• 제목/요약/키워드: Internal cooling

검색결과 431건 처리시간 0.029초

냉수공장에서 열전달을 고려한 응축기와 증발기의 물 압력강하 특성 (Characteristics of the Water Pressure Drop Considering Heat Transfer in the Evaporator and Condenser of a Water Chiller)

  • ;이근식
    • 대한기계학회논문집B
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    • 제35권12호
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    • pp.1293-1300
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    • 2011
  • 물 냉각기의 응축기와 증발기의 형상(길이, 관 직경, 관수, 통로 수)은 설비비용에 관련된 열전달 면적과 운전비용에 관련된 압력강하와의 조화로 결정될 수 있다. 물 냉각기 (냉동사이클)의 쉘-관 형상의 열교환기(응축기와 증발기)의 관 내부로 물이 통과할 때, 주어진 냉각부하와 요구조건을 만족하면서, 물 압력강하가 작은 설계조건에 초점을 맞추었다. 상업용 강화튜브의 사용과 상용 소프트웨어를 사용한 해석결과의 검증으로 실용성과 신뢰성 확보를 도모하였다. 해석결과, 관 통로 수를 적게, 관 직경을 크게, 관 수를 많게 선정하면, 관 길이를 짧게 하므로 물측 압력강하를 줄일 수 있었다. 그러나, 관수가 특정값보다 많을 때는 오히려 작은 관 직경을 사용하는 것이, 내부열저항의 감소로 인한 단위 길이 당 총열저항 감소 때문에, 관 길이를 짧게 하여 설비비용을 줄일 수 있었다.

적외선 열화상 카메라를 이용한 탄소강관 용접부 결함검출 (Defect Detection of Carbon Steel Pipe Weld Area using Infrared Thermography Camera)

  • 권대주;정나라;김재열
    • Tribology and Lubricants
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    • 제30권2호
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    • pp.124-129
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    • 2014
  • The piping system accounts for a large portion of the machinery structure of a plant, and is considered as a very important mechanical structure for plant safety. Accordingly, it is used in most energy plants in the nuclear, gas, and heavy chemical industries. In particular, the piping system for a nuclear plant is generally complicated and uses the reactor and its cooling system. The piping equipment is exposed to diverse loads such as weight, temperature, pressure, and seismic load from pipes and fluids, and is used to transfer steam, oil, and gas. In ultrasound infrared thermography, which is an active thermography technology, a 15-100 kHz ultrasound wave is applied to the subject, and the resulting heat from the defective parts is measured using a thermography camera. Because this technique can inspect a large area simultaneously and detect defects such as cracks and delamination in real time, it is used to detect defects in the new and renewable energy, car, and aerospace industries, and recently, in piping defect detection. In this study, ultrasound infrared thermography is used to detect information for the diagnosis of nuclear equipment and structures. Test specimens are prepared with piping materials for nuclear plants, and the optimally designed ultrasound horn and ultrasound vibration system is used to determine damages on nuclear plant piping and detect defects. Additionally, the detected images are used to improve the reliability of the surface and internal defect detection for nuclear piping materials, and their field applicability and reliability is verified.

90도 요철이 설치된 회전덕트에서 유출이 열/물질전달에 미치는 영향 (Effects of Bleeding on Heat/Mass Transfer in a Rotating Channel with Transverse Ribs)

