• Title/Summary/Keyword: Heat Load Analysis

검색결과 627건 처리시간 0.035초

고속 비행체 공기흡입관 구조설계를 위한 효율적 유체-열 통합해석 연구 (An Efficient Fluid-Thermal Integrated Analysis for Air-Intake Structure Design of a High Speed Air Vehicle)

  • 전형근;류동국;이재우;김상호
    • 한국항공운항학회지
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    • 제23권3호
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    • pp.8-17
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    • 2015
  • In this research, low fidelity air/heat load analysis was conducted for the intake of high speed vehicle. For air/heat load calculations, aerodynamic properties at the surface and the boundary layer edge were estimated using Taylor-Maccoll equation for conical flow, shockwave relation and Prandtl-Meyer expansion equation for internal and external flow. Couette flow assumption and Reynolds analogy were used in order to calculate convective heat transfer coefficient. In order to calculate skin friction coefficient for heat transfer coefficient analysis, Van Driest method II and Reference Enthalpy method were considered. An axis symmetric SCRAMJET model was selected as a reference configuration for verifying the proper implementation of the present method. Comparison of the results using the present method and Computational Fluid Dynamic analysis showed that the present method is valuable for efficiently providing pressure and heat loads for air-intake structure design of the high speed air vehicle.

시뮬레이션 기반 가정용 연료전지 시스템의 경제적 운전전략에 관한 연구 (A Simulation based Study on the Economical Operating Strategies for a Residential Fuel Cell System)

  • 황수영;김민진;이진호;이원용
    • 한국수소및신에너지학회논문집
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    • 제20권2호
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    • pp.104-115
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    • 2009
  • In case of residential fuel cell system, it is significant to stably supply heat and power to a house with high efficiency and low cost for the successful commercialization. In this paper, the control strategy analysis has been performed to minimize the total cost including capital and operating cost of the residential fuel cell system. The proposed analysis methodology is based on the simulator including the efficiency models as well as the cost data for fuel cell components. The load control strategy is the key factor to decide the system efficiency and thus the cost analysis is performed when the fuel cell system is operated for several different load control logics. Additionally, annual efficiency of the system based on the seasonal load data is calculated since system efficiency is changeable according to the electric and heat demand change. As a result, the hybrid load control combined electricity oriented control and heat oriented control has the most economical operation.

풍력터빈 PM형 동기발전기의 와전류손실과 열 해석에 관한 연구 (A Study on Rotor Eddy Current Loss and Thermal Analysis of PM Synchronous Generator for Wind Turbine)

  • 최만수;장영학;박태식;정문선;문채주
    • 전기학회논문지
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    • 제63권11호
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    • pp.1575-1581
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    • 2014
  • In this paper, eddy current loss, iron loss and heat transfer of PMSG with 2,000kW capacities were analyzed for wind turbine. The PMSG with 3 split magnet was analyzed using ansoft maxwell commercial program and, generator was tested by Back to Back converter with no load condition at laboratory. Rotor surface temperature was measured by Pt100 sensors for investigating heat transfer from rotor to atmosphere. The simulation results shows 27.4kW eddy current loss in no load condition and 50.2kW eddy current loss in rated load condition with 3 split magnet, and also shows 4.3kW iron loss in no load condition and 7.3kW iron loss rated load condition. The heat transfer coefficient of convection between rotor surface and atmosphere was investigated by $9.6W/m^2{\cdot}K$. Therefore the heat transfer from rotor to atmosphere was about 17kW(54%) and from rotor to air-gap was about 14.6kW(46%) in no load condition. It is identified that the cooling system for stator have to include the 46% of iron loss, and heat dissipation structure of rotor surface have to be suggested and designed for efficiency improvement of generator.

