• Title/Summary/Keyword: Thermal dissipation

검색결과 417건 처리시간 0.049초

Loss Analysis and Air-Cooled Design for a Cascaded Electrical Source Transmitter

  • Xue, Kai-Chang;Wang, Shuang;Lin, Jun;Li, Gang;Zhou, Feng-Dao
    • Journal of Power Electronics
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    • 제15권2호
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    • pp.530-543
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    • 2015
  • Air-cooling method is adopted on the basis of the requirements for the thermal stability and convenient field use of an electrical source transmitter. The power losses of the transmitter are determined after calculating the losses of the alternating current (AC)-direct current (DC) power supply, the constant-current circuit, and the output circuit. According to the analysis of the characteristics of a heat sink with striped fins and a fan, the engineering calculation expression of the Nusselt number and the design process for air-cooled dissipation are proposed. Experimental results verify that the error between calculated and measured values of the transmitter losses is 12.2%, which meets the error design requirements of less than 25%. Steady-state average temperature rise of the heat sink of the AC-DC power supply is $22^{\circ}C$, which meets the design requirements of a temperature rise between $20^{\circ}C$ and $40^{\circ}C$. The transmitter has favorable thermal stability with 40 kW output power.

은 나노선 펨토초 레이저 조사에 의해 유도되는 전자기장 및 온도장 수치 해석 (Numerical Analysis of Electromagnetic and Temperature Fields Induced by Femtosecond Laser Irradiation of Silver Nanowires)

  • 하정홍;김동식
    • 한국레이저가공학회지
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    • 제18권1호
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    • pp.12-17
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    • 2015
  • This work performed numerical analysis of electromagnetic field and thermal phenomena occurring in femtosecond laser irradiation of silver nanowires. The local electric field enhancement was computed to calculate the optical energy dissipation as a Joule heating source and the thermal transport was analysed based on the two-temperature model (TTM). Electron temperature increased up to 1000K after 50fs and its spatial distribution became homogeneous after 80fs at the fluence of 100mJ/cm2. The result of this work is expected to contribute to revealing the photothermal effects on silver nanowires induced by femtosecond laser irradiation. Although the highest increase of lattice temperature was substantially below the melting point of silver, the experimental results showed resolidification and fragmentation of the silver nanowire into nanoparticles, which cannot be explained by the photothermal mechanism. Further studies are thus needed to clarify the physical mechanisms.

CPU 냉각을 위한 적층형 히트싱크의 방열 특성 연구 (A Study on the Heat Dissipation Characteristics of Layered Heat Sink for CPU Cooling)

  • 이규칠;김종하;윤재호;박상일;최윤호;권오경
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2006년도 하계학술발표대회 논문집
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    • pp.182-187
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    • 2006
  • This research presented the heat resistance characteristics of heat sink which is newly designed through the experiment. For the same volume and base plate of heat sinks, the experiment of heat transfer characteristics was conducted for forced convection of layered type heat sink. The heat transfer and pressure drop characteristics of the layered type heat sink were compared for the various kinds of fin pitches, fin heights and heights of heat sink. The results show that thermal resistance is decreased as the height of heat sink increases and the fin height and fin pitch decrease, From the experimental data of layered type heat sink, the correlation equation of Nusselt number was obtained as follows ; $$Nu=0.845{\cdot}Re^{0.393}{\cdot}(\frac{f_h}{D_h})^{0.160}{\cdot}(\frac{f_p}{D_h})^{0.372}{\cdot}(\frac{H_{hs}}{D_h})^{-0.942}$$

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Thermographic analysis of failure for different rock types under uniaxial loading

  • Kirmaci, Alper;Erkayaoglu, Mustafa
    • Geomechanics and Engineering
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    • 제23권6호
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    • pp.503-512
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    • 2020
  • Mining activities focus on the production of mineral resources for energy generation and raw material requirements worldwide and it is a known fact that shallow reserves become scarce. For this reason, exploration of new resources proceeds consistently to meet the increasing energy and raw material demand of industrial activities. Rock mechanics has a vital role in underground mining and surface mining. Devices and instruments used in laboratory testing to determine rock mechanics related parameters might have limited sensing capability of the failure behavior. However, methodologies such as, thermal cameras, digital speckle correlation method and acoustic emission might enable to investigate the initial crack formation in detail. Regarding this, in this study, thermographic analysis was performed to analyze the failure behaviors of different types of rock specimens during uniaxial compressive strength experiments. The energy dissipation profiles of different types of rocks were characterized by the temperature difference recorded with an infrared thermal camera during experiments. The temperature increase at the failure moment was detected as 4.45℃ and 9.58℃ for andesite and gneiss-schist specimens, respectively. Higher temperature increase was observed with respect to higher UCS value. Besides, a temperature decreases of about 0.5-0.6℃ was recorded during the experiments of the marble specimens. The temperature change on the specimen is related to release of radiation energy. As a result of the porosity tests, it was observed that increase in the porosity rate from 5.65% to 20.97% can be associated to higher radiation energy released, from 12.68 kJ to 297.18 kJ.

