• 제목/요약/키워드: Liquid Transient

검색결과 396건 처리시간 0.029초

저융점 합금(Bi58Sn42)을 이용한 Metal Mesh Touch Sensor용 Ag 페이스트의 전기적 특성 (Electrical Characteristics of the Ag Past with addition of Low-melting Alloy of Bi58Sn42 for Metal Mesh Touch Sensors)

  • 김태형;허영우;김정주;이준형
    • 한국표면공학회지
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    • 제50권6호
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    • pp.510-515
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    • 2017
  • In this study, a transient liquid phase sintering (TLPS) process of Ag pastes mixed with a fusible metal alloy of Bi58Sn42 with the melting temperature of $138^{\circ}C$, was examined. After screen printing of the Ag pastes with and without Bi58Sn42 powders on polyimide (PI) substrates, the electrodes were heat-treated at different temperatures in the range between 150 and $300^{\circ}C$ for 60 min in air. Comparing the electrical conductivity of the Ag pastes with and without Bi58Sn42 alloy powder after the heat treatment, it was manifested that the low melting temperature alloy definitely played a major role in an increased conductivity when it is added into the Ag pastes by providing more electrical conduction paths between Ag particles. This can be explained by the fact that capillary force of the melts of Bi58Sn42 can contribute to the rearrangement of the Ag particles during the heat-treatment inducing better connectivity between the Ag particles.

Optical emission analysis of hybrid air-water discharges

  • Pavel, Kostyuk;Park, J.Y.;Han, S.B.;Koh, H.S.;Gou, B.K.;Lee, H.W.
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2006년도 하계학술대회 논문집 Vol.7
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    • pp.521-522
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    • 2006
  • In this paper, hybrid air-water discharges were used to develop an optimal condition for providing a high level of water decomposition for hydrogen yield. Electrical and optical phenomena accompanying the discharges were investigated along with feeding gases, flow rates, and point-to-plane electrode gap distance. The primary focus of this experiment was put on the optical emission of the near UV range, with the energy threshold sufficient for water dissociation and excitation. The $OH(A^{2+},'=0\;X^2,"=0$) band's optical emission intensity indicated the presence of plasma chemical reactions involving hydrogen formation. In the gaseous atmosphere saturated with water vapor the OH(A-X) band intensity was relatively high compared to the liquid and transient phases although the optical emission strongly depended on the flow rate and type of feeding gas. In the gaseous phase discharge phenomenon for Ar carrier gas transformed into a gliding arc via the flow rate growth. OH(A-X) band's intensity increased according to the flow rate or residence time of He feeding gas. Reciprocal tendency was acquired for $N_2$ and Ar carrier gases. The peak value of OH(A-X) intensity was observed in the proximity of the water surface, however in the cases of Ar and $N_2$ with 0.5 SLM flow rate peaks shifted to the region below the water surface. Rotational temperature ($T_{rot}$) was estimated to be in the range of 900-3600 K, according to the carrier gas and flow rate, which corresponds to the arc-like-streamer discharge.

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4:1 종횡비를 갖는 가스터빈 블레이드 냉각 유로에서의 립-딤플 복합 냉각 특성 연구 (Rib-Dimple Compound Cooling Techniques in a Gas Turbine Blade Cooling Channels with an Aspect ratio (4:1))

  • 최용덕;김석범;이용진;김진곤;곽재수
    • 한국추진공학회지
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    • 제14권4호
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    • pp.32-38
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    • 2010
  • 본 연구에서는 딤플이 설치된 유로, 립이 설치된 유로, 립과 딤플이 함께 설치된 유로에서의 열전달성능을 천이액정법을 이용하여 측정하였다. 실험에 사용된 유로의 종횡비(W/H)는 4이고, 립의 높이는6 mm, 립 간 거리(P/e)는 10, 립이 설치된 각도는 $60^{\circ}$이며, 딤플의 직경은 6 mm, 딤플 중심간 거리(s/D)는 1.2로 하였다. 레이놀즈 수는 30000-50000에 대해 실험을 수행하였다. 립이 설치된 유로에서는 경사 립에 의해 발생된 이차유동이 열전달 계수를 증가시켰고, 립과 딤플이 함께 설치된 유로에서는 립 사이에 설치된 딤플이 열전달 계수를 더욱 증가시켰다. 열전달계수는 립과 딤플이 복합 적용된 유로, 립이 적용된 유로, 딤플이 적용된 순으로 나타났고, 열성능계수도 립과 딤플이 복합 적용된 유로에서 크게 나타났다.

