• 제목/요약/키워드: Heat Medium

검색결과 817건 처리시간 0.029초

박막에서 쌍곡선형 열전도 방정식에 의한 열전도 해석 (Analysis of Hyperbolic Heat Conduction in a Thin Film)

  • 정우남;이용호;조창주
    • 에너지공학
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    • 제8권4호
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    • pp.540-545
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    • 1999
  • 고전적인 Fourier 열전도 방정식은 극저온하에서 또는 아주 짧은 시간동안의 가열시 타당성이 없는 것으로 고려되었다. 이러한 조건하에서는 열전도파의 성질이 지배적이기 때문에 , 수정된 Fourier 법칙에 근거한 쌍곡선형 열전도 방정식이 도입되었다. 열전도에 대한 Fourier 모델과 쌍곡선형 열전도모델이 적분변환법과 함께 Green 함수방법을 이용하여 분되었다. 한쪽 표면에서 주기적인 표면가열을 하는 유한한 평판의 열유속 분포 및 온도분포의 해를 제시하였고 각가의 모델로부터 얻어진 결과를 서로 비교검토하였다. 쌍곡선형 열전도 방정식에서 유도된 열전도파는 매개물을 통해 전파되어 맞은편쪽의 단열표면에서 가열 표면쪽으로 반사하였으나 , 고전적인 Fourier 모델에 의한 열은 열적교란이 매개물의 전체에 걸쳐서 전달된 후 즉각적으로 무한한 속도로 열전파가 발생함을 보여주었다.

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Expression and Characterization of Recombinant E2 Protein of Hepatitis C Virus by Insect Cell/Baculovirus Expression System

  • Han, Bong-Kwan;Lee, Bum-Yong;Min, Mi-Kyung;Jung, Kyung-Hwan
    • Journal of Microbiology and Biotechnology
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    • 제8권4호
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    • pp.361-368
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    • 1998
  • The E2 protein of HCV (hepatitis C virus) is thought to have a potential role in the development of subunit vaccines and diagnostics. To express it by the insect cell/baculovirus expression (Bacu) system, we constructed a recombinant Autographa californica nuclear polyhedrosis virus (AcIL3E2), determined the most appropriate expression conditions in terms of host cell line and culture medium, and characterized the expressed HCV E2 protein. A culture system using Trichoplusia ni BTI-TN5Bl-4 cells and SF 900IISFM medium expressed a relatively high level of HCV E2 protein. It was revealed that its glycosylation properties and subcellular localization were almost the same as the ones in the mammalian cell expression system previously reported, suggesting the recombinant HCV E2 protein derived from our Bacu system can be utilized for development of a subunit vaccine and diagnostics. Interestingly, HCV E2 protein was not degraded at all even at 43 h post-heat shock in the heat shock-induced necrotic cells, probably due to its integration into the microsomal membrane, indicating that heat shock can be employed to purify HCV E2 protein.

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INFLUENCE OF SLIP CONDITION ON RADIATIVE MHD FLOW OF A VISCOUS FLUID IN A PARALLEL POROUS PLATE CHANNEL IN PRESENCE OF HEAT ABSORPTION AND CHEMICAL REACTION.

  • VENKATESWARLU, M.;VENKATA LAKSHMI, D.;DARMAIAH, G.
    • Journal of the Korean Society for Industrial and Applied Mathematics
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    • 제20권4호
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    • pp.333-354
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    • 2016
  • The present investigation deals, heat and mass transfer characteristics with the effect of slip on the hydromagnetic pulsatile flow through a parallel plate channel filled with saturated porous medium. Based on the pulsatile flow nature, exact solution of the governing equations for the fluid velocity, temperature and concentration are obtained by using two term perturbation technique subject to physically appropriate boundary conditions. The expressions of skin friction, Nusselt number and Sherwood number are also derived. The numerical values of the fluid velocity, temperature and concentration are displayed graphically whereas those of shear stress, rate of heat transfer and rate of mass transfer at the plate are presented in tabular form for various values of pertinent flow parameters. By increasing the slip parameter at the cold wall the velocity increases whereas the effect is totally reversed in the case of shear stress at the cold wall.

