• Title/Summary/Keyword: 공학급 M&S

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CFD and Experimental Study of Gas Flow inside the Wounding Steel Pipe Fitted in Reciprocating Hydrogen Compressor (왕복동식 수소 압축기의 강관 관로 내부 가스흐름의 CFD와 실험)

  • Chung, H.S.;Rahman, M. Sq.;Lee, G.H.;Woo, J.S.;Kim, B.H.;Jeong, H.M.
    • Journal of Power System Engineering
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    • v.14 no.3
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    • pp.25-32
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    • 2010
  • 전 세계적으로 급속도로 인기가 더해가고 있는 수소에너지는 높은 전환 효율성, 재생성, 친환경적인 특징을 가지며 미래의 주 에너지가 될 것이다. 왕복동식 압축기를 통과한 후의 수소 가스의 압력은 높은 맥동압을 가진다. 스너버는 압축기의 한 구성품으로 맥동압을 낮추고 수소가스의 불순물을 제거하기 위해 사용된다. 이 연구에서의 실험은 스너버 시스템에 사용된 강관의 맥동에 관해 조사하기 위해서 수행되었다. 맥동압은 12 Hz ~ 60 Hz의 모터속도에서 RMS값을 기준으로 0.1625% ~ 0.5305% 그리고 평균압력을 기준으로 0.1621% ~ 0.5277% 감소하였다. 압력손실은 RMS값을 기준으로 0.1092% ~ 1.4419%, 평균압력을 기준으로 0.1493% ~ 1.7507%로 측정되었다. CFD를 이용한 수치해석값은 실험값이 거의 비슷한 결과를 나타내고 강관 관로 내부 가스의 자세한 압력을 설명하기 위한 중요한 역할을 수행한다.

Resistance and Structural Safety of a 3M Carbon Fibier-based Kayak (3미터급 카본 카약의 저항성능 및 구조 안전성 연구)

  • Seo, Kwang-Cheol;Lee, Gyeong-Woo;Park, Joo-Shin
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.25 no.4
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    • pp.482-488
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    • 2019
  • Leisure and business facilities have been steadily developing in Korea. Among waterborne leisure vessels and equipment, the distribution and sale of kayaks and canoes have significantly increased. Previously, (FRP) materials were primarily employed for constructing kayaks. However, owing to global warming and depletion of natural resources, the demand for non-polluting renewable energy is rapidly increasing, which has increased the demand for carbon fibers. To meet the requirements of changing social consciousness, a carbon fiber-based commercial kayak was designed in this study. Resistance analysis and structural safety were conducted by employing software tool for verifying the reliability of the proposed kayak. The pressure resistance and frictional resistance were examined in a wide range of speed. Obtained results indicate that at speeds greater than 2.6 m/s, the pressure resistance significantly increases and the total resistance also increases. Furthermore, the results corroborate that the proposed kayak structure has a adequate safety with respect to the design loads that are considered during operating conditions.

Aerodynamic and Structural Design for Medium Size Horizontal Axis Wind Turbine Rotor Blade with Composite Material (복합재를 이용한 수평축 풍력터빈 회전 날개의 공력 및 구조설계에 관한 연구)

  • 공창덕;방조혁;오동우;김기범;김학봉
    • Journal of the Korean Society of Propulsion Engineers
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    • v.1 no.2
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    • pp.12-21
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    • 1997
  • Nowadays, non-pollution energy sources have been strongly needed because of the exhaustion of fossil fuels and serious environmental problems. Because wind energy can be enormously obtained from natural atmosphere, this type of energy has lots of advantages in a economic and pollution point of view. This study has established the aerodynamic and structural design procedure of the rotor blade with an appropriate aerodynamic performance and structural strength for the 500㎾ medium class wind turbine system. The aerodynamic configuration of the rotor blade was determined by considering the wind condition in the typical local operation region, and based on this configuration aerodynamic performance analysis was performed. The rotor blade has the shell-spar structure based on glass/epoxy composite material and is composed of shank including metal joint parts and blade. Structural design was done by the developed design program in this study and structural analysis, for instance stress analysis, mode analysis and fatigue life estimation, was performed by the finite element method. As a result, a medium scale wind turbine rotor blade with starting characteristics of 4m/s wind speed, rated power of 500㎾ at 12m/s wind speed and over 20 years fatigue life has been designed.

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Studies on the deposition of ${Si_3}{N_4}$ for the passivation of PHEMT's (PHEMT Passivation을 위한 ${Si_3}{N_4}$)

  • Sin, Jae-Wan;Park, Hyeon-Chang;Park, Hyeong-Mu;Lee, Jin-Gu
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.39 no.1
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    • pp.25-30
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    • 2002
  • In this paper, high quality silicon nitride film is achieved using Plasma Enhanced Chemical Deposition(PECVD) system, and applied in passivating PHEMT's. Passivated PHEMT's(60 ${\mu}{\textrm}{m}$$\times$2 fingers) showed an increase of 2.7 % and 3 % in the drain saturation current and the maximum transconductance, respectively. The current gain cut-off frequency of 53 ㎓ and maximum oscillation frequency of 105 ㎓ were obtained from the fabricated PHEMT's.