Analysis on electrical and thermal characteristics of MI-SS racetrack coil under conduction cooling and external magnetic field

  • Chae, Yoon Seok;Kim, Ji Hyung;Quach, Huu Luong;Lee, Sung Hoon;Kim, Ho Min
    • 한국초전도ㆍ저온공학회논문지
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    • 제23권4호
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    • pp.61-69
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    • 2021
  • This paper presents the analysis and experiment results on the electrical and thermal characteristics of metal insulation (MI) REBCO racetrack coil, which was wound with stainless steel (SS) tape between turn-to-turn layers, under rotating magnetic field and conduction cooling system. Although the field windings of superconducting rotating machine are designed to operate on a direct current, they may be subjected to external magnetic field due to the unsynchronized armature windings during electrical or mechanical load fluctuations. The field windings show the voltage and magnetic field fluctuations and the critical current reduction when they are exposed to an external magnetic field. Moreover, the cryogenic cooling conditions are also identified as the factors that affect the electrical and thermal characteristics of the HTS coil because the characteristic resistance changes according to the cryogenic cooling conditions. Therefore, it is necessary to investigate the effect of external magnetic field on the electrical and thermal characteristics of MI-SS racetrack coil for further development reliable HTS field windings of superconducting rotating machine. First, the major components of the experiment test (i.e., HTS racetrack coil construction, armature winding of 75 kW class induction motor, and conduction cooling system) were fabricated and assembled. Then, the MI racetrack coil was performed under liquid nitrogen bath and conduction cooling conditions to estimate the key parameters (i.e., critical current, time constant, and characteristic resistance) for the test coil in the steady state operation. Further, the test coil was charged to the target value under conduction cooling of 35 K then exposed to the rotating magnetic field, which was generated by three phrase armature windings of 75 kW class induction motor, to investigate the electrical and thermal characteristics during the transient state.

단일 가열봉의 재관수 시 2상유동 및 벽면 열전달에 관한 실험적 연구 (Experimental investigation of two-phase flow and wall heat transfer during reflood of single rod heater)

  • 박영재;김형대
    • 한국가시화정보학회지
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    • 제18권3호
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    • pp.23-34
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    • 2020
  • Two-phase flow and heat transfer characteristics during the reflood phase of a single heated rod in the KHU reflood experimental facility were examined. Two-phase flow behavior during the reflooding experiment was carefully visualized along with transient temperature measurement at a point inside the heated rod. By numerically solving one-dimensional inverse heat conduction equation using the measured temperature data, time-resolved wall heat flux and temperature histories at the interface of the heated rod and coolant were obtained. Once water coolant was injected into the test section from the bottom to reflood the heated rod of >700℃, vast vapor bubbles and droplets were generated near the reflood front and dispersed flow film boiling consisted of continuous vapor flow and tiny liquid droplets appeared in the upper part. Following the dispersed flow film boiling, inverted annular/slug/churn flow film boiling regimes were sequentially observed and the wall temperature gradually decreased. When so-called minimum film boiling temperature reached, the stable vapor film between the heated rod and coolant was suddenly collapsed, resulting in the quenching transition from film boiling into nucleate boiling. The moving speed of the quench front measured in the present study showed a good agreement with prediction by a correlation in literature. The obtained results revealed that typical two-phase flow and heat transfer behaviors during the reflood phase of overheated fuel rods in light water nuclear reactors are well reproduced in the KHU facility. Thus, the verified reflood experimental facility can be used to explore the effects of other affecting parameters, such as CRUD, on the reflood heat transfer behaviors in practical nuclear reactors.

