• 제목/요약/키워드: Thermal Utilization

검색결과 387건 처리시간 0.024초

Evaluation of Thermal Utilization of Dousing System in PHWR Nuclear Power Plant

  • Nam, S.D.;Ryu, J.I.
    • 한국분무공학회지
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    • 제4권3호
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    • pp.42-52
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    • 1999
  • An effectiveness of thermal utilization of a dousing system in the 600 MW PHWR Nuclear Power Plant has been evaluated. The behavior and conditions of water droplet sprayed in a postulated accident conditions in containment configuration has been calculated. In this calculation, two pressure conditions with the consideration of obstruction area and containment wall effect has been established : one being the minimum containment pressure of 7 kPa(g) encountered for dousing shut off and the other being the containment design pressure 124 kPa(g). The results revealed that the effectiveness of the thermal utilization ranges from 93% to 97%. In the analysis on two cases without/with side wall effect in the containment building, the thermal utilization decreases with obstruction area from 89% to 85%, which satisfies the design criteria set for the containment pressure against the accident condition.

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고추건조를 통한 태양열 건조기의 열성분석 (Thermal Analysis of Solar Utilization Dryer for Redpepper Drying)

  • 이태규;조서현;조덕기;최영희;오정무
    • 태양에너지
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    • 제9권2호
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    • pp.14-21
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    • 1989
  • The heat transfer analysis is performed on unloaded solar utilization dryer, and thermal performance for a prototype model while drying red-pepper is also investigated. Results of theoretically derived thermal equations are in good agreement with experimental data. This constructed feature of the prototype demonstrates the excellent technical drying performance. Finally, this paper recommends the further work to develop advanced and economic solar utilization multi-purpose dryer.

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스크류 캡슐형 밀폐식 빙축열시스템의 성능시험에 관한 연구 (Study on the Performance Testing of the Closed Ice Thermal Energy Storage System using Screw Capsules)

  • 김경환
    • 한국태양에너지학회 논문집
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    • 제26권4호
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    • pp.39-45
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    • 2006
  • The decrease in the summer peak electric load in our country is very important. The government has arranged and implemented a lot of support policies and statutes to decrease the peak electric load. And the ice thermal energy storage system is known as one of the alternatives. The purpose of this paper is to evaluate the efficiency and thermal characteristics of the closed ice thermal energy storage system using screw capsules. The measured thermal energy storage density is about 18.4 USRT-h/m3 (=232.9 MJ/m3), which is higher than 13.0 USRT-h/m3 (=164.6 MJ/m3), a low criterion of normal performance. And The efficiency of the discharging process and the total energy utilization is 96.2% and 2028.4 kcal/kWh respectively.

Three-dimensional thermal-hydraulics/neutronics coupling analysis on the full-scale module of helium-cooled tritium-breeding blanket

  • Qiang Lian;Simiao Tang;Longxiang Zhu;Luteng Zhang;Wan Sun;Shanshan Bu;Liangming Pan;Wenxi Tian;Suizheng Qiu;G.H. Su;Xinghua Wu;Xiaoyu Wang
    • Nuclear Engineering and Technology
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    • 제55권11호
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    • pp.4274-4281
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    • 2023
  • Blanket is of vital importance for engineering application of the fusion reactor. Nuclear heat deposition in materials is the main heat source in blanket structure. In this paper, the three-dimensional method for thermal-hydraulics/neutronics coupling analysis is developed and applied for the full-scale module of the helium-cooled ceramic breeder tritium breeding blanket (HCCB TBB) designed for China Fusion Engineering Test Reactor (CFETR). The explicit coupling scheme is used to support data transfer for coupling analysis based on cell-to-cell mapping method. The coupling algorithm is realized by the user-defined function compiled in Fluent. The three-dimensional model is established, and then the coupling analysis is performed using the paralleled Coupling Analysis of Thermal-hydraulics and Neutronics Interface Code (CATNIC). The results reveal the relatively small influence of the coupling analysis compared to the traditional method using the radial fitting function of internal heat source. However, the coupling analysis method is quite important considering the nonuniform distribution of the neutron wall loading (NWL) along the poloidal direction. Finally, the structure optimization of the blanket is carried out using the coupling method to satisfy the thermal requirement of all materials. The nonlinear effect between thermal-hydraulics and neutronics is found during the blanket structure optimization, and the tritium production performance is slightly reduced after optimization. Such an adverse effect should be thoroughly evaluated in the future work.