  • 박석환;전윤홍;김경민;이동현;조형희
    • 한국유체기계학회 논문집
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    • 제9권1호
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    • pp.25-31
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    • 2006
  • The present study investigates the effects of bleed flow on heat/mass transfer and pressure drop in a rotating channel with transverse rib turbulators. The hydraulic diameter $(D_h)$ of the square channel is 40.0mm. The bleed holes are located between the rib turbulators on leading surface and the hole diameter (d) is 4.5 mm. The square rib turbulators are installed on both leading and trailing surfaces. The rib-to-rib pitch is 10.0 times of the rib height(e) and the rib height-to-hydraulic diameter ratio $(e/D_h)$ is 0.055. The tests were conducted at various rotation numbers (0, 0.2, 0.4), while the Reynolds number and the rate of bleed flow to main flow (BR) were fixed at 10,000 and $10\%$, respectively. The results suggest that the heat/mass transfer characteristics in the internal cooling passage are influenced by rib turbulators, bleed flow and the Coriolis force induced by rotation. For the rotating ribbed passage with bleed flow, the heat/mass transfer on the leading surface is hardly affected by bleed flow, but that on the trailing surface decreases due to the diminution of main flow. The results also show that the friction factor decreases with the bleed flow.

CFD를 이용한 해수냉각펌프의 내부유동 분석 (Internal Flow Analysis of Seawater Cooling Pump using CFD)

  • ;양창조;김부기;김준호
    • 해양환경안전학회지
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    • 제23권1호
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    • pp.104-111
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    • 2017
  • 본 연구는 원심펌프 내부 유동장 특성에 대한 시뮬레이션 및 시각화에 중점을 둔다. 3D 수치해석은 Reynolds Average Navier-stock 코드를 k-${\varepsilon}$ 표준 2차방정식 난류 모델로 처리하여 수행하였다. 시뮬레이션은 흡입측, 임펠러, 토출측 영역에서 조도로 인한 마찰 손실과 임펠러 웨어링에서 체적 손실을 포함한다. 해석과 실험사이의 성능곡선 비교결과 최대 5 %의 작은 차이를 보이며 동일한 추세를 나타냈다. 최고 효율점에서 속도 벡터는 고르게 나타났지만 비 설계점에서는 현저한 변화가 나타났고, 텅 부근의 임펠러 유로토출부에서 강력한 재순환 영역이 나타났다. 비교적 일정한 압력분포가 텅 부근임에도 불구하고 임펠러 주위에 관찰되었다. 볼류트 내에서 기하학적으로 인해 형성된 나선형 와류가 이 영역에서 유동장이 상대적으로 난류이고 불안정하다는 것을 증명하였다.

Design Study on a Variable Intake and a Variable Nozzle for Hypersonic Engines

  • Taguchi, Hideyuki;Futamura, Hisao;Shimodaira, Kazuo;Morimoto, Tetsuya;Kojima, Takayuki;Okai, Keiichi
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2004년도 제22회 춘계학술대회논문집
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    • pp.713-721
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    • 2004
  • Variable air intake and variable exhaust nozzle of hypersonic engines are designed and tested in this study. Dimensions for variable geometry air intake, ram combustor and variable geometry exhaust nozzle are defined based on the requirements of a pre-cooled turbojet engine. Hypersonic Ramjet Engine is designed as a scaled test bed for each component. Actuation forces of moving parts for variable intake and variable nozzle are reduced by balancing the other force in the opposite direction. A demonstrator engine which includes variable intake and variable nozzle is designed and the components are fabricated. Composite material with silicone carbide is applied for high temperature parts under oxidation environment such as leading edge of the variable intake and combustor liner. Internal cooling structure is adopted for both moving and static parts of the variable nozzle. Pressure recovery and mass capture ratio of the variable intake at Mach 5 is obtained by a hypersonic wind tunnel test. Flow characteristics of the variable nozzle are obtained by a low temperature flow test. Wall temperature and heat flux of the nozzle at Mach 3 is obtained by a firing test. As results, the intake and the nozzle are proved to be used at designed pressure and temperature environment.