접선 연소식 보일러의 최종 과열기 열부하 분포 및 튜브 온도 예측에 관한 연구 (Prediction of Thermal Load Distribution and Temperature of the Superheater in a Tangentially Fired Boiler)

  • 박호영;서상일
    • 설비공학논문집
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    • 제20권7호
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    • pp.478-485
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    • 2008
  • The extreme steam temperature deviation experienced in the superheater of a tangentially fired boiler can seriously affect its economic and safe operation. This temperature deviation is one of the main causes of boiler tube failures. The steam temperature deviation is mainly due to the thermal load deviation in the lateral direction of the superheater. The thermal load deviation consists of several causes. One of the causes is the non-uniform heat flow distribution of burnt gas on the superheater tube system. This distribution is very difficult to measure in situ using direct experimental techniques. So, we need thermal load model to estimate the tube temperature. In this paper, we propose a thermal load distribution model by using CFD analysis and plant data. We successfully predict the tube temperature and the steam flow rate in a final superheater system from the thermal load model and one dimensional heat-flow system analysis. The proposed model and analysis method would be valuable in preventing the frequent tube failure of the final superheater tubes.

Thermal stress intensity factor solutions for reactor pressure vessel nozzles

  • Jeong, Si-Hwa;Chung, Kyung-Seok;Ma, Wan-Jun;Yang, Jun-Seog;Choi, Jae-Boong;Kim, Moon Ki
    • Nuclear Engineering and Technology
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    • 제54권6호
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    • pp.2188-2197
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    • 2022
  • To ensure the safety margin of a reactor pressure vessel (RPV) under normal operating conditions, it is regulated through the pressure-temperature (P-T) limit curve. The stress intensity factor (SIF) obtained by the internal pressure and thermal load should be obtained through crack analysis of the nozzle corner crack in advance to generate the P-T limit curve for the nozzle. In the ASME code Section XI, Appendix G, the SIF via the internal pressure for the nozzle corner crack is expressed as a function of the cooling or heating rate, and the wall thickness, however, the SIF via the thermal load is presented as a polynomial format based on the stress linearization analysis results. Inevitably, the SIF can only be obtained through finite element (FE) analysis. In this paper, simple prediction equations of the SIF via the thermal load under, cool-down and heat-up conditions are presented. For the Korean standard nuclear power plant, three geometric variables were set and 72 cases of RPV models were made, and then the heat transfer analysis and thermal stress analysis were performed sequentially. Based on the FE results, simple engineering solutions predicting the value of thermal SIF under cool-down and heat-up conditions are suggested.

디젤기관에서 경유/부탄올 혼합연료의 기관성능 및 연소특성 해석 (Analysis of performance and combustion characteristics of D.O./butanol blended fuels in a diesel engine)

  • 김상암;왕우경
    • 수산해양기술연구
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    • 제55권4호
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    • pp.411-418
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    • 2019
  • In this study, to investigate the effect of physical and chemical properties of butanol on the engine performance and combustion characteristics, the coefficient of variations of IMEP (indicated mean effective pressure) and fuel conversion efficiency were obtained by measuring the combustion pressure and the fuel consumption quantity according to the engine load and the mixing ratio of diesel oil and butanol. In addition, the combustion pressure was analyzed to obtain the pressure increasing rate and heat release rate, and then the combustion temperature was calculated using a single zone combustion model. The experimental and analysis results of butanol blending oil were compared with the those of diesel oil under the similar operation conditions to determine the performance of the engine and combustion characteristics. As a result, the combustion stabilities of D.O. and butanol blending oil were good in this experimental range, and the indicated fuel conversion efficiency of butanol blending oil was slightly higher at low load but that of D.O. was higher above medium load. The premixed combustion period of D.O. was almost constant regardless of the load. As the load was lower and the butanol blending ratio was higher, the premixed combustion period of butanol blending oil was longer and the premixed combustion period was almost constant at high load regardless of butanol blending ratio. The average heat release rate was higher with increasing loads; especially as butanol blending ratio was increased at high load, the average heat release rate of butanol blending oil was higher than that of D.O. In addition, the calculated maximum. combustion temperature of butanol blending oil was higher than that of D.O. at all loads.