Thermal-hydraulic safety analysis of radioisotope production in HANARO using MCNP6 and COMSOL multiphysics: A feasibility study

  • Taeyun Kim;Bo-Young Han;Seongwoo Yang;Jaegi Lee ;Gwang-Min Sun;Byung-Gun Park;Sung-Joon Ye
    • Nuclear Engineering and Technology
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    • 제55권11호
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    • pp.3996-4001
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    • 2023
  • The High-flux Advanced Neutron Application Reactor (HANARO) produces radioisotopes (RIs) (131I, 192Ir, etc.) through neutron irradiation on various RI production targets. Among them, 177Lu and 166Ho are particularly promising owing to their theranostic characteristics that facilitate simultaneous diagnosis and treatment. Prior to neutron irradiation, evaluating the nuclear heating of the RI production target is essential for ensuring the thermal-hydraulic safety of HANARO. In this study, the feasibility of producing 177Lu and 166Ho using irradiation holes of HANARO was investigated in terms of thermal-hydraulic safety. The nuclear heating rates of the RI production target by prompt and delayed radiation were calculated using MCNP6. The calculated nuclear heating rates were used as an input parameter in COMSOL Multiphysics to obtain the temperature distribution in an irradiation hole. The degree of temperature increase of the 177Lu and 166Ho production targets satisfied the safety criteria of HANARO. The nuclear heating rates and temperature distribution obtained through the in silico study are expected to provide valuable insight into the production of 177Lu and 166Ho using HANARO.

지하 열에너지 저장 기술 및 스웨덴 암반공동내 열수 저장 사례 (Technologies of Underground Thermal Energy Storage (UTES) and Swedish Case for Hot Water)

  • 박도현;김형목;류동우;최병희;선우춘;한공창
    • 터널과지하공간
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    • 제22권1호
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    • pp.1-11
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    • 2012
  • 열에너지 저장은 고온 또는 저온의 열에너지를 임시 저장하는 것으로서 에너지 수요와 공급 사이의 불균형을 줄일 수 있고, 이를 통해 에너지를 절약하고 에너지 이용효율을 향상시킬 수 있다. 특히 간헐적으로 에너지를 생산하는 신재생에너지의 경우 에너지 저장 장치와의 조합은 필수적이다. 또한 지하 암반의 낮은 열전도도와 높은 열용량을 이용하여 지하에 열에너지를 저장하는 경우 열손실을 최소화하여 추가적인 효율 향상이 기대된다. 본 고에서는 지하 열에너지 저장 기술을 조사 분석하고 스웨덴에 암반공동내 열에너지 저장 사례를 소개하였다.

적외선 열화상을 이용한 비파괴시험 활용 및 결함 진단 (The Utilization of Nondestructive Testing and Defects Diagnosis using Infrared Thermography)

  • 최만용;김원태
    • 비파괴검사학회지
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    • 제24권5호
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    • pp.525-531
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    • 2004
  • 본 고는 적외선 열화상의 개념과 적외선열화상 측정윈리 및 카메라 셋팅을 기술하고 적외선열화강(IRT)에 의한 비파괴검사(NDT)의 활용 및 비파괴검사의 진단에 대하여 살펴보았다. 적외선 열화상은 주어진 표면을 따라 온도에 관련된 열패턴의 평가를 통한 정기적인 비접촉, 비파괴 시험의 수행으로 초기에 장비 고장의 예방이 가능하다. 진단 활용으로서, 열적으로 가열된 내부결함이 있는 블록에 대하여 적외선열화상을 이용한 열화상 패턴을 비파괴 기법으로 평가하고, 결함과 열화상패턴간의 특성을 분석하여 열화상 평가 기법에 대하여 논하였다.

PM OLED 디바이스 제작을 위한 PLD 공정 개발에 관한 연구 (A Study on Development of PLD Process for PM OLED Device Manufacture)

  • 이의식;이병욱;김창교;홍진수;박성훈;문순권
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2005년도 추계학술대회 논문집 Vol.18
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    • pp.264-266
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    • 2005
  • Manufacture of OLED device used thermal evaporation method. However thermal evaporation method has many defect as thermal damage of substrate, difficult of dopant rate control and low utilization of organic materials. so we suggest PLD(Pulsed Laser Deposition) method that solution of these problems. PLD method has many advantage as without thermal damage, easy indicate of deposition rate per one pulse and good utilization of organic materials. In this paper we apply the PLD method for manufacture of device so we present high efficiency device manufacture using PLD method that has good deposition uniformity, surface rough and deposition rate.

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지열에너지 활용을 위한 암석의 열전도도 고찰 (Thermal conductivity of rocks for geothermal energy utilization)

  • 이영민
    • 한국지열·수열에너지학회논문집
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    • 제3권2호
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    • pp.9-15
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    • 2007
  • Thermal conductivity of rocks is one of the most important parameters in designing a geothermal heat pump system, because heat exchange rate depends primarily on thermal conductivity of rocks. In this paper, the measurement methods of thermal conductivity, thermal conductivity of rocks, and heat exchange rate are discussed.

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