• 제목/요약/키워드: domain dynamics

검색결과 470건 처리시간 0.026초

Investigation of a fiber reinforced polymer composite tube by two way coupling fluid-structure interaction

  • Daricik, Fatih;Canbolat, Gokhan;Koru, Murat
    • Coupled systems mechanics
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    • 제11권4호
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    • pp.315-333
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    • 2022
  • Fluid-Structure Interaction (FSI) modeling is highly effective to reveal deformations, fatigue failures, and stresses on a solid domain caused by the fluid flow. Mechanical properties of the solid structures and the thermophysical properties of fluids can change under different operating conditions. In this study, we investigated the interaction of [45/-45]2 wounded composite tubes with the fluid flows suddenly pressurized to 5 Bar, 10 Bar, and 15 Bar at the ambient temperatures of 24℃, 66℃, and 82℃, respectively. Numerical analyzes were performed under each temperature and pressure condition and the results were compared depending on the time in a period and along the length of the tube. The main purpose of this study is to present the effects of the variations in fluid characteristics by temperature and pressure on the structural response. The variation of the thermophysical properties of the fluid directly affects the deformation and stress in the material due to the Wall Shear Stress (WSS) generated by the fluid flow. The increase or decrease in WSS directly affected the deformations. Results show that the increase in deformation is more than 50% between 5 Bar and 10 Bar for the same operating condition and it is more than 100% between 5 Bar and 15 Bar by the increase in pressure, as expected in terms of the solid mechanics. In the case of the increase in the temperature of fluid and ambient, the WSS and Von Mises stress decrease while the slight increases of deformations take place on the tube. On the other hand, two-way FSI modeling is needed to observe the effects of hydraulic shock and developing flow on the structural response of composite tubes.

신륵사 다층전탑의 구조해석에 대한 연구 (Analytical Study of Static and Dynamic Responses of Multi-story Brick Pagoda of Silleuksa Temple)

  • 이가윤;이성민;이기학
    • 한국공간구조학회논문집
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    • 제22권3호
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    • pp.33-40
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    • 2022
  • Recently, cultural heritages in South Korea gain many interests of restoration and preservation from the government since many of that have been severely damaged during earthquakes. Many previous studies in both terms of experimental and analytical approaches have been done to examine structural behavior and decide appropriate methods of preservation. Being motivated by such researches, this research aims to investigate a religious stone pagoda dated back to the Goryeo Dynasty in Korea. The structure consists of a granite stone foundation and baked bricks, which resembles the shape of traditional pagodas. In order to examine the structural behavior of the pagoda, an analytical model is implemented using ANSYS, a comprehensive engineering simulation platform. For the time history analysis of the pagoda, several earthquake excitations are chosen and input to simulation modeling. Seismic response of the tower such as time domain, natural frequency, modal shapes and peak acceleration measured at each layer are presented and discussed. In addition, the amplification ratio of the tower is calculated from the accelerations of each layer to determine tower stability in accordance with Korean seismic design guide. The determination and evaluation of status and response of the brick tower by simulation analysis play an important role in the preservation of history as well as valuable architectural heritages in South Korea.

도시 제네바에서의 칼빈의 종교개혁과 현대 기독교의 도시 선교적 방향성 모색 (Calvin's Reformation in Geneva and the Urban Missional Direction of Christianity Today)

  • 봉원영
    • 한국콘텐츠학회논문지
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    • 제21권11호
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    • pp.436-449
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    • 2021
  • 본 연구는 칼빈이 도시 제네바에서 진행했던 종교개혁의 특징들을 살펴보고 오늘날 기독교가 도시적 환경에서 기독교의 가치를 드러내기 위해 어떠한 효율적 기능을 감당할 수 있을 것인지를 살펴보는 것을 목적으로 한다. 칼빈의 종교개혁은 공공의 영역에서 교회의 분명한 자리와 역할을 마련해 주었다. 또한, 칼빈의 종교개혁의 과정에서는 항상 빈민이나 여성 등과 같은 당시의 사회적 약자들에 관한 관심과 복지적 실천이 뒤따랐다. 이러한 이해에서 본 연구는 오늘날 현대교회가 도시적 환경에서 실천할 수 있는 다음의 적용점들을 제시했다. 첫째로, 교회는 도시적 환경이 가지는 다양성과 유동성, 역동성을 분명히 이해하고 성경이 지지하는 다양한 상황적 적용을 통한 변화를 시도할 수 있어야 한다. 둘째, 교회의 선교적 접근은 믿음-소속감 프로세스에서 소속감-믿음으로 전환되어야 한다. 셋째, 친숙한 전통적 교회에서 새로운 사회적 현실로서의 교회로의 전환이 필요하며 지역사회 공동체가 가지는 관심사와 분위기에 대해 분명히 이해하고 그것에 보조를 맞추는 노력이 필요하다. 그리고 마지막으로, 현대의 교회는 이전보다도 더욱 새로운 생태학적 민감성을 유지할 필요가 있다.

