• 제목/요약/키워드: Air leakage ratio

검색결과 54건 처리시간 0.02초

Optimization of drag reduction effect of air lubrication for a tanker model

  • Park, Seong Hyeon;Lee, Inwon
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제10권4호
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    • pp.427-438
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    • 2018
  • The reduction of $CO_2$ emissions has been a key target in the marine industry since the IMO's MEPC published its findings in 2009. Air lubrication method is one of the mature technologies for commercialization to reduce the frictional resistance and enhance fuel efficiency of ships. Air layer is formed by the coalescence of the injected air bubbles beyond a certain air flow rate. In this study, a model ship (${\lambda}=33.33$) of a 50,000 ton medium range tanker is equipped with an air lubrication system. The experiments were conducted in the 100 m long towing tank facility at the Pusan National University. By selecting optimal air injector configuration and distribution ratio between two injectors, the total resistance of model $R_{TM}$ was able to be reduced down to 18.1% in the model scale. Key issue was found to suppress the sideway leakage of injected air by appropriate injection parameters.

공사 중 환기덕트 누풍 최소화를 위한 접속부 개발 및 성능평가 연구 (A study on the development and performance evaluation of duct coupling for the minimized leakage of temporary ventilation duct)

  • 조형제;전규명;민대기;김종원;백종훈
    • 한국터널지하공간학회 논문집
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    • 제20권1호
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    • pp.145-160
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    • 2018
  • 초장대 해저터널은 환기를 위한 연직갱 또는 경사갱 설치에 공간적으로 많은 제한을 받게 되므로 일부 인공섬을 건설하여 환기를 수행할 필요가 있다. 그러나 인공섬 설치는 건설의 어려움뿐만 아니라 건설비용이 증가하게 되므로 인공섬 설치를 최소화할 필요가 있다. 이에 따라 환기거리가 증가하여 누풍에 의한 공급 풍량이 커지게 되면, 공사 중 환기를 위한 덕트 설치가 불가능해지거나 팬 정압 및 동력이 상당히 증가하게 된다. 따라서 초장대 해저터널을 건설하기 위해서는 이러한 현실적인 문제를 극복하고 시공 중 터널 내 환경을 쾌적한 상태로 유지할 수 있는 기술력이 필요하다. 선행 연구에서 우리는 누풍이 이 문제들을 해결하는 핵심 인자이며 실험 결과 새로운 접속방식의 누풍율은 대략 $1.46mm^2/m^2$임을 밝혔다(Jo et al., 2017). 본 연구에서는 새로운 접속방식이 적용된 시제품의 누풍율 측정 결과를 제시하고 기존 접속방식의 누풍 성능 개선을 위해 덕트 내부에 연질막 적용시의 누풍 성능 개선을 실험적으로 분석하였다.

초고압 옥외용 실리콘 고무의 발수성 및 트래킹 특성 (Hydrophobicity and tracking resistance of SIR for outdoor Insulators)

  • 한동희;강동필;박효열;이광희;이기창;민경은
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 C
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    • pp.1560-1562
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    • 2000
  • The paper reports on a study of the influence of the silicone oils on the tracking and erosion resistance and hydrophobicity of SIR. Two silicone oils(A, B) having different chemical structure were selected in consideration of goof hydrophobicity and processability. Tracking and erosion resistance of SIR was investigated by the rotating wheel dip test (RWDT). In this test tracking and erosion areas due to glow and partial arc discharges cause an increase in the leakage current with an increase in time. Leakage current of SIR was decreased with increasing ratio of oil A/B. SIR was exposed to corona discharges in air and the specimens were analyzed with contact angle. It was observed that the contact angle of SIR was increased gradually in time. The recovery of hydrophobicity was increased with increasing ratio of oil A/B.

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외기 중 미세먼지의 공동주택 실내 유입에 관한 연구 (Analysis of Infiltration of Outdoor Particulate Matter into Apartment Buildings)