Cyclic loading test of abnormal joints in SRC frame-bent main building structure

  • Wang, Bo;Cao, Guorong;Yang, Ke;Dai, Huijuan;Qin, Chaogang
    • Earthquakes and Structures
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    • 제20권4호
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    • pp.417-430
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    • 2021
  • Due to functional requirements, SRC column-RC beam abnormal joints with characteristics of strong beam weak column, variable column section, unequal beam height and staggered height exist in the Steel reinforced concrete (SRC) frame-bent main building structure of thermal power plant (TPP). This paper presents the experimental results of these abnormal joints through cyclic loading tests on five specimens with scaling factor of 1/5. The staggered height and whether adding H-shaped steel in beam or not were changing parameters of specimens. The failure patterns, bearing capacity, energy dissipation and ductile performance were analyzed. In addition, the stress mechanism of the abnormal joint was discussed based on the diagonal strut model. The research results showed that the abnormal exterior joints occurred shear failure and column end hinge flexural failure; reducing beam height through adding H-shaped steel in the beam of abnormal exterior joint could improve the crack resistance and ductility; the abnormal interior joints with different staggered heights occurred column ends flexural failure; the joint with larger staggered height had the higher bearing capacity and stiffness, but lower ductility. The concrete compression strut mechanism is still applicable to the abnormal joints in TPP, but it is affected by the abnormal characteristics.

Metal Copper Clad Laminate (MCCL)의 고방열 특성을 위한 Epoxy/BN 복합체 개발 (Development of Epoxy/Boron Nitride Composites for High Heat Dissipation of Metal Copper Clad Laminate (MCCL))

  • 최호경;최재현;최봉구;윤도영;최중소
    • Korean Chemical Engineering Research
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    • 제58권1호
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    • pp.64-68
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    • 2020
  • 본 연구에서는, 열 전도성 충진제로 충진 된 에폭시복합체를 사용하여 금속 구리판에 이를 코팅한 기판이 제조되었다. 에폭시 복합체의 열전도도를 향상시키기 위해서는 에폭시 매트릭스에 있는 전도성 필러의 최적 분산을 통한 전도성 네트워크를 형성하게 하고, 인접한 필러 입자들 사이에서 열 저항 접합의 수를 감소시키는 것이 중요한 요소이다. 이는 에폭시는 열전도도가 0.2~0.3 W 밖에 안되기 때문에 높은 열전도도를 유지하기 위해선 열전도성 필러가 서로 연결되어 입자간에 갭이 적어야 열저항을 감소시킬수 있기 때문이다. 본 연구의 목적은 에폭시 수지에 Al2O3와 Boron Nitride (BN) 충진제를 균일하게 분산시켜 고방열 에폭시 복합체를 개발하는 데 있다. 그 결과, Al2O3와 Boron nitride Filler가 에폭시 수지 매트릭스에 서로 연결되어 에폭시 수지와 알루미나/Boron nitride 하이브리드 필러 간에 계면 공극 없이 분산되어 열전도도 특성 향상을 확인 할 수 있었고, 표면 처리한 s-BN 필러가 에폭시 수지의 매트릭스의 계면접착력을 향상시켰으며, 계면 공극을 최소화함에 따라 높은 열전도도 특성을 확보 할 수 있었다.

되메움재 특성을 고려한 전력구 열환경 변화 예측 수치해석모델 개발 (Development of numerical model for estimating thermal environment of underground power conduit considering characteristics of backfill materials)

