study of Sediment Transport on the Seabed due to Wave and Current Velocities

  • Choi, Byoung-Yeol;Lee, Sang-Gil;Kim, Jin-Kwang;Oh, Jin-Soo
    • Journal of Advanced Research in Ocean Engineering
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    • 제2권3호
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    • pp.99-111
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    • 2016
  • Seabed affected by scouring, sedimentation, and siltation occurrences often cause exposure, which induces risks to existing structures or crude oil or gas pipeline buried subsea. In order to prevent possible risks, more economical structure installation methodology is proposed in this study by predicting and managing the risk. Also, the seabed does not only consist of sandy material, but clayey soil is also widespread, and the effect of undrained shear strength should be considered, and by cyclic environmental load, pore water pressure will occur in the seabed, which reduces shear strength and allows particles to move easily. Based on previous research regarding sedimentation or erosion, the average value of external environmental loads should be applied; for scouring, a 100-year period of environmental conditions should be applied. Also, sedimentation and erosion are mainly categorized by the bed load and suspended load; also, they are calculated as the sum of bed load and suspended load, which can be obtained from the movement of particles caused by sedimentation or erosion.

IEC60947-4에 따른 전자개폐기 전기적 수명시험설비의 과도현상을 고려한 SCR최적 정격선정에 대한 연구 (The transient analysis for choosing the optimal SCR ratings of AC3 utilization category testing equipment used for electrical durability test for magnetic switch)

  • 류행수;김갑동;한규환
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2004년도 하계학술대회 논문집 A
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    • pp.354-356
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    • 2004
  • This paper is the transient analysis for choosing the optimal SCR ratings of AC3 utilization category testing equipment(AC3 TE) used for electrical durability test for magnetic switch according to IEC60947-4 Annex B by utilizing EMTP -ATPDraw. Magnetic contactor closes and opens the motor load with ON/OFF switch of electronic contactor. It is also used for protecting and controlling the load. Magnetic contactor detects the over-current flow in the load with a over-current relay and disconnects the load by opening its control power. The key cost of AC3 TE is the SCR ratings. The more decreases SCR ratings, the more decreased the cost is, but it is impossible to ensure the reliability. On the other hand, the more increases SCR ratings, the more increased the cost is. Thereupon, in this paper after the testing circuit is simulated by using EMTP-ATPDraw the SCR ratings will be applied in order to guarantee the testing reliability of PT&T(Power Testing and Technology institute in LG Industrial Systems Co.,Ltd.).

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한국 남동해안의 용승과 관련된 물리환경 (Physical Envirionment Associated with Upwelling off the Southeast Coast of Korea)

  • 이재철;김대현
    • 한국수산과학회지
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    • 제51권5호
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    • pp.579-589
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    • 2018
  • Data from the two bottom moorings of ADCP (acoustic doppler current profiler), coastal weather station and CTC (conductivity temperature depth) observations for 2001 were analyzed to describe the physical processes associated with upwelling off the southeast coast of Korea. Winds were favorable for upwelling during summer, but were not correlated with currents. Shoaling of isotherms toward the coast due to the baroclinic tilting of the strong East Korean Warm Current (EKWC) provided a favorable background for immediate upwelling-response of surface temperature to southerly winds. This baroclinic effect was supported by a significant inverse coherence between the upper-layer current and bottom temperature near the coast. This upwelling is similar to the Guinea Current upwelling, which is driven by remote forcing (Houghton, 1989). Persistent southward flow was observed below approximately $10^{\circ}C$ isotherm throughout the observation period.

