• 제목/요약/키워드: Thermal Boundary Layer

검색결과 258건 처리시간 0.024초

A machine learning-based model for the estimation of the critical thermo-electrical responses of the sandwich structure with magneto-electro-elastic face sheet

  • Zhou, Xiao;Wang, Pinyi;Al-Dhaifallah, Mujahed;Rawa, Muhyaddin;Khadimallah, Mohamed Amine
    • Advances in nano research
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    • 제12권1호
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    • pp.81-99
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    • 2022
  • The aim of current work is to evaluate thermo-electrical characteristics of graphene nanoplatelets Reinforced Composite (GNPRC) coupled with magneto-electro-elastic (MEE) face sheet. In this regard, a cylindrical smart nanocomposite made of GNPRC with an external MEE layer is considered. The bonding between the layers are assumed to be perfect. Because of the layer nature of the structure, the material characteristics of the whole structure is regarded as graded. Both mechanical and thermal boundary conditions are applied to this structure. The main objective of this work is to determine critical temperature and critical voltage as a function of thermal condition, support type, GNP weight fraction, and MEE thickness. The governing equation of the multilayer nanocomposites cylindrical shell is derived. The generalized differential quadrature method (GDQM) is employed to numerically solve the differential equations. This method is integrated with Deep Learning Network (DNN) with ADADELTA optimizer to determine the critical conditions of the current sandwich structure. This the first time that effects of several conditions including surrounding temperature, MEE layer thickness, and pattern of the layers of the GNPRC is investigated on two main parameters critical temperature and critical voltage of the nanostructure. Furthermore, Maxwell equation is derived for modeling of the MEE. The outcome reveals that MEE layer, temperature change, GNP weight function, and GNP distribution patterns GNP weight function have significant influence on the critical temperature and voltage of cylindrical shell made from GNP nanocomposites core with MEE face sheet on outer of the shell.

고속/고집적 ATM Switching MCM 구현을 위한 설계 Library 구축 밀 시험성 확보 (Generation of Testability on High Density /Speed ATM MCM and Its Library Build-up using BCB Thin Film Substrate)

  • 김승곤;지성근;우준환;임성완
    • 마이크로전자및패키징학회지
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    • 제6권2호
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    • pp.37-43
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    • 1999
  • 대용량, 고속 정보처리가 요구되는 시스템의 모듈은 데이터 처리의 고속성 및 회로의 고집적이 가능한 MCM의 형태로 구현되어 ATM, GPS 및 PCS 등의 분야에 광범위하게 응용되고 있다. 3개의 칩으로 구성되고 2.48 Gbps의 데이터 처리용량을 가지는 ATM Switching 모듈을 기판 Size 48$\times$48mm2, Cu/PhotoBCB를 이용한 10 Multi-Layer 그리고 491 Pin PBGA 형태의 MCM을 개발하였다. MCM 개발을 위해 요구되는 기술로는 고속신호 특성구현을 위해 Interconnect Characterization을 통한 기판/ 패키지의 설계 파라미터 추출, 고밀도 MCM 에서의 방열처리 그리고 MCM 개발의 가장 난점중의 하나인 시험성 확보를 들 수 있다. ATM Switching MCM 개발을 위해 MCM-D 기판에서의 Interconnect Characterization을 통한 신호지연, 비아특성, 신호간섭(Cross-talk) 파라미터 등을 추출하였다. 고집적 구조에서 15.6Watt의 방열처리를 위해 열 해석을 진행하고 기판에 열 비아 1.108개를 형성하고 패키지 전체에 $85^{\circ}C$ 이하 유지조건의 방열처리를 하였다. 마지막으로 시험성 확보를 위해 미세 간격 프로빙을 통한 기판 검증 및 복잡한 패키지/어셈블리 공정검증을 위해 Boundary Scan Test(BST)를 적용하여 효과적이고 비용 절감형의 제품을 개발하였다.

