• 제목/요약/키워드: forced circulation

검색결과 89건 처리시간 0.033초

고온초전도 케이블 단말용 cryostat 설계 (Design of Termination Cryostat for HTS Power Cable)

  • 양형석;김승현;김동락;조승연;김도형;류희석;성기철
    • 한국초전도저온공학회:학술대회논문집
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    • 한국초전도저온공학회 2003년도 학술대회 논문집
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    • pp.160-162
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    • 2003
  • Termination cryostat for 22.9kV, 1.26kA-class HTS power cable has been designed. The cryostat consists of vacuum vessel, liquid nitrogen vessel, current lead and HTS power cable. The current lead and the HTS power cable are connected in liquid nitrogen vessel cooled by forced-circulation subcooled liquid nitrogen. The maximum total heat load of this cryostat is expected to be 150w. In this paper, the detailed design of the termination cryostat is mentioned.

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고압수소 저장용기의 노즐 각도 및 길이/직경비에 따른 열적 특성 연구 (A Study on the Thermal Characteristics of High Pressure Hydrogen Storage Tank according to Nozzle Angle and Length/Diameter Ratio)

  • 윤정환;권준영;전경숙;오진식;오승준
    • 한국수소및신에너지학회논문집
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    • 제34권5호
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    • pp.431-438
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    • 2023
  • Recently, study on hydrogen is being conducted due to environmental pollution and fossil fuel depletion. High-pressure gas hydrogen commonly used is applied to vehicle and tube trailers. In particular, high-pressure hydrogen storage tank for vehicles must comply with the guidelines stipulated in SAE J2601. There is a charging temperature limitation condition for the safety of the storage tank material. In this study, numerical analysis method were verified based on previous studies and the nozzle angle was changed for thermal management to analyze the increase in forced convection effect and energy uniformity due to the promotion of circulation flow. The previously applied high-pressure hydrogen storage tank has a length/diameter ratio of about 2.4 and was analyzed by comparing the length/diameter ratio with 8. As a result, the circulation flow of hydrogen flowing into the high-pressure hydrogen storage tank is promoted at a nozzle angle of 30° than the straight nozzle and accordingly, the effect of suppressing temperature rise by energy uniformity and forced convection was confirmed.

강제환기장치 사용에 따른 단동 플라스틱 온실 기온 강하 특성 (Characteristics of Cooling Effect Depending on Operation of Forced Ventilation Systems in a Single-span Plastic Greenhouse)

  • 김성헌;김형권;권진경;이시영
    • 생물환경조절학회지
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    • 제31권3호
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    • pp.143-151
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    • 2022
  • 본 연구는 권취식 측창을 갖는 아치형 단동 플라스틱 온실 내 강제환기장치 설치 및 운용, 환기 성능 개선방안 등을 제안하기 위해 온실 내부에 유동팬과 배기팬을 설치하여 강제환기장치 사용에 따른 온실 내부기온 강하 특성을 정량적으로 조사하였다. 시험은 3가지 환기 조건(측창, 측창+순환팬, 측창+순환팬+배기팬)에서 수행되었다. 각 조건 데이터로거를 이용하여 환기 시작과 동시에 온실 내외부 기온 및 외부환경 변화를 측정·기록하였고, 환기 방식별 기온차 변화의 평균값으로 부터 정규기온차를 계산하여 기온 강하 효과를 비교하였다. 오전(11:00-12:00)에는 환기 방식에 상관없이 환기 초반 정규기온차가 일시적으로 증가했다가 감소하는 것으로 나타났다. 강제환기장치가 더 많이 사용될수록 최대 정규기온차는 1.158에서 1.037로 감소하였고 최대 정규기온차에 도달하는 시간도 340초에서 110초로 단축되었다. 강제환기장치의 사용은 정규기온차가 0.8까지 감소하는데 소요된 시간을 1,030초에서 550초로, 0.6까지는 1,610초에서 915초로, 0.4까지는 2,315초에서 1,360초로, 자연환기의 약60% 수준으로 감소시켰다. 오후(14:00-15:00)에는 정규기온차의 증가가 관측되지 않았지만, 환기 시작과 동시에 기온차가 감소하기 시작했다. 또한 강제환기장치가 더 많이 사용될수록 정규기온차가 0.8까지 내려가는 시간을 560초에서 345초로, 0.6까지는 825초에서 540초로, 0.4까지는 560초에서 345초로, 약70% 수준으로 감소시켰다. 따라서, 보다 효과적이고 경제적인 환기를 위해 강제환기장치는 오전과 같이 열부하가 높은 환경에서 적극적으로 사용하는 것이 바람직하다고 판단된다.