극저온액체 저장용기에서 열전도 차폐단의 영향 (Effect of Vapor-Cooled Heat Stations in a Cryogenic Vessel)

  • 김서영;강병하;최항집
    • 한국수소및신에너지학회논문집
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    • 제9권4호
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    • pp.169-176
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    • 1998
  • Ni/MH 2차전지의 음극용 금속간화합물전극의 부식특성에 미치는 합금원소와 결합제의 영향을 조사하였다. 전극의 재료는 $(LM)Ni_{4.49}Co_{0.1}Mn_{0.205}Al_{0.205}$$(LM)Ni_{3.6}Co_{0.7}Mn_{0.3}Al_{0.4}$$AB_5$ type합금을 모재로 하였다. 여기에 Si sealant 또는 PTFE를 결합제로 첨가한 것과 원재료 분말에 구리를 20% 무전해도금한 것을 냉간 압착하여 전극을 제조하였다. 부식특성을 조사하기위해 탈공기된 6M의 KOH 용액에서 동전위법과 순환전위법을 이용하여 부식전류와 전류밀도를 측정하였다. 모재에 Co가 많이 함유되면 전극의 내식성을 향상시키고 Ni이 많이 함유되면 충전과 방전을 반복하는 동안에 전극의 안정성을 저하시켰다. 부식전류밀도는 Si sealant를 결합제로 사용한 전극의 경우가 PTFE를 사용한 전극의 경우보다 낮았고 Cu가 도금된 전극은 내식성에서 가장 우수하게 나타났다.

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플러그묘 개체군의 순광합성속도 측정 (Measurement of Net Photosynthetic Rate in the Plug Stand)

  • 김용현;고재풍수
    • Journal of Biosystems Engineering
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    • 제22권3호
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    • pp.311-316
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    • 1997
  • Two methods were used to detrermine the net photosynthetic rate(NPR) in the plug stand using a wind tunnel for plug seedlings Production. One is called as the integration method in which NPR calculated by the use of air current speed and $CO^2$ concentration measured at any heights above the medium surface in a wind tunnel were summed. It was assumed that the air flow at any layer did not mix with the lower or upper air layer. The other is called as the diffusion method in which eddy diffusivities above the plug stand were used to determine the NPR in the plug stand. In this method, $CO^2$ above or inside the plug stand was assumed to be absorbed vertically. NPR determined by the diffusion method was 28~45% of the NPR calculated by the integration method. Considering the magnitude of NPR and the effects of the air current speed on NPR, the integration method would be adequate for the calculation of NPR in the plug stand. Maximum NPR determined using the integration method appeared at the air current speed of 0.7m $s^{-1}$. It was ascribed to the decreased diffusion resistances of $CO^2$ with the increasing air current speed. NPR at the rear region in plug stand was 20~34% lower than that at the front region. NPR sharply decreased with the increase of an elapsed time after the beginning of photoperiod. Therefore $CO^2$ enrichment would be effective to force the growth of plug seedlings in a semi-closed ecological system under artificial lighting.

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DEVELOPMENT OF INTERFACIAL AREA TRANSPORT EQUATION

  • ISHII MAMORU;KIM SEUNGJIN;KELLY JOSEPH
    • Nuclear Engineering and Technology
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    • 제37권6호
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    • pp.525-536
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    • 2005
  • The interfacial area transport equation dynamically models the changes in interfacial structures along the flow field by mechanistically modeling the creation and destruction of dispersed phase. Hence, when employed in the numerical thermal-hydraulic system analysis codes, it eliminates artificial bifurcations stemming from the use of the static flow regime transition criteria. Accounting for the substantial differences in the transport mechanism for various sizes of bubbles, the transport equation is formulated for two characteristic groups of bubbles. The group 1 equation describes the transport of small-dispersed bubbles, whereas the group 2 equation describes the transport of large cap, slug or chum-turbulent bubbles. To evaluate the feasibility and reliability of interfacial area transport equation available at present, it is benchmarked by an extensive database established in various two-phase flow configurations spanning from bubbly to chum-turbulent flow regimes. The geometrical effect in interfacial area transport is examined by the data acquired in vertical fir-water two-phase flow through round pipes of various sizes and a confined flow duct, and by those acquired In vertical co-current downward air-water two-phase flow through round pipes of two different sizes.

