• 제목/요약/키워드: thermal limit

검색결과 499건 처리시간 0.026초

대기오염에 따른 화력발전소의 한계용량산전에 관한 연구 (A Study on the Limit Capacity Calculation for Thermal plant based on Air Pollution Control)

  • 임한석
    • 전기의세계
    • /
    • 제26권2호
    • /
    • pp.95-98
    • /
    • 1977
  • Commercially available fuel oil for power plant contains relatively much sulphur, which means accordingly high content sulphur deoxide in exhaust gas. Sulphur deoxide has been identified as the worst-pollutant caused by thermal power generation. This paper primarily deals with the stack gas diffusion effects of various parameters, namely vertical stability, wind velocity, exhaust gas velocity, stack height, etc., on the ground concentration. thereof the relation between stack height and maximum plant capacity is analyzed from the standpoint of air pollution prevention. The limit capacity is calculated by means of mean concentration introducing Mead and Lowry coefficient respectively.

  • PDF

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
    • /
    • 제54권6호
    • /
    • pp.2188-2197
    • /
    • 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.

ZnO 피뢰기 소자의 열적.전기적 특성 분석 (Analysis of Thermal and Electrical Characteristics of ZnO Arrester Blocks)

  • 이수봉;이복희
    • 조명전기설비학회논문지
    • /
    • 제21권10호
    • /
    • pp.82-88
    • /
    • 2007
  • 이 논문에는 교류전압에서 ZnO 피뢰기 소자의 열적 전기적 특성을 기술하였다. ZnO 피뢰기 소자의 누설전류는 시간의 변화에 따라 측정하였다. ZnO 피뢰기 소자의 온도분포를 열화상카메라에 의해 관측하였다. ZnO 피뢰기 소자의 열화 및 열폭주 현상은 열발생과 열방산을 결정짓는 ZnO 피뢰기 소자의 온도한계와 밀접한 관계가 있다. ZnO 피뢰기 소자의 저항은 ZnO 피뢰기 소자의 온도와 누설전류에 의해 민감하게 변화한다. 결론적으로 ZnO 피뢰기 소자의 열화 및 열폭주 현상은 ZnO 피뢰기 소자의 온도와 소자를 통해 흐르는 누설전류에 상당히 의존적인 것으로 나타났다.

원전 Mixing Tee에서의 고주기 열피로 평가 (Evaluation of High Cycle Thermal Fatigue on Mixing Tee in Nuclear Power Plant)

  • 이선기
    • 한국압력기기공학회 논문집
    • /
    • 제16권1호
    • /
    • pp.22-29
    • /
    • 2020
  • In nuclear power plants, there is a risk of thermal fatigue in equipment and piping affecting system soundness because the temperature change of the system accompanies in every operation and shutdown. Therefore, in order to prevent the excess of the fatigue limit during the lifetime of plants, the fatigue limit of each piping material is determined in the designing stage. However, there are many cases where equipment or piping is locally subjected to thermal fatigue that is not considered in the design, resulting in damage to the equipment and piping, and failure during operation. Currently, local thermal fatigue generation mechanisms that are not taken into account in the design stage are gradually being identified. In this paper, the effects of the fluid temperature fluctuations on the piping soundness due to the mixing of hot and cold water, one of the local thermal fatigue generating mechanisms, were evaluated.

1Cr-0.5Mo 강의 재질열화가 프레팅 피로거동에 미치는 영향 (The Effect of Degradation on the Fretting fatigue for 1Cr-0.5Mo Steel)

  • 권재도;최성종;김경수;배용탁
    • 대한기계학회논문집A
    • /
    • 제27권11호
    • /
    • pp.1979-1985
    • /
    • 2003
  • Fretting is a kind of surface degradation mechanism observed in mechanical components and structures. The fretting damage decreases in 50-70% of the plain fatigue strength. This may be observed in the fossil power plant and the nuclear power plant used in special environments and various loading conditions. The thermal degradation of material is observed when the heat resisting steel is exposed for long period time at the high temperature. In the present study, the degraded 1Cr-0.5Mo steel used for long period time at high temperature (about 515$^{\circ}C$) and artificially reheat-treated materials are prepared. These materials are used for evaluating an effect of thermal aging on the fretting fatigue behavior. Through the experiment, it is found that the fretting fatigue endurance limit of the reheat-treated 1Cr-0.5Mo steel decreased about 46% from the non-fretting fatigue endurance limit, while the fretting fatigue endurance limit of the degraded 1Cr-0.5Mo steel decreased about 53% from the non-fretting fatigue endurance limit. The maximum value of fatigue endurance limit difference is observed as 57%(244 MPa) between the fretting fatigue of degraded material and non-fretting fatigue of reheat-treated material. These results can be a basic data to a structural integrity evaluation of heat resisting steel considered to thermal degradation effect.

공동주택 건축물 층수완화에 따른 열환경 평가에 관한 연구 (A Study on Evaluation of Thermal Environment Following the Alleviation of the Limit on Number of Floors of Apartment Complexes)

  • 류지원;정응호;아키라 호야노
    • 한국주거학회논문집
    • /
    • 제22권3호
    • /
    • pp.93-100
    • /
    • 2011
  • The objective of this study is to provide basic objective data which can be utilized as an adjustment criterion for the alleviation of the limit on the number of floors of buildings by quantitatively evaluates the effect of the alleviation of the limit on the number of floors of buildings in apartment complexes on thermal environment of apartment complexes using data obtained from apartments in a class 2 general residential area. In this study, we carried out a thermal environment analysis utilizing the simulation of a virtual object area. The result is summarized as follows: The result of analyzing the entire surface temperature showed an equal decrease of surface temperature due to shadow in all scenarios and high floors showed a tendency of low surface temperature during daytime as the rate of shadow the high floors increase. This influences not only the surface temperature but also HIP and is judged to greatly contribute to the alleviation of the heat island effect. Also, the reason why HIP at high floors shows high values before sunrise and after sunset is thought to be because the concrete wall of the building maintains a high temperature during nighttime by absorbing and storing sunlight during daytime instead of reflecting it since it has low reflectance.