Numerical simulation of Hydrodynamics and water properties in the Yellow Sea. I. Climatological inter-annual variability

  • Kim, Chang-S.;Lim, Hak-Soo;Yoon, Jong-Joo;Chu, Peter-C.
    • Journal of the korean society of oceanography
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    • 제39권1호
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    • pp.72-95
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    • 2004
  • The Yellow Sea is characterized by relatively shallow water depth, varying range of tidal action and very complex coastal geometry such as islands, bays, peninsulas, tidal flats, shoals etc. The dynamic system is controlled by tides, regional winds, river discharge, and interaction with the Kuroshio. The circulation, water mass properties and their variability in the Yellow Sea are very complicated and still far from clear understanding. In this study, an effort to improve our understanding the dynamic feature of the Yellow Sea system was conducted using numerical simulation with the ROMS model, applying climatologic forcing such as winds, heat flux and fresh water precipitation. The inter-annual variability of general circulation and thermohaline structure throughout the year has been obtained, which has been compared with observational data sets. The simulated horizontal distribution and vertical cross-sectional structures of temperature and salinity show a good agreement with the observational data indicating significantly the water masses such as Yellow Sea Warm Water, Yellow Sea Bottom Cold Water, Changjiang River Diluted Water and other sporadically observed coastal waters around the Yellow Sea. The tidal effects on circulation and dynamic features such as coastal tidal fronts and coastal mixing are predominant in the Yellow Sea. Hence the tidal effects on those dynamic features are dealt in the accompanying paper (Kim et at., 2004). The ROMS model adopts curvilinear grid with horizontal resolution of 35 km and 20 vertical grid spacing confirming to relatively realistic bottom topography. The model was initialized with the LEVITUS climatologic data and forced by the monthly mean air-sea fluxes of momentum, heat and fresh water derived from COADS. On the open boundaries, climatological temperature and salinity are nudged every 20 days for data assimilation to stabilize the modeling implementation. This study demonstrates a Yellow Sea version of Atlantic Basin experiment conducted by Haidvogel et al. (2000) experiment that the ROMS simulates the dynamic variability of temperature, salinity, and velocity fields in the ocean. However the present study has been improved to deal with the large river system, open boundary nudging process and further with combination of the tidal forcing that is a significant feature in the Yellow Sea.

개심술후 급성 호흡부전에 관한 임상적 고찰 (A clinical study of acute respiratory failure following open heart surgery)

  • 이재성;김규태
    • Journal of Chest Surgery
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    • 제17권3호
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    • pp.409-417
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    • 1984
  • In the early days of open heart surgery, acute respiratory failure following extracorporeal circulation was a significant deterrent to an uncomplicated recovery. Although a marked improvement in prevention and treatment of postoperative respiratory failure has been achieved, the problem has not been completely eliminated and continues to be a causative factor in morbidity and mortality Fates following open heart surgery. We have attempted to evaluate postoperative respiratory failure in patients undergoing cardiac operation with the aid of extracorporeal circulation. Our series comprised 92 patients who underwent elective open heart surgery at the Department of Thoracic and Cariodvascular Surgery, School of Medicine, Kyungpook National University, from January, 1980 to December, 1982. In our study, the overall incidence of acute respiratory failure following open heart surgery was 18.8 percent. The duration of extracorporeal circulation in a series of 18 patients who developed postoperative respiratory failure [Group B] was longer in the mean value [120.3 minutes] than the uncomplicated 74 patients [Group A] [85.8 minutes]. The duration of artificial ventilation after open heart surgery in Group A averaged 13.4 hours as contrasted with 76.5 hours in Group B. In Group B, the inspired oxygen concentration [FiO2] in artificial ventilation was continued in the higher level than Group A until 18 hours after operation. Upon pulmonary function test performed pre-and postoperatively, residual volume[RV], RV/TLC and FEV 1.0/FVC were remained essentially unchanged following extracorporeal circulation, whereas forced vital capacity [FVC], FEV 1.0 and FEF 25-75% were significantly decreased in the early postoperative days. The incidence of acute respiratory failure was significantly higher in a series of patients who developed postoperative complications, such as re- exploration due to massive bleeding, low cardiac output, acute renal failure and arrhythmias. A total of 9 patients died, giving an overall mortality was 33.3 percent whereas the mortality was only 1.1 percent for patients without respiratory failure.

