• 제목/요약/키워드: Macroscopic Simulation

검색결과 101건 처리시간 0.026초

이산 사건 모델링 및 시뮬레이션을 이용한 교통 흐름 분석 방법론 (Traffic Flow Analysis Methodology Using the Discrete Event Modeling and Simulation)

  • 이자옥;지승도
    • 대한교통학회지
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    • 제14권1호
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    • pp.101-116
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    • 1996
  • Increased attention has been paid in recent years to the need of traffic management for alleviating urban traffic congestion. This paper presents a discrete event modeling and simulation framework for analyzing the traffic flow. Traffic simulation models can be classified as being either microscopic and macroscopic models. The discrete event modeling and simulation technique can be basically employed to describe the macroscopic traffic simulation model. To do this, we have employed the System Entity Structure/Model Base (SES/MB) framework which integrates the dynamic-based formalism of simulation with the symbolic formalism of AI. The SES/MB framework supports to hierarchical, modular discrete event modeling and simulation environment. We also adopt the Symbolic DEVS (Discrete Event System Specification) to developed the automated analysis methodology for generating optimal signal light policy. Several simulation tests will demonstrates the techniques.

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다상 유체 시스템의 다중 스케일 시뮬레이션 기법에 관한 연구 (Development of Multiscale Simulation Technique for Multiphase Fluid System)

  • 한민섭
    • 대한기계학회논문집B
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    • 제34권6호
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    • pp.569-577
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    • 2010
  • 다상 유체 시스템에 적용할 수 있는 다중스케일 입자 시뮬레이션 기법을 개발하였다. 거시 모델과 미시모델이 만나는 경계영역에서 세가지로 구별되는 기능을 수행하도록 하였다. 먼저, 기상과 액상을 분리하여 연결하기 위해 벽을 설정하였다. 또 경계영역을 근처에서 경계의 위치를 측정하고 이것에 벽의 각도와 위치가 연동하여 접촉각 값을 미시모델에서 거시모델로 전달하게 하였다. 마지막으로, 입자의 삽입과 제거를 통해 경계영역의 질량과 온도를 거시적 조건에 맞추도록 하였다. 이 알고리즘들을 적용한 완전습윤과 부분습윤시스템들은 좋은 결합 결과를 보였다.

STATUS AND PERSPECTIVE OF TWO-PHASE FLOW MODELLING IN THE NEPTUNE MULTISCALE THERMAL-HYDRAULIC PLATFORM FOR NUCLEAR REACTOR SIMULATION

  • BESTION DOMINIQUE;GUELFI ANTOINE;DEN/EER/SSTH CEA-GRENOBLE,
    • Nuclear Engineering and Technology
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    • 제37권6호
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    • pp.511-524
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    • 2005
  • Thermalhydraulic reactor simulation of tomorrow will require a new generation of codes combining at least three scales, the CFD scale in open medium, the component scale and the system scale. DNS will be used as a support for modelling more macroscopic models. NEPTUNE is such a new generation multi-scale platform developed jointly by CEA-DEN and EDF-R&D and also supported by IRSN and FRAMATOME-ANP. The major steps towards the next generation lie in new physical models and improved numerical methods. This paper presents the advances obtained so far in physical modelling for each scale. Macroscopic models of system and component scales include multi-field modelling, transport of interfacial area, and turbulence modelling. Two-phase CFD or CMFD was first applied to boiling bubbly flow for departure from nucleate boiling investigations and to stratified flow for pressurised thermal shock investigations. The main challenges of the project are presented, some selected results are shown for each scale, and the perspectives for future are also drawn. Direct Numerical Simulation tools with Interface Tracking Techniques are also developed for even smaller scale investigations leading to a better understanding of basic physical processes and allowing the development of closure relations for macroscopic and CFD models.

계통교통신호체계에서의 지체특성과 최적신호주기에 관한 연구 (Optimum Chycle Time and Delay Caracteristics in Signalized Street Networks)