디젤엔진 요소수 분사 SCR 시스템에서 촉매 내 암모니아 흡장량의 증가에 따른 NOx 저감효율 향상 특성에 관한 연구 (A Study on the Improvement of Diesel NOx Conversion Efficiency by Increasing the Ammonia Amount Adsorbed in a SCR Catalyst)

  • 김양화;임옥택;김홍석
    • 한국분무공학회지
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    • 제25권4호
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    • pp.196-203
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    • 2020
  • Nowadays, urea SCR technology is considered as the most effective NOx reduction technology of diesel engine. However, low NOx conversion efficiency under low temperature conditions is one of its problems to be solved. This is because injection of UWS (Urea Water Solution) is impossible under such a low temperature condition due to the problem of insufficient of urea decomposition and urea deposits. In several previous studies, it has been reported that appropriate control of the amount of ammonia adsorbed on SCR catalyst can improve the NOx conversion efficiency under low temperature conditions. In this study, we tried to find out how much the NOx conversion efficiency increases with respect to the amount of ammonia adsorbed on the catalyst, and what the temperature conditions that the ammonia slip occurs. This study shows the results of 8 times repeated WHTC test with a diesel engine, in which UWS was injected with NH3/NOx mole ratio of '1'. Through this study, it was found that 13% of the NOx conversion efficiency of WHTC increased while the θ (ammonia adsorption rate) increased from "0%" to "22%". In addition, it is found that in cases of high θ value, the significant improvement of NOx conversion efficiency at low temperatures presented during the beginning period of WHTC and at high temperature and transient conditions presented during last part of WHTC test. The NH3 slip occurring condition was 250℃ of catalyst temperature and 10% of θ, and the amount of NH3 slip increased as the temperature and θ are increased.

자동차용 전장품의 패키징 및 마이크로 접합기술 동향 (Trends of Packaging and Micro-joining Technologies for Car Electronics)

  • 이경아;조도훈;스리 하리니 라젠드란;정재필
    • 마이크로전자및패키징학회지
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    • 제29권1호
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    • pp.7-16
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    • 2022
  • 최근 자동차 산업은 친환경, 편리함, 안전성과 같은 키워드를 중심으로 기술 발전이 이뤄지면서 빠르게 변화하고 있다. 친환경에 대한 관심과 맞물려 그린 카(green car)가 이목을 끌고 사용자 편의를 위한 첨단 기술 및 기능을 갖춘 고성능 자동차가 시장에 출시되고 있다. 발전하는 차량 성능으로 인해서 이에 맞는 전장품의 개발 또한 필수적이다. 자동차용 전장품은 고온, 고습, 열충격, 진동, 오염 등 복합적인 환경에서 사용되기 때문에 여타 산업에 비해 높은 수준의 신뢰성 검증이 필요하다. 특히, 부품 내 접합부의 신뢰성을 확보하여 무리없이 기능을 수행하고 운전자의 안전을 보장하는 것이 핵심이다. 따라서 저자는 차량 전장품의 최근 동향을 살펴보고 신뢰성을 향상시킬 수 있는 접합 방법으로 솔더링, TLP 접합 및 소결접합을 소개하였다.

안전주입 실패를 동반한 제어봉구동장치 관통부 파단 사고 실험 기반 국내 안전해석코드 SPACE 예측 능력 평가 (Evaluation of SPACE Code Prediction Capability for CEDM Nozzle Break Experiment with Safety Injection Failure)

  • 남경호
    • 한국안전학회지
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    • 제37권5호
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    • pp.80-88
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    • 2022
  • The Korean nuclear industry had developed the SPACE (Safety and Performance Analysis Code for nuclear power plants) code, which adopts a two-fluid, three-field model that is comprised of gas, continuous liquid and droplet fields and has the capability to simulate three-dimensional models. According to the revised law by the Nuclear Safety and Security Commission (NSSC) in Korea, the multiple failure accidents that must be considered for the accident management plan of a nuclear power plant was determined based on the lessons learned from the Fukushima accident. Generally, to improve the reliability of the calculation results of a safety analysis code, verification is required for the separate and integral effect experiments. Therefore, the goal of this work is to verify the calculation capability of the SPACE code for multiple failure accidents. For this purpose, an experiment was conducted to simulate a Control Element Drive Mechanism (CEDM) break with a safety injection failure using the ATLAS test facility, which is operated by Korea Atomic Energy Research Institute (KAERI). This experiment focused on the comparison between the experiment results and code calculation results to verify the performance of the SPACE code. The results of the overall system transient response using the SPACE code showed similar trends with the experimental results for parameters such as the system pressure, mass flow rate, and collapsed water level in component. In conclusion, it can be concluded that the SPACE code has sufficient capability to simulate a CEDM break with a safety injection failure accident.