A system for simplifying large-scale household waste (household appliances, furniture, etc.) using data analysis (데이터 분석을 활용한 생활 대형 폐기품(가전, 가구 등) 간소화 시스템)

  • Oh, Jieun;Kang, Woo-Il;Kim, Ga-Hee;Kim, Ji-Hyeon;Kim, Chae-min
    • Proceedings of the Korea Information Processing Society Conference
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    • 2022.11a
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    • pp.1025-1027
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    • 2022
  • 도시화가 급속도로 진행됨에 따라서 일상생활에서 생활폐기물의 관리와 처리에 대한 문제가 심각해지고 있다. 이 문제를 해결하고자 어플리케이션을 통해 생활폐기물 처리를 쉽게 할 수 있는 시스템을 제안한다. '싹처리'는 편리성, 정확성, 확장성, 수익성을 가지고 (중)대형 생활 폐기물 처리하는 딥러닝 어플리케이션이다. 어플리케이션 내의 저장된 딥러닝 과정으로 학습되어진 생활폐기물 분류 모델을 통해 폐기물 사진을 자동 인식하는 과정으로 누구나 쉽게 폐기물 배출을 신청할 수 있다. 정확한 딥러닝 알고리즘과 전이학습, 데이터 검수 등을 통해 높은 성능의 사물 자동 인식을 할 수 있다. 이 시스템을 통해 임산부, 장애인, 독거노인 등의 사회적 약자는 불필요한 과정 없이 손쉽게 폐기물을 처리할 수 있고, 더 나아가 중고시장의 활성화에 기여할 수 있는 가치가 있다.

Rainfall and Inflow Simulation for Rill Erosion of Sand Soil (마사토의 세류침식에 대한 강우와 유입수 모의실험)

  • Sang Jin Son;Sang Deog Park;Seung Sook Shin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.194-194
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    • 2023
  • 세류침식은 급경사 나지사면에서 증가하는 지표흐름에 의해 빈번하게 발생하고, 과도한 토사유출로 인해 홍수 및 토사재해 위험 증가와 수질오염 등의 문제를 야기한다. 본 연구는 개발지역의 마사토를 활용하여 1.2 m × 5.5 m 규모의 3개 중규모 플롯에서 세류발달 특성, 유출 및 토사유출량을 파악하고자 강우와 유입수 모의실험을 수행하였다. 경사 조건 15°와 20°에서 유입수 유무에 따른 4회의 반복실험이 진행되었으며 마사토의 평균입경은 0.89 mm이다. 강우강도 범위는 90~140 mm/hr이며, 유입수 유량은 합리식으로 계산하였으며 100~130 ml/sec이다. 하천 차수분석방법인 Horton방법을 사용하여 세류별 차수를 나누었다. 세류절개는 유입수가 없는 경우 실험 시작 약 1분 후에 발생하였고, 최대 2차수까지 세류가 발달하였으며, 유입수가 있는 경우 약 30초 후 발생하였고, 최대 3차수까지 세류가 발달하였다. 세류발달에 대한 수리학적 특성을 파악하기 위하여 염료 추적방법에 의한 동영상 이미지 분석결과 유속은 0.06~0.43 m/s의 범위를 보였다. 유입수와 강우가 함께 공급되는 경우 강우모의 공급수량에 비해 1.32~1.69배 증가했고, 이에 따라 지표유출수는 1.13~3.93배로 증가폭의 범위가 넓었다. 세류발달에 의한 토사유출량은 유입수 유무에 따라 6.7~32.3배로 증가하였다. 결론적으로 강우와 유입수가 상호작용하는 경우 강우에 의한 박리현상보다 유입수에 의한 측벽붕괴 활동이 활발하게 진행되었고 이는 세류 발달 과정에서 지배적으로 이루어졌기 때문으로 판단된다.

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LARGE EDDY SIMULATION OF ORDINARY & EMERGENCY VENTILATION FLOW IN UNDERGROUND SUBWAY STATION (지하역사 승강장 및 대합실 평상시 비상시 급·배기 환기 Large Eddy Simulation)

  • Jang, Yong-Jun;Ryu, Ji-Min;Park, Duck-Shin
    • Journal of computational fluids engineering
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    • v.18 no.3
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    • pp.72-78
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    • 2013
  • The turbulent flow behavior of air supply and exhaustion in the Shin-gum-ho subway station is analyzed for ordinary and emergency state. The depth of Shin-gum-ho station is 43.6m which consists of the island-type platform(8th floor in underground) and a two-story lobby (first & second floor in underground). An emergency stairway connects between the platform and the lobby. Ventilation operation mode for ordinary state is set up as a combination of air supply and exhaustion in the lobby and platform, while for emergency state it is set up as a full air supply in the lobby and a full exhaustion in the platform. The entire station is covered for simulation. The ventilation diffusers are modeled as 95 square shapes of $0.6m{\times}0.6m$ in the lobby and as 222 square shapes of $0.6m{\times}0.6m$ and 4 rectangular shapes of $1.2m{\times}0.8m$ in the platform. The total of 7.5million grids are generated and whole domain is divided to 22 blocks for MPI efficiency of calculation. Large eddy simulation(LES) is applied to solve the momentum equation and Smagorinsky model($C_s$=0.2) is used as SGS(subgrid scale) model. The time-averaged velocity fields are compared to experimental data and show a good agreement with it.