  • 방종일;조성민;성민기
    • 대한건축학회논문집:구조계
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    • 제34권1호
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    • pp.61-68
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    • 2018
  • Recently, concentration of fine and ultra-fine particulate matter(PM) has been increased in KOREA. The increase of PM in KOREA is due to increase of domestic industries and yellow dust from china. PM is known to cause diseases such as dyspnoea, asthma, arrhythmia. Since PM is harmful to human, KOREA Ministry of Environment(ME) warns people to stay indoors when the outdoor PM concentration is high. However, prior studies has shown that indoor PM concentration can be relatively high when outdoor PM concentration is high due to infiltration of PM into buildings though leakage areas. In this study, airtightness, indoor and outdoor pressure difference and PM 2.5 & 10 concentration were measured in an apartment complex to observe PM infiltrating into building. Field measurement was conducted in newly-built apartment buildings to avoid the influence of indoor PM which can be generated by residents. The airtightness test was conducted to identify the leakage areas of the apartment, such as electric outlets and supply/exhaust diffusers. The airtightness test result showed that the air leakage area of the building was dominant in buildings envelop. According to indoor and outdoor pressure difference measurement result and PM concentration measurement result, it can be concluded that outdoor PM can infiltrate into indoor by leakage areas when wind is blown toward the apartment. As a result, pressure difference formed by the external weather condition and architectural characteristics such as the airtightness in building can influence PM to infiltrate into buildings. In further studies, I/O ratio, stack-effect, infiltration and penetration factor will be considered.

DAB 컨버터용 전력 변압기의 누설 인덕턴스를 포함한 내부 전력 손실 분석에 관한 연구 (A Study on the Analysis of Internal Power Loss Including Leakage Inductance of Power Transformer for DAB Converter)

  • 유정상;안태영;길용만
    • 반도체디스플레이기술학회지
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    • 제21권2호
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    • pp.95-100
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    • 2022
  • In this paper, a power loss analysis technique of a high-frequency transformer of a bidirectional DAB (Dual Active Bridge) converter is reported. To miniaturize the transformer of the dual active bridge converter, a resonant inductor was designed with an air gap included low-coupled rate state core to combine leakage inductor with the resonant inductor which is required for soft-switching. In this paper, leakage inductance and magnetizing inductance, core material, type of winding and winding method are included in the dual active bridge transformer loss analysis process to enable optimal design at the initial design stage. Transformer loss analysis for dual active bridge with a switching frequency of 200 kHz and maximum output of 5 kW was executed, and elements necessary for design based on the number of turns on the primary side were graphed while maintaining the transformer turns ratio and window area. In particular, it was possible to determine the optimal number of turns and thickness of the transformer, and ultimately, the total loss of the transformer could be estimated.

자연기흉의 원인과 개흉술에 대한 임상적고찰 (A Study of Cause and Thoracotomy in Spontaneous Pneumothorax - A Report of 57 Cases -)

  • 김성수
    • Journal of Chest Surgery
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    • 제22권5호
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    • pp.788-793
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    • 1989
  • We have observed 501 cases of spontaneous pneumothorax from January 1981 to June 1989 at the Department of Thoracic and Cardiovascular Surgery, Chonbuk National University Hospital. Of these, 57 patients have undergone thoracotomy to treat the pneumothorax after closed thoracostomy. These 57 patients were based on this retrospective clinical analysis, and the results were as follows: The ratio of male to female was 4.2:1 in male predominance and the old aged patients, over 50 years old, occupied 47.3% of all patients. Primary spontaneous pneumothorax was 19 cases and secondary spontaneous pneumothorax was 38 cases. The underlying pathology in secondary spontaneous pneumothorax was tuberculosis emphysema and chronic obstructive pulmonary disease in 35 cases. The indications of thoracotomy were persistent air leakage in 23 cases recurrent pneumothorax in 21 cases, inadequate expansion in 13 cases. Rupture of bullae or blebs were most frequent operative and pathologic findings in persistent air leakage group and recurrent pneumothorax group. In inadequate expansion group, predominant finding was destructive lung lesion. Bullectomy and/or bullae ligation was most effective procedures in 36 cases [63%] for operative management of spontaneous pneumothorax. Duration of preoperative and postoperative chest tube indwelling day was 13.35 days and 8.05 days in persistent pneumothorax group, 8.92 days and 7.77 days in recurrent pneumothorax group, 13.23 days and 10.21 days in inadequate expansion group.

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연료 조성에 따른 공연비 산정 (IV) - 공연비 계산방식의 평가- (Determination of hey Fuel Ratio According to Fuel Composition (IV) - Overall Estimation of Methods-)

  • 박찬준;엄인용
    • 대한기계학회논문집B
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    • 제28권10호
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    • pp.1155-1162
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    • 2004
  • This paper is the forth paper of several companion papers which compare the method of Air-Fuel ratio determination. In the previous work, various AFR calculations were performed for various fuels and the results were compared with each other. The comparison, however, were limited to numerical value and estimation of each equation or method was insufficient. In this paper, the overall estimation of the methods was attempted. Also, the method of trouble shooting of instrumentation was presented. Through the estimation of methods, it is concluded that the Eltinge method contains inherently the most perfect thermal dissociation model as far as the exhaust composition is concerned; therefore, this might be regarded as the most general equation of AFR determination among the existing ones. The others might be considered as approximate form. In addition, the mal-distribution factor in Eltinge method is qualitatively equivalent to thermal dissociation chemical equilibrium constant K. Lastly, it is illustrated that all instrumentation error, including the sampling line leakage, can be easily detected through the analyzing the exhaust component on the Eltinge chart.

