• Title/Summary/Keyword: 온도분포해석

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An Experimental Study on the Temperature and Thermal Stresses in Massive Footing and Column (현장조건을 고려한 콘크리트 기초 및 교각구조의 온도 및 열응력에 관한 실험적 연구)

  • 오병환;백신원;엄주용;임동환
    • Proceedings of the Korea Concrete Institute Conference
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    • 1994.04a
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    • pp.233-237
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    • 1994
  • 매스콘크리트에서는 수화열에 의하여 유발된 높은 온도가 열응력을 일으키는 원인이 되며 구속의 정도에 따라 인장응력이 발생되어 균열이 발생하게 된다. 따라서, 매스콘크리트 타설시 시멘트의 수화열에 의한 균열이 심각한 문제가 된다. 본 연구에서는 매스콘크리트 기초 및 교각구조에 대한 수화열 실험을 통해 온도분포 및 변형분포를 측정하고 이에 대한 온도 및 열응력 해석을 통해 매스콘크리트에 대한 수화열 특성을 규명하였다.

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A Numerical Simulation of Regenerative Cooling Heat Transfer for the Rocket Engine (로켓엔진의 재생 냉각 열전달 해석)

  • 전종국;박승오
    • Journal of the Korean Society of Propulsion Engineers
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    • v.7 no.4
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    • pp.46-52
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    • 2003
  • This paper presents the numerical thermal analysis for regeneratively cooled rocket thrust chambers. An integrated numerical model incorporates computational fluid dynamics for the hot-gas thermal environment, and thermal analysis for the liner and coolant channels. The flow and temperature fields in rocket thrust chambers is assumed to be axisymmetric steady state which is presumed to the combustion liner. The heat flux computed from nozzle flow is used to predict the temperature distribution of the combustion liner As a result, we present the wall temperature of combustion liner and the temperature change of coolant.

Strength Analysis of the High Performance Nozzle System(Jet Vane Type) (Jet Vane Type 추력방향제어 시스템 구조 해석)

  • 조용재
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 1998.04a
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    • pp.23-23
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    • 1998
  • Jet Vane Type 추력방향제어 시스템의 구조적 안정성을 검토하기 위해 시스템의 해석을 Vane, Ablation & Bracket Interface, Nozzle flange & Housing Interface 및 Fastener의 세 부분으로 나누어 수행하였다. 해석을 위한 외력조건은 유동해석을 통해 얻어진 온도 및 압력분포에 근거하였으며, Vane의 응력해석을 위해서는 상용 Software인 Patran 및 Nastran이 사용되었다. 이번 연구는 Test Model 단계로서 충분한 강도의 고정 Housing이 사용되어, 이에 대한 해석은 수행되지 않았지만 추후 Flight Model 단계에서는 함께 고려되어질 것이며, 각 경우의 Margin of Safety값들을 도출하여 구조적 안정성을 검토하였다.

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Determination of Degree of Hydration, Temperature and Moisture Distributions in Early-age Concrete (초기재령 콘크리트의 수화도와 온도 및 습도분포 해석)

  • 차수원;오병환;이형준
    • Journal of the Korea Concrete Institute
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    • v.14 no.6
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    • pp.813-822
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    • 2002
  • The purpose of the present study is first to refine the mathematical material models for moisture and temperature distributions in early-age concrete and then to incorporate those models into finite element procedure. The three dimensional finite element program developed in the present study can determine the degree of hydration, temperature and moisture distribution in hardening concrete. It is assumed that temperature and humidity fields are fully uncoupled and only the degree of hydration is coupled with two state variables. Mathematical formulation of degree of hydration Is based on the combination of three rate functions of reaction. The effect of moisture condition as well as temperature on the rate of reaction is considered in the degree of hydration model. In moisture transfer, diffusion coefficient is strongly dependent on the moisture content in pore system. Many existing models describe this phenomenon according to the composition of mixture, especially water to cement ratio, but do not consider the age dependency. Microstructure is changing with the hydration and thus transport coefficients at early ages are significantly higher because the pore structure in the cement matrix is more open. The moisture capacity and sink are derived from age-dependent desorption isotherm. Prediction of a moisture sink due to the hydration process, i.e. self-desiccation, is related to autogenous shrinkage, which may cause early-age cracking in high strength and high performance concrete. The realistic models and finite element program developed in this study provide fairly good results on the temperature and moisture distribution for early-age concrete and correlate very well with actual test data.

Study on the temperature rise in the transformer's housing by large current (변압기 대전류에 의한 하우징영역 온도상승 연구)

  • Lee, Jong-Keun;Seo, Sang-Uk;Park, Sung-Wan
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.768-769
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    • 2015
  • 본 논문에서는 3상, 1250MVA, 345kV급 전력용 변압기의 하우징 영역에 대한 온도상승 연구를 유한요소법과 시험을 통하여 수행하였다. 하우징 영역에 대한 전자계 요한요소 해석을 통해 와전류 손실을 수행하였고, 이를 열원으로 하여 변압기 내 외부 냉각조건을 고려하여 온도상승 분포와 최고온도 상승 값을 해석하였다. 이를 제작된 변압기를 대상으로 온도센서 및 열화상 카메라를 이용한 측정 데이터와 비교하여 검증하였다.

