• 제목/요약/키워드: Heating Unit

검색결과 497건 처리시간 0.03초

Half-Bridge형 시분할방식 고주파 공진 인버터의 특성해석에 관한 연구 (A study on Characteristics analysis of time sharing type high frequency inverter consisting of half-bridge serial resonant inverter)

  • 조규판;신금향;원재선;김동희;노채균;심광렬;배영호
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2001년도 전력전자학술대회 논문집
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    • pp.344-347
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    • 2001
  • A high frequency resonant inverter consisting of three unit half-bridge serial resonant inverter used as power source of induction heating at high frequency is presented in this paper. As a output power control strategy, tine-sharing gate control method is applied. The analysis of the proposed circuit is generally described by using the normalized parameters. Also, according to the calculated characteristics value, a method of the circuit design and operating characteristics of the inverter is proposed. This paper proves the validity of theoretical analysis through the experiment. This proposed inverter show that it can be practically used in future as power source system for induction heating application, DC-DC converter etc.

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Halogen Etching of Si(100)-2x1 : Dependence on Vacancy Creation and Surface Concentration

  • Nakayama, Koji
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2000년도 제18회 학술발표회 논문개요집
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    • pp.146-146
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    • 2000
  • We have studied the etching of Si(100)-2xl by Cl and Br, using scanning tunneling microscopy to obtain morphological information that can be related to reaction and desorption pathways. Clean surfaces were exposed to molecular halogens at room temperature to produce well-defined chemisorption structures for coverages in the range 0.2-1.0 ML. Heating to 750-750 K induced etching by thermal desorpton. Analysis of the halogen concentration before and after heating indicated that the rates of desorption for SICl2 or SiBr2 were greatest for intermediate coverages and that etching was suppressed as saturation was reached. Hence, desorption is not simply proportional to the concentration of species that can form adsorbed precursors SiX2(a). Instead, it is directly coupled to the creation of monomer vacancies adjacent to the SiX2 (a) unit because this increases the lifetime of the excited state and increases the likelihood of its desorption. Increasing the surface concentration of halogens reduces the rate of vacancy formation. We show that these rates are also affected by a re-dimerization process in the high temperature Br-stabilized Si(100)-3xl reconstruction that increases the likelihood of siBr2(a) formation and enhances its desorption. I will also discuss recent result for F etching on Si(100)-2xl.

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초미립 WC-Graphene-Al2O3 복합재료 소결 및 기계적 성질 (Mechanical Properties and Sintering of Ultra Fine WC-Graphene-Al Composites)

  • 손인진
    • 열처리공학회지
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    • 제36권4호
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    • pp.206-214
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    • 2023
  • Tungsten carbide has many industrial applications due to its high electrical and thermal conductivity, high melting temperature, high hardness and good chemical stability. Because tungsten carbide is difficult to sinter, it is sintered with nickel or cobalt as a binder and is currently used in nozzles, cutting tools, and molds. Alumina is reported to be a viable binder for tungsten carbide due to its higher oxidation resistance and lower cost than nickel and cobalt. The ultrafine tungsten carbide-graphene-alumina composites were rapidly sintered in a high frequency induction heating active sintering unit. The microstructure and mechanical properties (fracture toughness and hardness) of the composites were investigated and analyzed by Vickers hardness tester and electron microscope. Since the high-frequency induction heating sintering method enables high-speed sintering, ultrafine composites can be prepared by preventing grain growth. In the tungsten carbide-graphene-alumina composites, the grain size of tungsten carbide increased with the amount of alumina participation. The hardness and fracture toughness of the tungsten carbide-5% graphene- x% alumina (x = 0, 5, 10,15) composites were 5.1, 8.6, 8.6, and 8.4 MPa-m1/2 and 2384, 2168, 2165, and 2102 kg/mm2, respectively. The fracture toughness increased without a significant decrease in hardness. Sinterability was improved by adding alumina to tungsten carbide-graphene.

반도체 웨이퍼 공정 배기가스 수분제어장치 (Semiconductor wafer exhaust moisture displacement unit)

