• Title/Summary/Keyword: 부가 압력

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User Authentication System using FSR Array Mouse Pad (FSR Array 마우스 패드를 이용한 사용자 인증 시스템)

  • Gwon, Seung-Ho;Kim, Tae-Yeon;Seo, Seung-Hyun
    • Proceedings of the Korea Information Processing Society Conference
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    • 2020.05a
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    • pp.195-198
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    • 2020
  • 현재 PC 환경에 대한 보안시스템은 PIN 번호 인증 방식과 지문, 홍채와 같은 생체정보 인증방식에 머물러 있다. 하지만 취약한 PIN 번호는 도용이 쉽고, 생체정보는 누출되었을 경우 갱신이 불가능하다는 단점을 가지고 있어 이를 악용한 해킹 사례가 발생하고 있다. 기존 인증방식의 문제점을 개선하기 위해 최근, 개인의 행동습관을 통해 사용자를 인증하는 '행위적 특정 기반 인증기술'이 주목 받고 있다. 본 논문에서는 사용자마다 마우스 사용습관이 다르다는 특성에 기반한 PC 사용자 인증 방식을 제안한다. 인증 성공률을 높이기 위하여 Mouse dynamics 방식에 압력의 분포, 모양과 같은 새로운 특징적 요소를 추가한다. 또한, 마우스 사용 시 손의 모양, 압력의 분포 등을 수집하여 특징점을 추출할 수 있도록 FSR Array로 마우스패드를 구현하여 새로운 PC 인증 시스템의 프로토 타입을 구현하였다.

Analytical Equivalent Stiffness Analysis for Various Reinforcements of Wall-thinned Pipe (감육 배관의 다양한 보강 형태에 따른 이론적 등가 강성 검증)

  • Je-Hoon Jang;Ji-Su Kim;Yun-Jae Kim
    • Transactions of the Korean Society of Pressure Vessels and Piping
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    • v.18 no.1
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    • pp.11-18
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    • 2022
  • When wall-thinning in a pipe occurs during operation of nuclear power plant, reinforcement of the pipe needs to be performed. Accordingly, the structural response of the piping system due to introduction of the reinforcement may be re-evaluated. For elastic structural analysis of the piping system with the reinforced pipe using finite element (FE) analysis, the stiffness of the reinforced pipe is needed. In this study, the stiffness matrix of wall-thinned pipe with pad reinforcement or composite reinforcement is analytically derived. The validity of the proposed equations is checked by comparing with systematic finite element (FE) analysis results.

Analysis of Oxide Layers in Phase Boundary Crack of Cast Austenitic Stainless Steel (주조 오스테나이트 스테인리스강 상경계 균열부 산화물 분석)

  • Min-Jae Choi;Sung-Woo Kim
    • Transactions of the Korean Society of Pressure Vessels and Piping
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    • v.19 no.2
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    • pp.171-178
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    • 2023
  • For the phase boundary crack found in the gasket made of cast austenitic stainless steel in the nuclear power plant, the oxide layers were analyzed through SEM and TEM. The results showed that cracks initiated and propagated along the austenite/δ-ferrite phase boundary, the propagation path was changed to penetrate the inside of the phase. The oxide layer located at the periphery of the crack along the phase boundary was identified as a complex multi-layered spinel structure, and Cr-rich carbides were also detected in the oxide. The cracks that propagated inside the austenite matrix were attributed to the presence of high external stresses and impurities.

Fracture Toughness Prediction of API X52 Using Small Punch Test Data in Hydrogen at Low Temperatures (소형펀치 시험을 이용한 API X52 저온 수소환경 파괴인성 예측)

  • Jae Yoon Kim;Ki Wan Seo;Yun Jae Kim;Ki Seok Kim
    • Transactions of the Korean Society of Pressure Vessels and Piping
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    • v.19 no.2
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    • pp.117-129
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    • 2023
  • Hydrogen embrittlement of a pipe is an important factor in hydrogen transport. To characterize hydrogen embrittlement, tensile and fracture toughness tests should be conducted. However, in the case of hydrogen-embrittled materials, it is difficult to perform tests in hydrogen environment, particularly at low temperatures. It would be useful to develop a methodology to predict the fracture toughness of hydrogen-embrittled materials at low temperatures using more efficient tests. In this study, the fracture toughness of API X52 steels in hydrogen at low temperatures is predicted from numerical simulation using coupled finite element (FE) damage analyses with FE diffusion analysis, calibrated by analyzing small punch test data.