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Uniformity of Temperature in Cold Storage Using CFD Simulation (CFD 시뮬레이션을 이용한 농산물 저온저장고내의 온도분포 균일화 연구)

  • Jeong, Hoon;Kwon, Jin-Kyung;Yun, Hong-Sun;Lee, Won-Ok;Kim, Young-Keun;Lee, Hyun-Dong
    • Food Science and Preservation
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    • v.17 no.1
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    • pp.16-22
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    • 2010
  • To maintain the storage quality of agricultural products, temperature uniformity during cold storage, which is affected by fan flow rate and product arrangement, is important. We simulated and validated a CFD (Computational Fluid Dynamics) model that can predict both airflow and temperature distribution in a cold storage environment. Computations were based on a commercial code (FLUENT 6.2) and two turbulence models. The standard k-$\varepsilon$ model and the Reynolds stress model (RSM) were chosen to improve the accuracy of CFD prediction. To obtain comparative data, the temperature distribution and velocity vector profiles were measured in a full-scale cold storage facility and in a 1/5 scale model. The agricultural products domain in cold storage was modeled as porous for economical computation. The RSM prediction showed good agreement with experimental data. In addition, temperature distribution was simulated in the cold storage rooms to estimate the uniformity of temperature distribution using the validated model.

Expansion Analysis of Subsea Pipe-In-Pipe Due to High Temperature and High pressure Product (고온 고압 수송용 해저 이중배관의 팽창해석)

  • 최한석;손현모;김시영
    • Journal of Ocean Engineering and Technology
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    • v.16 no.5
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    • pp.56-60
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    • 2002
  • 본 논문은 고온 고압의 유류 수송용 이중배관의 팽창에 대한 해석적 방법에 대한결과고찰과 해석, 그리고 설계시 응용이 가능한 현상에 대해 논하였다. 고온의 유류수송시 온도를 유지할 목적으로 내부의 수송 배관과 외부의 케이싱 배관사이에 절연체가 쓰여진다.이런 이중배관의 팽창을 조사할 수 있는 간단한 해석적 방법이 개발되었다. 본 논문에서는온도의 분포, 입력, 토질의 저항, 수송배관과 케이싱 배관과의 상호작용 등이 고려되어졌으며, 이 해석적 방법은 심해의 이중배관 해석에 적합하게 개발되었다. 계산의 결과 분석에서고온의 영향이 고압보다 현저한 것이 밝혀졌다.

Analysis of Temperature Distribution and Residual Stress in Deposition Process of Metal Droplet by Using Laser Beam (레이저를 이용한 금속액적 적층시 온도분포와 잔류응력 해석)

  • Yun Jin-Oh;Yang Young-Soo
    • Journal of the Korean Society for Precision Engineering
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    • v.22 no.3 s.168
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    • pp.187-193
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    • 2005
  • The temperature distribution of the deposited droplet was predicted by using the finite element analysis and it was assumed that the droplet was axisymmetrical model. The analysis of residual stress was performed with the temperature data, which is obtained from the result. Axisymmetric droplet is deposited three times to consider the actual phenomenon of droplet deposition. The analysis of the temperature distribution is respectively performed whenever the axisymmetric droplet is laminated and the residual stresses of the laminated axisymmetric droplet are calculated with the value of the temperature distribution.

Temperature Analysis of PSC Box-girder Bridges Using Inverse Thermal Analysis Program (온도분포 역해석 프로그램을 이용한 PSC 박스거더 교량 단면의 온도 분포 해석)

  • Park, Min-Seok;Jo, Byung-Wan;Lee, Myung-Kue
    • Journal of the Korean Society of Safety
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    • v.21 no.4 s.76
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    • pp.95-101
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    • 2006
  • It is well known that the thermal load in PSC(prestressed concrete) box-girder bridge is the principal cause of detrimental crack. The longitudinal stress caused by the lateral stress from the temperature gradient in slab of PSC box-girder bridge has a considerable influence on the durability and economy of bridge structures. As the basic study for the rational consideration of thermal load and the derivation of design guide, the inverse thermal analysis program for PSC box-girder bridges using field measurement data is developed. In this paper, thermal analyses are performed using field monitoring data for the sample PSC box-girder bridge. It is proposed that the link between monitoring program and the inverse analysis program is available.

Characteristics analysis of momentum transfer cross section and electron energy distribution funtions of $CO_2$ gas ($CO_2$기체의 운동량 변환충돌단면적 및 전자에너지분포함수 특성해석)

  • 하성철;윤상호
    • Electrical & Electronic Materials
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    • v.6 no.1
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    • pp.63-68
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    • 1993
  • CO$_{2}$기체의 운동량변환, 진동여기, 전자여기 및 전리충돌 단면적의 결정은 온도 293[.deg.K], 상대전계의 세기 E/N은 1.0[Td].leq.E/N.leq.200[Td]의 범위에서 볼츠만 방정식을 Backward-Prolongation 방법으로 해석하여 전자 이동속도의 계산값을 산출하고 이것을 M. T. Elford에 의해 실험적으로 측정된 이동속도의 값과 비교하였다. 본 연구에서 운동량변환충돌단면적은 Hake & Phelps의 값을 기초로 하였으며 온도 293[.deg.K], 상대전계의 세기 E/N은 3.0[Td].leq.E/N.leq.50[Td]인 범위 전자에너지분포함수 및 전자특성에너지는 상대전계의 세기 E/N이 1.0[Td].leq.E/N.leq.200[Td]인 범위에서 산출하였다.

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