  • 진데니;김종해
    • 한국산학기술학회논문지
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    • 제16권8호
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    • pp.5541-5549
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    • 2015
  • 본 논문은 반도체 웨이퍼 공정 배기가스 수분제어장치에 적용하기 위하여 인덕션 히터를 사용해서 안전하고 효율적인 전력을 사용하는 히터에 대한 설계방법을 제안한다. 수분을 제거하기 위해서 질소 가스의 흡열 반응을 발생하는 필라멘트 히터를 이용하여 배기가스 제거 시스템이 만들어진다. 이론적인 최적화와 전기적인 구현을 통해서 인덕션 이론은 반도체 웨이퍼 공정 배기가스 시스템을 위한 인덕션 히터 설계과정에 적용되어진다. 제안한 인덕션 히터 설계는 에너지 측면에서 비효율적이고 신뢰성이 떨어지며 안전하지 못한 현재의 설계문제에 대한 해결책을 제시한다. 인덕션 히터의 강인성과 미세조정 설계기법이 질소 히터의 사양내에서 에너지 소모를 최적화한다. 최적화는 배기 파이프의 공진주파수에 의해서 특성화된 ZVS(Zero Voltage Switching)를 기초로 이루어진다. 시스템에서 끼어진 고장 안전(fail-safe) 에너지 리미터는 MOSFET의 궤환 제어를 통하여 전압 레귤레이터를 사용하고 N2 히터 유닛의 사양이내에서 작동하기 위한 성능을 만족하도록 한다. 수치 해석과 설계의 우수성을 위한 기존의 필라멘트 히터와 미세조정한 인덕션 히터 설계의 사양과 성능비교는 제안한 인덕션 히터 설계방법이 우수함을 보여준다.

300MW 태안 IGCC 플랜트 종합성능 특성 (Overall Performance characteristic for 300MW Taean IGCC Plant)

  • 김학용;김재환
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
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    • pp.129.2-129.2
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    • 2010
  • As a part of the government renewable energy policy, KOWEPO is constructing 300MW IGCC plant in Taean. IGCC plant consists of gasification block, air separation unit and power block, which performance test is separately conducted. Overall performance test for IGCC plant is peformed to comply with ASME PTC 46. Major factors affected on the overall efficiency for IGCC plant are external conditions, each block performance(gasification, ASU, power block), water/steam integration and air integration. Performance parameters of IGCC plant are cold gas efficiency, oxygen consumption, sensible heat recovery of syngas cooler for gasification block and purity of oxygen, flow amount of oxygen and nitrogen, power consumption for air separation unit and steam/water integration among the each block. The gas turbine capacity applied to the IGCC plant is 20 percent higher than NGCC gas turbine due to the low caloric heating value of syngas, therefor it is possible to utilize air integration between gas turbine and air separation unit to improve overall efficiency of the IGCC plant and there is a little impact on the ambient condition. It is very important to optimize the air integration design with consideration to the optimized integration ratio and the reliable operation. Optimized steam/water integration between power block and gasification block can improve overall efficiency of IGCC plant where the optimized heat recovery from gasification block should be considered. Finally, It is possibile to achieve the target efficiency above 42 percent(HHV, Net) for 300MW Taean IGCC plant by optimized design and integration.

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태양열을 이용한 시설재배 지중변온가온의 토양 온도특성 연구(2) - 지중변온가온의 단위면적당 소요에너지 - (Study on Temperature Variation by Greenhouse Soil Warming System Using Solar Thermal Energy (2) - Required Energy per Unit Area for Soil Warming -)

  • 김진현;김태욱;나규동;김태수;김은태;정석현
    • Journal of Biosystems Engineering
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    • 제35권1호
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    • pp.46-52
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    • 2010
  • The temperature of root zone was known as an important factor for the growth of crops and reduction of energy in greenhouse. The purpose of this study was to design the apposite inflow of calories per the unit area by comparison of temperature in the warmed and non-warmed soil. The energy needed for soil warming about pipe length showed the change of temperature on inflow and outflow as $2^{\circ}C{\sim}3^{\circ}C$(average $2.5^{\circ}C$). Therefore, the inflow per the unit hour was 3,450, 57,5 kcal/$h{\cdot}m^2$ on soil heating respectively. The non-warmed soil temperature in greenhouse made a difference by depth and it was partially affected inner temperature under 15 cm, but it was not above 15 cm. The soil temperature would be raised over $5^{\circ}C$ than non-warmed soil to increase effect of soil warming. Therefore, the inflow per the unit area that should be provided was about 100 kcal/$h{\cdot}m^2$.