A study on the Optimization of Activated carbon Adsorbent Preparation condition and Evaluation of Application Supporting of K-Fe-Li ternary metal ions for Improving Adsorption Capacity of Hydrogen Sulfide (H2S) (황화수소(H2S) 흡착성능 증진을 위한 K-Fe-Li 3원계 금속이온물질이 담지된 활성탄 흡착제 제조조건 최적화 및 적용성 평가 연구)

  • Choi, Sung Yeol;Han, Dong hee;Kim, Sung Su
    • Clean Technology
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    • v.25 no.3
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    • pp.189-197
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    • 2019
  • In this study an optimization of the preparation conditions of activated carbon with a ternary metal ion material to treat $H_2S$, which is classified as a representative odor substance, was carried out. For a metal ion material for enhancing the adsorption performance of hydrogen sulfide, performance enhancement was confirmed by combining Li and Fe or a ternary combination (K, Li, Fe) based on KI, which is a substance promoting hydrogen sulfide adsorption performance. Also, it was determined by XRD analysis that the reaction of each active substance with $H_2S$ was because of binding. The adsorption performance increased more than 3 times with heat treatment of the adsorbent with nitrogen compared with heat treatment with air. The maximum adsorption constant ($q_m$) value of the optimum adsorbent was 97.07, which is 6 times higher than that of the existing K-based impregnated activated carbon. It was confirmed that the objective adsorption amount ($0.3g\;g^{-1}$) was secured by an equilibrium between the mass transfer rate and adsorption rate. From the results, it was confirmed that the performance improvement was noticeable even when activated carbon with a reagent grade activated carbon particle size was modified. It was confirmed that the adsorption performance exists at high relative humidity levels of 60 and 100%, and the optimized preparation can be applied to a wet process such as a scrubber downstream.

Applying deep learning based super-resolution technique for high-resolution urban flood analysis (고해상도 도시 침수 해석을 위한 딥러닝 기반 초해상화 기술 적용)

  • Choi, Hyeonjin;Lee, Songhee;Woo, Hyuna;Kim, Minyoung;Noh, Seong Jin
    • Journal of Korea Water Resources Association
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    • v.56 no.10
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    • pp.641-653
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    • 2023
  • As climate change and urbanization are causing unprecedented natural disasters in urban areas, it is crucial to have urban flood predictions with high fidelity and accuracy. However, conventional physically- and deep learning-based urban flood modeling methods have limitations that require a lot of computer resources or data for high-resolution flooding analysis. In this study, we propose and implement a method for improving the spatial resolution of urban flood analysis using a deep learning based super-resolution technique. The proposed approach converts low-resolution flood maps by physically based modeling into the high-resolution using a super-resolution deep learning model trained by high-resolution modeling data. When applied to two cases of retrospective flood analysis at part of City of Portland, Oregon, U.S., the results of the 4-m resolution physical simulation were successfully converted into 1-m resolution flood maps through super-resolution. High structural similarity between the super-solution image and the high-resolution original was found. The results show promising image quality loss within an acceptable limit of 22.80 dB (PSNR) and 0.73 (SSIM). The proposed super-resolution method can provide efficient model training with a limited number of flood scenarios, significantly reducing data acquisition efforts and computational costs.

Performance Evaluation on Characteristic Length Variation of $H_2O_2$/Kerosene Bipropellant Rocket Engine (특성길이 변화에 따른 $H_2O_2$/Kerosene 이원추진제 로켓 엔진의 성능평가)

  • Jo, Sung-Kwon;Jang, Dong-Wuk;Kim, Jong-Hak;Yoon, Ho-Sung;Kwon, Se-Jin
    • Journal of the Korean Society of Propulsion Engineers
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    • v.15 no.3
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    • pp.1-8
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    • 2011
  • In addition to the previous study for development of a 1,200 N-class bipropellant rocket engine with concentrated hydrogen peroxide, the effect of characteristic length and thrust measurement were experimentally evaluated. Tests with characteristic lengths of 0.95, 1.07, and 1.20 m were performed and $C^*$ and Isp efficiencies were increased as increasing characteristic length. The maximum $C^*$ and Isp efficiencies were 98.4% and 93.1% respectively. Based on the evaluation of the designed engine, the optimized characteristic length was proposed in using the engine adapted decomposed hydrogen peroxide and the engine performance at vacuum-level was evaluated using thrust and Isp efficiency at the designed equivalence ratio. As a result, 218.4 s at sea-level, 253.3 s at vacuum-level, and vacuum thrust of 1035.3 N can be estimated.