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인접지역간 오존 농도 차이에 대한 기상요소의 영향분석(부산광역시 기장군을 대상으로) (Analysis on the Effect of Meteorological Factors related to Difference of Ozone Concentration at the Neighboring Areas in Gijang Busan)

  • 김민경;이화운;정우식;도우곤
    • 한국환경과학회지
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    • 제21권9호
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    • pp.1097-1113
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    • 2012
  • Ozone is the secondary photochemical pollutant formed from ozone precursor such as nitrogen dioxide and non-methane volatile organic compounds(VOCs). The ambient concentration of ozone depends on several factors: sunshine intensity, atmospheric convection, the height of the thermal inversion layer, concentrations of nitrogen oxides and VOCs. Busan is located in the southeast coastal area of Korea so the ozone concentration of Busan is mainly affected from the meteorological variables related to the sea such as sea breeze. In this study the ozone concentrations of Busan in 2008~2010 were used to analyse the cause of the regional ozone difference in eastern area of Busan. The average ozone concentration of Youngsuri was highest in Busan however the average ozone concentration of Gijang was equal to the average ozone concentration of Busan in 2008~2010. The two sites are located in eastern area of Busan but the distance of two sites is only 9km. To find the reason for the difference of ozone concentration between Youngsuri and Gijang, the meteorological variables in two sites were analyzed. For the analysis of meteorological variables the atmospheric numerical model WRF(Weather Research and Forecasting) was used at the day of the maximum and minimum difference in the ozone concentration at the two sites. As a result of analysis, when the boundary layer height was lower and the sea breeze was weaker in Youngsuri, the ozone concentration of Youngsuri was high. Furthermore when the sea breeze blew from the south in the eastern area of Busan, the sea breeze at Youngsuri turned into the southeast and the intensity of sea breeze was weaker because of the mountain in the southern region of Youngsuri. In that case, the difference of ozone concentration between Youngsuri and Gijang was considerable.

다층 재배선반을 갖는 하이브리드 식물공장의 열유동 특성 (Thermal Flow Characteristics of a Hybrid Plant Factory with Multi-layer Cultivation Shelves)

  • 윤지환;유봉조;김영식
    • 한국산학기술학회논문지
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    • 제16권11호
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    • pp.7990-8000
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    • 2015
  • 식물공장은 환경적 조건을 조절하여 계절이나 장소에 관계없이 농산물을 일정하게 생산하는 식물재배 시스템이다. 식물공장에 있어서 내부의 열 유동은 식물공장의 중요한 변수이다. 본 논문에서는 다층 재배선반을 갖는 하이브리드 식물공장 내의 열유동 특성을 수치 시뮬레이션을 통해 연구하였다. 열 유동 특성의 수치해를 얻기 위해 유한체적법(Finite Volume Method)을 이용하였다. 수치해석 모델에 있어서는 저 레이놀드수(low Reynolds number) ${\kappa}-{\epsilon}$ 난류모델을 이용하였으며, 해석방법으로는 비압축성 점성유동 영역과 압력경계 조건을 사용하였다. 수치해석에 있어, 3종류의 유입 공기속도와 재배선반의 위치변화에 따른 식물공장 내의 열유동 특성을 상용 프로그램인 Solid Works Flow simulation을 사용하였다. 수치해석을 통한 결론은 다음과 같다. 첫째, 송풍기를 통한 식물공장 내의 유입 공기속도를 1.6 m/s로 하였을 때, Case 3의 재배선반 배치가 비교적 균일한 온도 분포를 나타내었고, LED광만을 사용한 Case 1의 배치는 시험베드(test bed) TB2와 TB3 영역의 낮은 온도분포로 인하여 서큘레이터 등을 통한 추가적인 온도 제어가 필요할 것으로 판단되었다. 둘째, 식물재배 LED 인공광(DYLED47)의 청색광과 적색광의 비율을 1:1로 100% 구동 시, 재배선반의 평균 온도가 약 $3^{\circ}C$ 증가하였다. 본 논문은 한국산학기술학회 논문지 심사용 투고요령입니다.