전국 고등학교 시설의 에너지 사용실태 분석 연구 (A Study on Analysis of Energy Consumption of a High School Facilities in Korea)

  • 윤종호;신우철;조진일;김효중;이철성
    • 한국태양에너지학회 논문집
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    • 제30권4호
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    • pp.55-62
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    • 2010
  • The purpose of this study is to present various analysis result of energy consumption that is a statistical analysis of high school facilities in Korea for setting the goal of energy saving. This study enforced analysis after it provided used energy consumption for the year 2008 and general in formation from 2202 high school facilities in 16 cities in South Korea by the relevant agency. Consequently, it represents that the average energy consumption of electric power was 428.7MWh(65.7%), gas consumption for heating was 129.5MWh(19.8%), oil consumption was 84.6MWh(13.0%), district energy was 10.0MWh(1.5%) in nation after changing as unit 'kWh' only for comparison with every energy source. This result describes that consumption of electric power was large greatly and it reflects the expectation that it will climb the demand regarding this energy in the future. In additionally, it analyzed average energy consumption with $98.3kWh/m^2$ by the unit area of air-conditioning and the district which has large energy consumption was Gyeonggi-do with $115.9kWh/m^2$. Furthermore, it described the average energy consumption of $60.8kWh/m^2$ by the unit area of floor area and the average energy consumption of a student analyzed with 1157.0kWh.

항공기 장착물에 탑재되는 KW급 전력변환장치의 방열설계 (Heat Dissipation Design for KW Class Power Control Unit Mounted on Aircraft Store)

  • 최석민;김형재;정재원;이철
    • 한국항행학회논문지
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    • 제24권4호
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    • pp.261-266
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    • 2020
  • 항공기 장착물에 KW급 전력변환장치가 탑재되는 경우, 전력 변환 시 발생하는 대량의 발열에 대한 방열설계가 고려되어야 한다. 적절한 방열을 하지 못하는 경우, 장비 오작동 및 화재의 우려가 발생하며 이는 항공기 운항에 있어 치명적인 요인이 될 수 있다. 본 논문은 항공기 장착물에 탑재되는 KW급 전력변환장치의 방열설계에 관하여 기술하였다. 전산해석을 통한 설계 및 제작 후 시험을 수행하였으며, 고전력 변환에 따른 발열부품의 급격한 발열 현상을 확인하여 해석 모델을 보정하였다. 모델 보정 후 방열구조가 개선된 형상으로 설계를 개선하였으며, 미 군사규격인 MIL-STD-810G 의 고온동작 시험을 수행하여 개선된 형상의 타당성을 검증하였다.

실측데이터를 이용한 에너지제로주택의 연간 에너지성능평가 (Annual Energy Performance Evaluation of Zero Energy House Using Metering Data)

  • 임희원;윤종호;신우철
    • KIEAE Journal
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    • 제16권3호
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    • pp.113-119
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    • 2016
  • Purpose: In this study, we evaluate the annual energy performance of the detached house which was designed with the aim of zero energy. Method: The experimental house which was constructed in Gonju Chungnam in 2013, is the single family detached house of light weight wood frame with $100m^2$ of heating area. Thermal transmittance of roof (by ISO 10211) and building external walls are designed as $0.10W/m^2K$ and $0.14W/m^2$ respectively and low-e coating vacuum window glazing with PVC frame was installed. Also grid connected PV system and natural-circulation solar water heater was applied and 6kWp capacity of photovoltaic module was installed in pitched roof and $5m^2$ of solar collector in vertical wall facing the south. We analyzed the 2014 annual data of the detached house in which residents were actually living, measured though web-based remote monitoring system. Result: First, as a result, total annual energy consumption and energy production (PV generation and solar hot water) are 7,919kWh and 7,689kWh respectively and the rate of energy independence is 97.1% which is almost close to the zero energy. Second, plug load and hot water of energy consumption by category showed the highest numbers each with 33% and 31%, with following space heating 24%, electric cooker 8%, lighting 3% in order. Hot water supply is relatively higher than space heating because high insulation makes it decreased.

3관식 시스템 히트펌프의 충전량 변화에 따른 성능 특성에 관한 연구 (The performance of a heat pump with 3-piping system at various charging conditions)

  • 송인식;최종민;주영주;정현준;강훈;김용찬
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.288-293
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    • 2008
  • The cooling load in winter is significant in many commercial buildings and hotels because of the usage of office equipments and the high efficiency of wall insulation. The development of a multi-heat pump that can cover heating and cooling simultaneously for each indoor unit is required. In this study, the performance of a multi-heat pump with 3-piping system was investigated as a function of refrigerant charge and its performance was analyzed in cooling mode, heating mode, and heat recovery mode. COP in the heating or cooling mode showed little dependence on refrigerant charge at overcharge conditions, while those were strongly dependent on refrigerant charge at undercharge conditions and outdoor inlet temperature. In the heat recovery mode, the performance of the system was very sensitive to charge amount at all conditions. Optimum charge amount in the heat recovery mode was 14% lower than that in the cooling mode at the standard condition because the refrigerant only passed the indoor units. It is required to store the excessive refrigerant charge in a storage tank to optimize the system performance at operating modes.

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