고강도 냉간압조용 중탄소 Cr-Mo 합금강의 임계간 어닐링시 냉각속도 및 온도의 영향 (Effect of Cooling Rate and Temperature on Intercritical Annealing of Medium-Carbon Cr-Mo Alloy for High Strength Cold Heading Quality Wire Rod)

  • 이종혁;장병록
    • 열처리공학회지
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    • 제36권4호
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    • pp.230-236
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    • 2023
  • The current study deals with the effect of cooling rate and temperature for annealing on medium-carbon Cr-Mo alloy steel, especially for cold heading quality wire rod, to derive the optimum micro-structures for plastic deformation. This is to optimize the spheroidization heat treatment conditions for softening the material. Heat treatment was performed under seven different conditions at a temperature between Ac1 and Ac3, mostly within 720℃ to 760℃, and the main variables at this time were temperature, retention time and cooling rate. Microstructure and phase changes were observed for each test condition, and it was confirmed that they were greatly affected by the cooling rate. It was also confirmed that the cooling rate was changed in the range of 0.1℃/min to 5℃/min and affected by phase deformation and spheroidization fraction. The larger the spheroidization fraction, the lower the hardness, which is associated with the increasing connection of ferrite phases.

다양한 냉각방법에 따른 수평채널 내 전자부품의 열전달 특성 (Heat Transfer Characteristics of Electronic Components in a Horizontal Channel According to Various Cooling Methods)

  • 손영석;신지영
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권6호
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    • pp.854-861
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    • 2008
  • Heat transfer characteristics of protruding electronic components in a horizontal channel are studied numerically. The system consists of two horizontal channels formed by two covers and one printed circuit board which has three uniform protruding heat source blocks. A two-dimensional numerical model has been developed to predict the conjugate heat transfer. and the finite volume method is used to solve the problem. Five different cooling methods are considered to examine the heat transfer characteristics of electronic components according to the different cooling methods. The velocity and temperature of cooling medium and the temperature of the heat source blocks are obtained. The results of the five different cooling methods are compared to find out the most efficient cooling method in a given geometry and heat sources.

Calculation of Thermal Conductivity and Heat Capacity from Physical Data for Some Representative Soils of Korea

  • Aydin, Mehmet;Jung, Yeong-Sang;Lee, Hyun-Il;Kim, Kyung-Dae;Yang, Jae-E.
    • 한국토양비료학회지
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    • 제45권1호
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    • pp.1-8
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    • 2012
  • The thermal properties including volumetric heat capacity, thermal conductivity, thermal diffusivity, and diurnal and annual damping depths of 10 representative soil series of Korea were calculated using some measurable soil parameters based on the Taxonomical Classification of Korean Soils. The heat capacity of soils demonstrated a linear function of water content and ranged from 0.2 to $0.8cal\;cm^{-3}^{\circ}C^{-1}$ for dry and saturated medium-textured soil, respectively. A small increase in water content of the dry soils caused a sharp increase in thermal conductivity. Upon further increases in water content, the conductivity increased ever more gradually and reached to a maximum value at saturation. The transition from low to high thermal conductivity occurred at low water content in the soils with coarse texture, and at high water content in the other textures. Thermal conductivity ranged between $0.37{\times}10^{-3}cal\;cm^{-1}s^{-1}^{\circ}C^{-1}$ for dry (medium-textured) soil and $4.01{\times}10^{-3}cal\;cm^{-1}s^{-1}^{\circ}C^{-1}$ for saturated (medium/coarse-textured) soil. The thermal diffusivity initially increased rapidly with small increases in water content of the soils, and then decreased upon further increases in the soil-water content. Even in an extreme soil with the highest diffusivity value ($1.1{\times}10^{-2}cm^2s^{-1}$), the daily temperature variation did not penetrate below 70 cm soil depth and the yearly variation not below 13.4 m as four times of damping depths.