쉘 요소를 이용한 K및 X개선 용접구조물의 열변형 해석방법에 관한 연구 (A Study on the Thermal Distortion Analysis of Welded Structures having K/X Groove using shell elements)

  • 하윤석;최지원
    • Journal of Welding and Joining
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    • 제30권6호
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    • pp.120-125
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    • 2012
  • Because ships and offshore structures have very large dimensions and complicated shapes, it is difficult to determine the deformation or internal stress in the structure by simple lab tests. Thus, a rigorous analysis by using the computer simulation technology is essential for obtaining their distortions by considering the entire production process characteristics. The rapid development of computer technology made it possible to analyze the heat transfer phenomena, deformation and phase transformation in the welded joint. For large shell structures, shell elements modeling contributed primarily to this development. But if a welding is done by multi-pass, shell elements whose thickness are unchangeable can hard to describe the local situation. Recently, it was researched how to introduce the imaginary temperature for V grooved multi-layer butt welding in strain-boundary method (a kind of shrinkage methodologies). In the present study, we formulated the imaginary temperature for the double bevel and double V groove by considering the thickness change of each pass through the bead and the thickness directions simultaneously and also demonstrated the feasibility of the formula by applying it to the thermal distortion analysis of the erection process of crane pedestal.

NON LINEAR VARIABLE VISCOSITY ON MHD MIXED CONVECTION HEAT TRANSFER ALONG HIEMENZ FLOW OVER A THERMALLY STRATIFIED POROUS WEDGE

  • Kandasamy, R.;Hashim, I.;Ruhaila, K.
    • Journal of applied mathematics & informatics
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    • 제26권1_2호
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    • pp.161-176
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    • 2008
  • The effect of variable viscosity on MHD mixed convection Hiemenz flow over a thermally stratified porous wedge plate has been studied in the presence of suction or injection. The wall of the wedge is embedded in a uniform Darcian porous medium in order to allow for possible fluid wall suction or injection and has a power-law variation of the wall temperature. An approximate numerical solution for the steady laminar boundary-layer flow over a wall of the wedge in the presence of thermal diffusion has been obtained by solving the governing equations using numerical technique. The fluid is assumed to be viscous and incompressible. Numerical calculations are carried out for different values of dimensionless parameters and an analysis of the results obtained shows that the flow field is influenced appreciably by the magnetic effect, variable viscosity, thermal stratification and suction / injection at wall surface. Effects of these major parameters on the transport behaviors are investigated methodically and typical results are illustrated to reveal the tendency of the solutions. Comparisons with previously published works are performed and excellent agreement between the results is obtained.

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내부핀이 부착된 원형관유동에서의 열전달특성에 관한 수치적연구 (A Numerical Study on the Heat Transfer Characteristics in an Internally Finned Circular Tube Flow)

  • 박희용;박경우;최문석
    • 설비공학논문집
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    • 제8권2호
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    • pp.267-278
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    • 1996
  • Steady, laminar, forced convection flow and heat transfer in the entrance region of an internally finned circular duct with a finite thermal conductivity has been analyzed numerically. The problem under investigation is a three-dimensional boundary layer problem, and is solved by employing a marching-type procedure which involves solution of a series of 2-dimensional elliptic problems in the cross-stream plane. Two types of inlet hydrodynamic conditions are considered : (a) uniform velocity flow and (b) fully developed flow. From the above inlet conditions, the effects of the fin height(h), fin number(N) and conductivity ratio($k_r$) on the flow and thermal characteristics are investigated. The numerical results show that the height and number of fins, and ratio of the solid to fluid thermal conductivity have pronounced effect on the solution. Considering pressure drop, optimized dimensionless fin height is 0.4.

