• 제목/요약/키워드: Transient thermal load

검색결과 97건 처리시간 0.022초

복합 열전달 해석을 이용한 중속 디젤엔진 실린더 부품 온도 분포 예측 (Temperature Prediction of Cylinder Components in Medium-Speed Diesel Engine Using Conjugate Heat Transfer Analysis)

  • 최성욱;윤욱현;박종일;강정민;박현중
    • 대한기계학회논문집B
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    • 제37권8호
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    • pp.781-788
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    • 2013
  • 엔진 설계시 실린더 주요 부품의 온도 분포 계산은 엔진 전체 구조안정성 평가시 열응력에 의한 변형을 고려하기 위해 필수적으로 수행된다. 최근 박용 및 발전용 중속엔진은 압축비 및 출력이 증대 되어 설계되고 있는 추세여서 증가된 연소실 열부하에 의한 영향을 고려하기 위해 열전달 해석의 높은 정확도가 요구되고 있다. 본 연구에서는 엔진 설계시 실린더 주요 부품의 온도 분포를 계산하고 계산된 온도 수준이 설계기준에 만족하는지를 정확히 평가 하기 위한 열전달 해석 프로세스를 정립하였다. 각 주요 열부하 영역의 경계조건 설정 과정을 1 차원 엔진 성능해석 및 3 차원 열유동 해석을 통하여 산출하여 적용하였으며 해석 결과는 해당엔진 모델의 프로토 타입엔진 주요 부품 온도를 계측하여 검증하였다.

전산 시뮬레이션을 통한 PAV 낙뢰 영향성 분석 및 인증기술에 관한 연구 (Analysis of Effects of Lightning on PAV Using Computational Simulation and a Proposal to Establish Certification Guidance)

  • 박세웅;김윤곤;강용성;명노신
    • 항공우주시스템공학회지
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    • 제13권6호
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    • pp.60-69
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    • 2019
  • 세계 여러 기업에서는 교통체증이라는 심각한 사회 문제를 해결하기 위해 개인용 항공기 PAV(Personal Air Vehicle) 개발이 활발히 이루어지고 있다. PAV는 사람이 탑승하는 유인운송수단이므로 반드시 감항인증이 요구된다. 항공기와 마찬가지로 PAV의 안전 운항에서 치명적인 위협을 가하는 요소는 고온의 열과 자기장을 동반한 낙뢰이다. 현재 PAV 관련 낙뢰 인증 기술, 지침 및 요건 개발이 미비한 실정이기 때문에 PAV 낙뢰 인증은 더욱 중요하다. 본 연구에서는 미연방항공청(FAA)에서 인정하는 국제 표준 인증지침서인 SAE ARP를 분석하여 낙뢰 인증지침을 PAV에 접목하였다. PAV의 낙뢰에 대한 영향성을 전산 소프트웨어를 통해 분석하였고 향후 추진될 PAV 낙뢰 인증을 위한 실무지침 수립의 근거를 제시하고자 한다.

CHABOCHE 통합 점소성 구성방정식을 이용한 재료거동해석 (Analysis of Material Response Based on Chaboche Unified Viscoplastic Constitutive Equation;)

  • 곽대영;임용택;김종범;이형연;유봉
    • 대한기계학회논문집A
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    • 제20권11호
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    • pp.3516-3524
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    • 1996
  • Service conditions for structures at elevated temperatures in nuclear power plant involve transient thermal and mechanical load levels that are severe enough to caeuse inelastic deformations due to creep and plasticity. Therefore, a systematic mehtod of inelastic analysis is needed for the design of structural components in nuclear poser plants subjected to such loading conditions. In the present investigation, the Chabodhe model, one of the unified viscoplastic constitutive equations, was selected for systematic inelastic analysis. The material response was integrated based on GMR ( generallized mid-point rule) time integral scheme and provided to ABAQUS as a material subroutine, UMAT program. By comparing results obtaned from uniaxial analysis using the developed UMAT program with those from Runge-Kutta solutions and experimentaiton, the validity of the adopted Chaboche model and the numerical stability and accuracy of the developed UMAT program were verified. In addition, the developed material subroutine was applied for uniaxial creep and tension analyses for the plate with a hole in the center. The application further demonstrates usefulness of the developed program.

메탄올 개질 연료를 이용한 S.I. 엔진의 성능 및 배기 배출물 특성에 관한 연구 (An Experimental Study on the Performance and Characteristics of Emission for an S.I. Engine with Methanol-Reformulated Fuel)

  • 장영준;최승환;하철호;전충환
    • 대한기계학회논문집B
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    • 제25권9호
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    • pp.1193-1200
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    • 2001
  • There are many regulation test methods to be related with engine emissions such as CVS-75, D-13, ECE-15 modes and so on. Most of these modes are consisted of lots of transient conditions that have rapid acceleration, deceleration and cranking modes. In this experimental research, the engine characteristics of cranking, accelerating and power output in a S.I. engine were studied to compare with neat gasoline and alternative fuels of M30 (methanol 30%, aromatic series 32%, non-aromatic 38%) and M50 (methanol 50%, aromatic 30%, non-aromatic 20%) for performance and exhaust emissions. The results show that reformulated methanol fuels are better emissions reduction of 15.7% over than that of neat gasoline fuel especially in HC and CO emissions at cranking mode. And the accelerating performances coincide with the results of distillation curve. CO concentration for M50 fuel is varied in a just little for the condition of slow acceleration. At wide-open throttle condition, brake specific energy consumption of reformulated fuels is increased and thermal efficiency is some what lower than that of gasoline fuel.