Probabilistic Analysis of Blasting Loads and Blast-Induced Rock Mass Responses in Tunnel Excavation (터널발파로 인한 굴착선주변 암반거동의 확률론적 연구)

  • 이인모;박봉기;박채우
    • Journal of the Korean Geotechnical Society
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    • v.20 no.4
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    • pp.89-102
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    • 2004
  • The generated blasting pressure wave initiated under decoupled-charge condition is a function of peak blasting pressure, rise time, and wave-shape function. The peak blasting pressure and the rise time are also the function of explosive and rock properties. The probabilistic distributions of explosive and rock properties are derived from the results of their property tests. Since the probabilistic distributions of explosive and rock properties displayed a normal distribution, the peak blasting pressure and the rise time can also be regarded as a normal distribution. Parameter analysis and uncertainty analysis were performed to identify the most influential parameter that affects the peak blasting pressure and the rise time. Even though the explosive properties were found to be the most influential parameters on the peak blasting pressure and the rise time from the parameter analyses, the result of uncertainty analysis showed that rock properties constituted major uncertainties in estimating the peak blasting pressure and the rise time rather than explosive properties. Damage and overbreak of the remaining rock around the excavation line induced by blasting were evaluated by dynamic numerical analysis. A user-subroutine to estimate the rock damage was coded based on the continuum damage mechanics. This subroutine was linked to a commercial program called 'ABAQUS/Explicit'. The results of dynamic numerical analysis showed that the rock damages generated by the initiation of stopping hole were larger than those from the initiation of contour hole. Several methods to minimize those damages were proposed such as relocation of stopping hole, detailed subdivision of rock classification, and so on. It was found that fracture probability criteria and fractured zones could be distinctively identified by applying fuzzy-random probability.

Numerical Study on the Characteristics of Dual-Mode Scramjet Isolator (이중 모드 스크램제트 격리부 특성에 대한 수치해석적 연구)

  • Deng, Ruoyu;Kim, Heuy Dong;Jin, Yingzi
    • Journal of the Korean Society of Propulsion Engineers
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    • v.19 no.5
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    • pp.31-36
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    • 2015
  • As one of the most promising propulsive systems in the future, the dual-mode scramjet engine has drawn the attention of many researches. Detailed flow features concerned with the isolator play an important role in the dual-mode scramjet system. The 2D numerical method has been used for the dual-mode scramjet with wind tunnel. To validate the ability of the numerical model, numerical results have been compared with the experimental results. Overall pressure distributions show quite good match with the experimental results. Back pressure has been studied for maximum pressure rising. According to the results, pressure distribution of supersonic inlet section is not influenced by back pressure. The shock train is pushed towards upstream as the back pressure increases. The maximum value of back pressure without inlet unstart goes up rapidly and then keeps constant when the isolator length increases. The optimal length of isolator section ($L/H_{th}$) is 8.7 in this model.

A Study on the Window Glass Pressure for High-speed Train (고속철도차량의 유리창 압력에 관한 연구)

  • Kwon, Hyeok-Bin;Chang, Dae-Sung
    • Journal of the Korean Society for Railway
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    • v.13 no.4
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    • pp.371-375
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    • 2010
  • In order to decide the strength requirement of the window glass for the high-speed train, the pressure change during the passage of the EMU type high-speed train has been numerically simulated. Based on the calculation results, the pressure difference between the inner and outer pressure of the cabin has been calculated to yield the amount of load acting on the window glass of the cabin. To simulate the pressure field generated by the high-speed train passing through the tunnel, computational fluid dynamics based on the axi-symmetric Navier-Stokes equation has been employed. The pressure change inside a train has been calculated using first order difference approximation based on a linear equation between the pressure change ratio inside a train and the pressure difference of inside and outside of the train.