대형 비행갑판을 갖는 함정과 풍동시험 결과를 활용한 고신뢰도 함정 Airwake 예측 (High-Fidelity Ship Airwake CFD Simulation Method Using Actual Large Ship Measurement and Wind Tunnel Test Results )

  • 정진덕;조태환;이승훈;최재훈;이학민
    • 대한조선학회논문집
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    • 제60권2호
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    • pp.135-145
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    • 2023
  • Developing high-fidelity Computational Fluid Dynamics (CFD) simulation methods used to evaluate the airwake characteristics along a flight deck of a large ship, the various kind of data such as actual ship measurement and wind tunnel results are required to verify the accuracy of CFD simulation. Inflow velocity profile at the bow, local unsteady flow field data around the flight deck, and highly reliable wind tunnel data which were measured after reviewing Atmospheric Boundary Layer (ABL) simulation and Reynolds Number effects were also used to determine the key parameters such as turbulence model, time resolution and accuracy, grid resolution and type, inflow condition, domain size, simulation length, and so on in STAR CCM+. Velocity ratio and turbulent intensity difference between Full-scale CFD and actual ship measurement at the measurement points show less than 2% and 1.7% respectively. And differences in velocity ratio and turbulence intensity between wind tunnel test and small-scale CFD are both less than 2.2%. Based upon this fact, the selected parameters in CFD simulation are highly reliable for a specific wind condition.

특허정보를 활용한 디지털 트윈 기술 동향 분석 및 기술융합기회 발굴 (Exploring Technology Development Trends and Discovering Technology Convergence Opportunities in the Digital Twin using Patent Information)

  • 유경영;송지훈
    • 한국산업융합학회 논문집
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    • 제26권3호
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    • pp.471-481
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    • 2023
  • Digital twin is considered as a key technology of industry 4.0, thus being essential for the future of industrial production. Despite the significance, a systematic analysis of its technological landscape is lacking. This study aims to investigate the technological development trends and newly emerging technological convergence opportunities in the domain of digital twin by exploiting patent information derived from U SPTO. For this purpose, this study visualized and predicted the convergence dynamics among patent classification codes by adopting patent co-classification analysis and link prediction approach. The findings show that the number of digital twin-related patent applications has increased significantly since 2018. The CPC code G06F showed the highest eigenvector centrality, while G05B was characterized by highest betweenness centrality. According to the predictive model, 41 novel links were revealed, acting as potential technology convergence opportunities. These links were then categorized into 11 different domains. The most dominant category was "digital data processing and artificial intelligence", which could play a foundational role in the diffusion of digital twin technology. The presence of digital twin technology is dominant in manufacturing, but its applications are expected to expand, including "climate change", "healthcare" and "aerospace engineering". The derived insights can support R&D managers and policy makers in formulating R&D strategies and directing future R&D investment decisions.

대류식 순환장치의 저수지수체 유동특성 및 수질영향 (Study on Effect of Convection Current Aeration System on Mixing Characteristics and Water Quality of Reservoir)

  • 이요상;이광만;고덕구;염경택
    • 생태와환경
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    • 제42권1호
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    • pp.85-94
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    • 2009
  • 용담댐 저수지에 설치된 대류식 순환장치에 대한 현장 조사 결과에 의하면 수평방향의 직접영향권은 성층 강도에 큰 영향 없이 반지름 $7{\sim}10m$에 이르는 것으로 조사 되었으며 수직방향으로는 성층강도에 따라 또는 가동기간에 따라 조금씩 달라지는 것으로 나타났다. 즉 가동시간이 길어짐에 따라 하층에서 올라온 수온이 낮은 수체는 보다 깊게 먼 곳까지 이동하는 것으로 나타났으나 성층을 깨지는 못하는 것으로 나타났다. 2008년 현장에서 실측 조사한 결과와 CFD모사 결과에 의하면 이런 조건에서 한 달을 가동하면 하층에서 올라온 수체가 대류식 장치 주변으로 수심 8 m, 지름 120 m의 수층을 이루게 되며 50일을 가동하면 수심 10 m, 지름 130m의 수층을 이루는 것으로 평가되었다. 대류식 순환장치가 설치된 지역에 대한 CFD모사를 하기 전에 이 지역의 흐름특성을 평가하였다. 대상 지역의 흐름은 연중 크게 3가지로 구분되었으며 각각의 경우 유량은 다르지만 저수지 수체의 흐름 속도는 모두 $0.05{\sim}1.5cm\;sec^{-1}$로 나타나 CFD모사시에 저수지 흐름을 고려하지 않아도 될 것으로 평가되었다. CFD를 이용한 수체거동 모사결과 순환장치로부터 3m지점에서의 유속은 $0.25m\;sec^{-1}$를 나타냈고, 5m지점에서는 $0.2m\;sec^{-1}$를 나타냈다. 현장 실측 결과와 비교시 유속은 모사 결과가 조금 크게 산정되는 것으로 나타났으나 향후 보다 많은 자료를 확보하여 비교해 보아야 할 것으로 판단되었다. 반면 영향범위는 반경방향으로 10 m지점까지는 직접영향을 받고, 그 보다 먼 지점은 간접영향권임을 나타내고 있어 이는 모사결과와 실측치 간에 일치하는 것으로 나타났다. 수면에서의 온도분포는 순환장치로부터 분출된 저온의 물이 반지름 약 10 m지점까지는 수온변화에 영향을 미치는 직접영향권인 것을 알 수 있다. 이상과 같이 모사 결과는 현장에서 실측한 것과 유사한 결과를 나타내므로 결과의 신뢰성이 높은 것으로 판단되었다.