Transient heat transfer and crust evolution during debris bed melting process in the hypothetical severe accident of HPR1000

  • Chao Lv;Gen Li;Jinchen Gao;Jinshi Wang;Junjie Yan
    • Nuclear Engineering and Technology
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    • 제55권8호
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    • pp.3017-3029
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    • 2023
  • In the late in-vessel phase of a nuclear reactor severe accident, the internal heat transfer and crust evolution during the debris bed melting process have important effects on the thermal load distribution along the vessel wall, and further affect the reactor pressure vessel (RPV) failure mode and the state of melt during leakage. This study coupled the phase change model and large eddy simulation to investigate the variations of the temperature, melt liquid fraction, crust and heat flux distributions during the debris bed melting process in the hypothetical severe accident of HPR1000. The results indicated that the heat flow towards the vessel wall and upper surface were similar at the beginning stage of debris melting, but the upward heat flow increased significantly as the development of the molten pool. The maximum heat flux towards the vessel wall reached 0.4 MW/m2. The thickness of lower crust decreased as the debris melting. It was much thicker at the bottom region with the azimuthal angle below 20° and decreased rapidly at the azimuthal angle around 20-50°. The maximum and minimum thicknesses were 2 and 90 mm, respectively. By contrast, the distribution of upper crust was uniform and reached stable state much earlier than the lower crust, with the thickness of about 10 mm. Moreover, the sensitivity analysis of initial condition indicated that as the decrease of time interval from reactor scram to debris bed dried-out, the maximum debris temperature and melt fraction became larger, the lower crust thickness became thinner, but the upper crust had no significant change. The sensitivity analysis of in-vessel retention (IVR) strategies indicated that the passive and active external reactor vessel cooling (ERVC) had little effect on the internal heat transfer and crust evolution. In the case not considering the internal reactor vessel cooling (IRVC), the upper crust was not obvious.

국내 콩(Glycine max) 품종 형질전환 초기조건 확립 (Optimization of Genetic Transformation Conditions for Korean Soybean Cultivars)

  • 이기정;서진경;이혜영;전은희;신상현;이재헌;김도훈;고종민;한원영;백인열;오병준;정영수
    • 생명과학회지
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    • 제16권2호
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    • pp.289-296
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    • 2006
  • 경제적으로 중요한 식용작물인 콩(Glycine max)의 초기형 질전환 효율증대를 위하여 연구를 수행하였다. 높은 초기형 질전환 조건 확립을 위하여 기초실험으로 Agrobacterium 감 염에 순응적인 국내 콩 품종을 스크린 하였으며, 적정한 agar 농도와 선발항생제 hygromycin 농도 규명, 상처방법, explant의 치상방향, 호르몬 전처리, 액체배지 선발 등 형질 전환 초기효율에 미치는 영향을 transient GUS 분석을 통하여 알아보았다. Agrobacterium 감염에 순응적인 품종을 선발하기 위하여 32개의 국내 콩 장려품종을 스크린한 결과, 일품검정콩, 은하콩, 만리콩, 대원콩 등 14개의 순응형 품종을 선발하였으며, 효율적인 제균제로는 cefotaxime이, 효율적인 선발항생제로서는 hygromycin이 선택되었다. Hygromycin 농도는 10-15 ppm이 효율적이었고, agar 농도 0.6-0.8%, explant의 치상방향은 향배축(adaxial side)을 down하여 치상하였을 때가 높은 GUS ($\beta$-glucuronidase)발현빈도를 나타냈고 상처방법은 scalpel보다. 동양침을 사용하였을 때 높게 나타났다. 형질전환 체계확립을 위하여 호르몬 전처리를 한 결과, BA 5 ppm 과 10 ppm을 처리하였을 때 후기 선발에서 높은 생존율을 보였고, 전처리 후에 액체배지에서 선발을 하였을 때 비형질 전환체(escape)의 빈도를 크게 낮출 수 있었다. 또한 여러 조건의 결과를 비교하여 볼 때, 국내 콩 품종 중에서 형질전환을 위한 재료로써는 은하콩이 가장 적합한 것으로 생각된다.