태양열-잠열축열시스템의 온실보온특성 (A Study on the Greenhouse Heating of Solar Energy - Latent Heat Storage System -)

  • 송현갑;류영선
    • 생물환경조절학회지
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    • 제1권1호
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    • pp.14-20
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    • 1992
  • For the high quality and low cost agricultural crops in greenhouse cultivation, it is necessary to use natural energy as much as possible. In order to reduce the fossil fuel consumption and maximize the solar energy utilization in greenhouse heating, a latent heat storage material was developed as a relatively highly concentrative solar energy storage medium. And a solar energy-latent heat storage system was designed and constructed. The experimental research on greenhouse heating effect of the system was performed.

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Disturbance due to internal heat source in thermoelastic solid using dual phase lag model

  • Ailawalia, Praveen;Singla, Amit
    • Structural Engineering and Mechanics
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    • 제56권3호
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    • pp.341-354
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    • 2015
  • The dual-phase lag heat transfer model is employed to study the problem of isotropic generalized thermoelastic medium with internal heat source. The normal mode analysis is used to obtain the exact expressions for displacement components, force stress and temperature distribution. The variations of the considered variables through the horizontal distance are illustrated graphically. The results are discussed and depicted graphically.

흡음덕트 부착 열회수형 환기장치의 음향성능 평가에 관한 연구 (A study on the acoustic performance evaluation of heat recovery ventilator with a sound absorbing duct)

  • 배명환;송준영;박희성
    • Journal of Advanced Marine Engineering and Technology
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    • 제40권6호
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    • pp.468-475
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    • 2016
  • 본 연구에서는 기존 열회수형 환기장치의 음향 문제점을 파악하고, 흡음덕트 설치위치별 열회수형 환기장치의 소음저감 방안을 강구하기 위하여 관련된 국내 외 규격을 기준으로 열회수형 환기장치의 크기, 풍량 및 흡음덕트 길이를 파라미터로 한 발생소음을 측정하여 비교하고 고찰하였다. 그 결과, 무향실에서 열회수형 환기장치에 대한 소음은 흡음덕트를 설치하지 않았을 경우에 소형 및 중형 모두 풍량에 관계없이 거의 대부분 소음기준인 50 dB(A) 보다 높게 나타났고, 흡음덕트를 설치하였을 경우에는 소음도가 감소됨을 알았다. 또한, 흡음덕트의 길이에 따른 주파수 대역별 음압수준은 소형과 중형 열회수형 환기장치에서 흡음덕트의 길이가 클수록 대체적으로 감소하였고, 풍량이 클수록 대체적으로 음압수준이 증가하였다.

SAE 1078 강의 오스템퍼링 열처리시 가스 퀜칭 속도에 따른 미세조직의 변화 (Change in Microstructure with the Gas Quenching Rate during Austempering Treatment of SAE 1078 Steel)

  • 권기훈;박현준;여국현;이영국;김상권
    • 열처리공학회지
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    • 제36권3호
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    • pp.121-127
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    • 2023
  • When high carbon steel is heated in an appropriate austenizing temperature range and subjected to austempering, the size and shape of lamellar structure can be controlled. The high carbon steel sheet having the pearlite structure has excellent elastic characteristics because it has strong restoring force when properly rolled, and is applied in a process known as patenting-process using lead bath. In the case of isothermal treatment using lead-medium, it is possible to quickly reach a uniform temperature due to high heat transfer characteristics, but it is difficult to replace it with process technology that requires treatment to remove harmfulness lead. In this study, we intend to develop fluidization technology using garnet powder to replace the lead medium. After heating the high-carbon steel, the cooling rate was changed by compressed air to the vicinity of the nose of the continuous cooling curve, and then maintained for 90 s and then exposed to room temperature. The microstructure of the treated specimens were analyzed and compared with the existing products treated with lead bath. The higher the flow rate of compressed air, the faster the cooling rate to the pearlite transformation temperature, so lamellar spacing decreases and the hardness tends to increase.