Analysis of Impact on the Circulating Water System due to Installation of Low-head Stream Turbine at the Discharge Channel of the Power Plant (발전소 배수로에 초저낙차 조류식 수차 설치로 인한 순환수계통 영향 분석)

  • Kim, Ji-Young;Kang, Keum-Seok
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.1599-1603
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    • 2008
  • 발전소 냉각수 배수로에는 유속 2 m/s 이상의 빠른 흐름의 수로가 존재하여 수력발전을 꾀할 수 있어, 하동화력의 경우 조류발전 수차인 헬리컬 수차를 이용한 수력 개발이 진행 중이다. 하동화력 배수로는 약 630 m의 암거와 약 250 m의 개수로로 이루어져 있는데, 현재 상업용 발전설비 개발을 위해 시험용 수차발전 설비를 개수로로 이어지는 암거 출구부에 설치하여 성능 시험을 추진하고 있다. 이에 본 연구에서는 발전 설비의 설치로 인한 수위 증가가 냉각수 순환 계통에 미치는 영향을 파악하기 위하여 배수로 구간의 수위변화 또는 압력변화를 수치해석을 통해 분석하였다. 배수로 암거 출구부에 가로 3.6 m ${\times}$ 세로 1.5 m 헬리컬 수차 1 set를 설치하는 경우 저조시에는 seal well 후단(하류측)의 수위가 seal well의 위어 정부표고를 넘지 않아 수차구조물에 의한 압력변화가 상류로 미치는 영향이 없었다. 그러나 고조시에는 seal well 전 후단이 만관 관수로 흐름이 되어 하류의 압력변화가 상류로 전파되었다. 단, 수차구조물을 설치한 경우 순환수 펌프를 처음 기동할 때 압력파의 전파로 인해 초기 약 10 분간 불안정한 압력변화가 발생하나 수차구조물 설치 전인 현상태에서 발생하는 압력변화 범위를 벗어나지는 않고 이내 안정되며, 수차구조물 설치로 인한 수위 증가분만큼의 펌프 양정고 증가로 소요 동력이 증가할 수 있으나 0.2 m 내외의 미약한 증가이므로 정상 운전에는 문제가 없을 것으로 판단되었다. 따라서 수차구조물 설치 시, 저조시에는 순환수계통에 영향을 주지 않으며, 고조시에도 일부 시간 동안 미약한 수두변화만 있을 뿐 순환수 계통의 안전에는 지장을 주지 않을 것으로 확인되었다.

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On the Pressurization Characteristics of Small Piezoelectric Hydraulic Pump for Brake System (브레이크용 소형 압전유압펌프 가압 동특성 해석)

  • Jeong, Min-Ji;Hwang, Jai-Hyuk;Bae, Jae-Sung;Kwon, Jun-Yong
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.43 no.11
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    • pp.963-970
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    • 2015
  • In this study, the pressurization characteristics of the small piezoelectric hydraulic pump for a brake system has been analyzed through modeling the full hydraulic pump components; the pump chamber, check valve, pump load, pump drive controller etc. To analyze the pressurization characteristics, the process of charging pressure in the chamber with stacked-layer piezoelectric actuator were firstly modeled. Secondly, the flow coefficient of the check valve in terms of valve opening has been calculated after computational fluid dynamics analysis, such as the pressure distribution around check valve and the flow rate, was conducted. Also the pump driving controller, which controls the input voltage to the actuator, was designed to make the load pressure follow the input pressure command. The simulation results find that it takes about 0.03ms to reach the operating load pressure required for the braking system. The simulation result was also verified through comparison to the result of the pump performance test.

Analysis of Pressure Relief Valve Considering Interaction between Valve Stem Motion and Flow (압력 릴리프 밸브 스템부 운동 및 유동 연계해석 기법)

  • Cho, Nam-Kyung;Shin, Dong-Soon;Han, Sang-Yeop;Kim, Young-Mog
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2007.04a
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    • pp.121-127
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    • 2007
  • Direct acting pressure relief valve applicable to propellant tank of launch vehicle is modeled in this study The flow resistance of the partially opened valve is modeled as a function of the distance of the valve stem from the resting position. The position of the valve varies transiently as a function of its mass, the spring force, sliding friction, and the pressure differential. Choking at valve throat and compressibility are considered for the analysis. This study presents systematic analysis method for pressure relief valve applicable to propellant tank of liquid rocket. The results shows transient flow resistance caused by stem motion and the importance of choking at valve throat for pressure relief valve design.

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