  • 이광훈
    • 대한교통학회지
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    • 제10권3호
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    • pp.7-20
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    • 1992
  • The common cycle time for the linded signals is usually determined for the critical intersecion, just because the cpacity of a signalized intersection depends on the cycle time. This may not be optimal since the interactions between the flow and the spatial structure of the route or the area are disregarded in this case. It is common to separate the total delay incurred at signals into two parts, a deterministic or uniform delay and a stochastic or random delay. The deterministic delays and the stochastic delays on the artery particularly related to signal cycle time. For this purpose a microscopic simulation technique is used to evaluate deterministic delays, and a macroscopic simulation technique based on the principles of Markov chains is used to evaluate stochastic delays with over flow queue. As a result of investigating the relations between deterministic delays and cycle time in the various circumstances of spacing of signals and traffic volume. As for stochastic delays the resalts of comparisons of the macroscopic simulation and Newell's approximation with the microscopic simulation indicate that the former is valid for the degree of saturation less than 0.95 and the latter is for that above 0.95. Newell's argument that the total stochastic delay on an arterial is dominated by that at or caused by critical intersection is certified by the simulation experiments. The comprehensive analyses of the values of optimal cycle time with various conditions lead to a model. The cycle time determined by this model shows to be approximately 70% of that calculated by Webster's.

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A multiscale creep model as basis for simulation of early-age concrete behavior

  • Pichler, Ch.;Lackner, R.
    • Computers and Concrete
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    • 제5권4호
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    • pp.295-328
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    • 2008
  • A previously published multiscale model for early-age cement-based materials [Pichler, et al.2007. "A multiscale micromechanics model for the autogenous-shrinkage deformation of early-age cement-based materials." Engineering Fracture Mechanics, 74, 34-58] is extended towards upscaling of viscoelastic properties. The obtained model links macroscopic behavior, i.e., creep compliance of concrete samples, to the composition of concrete at finer scales and the (supposedly) intrinsic material properties of distinct phases at these scales. Whereas finer-scale composition (and its history) is accessible through recently developed hydration models for the main clinker phases in ordinary Portland cement (OPC), viscous properties of the creep active constituent at finer scales, i.e., calcium-silicate-hydrates (CSH) are identified from macroscopic creep tests using the proposed multiscale model. The proposed multiscale model is assessed by different concrete creep tests reported in the open literature. Moreover, the model prediction is compared to a commonly used macroscopic creep model, the so-called B3 model.

Numerical study on the influence of mesomechanical properties on macroscopic fracture of concrete

  • Zhu, W.C.;Tang, C.A.;Wang, S.Y.
    • Structural Engineering and Mechanics
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    • 제19권5호
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    • pp.519-533
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    • 2005
  • The numerical simulations on the influence of mesoscopic structures on the macroscopic strength and fracture characteristics are carried out based on that the concrete is assumed to be a three-phase composite composed of matrix (mortar), aggregate and bond between them by using a numerical code named MFPA. The finite element program is employed as the basic stress analysis tool when the elastic damage mechanics is used to describe the constitutive law of meso-level element and the maximum tensile strain criterion and Mohr-Coulomb criterion are utilized as damage threshold. It can be found from the numerical results that the bond between matrix and aggregate has a significant effect on the macroscopic mechanical performance of concrete.

Modeling and Energy Management Strategy in Energetic Macroscopic Representation for a Fuel Cell Hybrid Electric Vehicle

  • Dinh, To Xuan;Thuy, Le Khac;Tien, Nguyen Thanh;Dang, Tri Dung;Ho, Cong Minh;Truong, Hoai Vu Anh;Dao, Hoang Vu;Do, Tri Cuong;Ahn, Kyoung Kwan
    • 드라이브 ㆍ 컨트롤
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    • 제16권2호
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    • pp.80-90
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    • 2019
  • Fuel cell hybrid electric vehicle is an attractive solution to reduce pollutants, such as noise and carbon dioxide emission. This study presents an approach for energy management and control algorithm based on energetic macroscopic representation for a fuel cell hybrid electric vehicle that is powered by proton exchange membrane fuel cell, battery and supercapacitor. First, the detailed model of the fuel cell hybrid electric vehicle, including fuel cell, battery, supercapacitor, DC-DC converters and powertrain system, are built on the energetic macroscopic representation. Next, the power management strategy was applied to manage the energy among the three power sources. Moreover, the control scheme that was based on back-stepping sliding mode control and inversed-model control techniques were deduced. Simulation tests that used a worldwide harmonized light vehicle test procedure standard driving cycle showed the effectiveness of the proposed control method.