경수로 사용후핵연료 저장조 열부하 평가를 위한 연소조건 인자 민감도 분석 (Sensitivity Analysis of Depletion Parameters for Heat Load Evaluation of PWR Spent Fuel Storage Pool)

  • 김인영;이은철
    • 방사성폐기물학회지
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    • 제9권4호
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    • pp.237-245
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    • 2011
  • 후쿠시마 사고 이후 사용후핵연료 저장시설 안전성 재검증 필요성이 증대되고 있는 가운데, 재검증 결과의 신뢰성 향상을 위해 열부하 평가결과의 정확도 향상이 요구되고 있다. 이를 위한 기초연구로 본 연구에서는 상대적으로 중요성이 저평가되었던, 저장시나리오, 연소조건 관련 인자와 같이 붕괴열 및 열부하 평가 영향인자를 도출하고, 고리 4호기를 대상으로 ORIGEN2 코드를 이용해 그 효과를 평가하였다. 대표 저장시나리오에 대한 열부하 평가 결과, 최후 방출 핵연료의 붕괴열은 시나리오에 따라 전체 열부하의 최대 80.42%를 차지해 저장시설 열부하에 지배적인 영향을 미침이 확인되었다. 또한 연소조건 인자로 선택된 축 방향 연소 효과, 연소이력, 비출력 효과에 대한 민감도 분석 수행 결과, 냉각기간이 짧을수록 각 인자의 붕괴열에 대한 영향이 커지는 것으로 확인되었다. 각 인자별로는 비출력, 연소이력, 축 방향 연소 효과의 순으로 붕괴열에 대한 영향력이 컸으며, 특히 비출력의 경우 방출 직후 평균값의 0.34에서 1.66배, 방출 1년 후에는 평균 대비 0.55에서 1.37배까지 붕괴열 변화를 초래함이 확인되었다. 즉, 저장시설의 열부하 평가와 같이 냉각기간이 짧은 핵연료에 대한 해석 시 비출력, 연소이력과 같은 연소조건인자가 해석결과에 매우 큰 차이를 초래할 수 있으므로, 해석결과의 정확도 향상을 위해 기존 해석자의 공학적 판단에 의거한 임의 인자 대표성 핵연료 선택방식 대신 실제 운전 데이터의 적용 등이 필요할 것으로 보인다. 본 연구 결과는 향후 열부하 해석 결과의 정확도 향상 및 불확실도 평가를 위한 기초자료로 활용될 수 있을 것으로 사료된다.

ASME Boiler & Pressure Vessel Code에 따른 배열회수보일러 기수분리기의 피로 평가 (Fatigue Evaluation of Steam Separators of Heat Recovery Steam Generators According to the ASME Boiler and Pressure Vessel Code)

  • 이부윤
    • 한국기계가공학회지
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    • 제17권4호
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    • pp.150-159
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    • 2018
  • The present research deals with a finite element analysis and fatigue evaluation of a steam separator of a high-pressure evaporator for the Heat Recovery Steam Generator (HRSG). The fatigue during the expected life of the HRSG was evaluated according to the ASME Boiler and Pressure Vessel Code Section VIII Division 2 (ASME Code). First, based on the eight transient operating conditions prescribed for the HRSG, temperature distribution of the steam separator was analyzed by a transient thermal analysis. Results of the thermal analysis were used as a thermal load for the structural analysis and used to determine the mean cycle temperature. Next, a structural analysis for the transient conditions was carried out with the thermal load, steam pressure, and nozzle load. The maximum stress location was found to be the riser nozzle bore, and hence fatigue was evaluated at that location, as per ASME Code. As a result, the cumulative usage factor was calculated as 0.00072 (much less than 1). In conclusion, the steam separator was found to be safe from fatigue failure during the expected life.

전력수급기본계획에 열병합발전 설비 반영 방법론의 개발 (The Development of Methodology in order to consider Combined Heat and Power in the Basic Plan of Long Term Electricity Supply & Demand)

  • 김용하;김미예;우성민;조성린;임현성
    • 대한전기학회논문지:전력기술부문A
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    • 제55권12호
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    • pp.570-575
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    • 2006
  • This paper develops methodology in order to consider CHP(Combined Heat and Power) capacity in the Basic Plan of Long Term Electricity Supply & Demand. We develop generating cost of CHP considering electric and heat. Also we develop mixed load duration curve which includes the electric load and heat load and then apply CHP capacity to SCM(Screening Curve Method) considering CHP feature. Accordingly, it decide the optimal CHP capacity in the Basic Plan of Long Term Electricity Supply & Demand. Also, We perform the sensitivity analysis according to cost variation.