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365 nm 파장대역 고투과율 실리콘 수지 TIR 렌즈 및 고지향성 노광기 광원모듈 제작 (Fabrication of 365 nm Wavelength High Transmittance Silicone Resin TIR Lens and High Directivity Light Source Module for Exposure System)

  • 성준호;유순재;;정미숙
    • 한국전기전자재료학회논문지
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    • 제31권4호
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    • pp.267-271
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    • 2018
  • A high directivity TIR (total internal reflection) lens in the UV-A region was designed using a silicone resin, and a UV light source module with a maximum irradiation density of $150mW/cm^2$ was fabricated. The beam angle of the TIR lens was designed to be $8.04^{\circ}$ and the maximum diameter of the TIR lens was Ø13.5. A silicone resin having a UV transmittance of 93% and a refractive index of 1.4 at a wavelength of 365 nm was used, and the lens was manufactured using an aluminum mold, from which silicone could be easily released. The module was fabricated in a metal printed circuit board of COB (chip on board) type using a $0.75{\times}0.75mm^2$ UV chip. A jig was used to adjust the focal length between lens and chip and to fix the position of the lens. The optical characteristics such as illumination distributions of the lens and module were designed using 'LightTools' optical simulation software. The heat dissipation system was designed to use a forced-air cooling method using a heat-sink and fan.

C-dump Converter에 의한 차량용 SRM 구동 시스템의 고성능제어 (High Performance Control of SRM Drive System for Automobiles by C-dump Converter)

  • 김도군;윤용호;이태원;원충연;김영렬
    • 전력전자학회논문지
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    • 제8권6호
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    • pp.534-542
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    • 2003
  • 현재 차량에 사용되는 전동기는 대부분 직류전동기로, 12V또는 24V 밧데리 전원으로 구동되는 엔진 냉각 팬, 오일 펌프 및 공조시스템 등에 적용되고 있다 그러나 직류전동기의 경우 효율, 수명, 내구성에 취약한 단점을 지니고 있다. 따라서, 자동차용 전동기로써 구조가 간단하고 내구성이 우수한 SRM(Switched Reluctance Motor)의 관심이 매우 높아지고 있다. SRM을 차량용으로 사용하기 위해서는 고성능 제어와 12V 전윈 구동에 모두 우수한 성능을 갖는 구동 컨버터의 선정이 매우 중요하다. 여러 종류의 구동 컨버터는 각각의 장단점을 갖고 있어, 차량에 적용시 여러 가지 제약 조건이 따른다. 일반적으로 많이 사용되고 있는 비대칭 컨버터는 제어성능이 우수하지만, 각 상당 스위치가 가장 많이 필요하고, 상당 2개의 스위치에 의한 전압강하가 발생하는 단점을 지니고 있어, 차량의 12V 전원에는 부적절하다 구조가 간단하고, 스위치 수가 적은 컨버터로 차량의 환경과 여러 요구조건을 충족시킬 수 있는 컨버터로써 Modified C-dump 컨버터와 Energy efficient C-dump 컨버터를 선정하였다. 제안된 두 컨버터를 시뮬레이션과 실험을 통해 비교 검토하여, 차량용 SRM 구동 컨버터로써 Energy efficient C-dump 컨버터의 우수한 제어성능을 증명하였다.

전기자동차 배터리팩 열관리시스템에서 상변화물질 적용에 관한 고찰 (A Study on the Application of Phase Change Material for Electric Vehicle Battery Thermal Management System using Dymola)

  • 최철영;최웅철
    • 전기학회논문지
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    • 제66권12호
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    • pp.1889-1894
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    • 2017
  • Global automobile manufacturers are developing electric vehicles (EVs) to eliminate the pollutant emissions from internal combustion vehicles and to minimize fossil fuel consumptions for the future generations. However, EVs have a disadvantage of shorter traveling distance than that of conventional vehicles. To answer this shortfall, more batteries are installed in the EV to satisfy the consumer expectation for the driving range. However, as the energy capacity of the battery mounted in the EV increases, the amount of heat generated by each cell also increases. Naturally, a better battery thermal management system (BTMS) is required to control the temperature of the cells efficiently because the appropriate thermal environment of the cells greatly affects the power output from the battery pack. Typically, the BTMS is divided into an active and a passive system depending on the energy usage of the thermal management system. Heat exchange materials usually include gas and liquid, semiconductor devices and phase change material (PCM). In this study, an application of PCM for a BTMS was investigated to maintain an optimal battery operating temperature range by utilizing characteristics of a PCM, which can accumulate large amounts of latent heat. The system was modeled using Dymola from Dassault Systems, a multi-physics simulation tool. In order to compare the relative performance, the BTMS with the PCM and without the PCM were modeled and the same battery charge/discharge scenarios were simulated. Number of analysis were conducted to compare the battery cooling performance between the model with the aluminum case and PCM and the model with the aluminum case only.