Nonlinear responses of energy storage pile foundations with fiber reinforced concrete

  • Tulebekova, Saule;Zhang, Dichuan;Lee, Deuckhang;Kim, Jong R.;Barissov, Temirlan;Tsoy, Viktoriya
    • Structural Engineering and Mechanics
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    • 제71권4호
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    • pp.363-375
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    • 2019
  • A renewable energy storage pile foundation system is being developed through a multi-disciplinary research project. This system intends to use reinforced concrete pile foundations configured with hollowed sections to store renewable energy generated from solar panels attached to building structures in the form of compressed air. However previous research indicates that the compressed air will generate considerable high circumferential tensile stresses in the concrete pile, which requires unrealistic high hoop reinforcement ratio to avoid leakage of the compressed air. One possible solution is to utilize fiber reinforced concrete instead of placing the hoop reinforcement to resist the tensile stress. This paper investigates nonlinear structural responses and post-cracking behavior of the fiber reinforced concrete pile subjected to high air pressure through nonlinear finite element simulations. Concrete damage plasticity models were used in the simulation. Several parameters were considered in the study including concrete grade, fiber content, and thickness of the pile section. The air pressures which the pile can resist at different crack depths along the pile section were identified. Design recommendations were provided for the energy storage pile foundation using the fiber reinforced concrete.

메탄/공기 화염에서 연소실 압력변동이 연소특성과 국소 반응강도에 미치는 영향 (Influence of Changing Combustor Pressure on Combustion Characteristics and Local Reaction Intensity in the CH4/Air Flames)

  • 김종률;최경민;김덕줄
    • 대한기계학회논문집B
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    • 제33권5호
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    • pp.365-372
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    • 2009
  • The influence of combustor pressure on the local reaction characteristics of $CH_4$/air flames was investigated by measurements of local chemiluminescence intensity. Induced flow flames are often applied to the industrial boiler systems and incinerator in order to improve heat transfer and prevent exhaust gas leakage. In order to investigate combustion characteristics in the induced flow pattern, the combustor pressure index($P^*$) was controlled in the range of $0.7{\sim}1.3$ for each equivalence ratio in the present combustion system, where $P^*$ is defined as the ratio of absolute pressure to atmospheric one. Relationship between local reaction intensity and pressure index have been investigated by simultaneous $CH^*$, $C^*_2$ and $OH^*$ intensity measurements. It could be observed that flame length became longer with decreasing $P^*$ from $CH^*$ chemiluminescence intensity of axial direction. The mean value of $C^*_2$ and $CH^*$ chemiluminescence intensities, which indicates reaction intensity in the $CH_4$/air flames, decreased with decreasing pressure index for ${\Phi}{\leq}1$, but increased with decreasing pressure index for ${\Phi}$>1. $C^*_2/CH^*$ intensity ratio, which can be a good marker to demonstrate local equivalence ratio, was almost same for ${\Phi}{\leq}1$ regardless of pressure index change, while they showed high level for lower pressure index for ${\Phi}$>1 conditions.

가변속 스크롤 압축기의 운전조건의 변화에 따른 성능 해석 (Performance Analysis on the Variable Speed Scroll Compressor with Operating Conditions)

  • 박홍희;박윤철;김용찬
    • 설비공학논문집
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    • 제12권7호
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    • pp.649-658
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    • 2000
  • Thermodynamic modeling of low-pressure scroll compressor was developed by combining continuity and energy conservation equation. Suction gas heating was considered using energy balance inside the low pressure shell. Pressure, temperature and mass of refrigerant-22 as a function of orbiting angle were calculated by solving the governing equations using fourth order Rung-Kutta scheme. Motor efficiency was taken by experiments with a variation of frequency. The developed model was applied to the analysis of an inverter driven scroll compressor with a variation of frequency, pressure ratio and operating conditions. The model was verified with the experimental results at the same operating conditions. The developed model was adequate to predict performance of the inverter driven scroll compressor as a function of operating conditions. Calculated parameters from the model were discharge temperature, mass flow rate, power input, COP, and thermodynamic properties with respect to orbiting angle. To enhance the performance of a scroll compressor, it is essential to diminish leakage at low frequency level and improve the mechanical efficiency at high frequency level.

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