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.

인증시험 조건에서 가스조성 변화에 따른 대형 천연가스 엔진 배기가스 및 입자상 물질 배출 특성에 관한 연구 (A Study on the Emission and Particulate Matter of a Heavy Duty Natural Gas Engine According to Gas Composition under certification tests)

  • 최지선;박철웅;장형준;김창기
    • 한국가스학회지
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    • 제25권6호
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    • pp.66-73
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    • 2021
  • 본 연구에서 인증을 위한 표준가스 종류의 변화가 대형 천연가스 엔진에 미치는 영향을 살펴보기 위해 전부하 시험과 WHTC 모드 시험 조건에서 엔진 성능 및 배기 특성을 비교하고 그 결과를 분석하였다. 실험에 사용된 연료는 표준 가스 두 종류(Gr, G23)와 시중에 유통되고 있는 천연가스, 총 3종류를 적용하였다. 연료 조성이 다른 3가지 천연가스의 실험결과 엔진 성능 특성은 질소 함유율이 높은 G23 연료에 대해서 토크, 연료소모율, 열효율 결과가 모두 다른 연료에 비해 악화되는 결과를 보였다. 또한 인증시험모드인 WHTC 모드에서 평가하였을 때, G23 연료를 적용한 경우 다른 두 연료에 비해 이산화탄소 및 일산화탄소 배출량은 감소하고 메탄, 질소산화물 및 입자상물질의 개수 배출량은 증가하여 질소산화물의 경우 EURO VI 규제치를 만족할 수 없었다.

설비공학 분야의 최근 연구 동향 : 2012년 학회지 논문에 대한 종합적 고찰 (Recent Progress in Air-Conditioning and Refrigeration Research : A Review of Papers Published in the Korean Journal of Air-Conditioning and Refrigeration Engineering in 2012)

  • 한화택;이대영;김사량;김현정;최종민;박준석;김수민
    • 설비공학논문집
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    • 제25권6호
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    • pp.346-361
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    • 2013
  • This article reviews the papers published in the Korean Journal of Air-Conditioning and Refrigeration Engineering during 2012. It is intended to understand the status of current research in the areas of heating, cooling, ventilation, sanitation, and indoor environments of buildings and plant facilities. The conclusions are as follows : (1) The research works on thermal and fluid engineering have been reviewed as groups of fluid machinery, pipes and valves, fuel cells and power plants, ground-coupled heat pumps, and general heat and mass transfer systems. Research issues are mainly focused on new and renewable energy systems, such as fuel cells, ocean thermal energy conversion power plants, and ground-coupled heat pump systems. (2) Research works on the heat transfer area have been reviewed in the categories of heat transfer characteristics, pool boiling and condensing heat transfer, and industrial heat exchangers. Researches on heat transfer characteristics included the results for natural convection in a square enclosure with two hot circular cylinders, non-uniform grooved tube considering tube expansion, single-tube annular baffle system, broadcasting LED light with ion wind generator, mechanical property and microstructure of SA213 P92 boiler pipe steel, and flat plate using multiple tripping wires. In the area of pool boiling and condensing heat transfer, researches on the design of a micro-channel heat exchanger for a heat pump, numerical simulation of a heat pump evaporator considering the pressure drop in the distributor and capillary tubes, critical heat flux on a thermoexcel-E enhanced surface, and the performance of a fin-and-tube condenser with non-uniform air distribution and different tube types were actively carried out. In the area of industrial heat exchangers, researches on a plate heat exchanger type dehumidifier, fin-tube heat exchanger, an electric circuit transient analogy model in a vertical closed loop ground heat exchanger, heat transfer characteristics of a double skin window for plant factory, a regenerative heat exchanger depending on its porous structure, and various types of plate heat exchangers were performed. (3) In the field of refrigeration, various studies were executed to improve refrigeration system performance, and to evaluate the applicability of alternative refrigerants and new components. Various topics were presented in the area of refrigeration cycle. Research issues mainly focused on the enhancement of the system performance. In the alternative refrigerant area, studies on CO2, R32/R152a mixture, and R1234yf were performed. Studies on the design and performance analysis of various compressors and evaporator were executed. (4) In building mechanical system research fields, twenty-nine studies were conducted to achieve effective design of mechanical systems, and also to maximize the energy efficiency of buildings. The topics of the studies included heating and cooling, HVAC system, ventilation, renewable energy systems, and lighting systems in buildings. New designs and performance tests using numerical methods and experiments provide useful information and key data, which can improve the energy efficiency of buildings. (5) In the fields of the architectural environment, studies for various purposes, such as indoor environment, building energy, and renewable energy were performed. In particular, building energy-related researches and renewable energy systems have been mainly studied, reflecting interests in global climate change, and efforts to reduce building energy consumption by government and architectural specialists. In addition, many researches have been conducted regarding indoor environments.