병원급식에서 Ready-Prepared Foodservice System 이용에 관한 연구 (A study for the utilization of ready-prepared foodservice system concept to the Korean hospital foodservice operations)

  • 김지영;김혜영
    • 한국식품조리과학회지
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    • 제2권2호
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    • pp.21-31
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    • 1986
  • Here is a research on hospital foodservice system, when korea traditional food of pyeon yuk and bin dae deok were used by ready-prepared foodservice system, it was estimated the preservations of microbiological quality and sensory quality. All data collection was replicated three times. The results were as following; 1. In time and temperature data, two menu items were needed internal temperature below $7^{\circ}C$ in a cooling stage, and in the case of cook/chill storage, the days were shortened within weeks, and the holding time must be possiblely minimized. Finally foods were served sanitary. 2. In view of microbiological safety, in the case of cook/chill storage as $0{\sim}4^{\circ}C$ the days must be shortened within 2 weeks and its was possible to store until 6 weeks in $-20{\sim}-23.3^{\circ}C$. So to preserve pre-cooked food longly, it was effective to freeze them quickly by using vacuum package and to reheat them by a microwave oven before serving and to serve lastly in microbiological quality. 3. Hospital ready-prepared foodservice system with food storage in plastic bags, biochemical test of C. Perfingens C. botulinum and Salmonella were not detected. 4. By using of a microwave oven, it had effects of thawing, reheating and sterilizing of chilled and frozen foods in a short time. 5. Sensory evaluations were made by a 10-member panel using five scoring tests. Because sensory of quality was lowered in the case of chilled storage, it was possible to serve foods within 2 weeks. Texture and aroma were preserved by cook/frozen system and usually there was no significance from 4 weeks until 6 weeks, but considering of the objects, it was good to store until 4 weeks in sensory quality.

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1300℃급 가스터빈 1단 블레이드의 코팅분석을 이용한 열화평가 (Evaluation of the Degradation of a 1300℃-class Gas Turbine Blade by a Coating Analysis)

  • 송태훈;장성용;김범수;장중철
    • 대한금속재료학회지
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    • 제48권10호
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    • pp.901-906
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    • 2010
  • The first stage blade of a gas turbine was operated under a severe environment which included both $1300^{\circ}C$ hot gas and thermal stress. To obtain high efficiency, a thermal barrier coating (TBC) and an internal cooling system were used to increase the firing temperature. The TBC consists of multi-layer coatings of a ceramic outer layer (top coating) and a metallic inner layer (bond coat) between the ceramic and the substrate. The top and bond coating layer respectively act as a thermal barrier against hot gas and a buffer against the thermal stress caused by the difference in the thermal expansion coefficient between the ceramic and the substrate. Particularly, the bondcoating layer improves the resistance against oxidation and corrosion. An inter-diffusion layer is generated between the bond coat and the substrate due to the exposure at a high temperature and the diffusion phenomenon. A thickness measurement result showed that the bond coat of the suction side was thicker than that of the pressure side. The thickest inter-diffusion zone was noted at SS1 (Suction Side point 1). A chemical composition analysis of the bond coat showed aluminum depletion around the inter-diffusion layer. In this study, we evaluated the properties of the bond coat and the degradation of the coating layer used on a $1300^{\circ}C$-class gas turbine blade. Moreover, the operation temperature of the blade was estimated using the Arrhenius equation and this was compared with the result of a thermal analysis.