DEVELOPMENT OF A SUPERCRITICAL CO2 BRAYTON ENERGY CONVERSION SYSTEM COUPLED WITH A SODIUM COOLED FAST REACTOR

  • Cha, Jae-Eun;Lee, Tae-Ho;Eoh, Jae-Hyuk;Seong, Sung-Hwan;Kim, Seong-O;Kim, Dong-Eok;Kim, Moo-Hwan;Kim, Tae-Woo;Suh, Kyun-Yul
    • Nuclear Engineering and Technology
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    • 제41권8호
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    • pp.1025-1044
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    • 2009
  • Systematic research has been conducted by KAERI to develop a supercritical carbon dioxide Brayton cycle energy conversion system coupled with a sodium cooled fast reactor. For the development of the supercritical $CO_2$ Brayton cycle ECS, KAERI researched four major fields, separately. For the system development, computer codes were developed to design and analyze the supercritical $CO_2$ Brayton cycle ECS coupled with the KALIMER-600. Computer codes were developed to design and analyze the performance of the major components such as the turbomachinery and the high compactness PCHE heat exchanger. Three dimensional flow analysis was conducted to evaluate their performance. A new configuration for a PCHE heat exchanger was developed by using flow analysis, which showed a very small pressure loss compared with a previous PCHE while maintaining its heat transfer rate. Transient characteristics for the supercritical $CO_2$ Brayton cycle coupled with KALIMER-600 were also analyzed using the developed computer codes. A Na-$CO_2$ pressure boundary failure accident was analyzed with a computer code that included a developed model for the Na-$CO_2$ chemical reaction phenomena. The MMS-LMR code was developed to analyze the system transient and control logic. On the basis of the code, the system behavior was analyzed when a turbine load was changed. This paper contains the current research overview of the supercritical $CO_2$ Brayton cycle coupled to the KALIMER-600 as an alternative energy conversion system.

Application of artificial neural network for the critical flow prediction of discharge nozzle

  • Xu, Hong;Tang, Tao;Zhang, Baorui;Liu, Yuechan
    • Nuclear Engineering and Technology
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    • 제54권3호
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    • pp.834-841
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    • 2022
  • System thermal-hydraulic (STH) code is adopted for nuclear safety analysis. The critical flow model (CFM) is significant for the accuracy of STH simulation. To overcome the defects of current CFMs (low precision or long calculation time), a CFM based on a genetic neural network (GNN) has been developed in this work. To build a powerful model, besides the critical mass flux, the critical pressure and critical quality were also considered in this model, which was seldom considered before. Comparing with the traditional homogeneous equilibrium model (HEM) and the Moody model, the GNN model can predict the critical mass flux with a higher accuracy (approximately 80% of results are within the ±20% error limit); comparing with the Leung model and the Shannak model for critical pressure prediction, the GNN model achieved the best results (more than 80% prediction results within the ±20% error limit). For the critical quality, similar precision is achieved. The GNN-based CFM in this work is meaningful for the STH code CFM development.

Development of a New Modeling Technique to Simulate 3-dimensional Electroplating System Considering the Effects of Fluid Flow

  • Lim, Kyung-Hwan;Lee, Minsu;Yim, Tai Hong;Seo, Seok;Yi, Kyung-Woo
    • Journal of Electrochemical Science and Technology
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    • 제10권4호
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    • pp.408-415
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    • 2019
  • Electroplating is a widely used surface treatment method in the manufacturing process of electronic parts and uniformity of the electrodeposition thickness is very crucial for these applications. Since many variables including fluid flow influence the uniformity of the film, it is difficult to conduct efficient research only by experiments. So many studies using simulation have been carried out. However, the most popular simulation technique, which calculates secondary current distribution, has a limitation on the considering the effects of fluid flow on the deposition behavior. And modified method, which is calculating a tertiary current distribution, is limited to a two-dimensional study of simple shapes because of the massive computational load. In the present study, we propose a new electroplating simulation method that can be applied to complex shapes considering the effect of flow. This new model calculates the electroplating process with three steps. First, the thickness of boundary layers on the surface of the cathode plane and velocity magnitudes at the positions are calculated from the simulation of fluid flow. Next, polarization curves of different velocities are obtained by calculations or experiments. Finally, both results are incorporated into the electroplating simulation program as boundary conditions at the cathode plane. The results of the model showed good agreements with the experimental results, and the effects of fluid flow of electrolytes on the uniformity of deposition thickness was quantitatively predicted.