  • 김경훈;박상우;김민주;이대수;최항석
    • 한국터널지하공간학회 논문집
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    • 제19권2호
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    • pp.121-141
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    • 2017
  • 최근 전력구 지중 송전선의 허용 전류용량에 대한 정부규제로 인해 전력구 공사에 현장 되메움재의 열적 거동에 대한 연구가 중요해졌다. 점차 증대되는 고용량 전력공급에 대한 수요와 더불어, 허용 전류용량을 산정하기 위해, 전력 케이블 주변 온도 증가를 유발하는 요인을 예측하고 분석하는 것이 시급하다. 전력구 내부의 과도한 열확산으로 인한 지중 송전선로 주변의 온도 증가는 지중 송전선 자체의 열저항을 증가시켜 절연 파괴 및 열 폭주 현상을 야기한다. 따라서 전력구 설계 및 시공시, 되메움재에 따른 전력구 현장 열거동 메커니즘을 규명하는 것이 매우 중요하다. 본 논문에서는 현장 시험시공을 기반으로, 전력구내부와 주변지반의 온도 변화 및 열저항을 산정하기 위한 수치해석 모델을 개발하였다. 전력구 열거동 파악을 위한 수치해석은 현장시험 시공시 획득한 4개의 다른 종류의 되메움재의 열적 그리고 물리적 물성치를 기반으로 수행되었다. 또한, 실내 시험을 통해 산정한 각 되메움재의 열저항을 수치해석 모델에 입력변수로 적용했다. 전력구 내부에 일정한 열량이 공급될 때, 되메움재의 단위중량, 함수비, 열적 특성 등 여러 변수를 고려한 열거동 메카니즘을 모사할 수 있도록 열거동 수치해석 모델을 구성하고 1년 동안의 수행된 현장계측값과 비교를 통하여 개발된 수치해석 모델을 검증하였다.

차세대 중형위성 탑재 X-밴드 안테나 구동용 전자유닛 APD 열설계 및 열해석 (Thermal Design of Electronic for Controlling X-band Antenna of Compact Advanced Satellite)

  • 김혜인;유창목;강은수;오현웅
    • 항공우주시스템공학회지
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    • 제12권1호
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    • pp.57-67
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    • 2018
  • APD (Antenna Pointing Driver)는 차세대 중형위성에 탑재되는 위성 데이터 전송용 2축 짐벌식 X-밴드 안테나를 구동하기 위한 전장품이다. 전장품에 탑재된 EEE (Electrical, Electronic and Electromechanical) 소자의 열소산은 소자의 효율과 수명, 신뢰도에 직접적으로 영향을 미치게 되며, 종국에는 소자 자체의 파손으로 위성 전체 시스템의 실패를 초래할 수 있다. 임무기간동안 전장품의 신뢰성을 보장하기 위해 EEE 소자의 접합온도는 중요한 설계요소가 되며, 허용범위 내에서 확보되어야 한다. 따라서 사전에 소자의 감쇄비를 고려한 열해석이 반드시 수행되어야하며, 이를 위해 적절한 열해석모델을 구축하여야한다. 본 논문에서는 APD의 온도 요구조건 만족여부를 확인하기 위해 열설계 및 열해석을 수행하였으며, 이와 더불어 각 모델링 기법에 따른 열해석모델의 유효성을 비교, 분석하였다.

Titania-fused Silica의 유전특성 분석 (Permittivity Properties of Titania-fused Silica)

  • 김한준;이래덕;시며노프;한상옥
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 D
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    • pp.1803-1805
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    • 1999
  • The thermal expansion coefficient of the titania-fused silica glass$(TiO_2-SiO_2)$ called KLR-1.1 is known to $0{\pm}0.03$ ppm/K, while that of normal fused-silica glasses is about +0.5 ppm/K at room temperature. To analysis the dielectric properties of the KLR-1.1, the sample with diameter of 30 mm and thinkness of 1 mm is covered with gold film. Its relative permittivity and dissipation factor of KLR-1.1 is evaluated to $4.011{\pm}0.012(1\sigma)$ and $(4.86{\pm}0.02){\times}10^{-4}(1{\sigma})$ at 1 kHz respectively. The measurement techniques used and results are more discussed in this paper.

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Control of Connectivity of Ni Electrode with Heating Rates During Sintering and Electrical Properties in BaTiO3 Based Multilayer Ceramic Capacitors

  • Yoon, J.R.;Shin, D.S.;Jeong, D.Y.;Lee, H.Y.
    • Transactions on Electrical and Electronic Materials
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    • 제13권4호
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    • pp.181-184
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    • 2012
  • $BaTiO_3$ based multilayer ceramic capacitors with Ni electrodes can be explained as 2-2 composites with different thermal expansion coefficient and sintering behaviors. To achieve the high capacitance and reliability of MLCCs, a homogenous Ni electrode configuration with high connectivity is required. We controlled the heating rates during sintering to achieve densification by suppressing grain growth. Experimental results revealed that a large heating rate gave high connectivity of Ni electrode, high capacitance, small dissipation factor, high breakdown voltage, and high reliability of MLCC chips.