Nonlinear Combustion Instability Analysis of Solid Rocket Motor Based on Experimental Data

  • Wei, Shaojuan;Liu, Peijin;Jin, Bingning
    • International Journal of Aerospace System Engineering
    • /
    • 제2권2호
    • /
    • pp.58-61
    • /
    • 2015
  • Combustion instability in solid rocket motors is a long-term open problem since the first rockets were used. Based on the numerous previous studies, it is known that the limit cycle amplitude is one of the key characteristics of the nonlinear combustion instability in solid rocket motors. Flandro's extended energy balance corollary, aims to predict the limit cycle amplitude of complex, nonlinear pressure oscillations for rockets or air-breathing engines, and leads to a precise assessment of nonlinear combustion instability in solid rocket motors. However, based on the comparison with experimental data, it is revealed that the Flandro's method cannot accurately describe such a complex oscillatory pressure. Thus in this work we make modifications of the nonlinear term in the nonlinear wave equations which represents the interaction of different modes. Through this modified method, a numerical simulation of the cylindrical solid rocket has been carried out, and the simulated result consists well with the experimental data. It means that the added coefficient makes the nonlinear wave growth equations describe the experimental data better.

나노유체 특성에 따른 히트파이프 성능해석 (Theoretical Analysis of Heat Pipe Thermal Performance According to Nanofluid Properties)

  • 임승민
    • 대한기계학회논문집B
    • /
    • 제39권7호
    • /
    • pp.599-607
    • /
    • 2015
  • 본 연구에서는 나노유체의 유동학 특성을 반영한 히트파이프 열적특성을 연구하였다. $Al_2O_3$와 CuO 나노입자를 적용한 나노유체를 작동유체로 하여 나노입자 부피비와 응집도에 대한 히트파이프 성능을 확인하였다. 나노입자의 부피비와 응집도가 증가할수록 점성과 열전도도는 증가하는 것으로 나타났으며 두 인자는 히트파이프 성능에 영향을 주었다. 나노입자응집이 없는 경우에는 나노입자의 부피비 증가가 모세관압력한계 성능을 향상시켰지만 응집도가 증가하면 입자부피비가 증가해도 모세관압력한계가 감소했다. 그리고 나노입자의 열전도도, 부피비, 응집도에 대한 히트파이프 열저항을 분석하였다. 히트파이프의 투과율이 높을수록 최대열수송량은 입자부피비에 미치는 영향이 컸으며 3차원 그래프를 통해 윅 특성에 대한 최적화된 나노입자부피비를 확인하였다.

한국 난온대 식생분포대의 식물기후학적 재검토 (A Phytoclimatic Review of Warm-temperate Vegetation Zone of Korea)

  • 엄병철;김종원
    • 생태와환경
    • /
    • 제53권2호
    • /
    • pp.195-207
    • /
    • 2020
  • 난온대 동백나무군강의 한국 내 분포 북한계는 연평균 기온 13℃와 14℃, 한랭지수 -10℃로 제안된 바 있다. 본 연구는 이들 기후요소의 지리적 공간분포 실체를 검토하였다. 세 기후요소의 공간분포 양상은 티센망법과 크리깅법으로 분석하였으며, 세 가지 기후도를 생산하여 난온대 주요 상록활엽수종의 현존분포와 그 대응성을 비교·분석하였다. 결과로 난온대 식생의 분포 북한계는 한랭지수 -10℃가 연평균기온 14℃보다 일치하였으나, 연평균기온 13℃가 더욱 정교한 일치를 보여주었다. 한반도에서 연평균기온 13℃를 북한계로 한 난온대 식생역의 잠재 분포 면적은 20,334 ㎢로 다른 두 온도요소의 경우보다 넓었다. 본 연구는 가공하지 않은 직접 기후요소인 연평균기온 13℃가 가공으로부터 생겨난 간접 기후요소인 한랭지수 -10℃보다 난온대 식생 분포 북한계에 대응하는 특정 온도 요소인 것으로 밝혀졌다. 더불어 식물구계학적 특정종의 평가 기준으로 사용되는 난온대 경계선에 대한 학술적 재고의 필요성이 대두되었다.

Ball Grid Array 63Sn-37Pb Solder joint 의 건전성 평가 (Reliability Estimation of Ball Grid Array 63Sn-37Pb Solder Joint)

  • 명노훈;이억섭;김동혁
    • 한국정밀공학회:학술대회논문집
    • /
    • 한국정밀공학회 2004년도 추계학술대회 논문집
    • /
    • pp.630-633
    • /
    • 2004
  • Generally, component and FR-4 board are connected by solder joint. Because material properties of components and FR-4 board are different, component and FR-4 board show different coefficients of thermal expansion (CTE) and thus strains in component and board are different when they are heated. That is, the differences in CTE of component and FR-4 board cause the dissimilarity in shear strain and BGA solder joint s failure. The first order Taylor series expansion of the limit state function incorporating with thermal fatigue models is used in order to estimate the failure probability of solder joints under heated condition. A model based on plastic-strain rate such as the Coffin-Manson Fatigue Model is utilized in this study. The effects of random variables such as frequency, maximum temperature, and temperature variations on the failure probability of the BGA solder joint are systematically investigated by using a failure probability model with the first order reliability method(FORM).

  • PDF