거시-미시 순차적 교통시뮬레이션 방법과 부분상세지구의 동적 O/D추정 (Macroscopic-Microscopic Sequential Traffic Simulation Analysis and Dynamic O/D Estimation for Sub-area)

  • 이진학;김익기;김대현
    • 대한교통학회지
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    • 제32권6호
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    • pp.567-578
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    • 2014
  • 본 연구에서는 거시적 넓은 지역에 대한 교통 분석과 부분상세지구(sub-area)의 교통 분석을 서로 단계적으로 연계하며 상호 교통 환경 변화에 대한 영향을 동시적으로 함께 반영하여 방법을 제안했다. 이와 같은 거시적-미시적 연계 분석을 위해 거시적 네트워크 분석, sub-area analysis, 가구통행실태의 출발시각 자료, 부분상세지구의 경계지점에서 시간대별 관측 링크 교통량 자료를 융합 분석함으로써 부분지구에 대한 동적 O/D 교통량을 추정하는 실무적 방법을 제안하였다. 이렇게 추정된 동적 O/D 교통량을 입력 자료로 하여 부분상세지구에 대해 미시 교통류 시뮬레이션 분석을 실행함으로써 다양한 국소적 지구의 교통정책 분석을 가능하게 하였다. 이와 같은 미시적 동적 분석은 거시적 네트워크 분석으로는 파악할 수가 없었던 대기행렬, 교차로 지체, 차량 간 상충 등의 분석을 가능하게 한다. 따라서 교통정책의 효과를 미세한 교통현상 변화까지 분석이 가능하도록 하였다. 또한 본 연구에서는 실제 사례연구를 통해 거시적-미시적 연계 분석에 의한 부분상세지구 미시교통류 시뮬레이션 결과의 현실 설명력에 대한 검증 분석도 수행하여 미시적 동적 분석의 정책 활용 가능성에 대한 참고적 자료를 제공하였다.

일본내 연구동향 (6편중 제4편) (State-of-the-art of the multi-scale analysis of advanced composite materials by homogenization method)

  • Takano, Naoki
    • Composites Research
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    • 제15권5호
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    • pp.44-52
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    • 2002
  • To study numerically the mechanical behaviors of advanced composite materials considering the microscopic phenomena as well as the macroscopic properties and behaviors, a multi-scale modeling and analysis by the mathematical homogenization method with the help of the finite element method(FEM) are reviewed. The hierarchical modeling strategy and the formulation are briefly described first to give some idea of the multi-scale framework. The latter half of this article focuses on the verification of the multi-scale analysis by the homogenization method in its applications to real advanced materials. The first example is the verification of the predicted macroscopic(homogenized) properties based on the microstructure of porous ceramics. In spite of the complexity of the random microstructure, the error between the predicted and the measured values was only 1%. Next, two applications to the process simulation of fiber reinforced polymer matrix composites are presented. The permeability characteristics are evaluated for sheared weave fabrics for resin transfer molding(RTM) simulation, and the thermoforming of FRTP sheet is analyzed considering the large deformation of the knit structure during the deep-draw forming was verified by comparison with the experimental results.

자율주행차량 도입에 따른 교통 네트워크의 효율성 변화 분석연구 (Exploring the Impacts of Autonomous Vehicle Implementation through Microscopic and Macroscopic Approaches)

  • 육동형;이백진;박준태
    • 한국ITS학회 논문지
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    • 제17권5호
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    • pp.14-28
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    • 2018
  • 차량 통신 및 지능형 교통 시스템의 기술 향상으로 인해 자율 차량이 시장에 서서히 도입될 것으로 예상된다. 본 연구는 자율주행차량이 네트워크 효율성에 미치는 영향을 분석한 것이다. 네트워크의 효율성을 측정하기 위해 이 연구에서는 미시적 및 거시적 시뮬레이션을 결합한 순차적 단계를 적용했다. 미시적 시뮬레이션은 도로에서 자율주행차량의 비율에 의한 용량 변화를 고려하는 반면, 거시적 시뮬레이션은 네트워크 전체의 개선을 식별하기 위해 시뮬레이션 결과를 이용한다. 예상대로, 자율주행차량은 인간의 운전보다 기존 도로 용량을 효율적으로 활용한다. 특히, 고속도로에서 최대 용량 개선은 190.5%로 예상된다. 상당한 용량의 변화는 자율주행차량의 비율이 약 80% 이상일 때 관찰된다. 이러한 개선 사항은 자율주행차량의 보급을 통해 전반적인 네트워크 효율성을 향상시킬 수 있는 거시적 모델로 변환된다. 그러나 본 연구는 자율 주행 차량의 시장 첫 출연이 자유로운 흐름 조건을 보장하지 않는 다는 것을 확인하며, 이는 자율주행차량 시대에 맞는 시스템 최적의 경로 체계의 가능한 필요성을 의미한다.