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강제환기처리에 의한 비닐하우스재배 시금치의 노균병 발생 억제 (Control of Spinach Downy Mildew by Forced Ventilation in Greenhouse Cultivation)

  • 박석희;이중환;우진하;최성용;박소득;문용선
    • 한국유기농업학회지
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    • 제22권1호
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    • pp.147-154
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    • 2014
  • 비닐하우스 내 강제환기가 시금치 노균병 발생에 미치는 영향을 구명하기 위해 비닐하우스에 수직환기팬 및 수평공기순환팬을 각각 설치한 후 밤 동안 환기를 시킨 하우스와 환기팬을 설치하지 않은 하우스에서 시금치를 재배하면서 온도 및 습도의 변화, 시금치 생장정도 및 노균병 발생 정도를 조사하였다. 하우스 내의 온도변화는 각 하우스 별로 큰 차이가 없었으나, 밤 동안 상대습도는 수직강제환기팬을 설치한 하우스가 팬을 설치하지 않은 하우스보다 9.2% 낮게 유지되었다. 파종 60일 후에 조사한 시금치의 개체 당 생체중은 수직강제환기팬을 설치한 하우스에서는 17.8g으로 환기팬을 설치하지 않은 하우스의 10.1g과 비교하여 7.7g 높았다. 노균병은 환기팬을 설치하지 않은 하우스에서는 파종 후 20일부터 발생하기 시작하여 60일 후에는 34.7%의 이병엽률을 보였으나, 수직강제환기처리한 하우스에서는 파종 40일 후부터 발생하기 시작하였으며 60일 후 이병엽률은 4.0%로 매우 낮았다. 야간에 비닐하우스 내 공기를 수직강제환기팬을 이용하여 환기시킨 결과 환기팬을 설치하지 않은 하우스와 비교하여 시금치 수확량은 76.2% 증가되었으며, 노균병 발생은 20일 정도 늦었으며, 88.5% 노균병 발생 억제효과가 있었다.

물질순환모델을 이용한 제주항의 수질관리(I) - 제주항의 물리해양환경의 변화 - (Water quality management of Jeiu Harbor using material cycle model(I) - The Variation of Physical Oceanographic Environments in Jeiu Harbor -)

  • 조은일;이병걸;오윤근
    • 한국환경과학회지
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    • 제11권1호
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    • pp.25-32
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    • 2002
  • In order to control of water quality in Jeju harbor, variation of physical oceanographic environments was estimated using material cycle model. It is composed of the three-dimensional hydrodynamic model for the simulation at water flow and material cycle model for the simulation of water quality. The three dimensional hydrodynamic model simulation of the circulation and mixing in Jeju Harbor has been conducted forced by Sanzi River Discharge, Tidal elevation, wind and Solar heat in case of August and November, 2000 and February and May, 2001, respectively. The results of numerical model and observation show that the model can produce realistic results of current in the harbor. The monthly variation of velocity pattern are not so much changed are found In Jeju Harbor. The residual current was forced by temperature, salinity, density, wind and tidal current. The residual current of August, 2000 are the strongest among four month. It can be explained that the density effect can be important role in residual current at Jeju Harbor. As the results of salinity distribution simulation, very low concentration of all levels were simulated in August, 2000. The flowrate of Sanzi river was investigated 77,760 ㎥ /d in August, 2000. Therefore, pollutant loadings from Sanzi river should be considered for water quality management in Jeiu harbor.