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발열구명동의 착용에 의한 인체의 체온변화에 관한 수치해석 (Numerical Analysis on Body Temperature Change with Heating Life Vest)

  • 김명준
    • 해양환경안전학회지
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    • 제14권3호
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    • pp.241-245
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    • 2008
  • 본 논문은 해난사고에 의해 빈번하게 발생하는 저체온증으로 인한 인명손실을 최소화하기 위하여 개발된 발열구명동의의 열적특성을 수치해석을 통해 조사한 것으로, 계산에 이용된 주된 파라메터는 계절에 따른 수온, 구명동의의 발열량 및 발열시간이다. 이산화 및 차분방정식은 유한차분법을 이용하였으며, 컴퓨터를 이용한 계산을 위하여 매스캐드를 이용하여 프로그래밍을 작성하였다. 또한 본 논문은 서로 다른 물질들이 경계를 이루고 있는 복잡한 형태의 모델에 해당함으로 경계에 해당하는 부분의 열전도율은 열저항의 모델을 응용하여 인접한 셀들의 열전도값을 이용하여 계산하였다. 본 연구를 통하여 발열구명동의의 열발생으로 인체의 온도를 높게 유지할 수 있음을 알았고, 겨울철을 제외하고 저체온증의 우려가 없음을 알았다. 또한 해난사고시 생존율을 높일 수 있을 것으로 기대된다.

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Thermal buckling resistance of a lightweight lead-free piezoelectric nanocomposite sandwich plate

  • Behdinan, Kamran;Moradi-Dastjerdi, Rasool
    • Advances in nano research
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    • 제12권6호
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    • pp.593-603
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    • 2022
  • The critical buckling temperature rise of a newly proposed piezoelectrically active sandwich plate (ASP) has been investigated in this work. This structure includes a porous polymeric layer integrated between two piezoelectric nanocomposite layers. The piezoelectric material is made of a passive polymeric material that is activated by lead-free nanowires (NWs) of zinc oxide (ZnO) embedded inside the matrix. In both nanocomposite layers and porous core, functional graded (FG) patterns have been considered for the distributions of ZnO NWs and voids, respectively. By adopting a higher-order theory of plates, the governing equations of thermal buckling are obtained. This set of equations is then treated using an extended mesh-free solution. The effects of plate dimensions, porosity states, and the nanowire parameters have been investigated on the critical buckling temperature rises of the proposed lightweight ASPs with different boundary conditions. The results disclose that the use of porosities in the core and/or mixing ZnO NWs in the face sheets substantially arise the critical buckling temperatures of the newly proposed active sandwich plates.

줄 가열 변화에 따른 박막 트랜지스터 내 포논 열 흐름에 대한 수치적 연구 (Effect of Joule Heating Variation on Phonon Heat Flow in Thin Film Transistor)

  • 진재식;이준식
    • 대한기계학회논문집B
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    • 제33권10호
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    • pp.820-826
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    • 2009
  • The anisotropic phonon conductions with varying Joule heating rate of the silicon film in Silicon-on-Insulator devices are examined using the electron-phonon interaction model. It is found that the phonon heat transfer rate at each boundary of Si-layer has a strong dependence on the heating power rate. And the phonon flow decreases when the temperature gradient has a sharp change within extremely short length scales such as phonon mean free path. Thus the heat generated in the hot spot region is removed primarily by heat conduction through Si-layer at the higher Joule heating level and the phonon nonlocality is mainly attributed to lower group velocity phonons as remarkably dissimilar to the case of electrons in laser heated plasmas. To validate these observations the modified phonon nonlocal model considering complete phonon dispersion relations is introduced as a correct form of the conventional theory. We also reveal that the relation between the phonon heat deposition time from the hot spot region and the relaxation time in Si-layer can be used to estimate the intrinsic thermal resistance in the parallel heat flow direction as Joule heating level varies.