• Title/Summary/Keyword: High temperature cooling

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급속응고된 Al-8wt%Fe 합금의 미세조직 및 고온강도 (Microstructure and High Temperature Strength of Rapidly Solidified Al-8wt%Fe Alloy)

  • 최병준
    • 한국분말재료학회지
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    • 제5권3호
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    • pp.192-198
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    • 1998
  • Microstructure and mechanical properties were examined on rapidly solidified Al-8wt%Fe alloy. High temperature strength test was also undertaken, and it is shown that the refinement in microstructure resulting from extremely rapid cooling rates gives rise to improved high temperature strength, but the elongation to fracture of this material decreases with increasing temperature, particularly in the temperature range up to 30$0^{\circ}C$. Specimens heat-treated for 100 hrs were analyzed with TEM micrographs to understand the thermal stability of this material.

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Numerical study of the flow and heat transfer characteristics in a scale model of the vessel cooling system for the HTTR

  • Tomasz Kwiatkowski;Michal Jedrzejczyk;Afaque Shams
    • Nuclear Engineering and Technology
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    • 제56권4호
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    • pp.1310-1319
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    • 2024
  • The reactor cavity cooling system (RCCS) is a passive reactor safety system commonly present in the designs of High-Temperature Gas-cooled Reactors (HTGR) that removes heat from the reactor pressure vessel by means of natural convection and radiation. It is one of the factors responsible for ensuring that the reactor does not melt down under any plausible accident scenario. For the simulation of accident scenarios, which are transient phenomena unfolding over a span of up to several days, intermediate fidelity methods and system codes must be employed to limit the models' execution time. These models can quantify radiation heat transfer well, but heat transfer caused by natural convection must be quantified with the use of correlations for the heat transfer coefficient. It is difficult to obtain reliable correlations for HTGR RCCS heat transfer coefficients experimentally due to such a system's size. They could, however, be obtained from high-fidelity steady-state simulations of RCCSs. The Rayleigh number in RCCSs is too high for using a Direct Numerical Simulation (DNS) technique; thus, a Reynolds-Averaged Navier-Stokes (RANS) approach must be employed. There are many RANS models, each performing best under different geometry and fluid flow conditions. To find the most suitable one for simulating an RCCS, the RANS models need to be validated. This work benchmarks various RANS models against three experiments performed on the HTTR RCCS Mockup by the Japanese Atomic Energy Agency (JAEA) in 1993. This facility is a 1/6 scale model of a vessel cooling system (VCS) for the High Temperature Engineering Test Reactor (HTTR), which is operated by JAEA. Multiple RANS models were evaluated on a simplified 2d-axisymmetric geometry. They were found to reproduce the experimental temperature profiles with errors of up to 22% for the lowest temperature benchmark and 15% for the higher temperature benchmarks. The results highlight that the pragmatic turbulence models need to be validated for high Rayleigh natural convection-driven flows and improved accordingly, more publicly available experimental data of RCCS resembling experiments is needed and indicate that a 2d-axisymmetric geometry approximation is likely insufficient to capture all the relevant phenomena in RCCS simulations.

고온 열전달면의 각도에 따른 분무냉각 특성에 관한 연구 (A Study on the Spray Cooling Characteristics according to the Angle of Hot Heat Transfer Surface)

  • 윤두호;오철;윤석훈
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권3호
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    • pp.320-327
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    • 2002
  • An experimental study of heat transfer from hot flat surface to water sprays was conducted in high temperature region. Heat transfer measurements for hot flat surface were made by 4 sheathed C-A thermocouples. Droplets volume flux were also measured-independently at a position in spray field. The test conditions included variations in droplets volume flux, subcooling of cooling water of $1.565\times10^{-3} to 14.089\times10^{-3}m^3/m^2s and 80 to $20^{\circ}C$ respectively. The effects of inclination angle on heat transfer were investigated and changes in inclination angle of hot flat surface affected heat transfer coefficients of high temperature region.