해수면변화와 해저지형에 의한 난류수의 순환과 그 기원 (Warm Water Circulation and its Origin by Sea Level Fluctuation and Bottom Topography)

  • 방익찬;오임상
    • 한국수산과학회지
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    • 제28권5호
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    • pp.677-697
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    • 1995
  • 우리나라, 일본, 러시아 해역에서 관측된 조위관측 자료에서 얻은 해수면의 장주기변화를 기상과의 관계로 분석해 본 결과, 기상의 효과는 해역에 따라 다르지만 전반적으로 해수면변화의 절반 정도를 설명해주는 것으로 나타났다 해수운동에 의하여 발생하는 해수면변화는 대마해류역에서 가장 크며 대마해류의 영향을 적게 받는 곳일수록 작아져 해수면변화가 대마해류와 관계 있음을 보여준다. 순압해수면 변화가 허용된 수치모델을 사용하여 해수면변화가 해수순환에 미치는 영향을 알아보았다. 그 결과 기본적인 해류형태는 Pang et al. (1993)에 의해 수행된 GCM (Semtner)모델의 결과와 같이 대만 주변 해역에서 지균형조정을 거친 후 등수심선을 따라 대한해협으로 흐르지만, 순압해수면 변화의 허용에 의해 일부 해수가 황해의 중앙을 따라 황해로 유입된 후 서해안을 따라 남하하여 유출되는 황해의 기본순환형태가 나타났다. 이와 함께 쿠로시오해류에 변화를 가할 때 순압해수면 변화에 의해 대륙붕에 장주기파동이 뚜렷해지며 이 파동으로 황해의 기본순환형태가 교란되어 해수가 서해안을 따라 북상하는 순환형태도 나타났다. 황해순환은 겨울철에는 기본순환형태가 북서 계절풍에 의해 강화되고 여름철에는 파동에 의해 교란된 순환구조에 남동계절풍이 합세하는 것으로 보인다. 장주기파동에 의해 나타나는 다른 특징은 대마해류 기원해역의 변화 가능성이다. 지금까지 대마해류의 기원해역은 크게 큐슈섬 남서해역과 대만 주변해역으로 대립되어 왔다. 그러나 이 연구결과는 이들은 서로 위배되는 것이라기 보다는 대마해류 기원의 중요한 두 해역이며 장주기파동에 의해 한쪽이 강화되어 나타나는 것을 보인다. 쿠로시오해류의 변화에 의해 대만 주변해역에 가해진 파동은 강제파로 대한해협으로 전파되며 대한해협에 이르러 일본연안의 파동은 동해로 계속 전파되는 반면, 우리나라 연안의 파동은 해저지형에 의해 반사하게 된다. 반사된 파동은 자유파로 동중국해 대륙붕을 따라 남서방향으로 진행하며 북동방향으로 진행하는 강제파와 더불어 동중국해의 해수면변화를 결정하게 된다.

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A CHARACTERISTICS-BASED IMPLICIT FINITE-DIFFERENCE SCHEME FOR THE ANALYSIS OF INSTABILITY IN WATER COOLED REACTORS

  • Dutta, Goutam;Doshi, Jagdeep B.
    • Nuclear Engineering and Technology
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    • 제40권6호
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    • pp.477-488
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    • 2008
  • The objective of the paper is to analyze the thermally induced density wave oscillations in water cooled boiling water reactors. A transient thermal hydraulic model is developed with a characteristics-based implicit finite-difference scheme to solve the nonlinear mass, momentum and energy conservation equations in a time-domain. A two-phase flow was simulated with a one-dimensional homogeneous equilibrium model. The model treats the boundary conditions naturally and takes into account the compressibility effect of the two-phase flow. The axial variation of the heat flux profile can also be handled with the model. Unlike the method of characteristics analysis, the present numerical model is computationally inexpensive in terms of time and works in a Eulerian coordinate system without the loss of accuracy. The model was validated against available benchmarks. The model was extended for the purpose of studying the flow-induced density wave oscillations in forced circulation and natural circulation boiling water reactors. Various parametric studies were undertaken to evaluate the model's performance under different operating conditions. Marginal stability boundaries were drawn for type-I and type-II instabilities in a dimensionless parameter space. The significance of adiabatic riser sections in different boiling reactors was analyzed in detail. The effect of the axial heat flux profile was also investigated for different boiling reactors.