펄스 corona 배향된 비선형광학 고분자박막의 제2 고조파발생 (Second harmonic generation of pulsed corona - poled nonlinear optical polymer films)

  • 김준수;이종하;이황운;김상열;원영희
    • 한국광학회지
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    • 제13권4호
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    • pp.356-362
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    • 2002
  • 비선형광학(NLO) 곁가지형 고분자계 N-(4-nitrophenul)-(L)-prolinol-poly (p-phenylene terephthalates)로 제작된 박막의 분자 배향거동을 제2 고조파발생(SHG)의 비선형광응답을 사용하여 연구하였다. 새로운 펄스 corona 배향 방법으로 NLO 발색단과 고분자 줄기를 비중심대칭 구조로 배향시켜 SHG 신호를 발생시켰다. 유리전이온도 70$^{\circ}C$를 중심으로 25$^{\circ}C$에서 80$^{\circ}C$까지 온도영역에서 반복율을 0.5 ㎑에서 10 ㎑까지 변화시키면서 인가한 펄스 고압으로 corona 배향한 결과로 곁가지 발색단과 고분자 주사슬이 스스로 재 정렬하여 형성한 구역구조를 원자간력 현미경(AFM)으로 관측하였다. 펄스 corona 전압 인가로 NLO 발색단 배향도가 증가되고, 동시에 고분자박막의 가시적손상을 획기적으로 줄이면서 SHG 신호가 증대되었으며 배향 후 이완거동도 개선되었다. 이 새로운 펄스 corona 배향 실험으로 NLO 발색단 및 고분자 주사슬이 배향과정에서 비등방으로 재배열하는 현상을 in situ로 입증할 수 있었다.

Dynamics and Liver Disease Specific Aspects of Quality of Life Among Patients with Chronic Liver Disease in Yunnan, China

  • Che, Yan-Hua;You, Jing;Chongsuvivatwong, Virasakdi;Li, Li;Sriplung, Hucha;Yan, Yuan-Zhi;Ma, Si-Jia;Zhang, Xiaoli;Shen, Ting;Chen, He-Min;Rao, Shao-Feng;Zhang, Ru-Yi
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권12호
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    • pp.4765-4771
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    • 2014
  • Background: Patients with chronic liver diseases (CLD) may have compromised health related quality of life (HRQoL). Hepatitis B virus (HBV) infection has long been the leading cause of CLD including liver cancer and cirrhosis. Knowledge on different symptom profiles of CLD should help in development of comprehensive treatment and patient care plans. Objective: To access the facets of HRQoL in chronic liver diseases throughout their spectrum of severity. Materials and Methods: A cross-sectional study was conducted in the First Affiliated Hospital of Kunming Medical University in Yunnan Province of China. Both out- and inpatients undergoing treatment protocols for different HBV related liver disease states were consecutively collected from December 2012 to June 2013. ANOVA was used to compare the mean scores of EQ-5D and chronic liver disease questionnaire (CLDQ) among 5 disease groups. The relationship between demographic variables predicting global CLDQ scores and the domains of CLDQ was analysed. Results: A total of 1040 patients including 520 without complications, 91 with compensated cirrhosis, 198 with decompensated cirrhosis, 131 with HCC and 100 with liver failure were recruited. All domains of CLDQ, the means of EQ-5D value and EQ VAS exhibited significant decline with worsening of disease severity from uncomplicated HBV to liver failure. The multivariate regression demonstrated the reduction of mean scores of CLDQ domain at advanced stage. Patients with liver failure and HCC had more HRQoL impairment than other disease states. No effect of patient gender was found. Patient age was associated with 'fatigue' and 'worry' domains (p=0.006; p=0.004) but not with other domains and global scores of CLDQ and ED-5D. Conclusions: The HRQoL in chronic hepatitis B patients is greatly affected by disease states. Care for HBV-related diseases should consider not only the outcomes of treatment strategies but also improvement in patient wellbeing.