HTS 케이블 냉각용 역브레이튼 사이클 극저온 냉동기 설계에 관한 연구 (Design of Reverse Brayton Cycle Cryocooler System for HTS Cable Cooling)

  • 박재홍;권용하;김영수;박성출
    • 한국초전도ㆍ저온공학회논문지
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    • 제5권2호
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    • pp.58-65
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    • 2003
  • The high temperature superconductivity(HTS) cable must be cooled below the nitrogen liquefaction temperature to applicate the cable in power generation and transmi-ssion system under the superconducting state. To obtain superconducting state. a reliable cryocooler system is required. Structural and thermal design have been performed to design cryocooler system operated with reverse Brayton cycle using gas neon as refrigerant. This cryocooler system consists of compressor. recuperator. coldbox. control valves and has 1 kW cooling capacity. Heat loss calculation was conducted for the given cryocooler system by considering the conduction and radiation through the multi-layer insulation(MLI) and high vacuum. The results can be summarized as: conduction heat loss is 7 W in valves and access port and radiation heat loss is 18 W through the surface of cryocooler. The full design specifications were discussed and the results were applied to construct in house HTS cable cooling system.

진동 세관형 히트파이프를 이용한 통신 기기용 마이크로 냉각시스템의 개발 (Development of Micro Cooling System for Telecommunication System using Oscillating Heat Pipe)

  • 하수정;배내수;박철민;김종수
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 춘계학술대회
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    • pp.1499-1505
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    • 2003
  • Rapid development of electronic technology requires small size, high density packaging and high power of electronic devices. So, in this paper, characteristics on oscillating heat pipe according to operating conditions(environment temperature, charging ratio of working fluid, inclination) based on experimental study was investigated. From the experimental results, $25^{\circ}C$environment temperature), R-141b(working fluid)40%(charging ratio) was best performace at others of inclination angle and The top heating mode of OCHP performed 80% efficiency of the bottom heating mode.

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가스터빈 내부 냉각계통 발화에 의한 고온부품 손상의 현상학적 고찰 (A Phenomenological Review on the Damage of Hot Gas Parts caused by Explosion of Gas Turbine Cooling System)

  • 유원주;이승현
    • 대한안전경영과학회:학술대회논문집
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    • 대한안전경영과학회 2010년도 춘계학술대회
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    • pp.81-95
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    • 2010
  • Gas turbines generating power operate in high temperature condition and use natural gas as fuel. For that reason, there are many cases where damage is done to the hot gas parts caused by the high temperature and many accidents occur like gas explosions, then various efforts are needed to maintain the hot gas parts and prevent accidents. It is difficult to find the root causes of damage to the hot gas parts from the gas explosion caused by gas leakage through rotor cooling air line from fuel gas heat exchanger during the shut down. To prevent gas turbine from damage, removal of gas leakage inside of gas turbine is required by purging the turbine before firing, improving the fuel gas heating system and installing alarm systems for detecting gas leakage from stop valve to turbine while the gas turbine has shut down.

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가스터빈 내부 냉각계통 발화에 의한 고온부품 손상의 현상학적 고찰 (A Phenomenological Review on the Damage of Hot Gas Parts caused by Explosion of Gas Turbine Cooling System)

  • 유원주;이승현
    • 대한안전경영과학회지
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    • 제12권2호
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    • pp.75-82
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    • 2010
  • Gas turbines for power generating operate in a very high temperature condition and use natural gas for fuel. For this reason, many cases of damage happen at hot gas parts which are severely affected by high temperature gas and many cases of explosion occur by fuel gas. So a lot of efforts should be made to prevent hot gas parts damage and gas explosion accidents. Though there are many damage cases and explosion accidents, it is very difficult to find out the root causes of hot gas parts damage caused by gas explosion due to gas leakage in the heat exchanger for air cooling and gas heating. To prevent gas turbine from damage caused by gas explosion, removal of leakage gas from gas turbine is inevitably required before firing the gas turbine and installing alarm systems is also required for detecting gas leakage at stop valve to turbine while shut down.