기상 조건과 매립 조건이 비산 먼지 발생에 미치는 영향 (Effects of Meteorological and Reclaiming Conditions on the Reduction of Suspended Particles)

  • 최재원;이영수;김재진
    • 한국환경과학회지
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    • 제19권11호
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    • pp.1423-1436
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    • 2010
  • The effects of meteorological and reclaiming conditions on the reduction of suspended particles are investigated using a computational fluid dynamics (CFD) model with the k-$\varepsilon$ turbulence closure scheme based on the renormalization group (RNG) theory. Twelve numerical experiments with different meteorological and reclaiming conditions are performed. For identifying the meteorological characteristics of the target area and providing the inflow conditions of the CFD model, the observed data from the automatic weather station (AWS) near the target area is analyzed. Complicated flow patterns such as flow distortion, horse-shoe vortex, recirculation zone, and channeling flow appeared due to the topography and buildings in the domain. Specially, the flow characteristics around the reclamation area are affected by the reclaiming height, reclaiming size and windbreak height. Reclaiming height affected the wind speed above the reclaiming area. Windbreak induces more complicated flow patterns around the reclaiming area as well as within the reclaiming area. In front of the windbreak, flow is distorted as it impinges on the windbreak. As a result, upward flow is generated there. Behind the windbreak, a secondary circulation, so called, a recirculation zone is generated and flow is reattached at the end of the recirculation zone (reattachment point). At the lower part of the recirculation zone, there is a reverse flow toward the windbreak. Flow passing to the reattachment point starts to be recovered. Total amounts of suspended particles are calculated using the frictional and threshold frictional velocities, erosion potential function, and the number of surface disturbance. In the case of a 10 m-reclaiming and northerly wind, the amount of suspended particles is largest. In the presence of 5 m windbreak, the friction velocity above the reclaiming area is largely reduced. As a result, the total amount of the suspended particles largely decreases, compared to the case with the same reclaiming and meteorological conditions except for the windbreak The calculated suspended particle amounts are used as the emission rate of the dispersion model simulations and the dispersion characteristics of the suspended particles are analyzed.

쐐기 및 원추 주위의 불안정한 충격파 유도연소 해석 (Analysis of Unstable Shock-Induced Combustion over Wedges and Conical Bodies)

  • Jeong-Yeol Choi
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2003년도 제20회 춘계학술대회 논문집
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    • pp.32-33
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    • 2003
  • Mechanism of a periodic oscillation of shock-induced combustion over a two- dimensional wedges and axi-symmetric cones were investigated through a series of numerical simulations at off-attaching condition of oblique detonation waves(ODW). A same computational domain over 40 degree half-angle was considered for two-dimensional and axi-symmetric shock-induced combustion phenomena. For two-dimensional shock-induced combustion, a 2H2+02+17N2 mixture was considered at Mach number was 5.85with initial temperature 292 K and initial pressureof 12 KPa. The Rankine-Hugoniot relation has solution of attached waves at this condition. For axi-symmetric shock-induced combustion, a H2+2O2+2Ar mixture was considered at Mach number was 5.0 with initial temperature 288 K and initial pressure of 200 mmHg. The flow conditions were based on the conditions of similar experiments and numerical studies.[1, 3]Numerical simulation was carried out with a compressible fluid dynamics code with a detailed hydrogen-oxygen combustion mechanism.[4, 5] A series of calculations were carried out by changing the fluid dynamic time scale. The length wedge is varied as a simplest way of changing the fluid dynamic time scale. Result reveals that there is a chemical kinetic limit of the detached overdriven detonation wave, in addition to the theoretical limit predicted by Rankine-Hugoniot theory with equilibrium chemistry. At the off-attaching condition of ODW the shock and reaction waves still attach at a wedge as a periodically oscillating oblique shock-induced combustion, if the Rankine-Hugoniot limit of detachment isbut the chemical kinetic limit is not.Mechanism of the periodic oscillation is considered as interactions between shock and reaction waves coupled with chemical kinetic effects. There were various regimes of the periodicmotion depending on the fluid dynamic time scales. The difference between the two-dimensional and axi-symmetric simulations were distinct because the flow path is parallel and uniform behind the oblique shock waves, but is not behind the conical shock waves. The shock-induced combustion behind the conical shockwaves showed much more violent and irregular characteristics.From the investigation of characteristic chemical time, condition of the periodic instability is identified as follows; at the detaching condition of Rankine-Hugoniot theory, (1) flow residence time is smaller than the chemical characteristic time, behind the detached shock wave with heat addition, (2) flow residence time should be greater than the chemical characteristic time, behind an oblique shock wave without heat addition.

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