난소화성 전분 제조공정의 최적화 및 이화학적 특성 연구 (Studies for Processing Condition Optimization and Physicochemical Property of Resistant Starch)

  • 한명륜;김우경;강남이;이수정;김명환
    • 한국식품영양과학회지
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    • 제32권8호
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    • pp.1193-1199
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    • 2003
  • 아밀로오스 함량이 22%인 일반 옥수수전분과 아밀로오스 함량이 46%인 고아밀로오스 옥수수 전분을 이용하여 난소화성 전분의 제조과정 중 가열온도, 수분함량, 저장온도 및 가열-냉각회수 인자들이 난소화성 전분생성율에 미치는 영향을 반응표면분석법으로 분석한 결과 고아밀로오스 옥수수 전분이 옥수수 전분에 비하여 높은 난소화성 전분의 생성율을 나타내었다. 본 실험조건에서 고아밀로오스 옥수수 전분의 난소화성 전분 생성 최적 제조조건은 6회의 가열-냉각, 2$0^{\circ}C$의 저장온도, 108$^{\circ}C$의 가열온도 및 57%의 수분함량이었으며 생성율은25%수준이었다. 난소화성 전분의 제조시 영향을 미치는 순서는 가열-냉각회 수, 수분함량, 가열온도, 저장(냉각)온도 순이었다. 난소화성 전분의 제조과정에서 전분입자의 파괴 및 다공성 망상구조를 보였으며 비표면적의 증가와 평균직경의 감소현상이 나타났고 열처리에 의하여 색깔은 어두워지고 노란색상의 증가를 보였다. 가열-냉각 과정에서 옥수수 전분의 경도, 응집성, 탄력성 및 점성의 감소현상이 두드러졌다.

히트 파이프를 이용한 열경화성 나노임프린트 장비용 열판의 온도 균일도 향상 (Improvement of Temperature Uniformity in a Hot Plate for Thermal Nanoimprint Lithography by Installing Heat Pipes)

  • 박규진;양진오;이재종;곽호상
    • 반도체디스플레이기술학회지
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    • 제15권2호
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    • pp.74-80
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    • 2016
  • This study presents a thermal device specially designed for thermal nanoimprint lithography equipments, which requires the capability of rapid heating and cooling, high temperature uniformity and the material strength to endure high stamping pressure. The proposal to meet these requirements is a planar-type hot plate extensible to a large area, in which long circular cartridge heaters and heat pipes are installed inside in parallel. The heat pipes are connected to the outside water cooling chamber. A hot plate made of stainless steel is fabricated with a dimension $240mm{\times}240mm{\times}20mm$. Laboratory experiments are conducted to examine the thermal performance of the hot plate. The results illustrate that the employment of heat pipes leads to a notable enhancement of temperature uniformity in the device and provides an efficient heat delivery from the hot plate to outside. It is verified that the suggested hot plate could be a feasible thermal tool for thermal nanoimprint lithography, satisfying the major design requirements.

고차구조 변화에 따른 저밀도폴리에틸렌 박막의 전기적 특성 (Electrical Properties of Low Density Polyethylene Film by Superstructure Change)

  • 신종열;신현택;이수원;홍진웅
    • 한국안전학회지
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    • 제17권4호
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    • pp.101-109
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    • 2002
  • The electrical properties of polyethylene are changed by the superstructure. Such crystalline polymer as polyethylene or polypropylene changes crystallinity and products spherulite or trans-crystal when it is cooled slowly. In this study, after thermal treatment of LDPE at 100[${circ}C$], in silicone oil for an hour, we made specimens in order of slow cooling, water cooling, quenching according to cooling speed. Also, to study the influence of electrical properties due to the superstructure change, we analyzed physical properties and performed dielectric breakdown experiments using DC and impulse voltage Moreover we measured space charges in bulk using Laser Induced Pressure Pulse(LIPP) method. Trap level of specimen is 0.064[eV] at the low temperature region 0.31[eV] at the high temperature region in DC dielectric strength, 0.03[eV] at the low temperature region 0.0925[eV] at the high temperature region in impulse dielectric strength. As its result shows that the quantity of charges induced from the electrode surface increases with applied voltage time, and the distribution of space charges in samples increases the quantity of charges in proportion to applied voltage.