• Title/Summary/Keyword: 거동예측

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Estimation of Sound Pressure from Vibration Signals on a Flat Plate and Experiment (진동 신호를 이용한 평판의 음압 분포 예측)

  • Kim, Kwan-Ju;Choi, Sung-Kwon
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2000.06a
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    • pp.340-345
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    • 2000
  • 진동하는 구조물의 음향 방사 예측에는 키르히호프-헬름홀쯔 적분 방정식에 근본을 둔 경계 요소 해석이 널리 사용된다. 이 경계 요소 해석은 익히 알고 있듯이 구조물의 동적 거동이 정량적으로 표현될 수 있는 경우는 매우 높은 정확도의 예측 결과를 제공한다. 그러나 실제 현상에서 접할 수 있는 복잡한 구조물의 음향 방사 예측에는 많은 변수들로 인해 예측의 정확도가 감소됨은 확실하다. 다른 방법으로는 실험을 통한 임의의 음장 예측 방법인 근음장 음향 홀로그래피(nearfield acoustical holography) 방법을 들 수 있다. 이 방법은 실제로 발생되는 음향 방사로부터 마이크로폰을 이용하여 홀로그램면의 음압 또는 속도를 측정하고 키르히호프-헬름홀쯔 적분 방정식에 적용하여 임의의 홀로그램면에 투사(mapping)시켜 음장을 예측하는 방법이다. 근음장 음향 홀로그래피는 탁월한 정확성을 갖고 있으나, 측정의 복잡성과 홀로그램면을 형성하기 위한 많은 이산점(절점)의 필요성 등의 단점을 갖고 있다. 본 논문에서는 또 다른 음장 예측 방법인 실험의 장점과 유한 요소 해석의 장정을 복합시킨 모드 확장 방법(modal expansion method)을 사용하여 단순 구조물인 평판의 진동에 의한 음장을 예측해 보았다. 모드 확장 방법은 구조물의 동적 거동은 모드의 선형 조합으로 표현될 수 있다는 것에 그 원리를 둔다. 본 논문은 단순 평판을 대상으로 유한 요소 해석으로 구한 모드 정보와 실험에 의해 얻은 입의 가진 주파수에 대한 진동 표면의 속도 분포를 조합하여 속도 경계 조건을 구성, 경계 요소 해석으로 음장 예측을 수행하였으며 모드 확장 방법을 사용함에 있어 고려해야할 몇 가지 사항에 대해 다루었다.

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Constitutive Modeling for Resilient Behavior of Granular Materials under Repeated Loading (반복하중을 받는 입상재료의 회복탄성거동에 관한 구성모델)

  • Rhee, Suk Keun
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.14 no.4
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    • pp.827-838
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    • 1994
  • Numerous pavement response models rely on constitutive relationships to describe the response of granular materials. In this study, a nonlinear elastic constitutive model which is a function of bulk stress and octahedral shear stress is proposed to describe the resilient behavior of thick granular base courses under flexible airfield pavements. Special features of this model are its accuracy to predict the nonlinear resilient behavior, its simplicity to determine the material constants and its ability to model the secondary effect of decreasing the resilient modulus due to shear effects. In laboratory tests, the nonlinear resilient behavior of granular materials is investigated and values of resilient moduli are determined to provide data for verifying the proposed model. It is found that the resilient modulus is much more dependent on the states of stresses in terms of bulk stress and deviator stress than any other factors. Result of comparison shows that predicted values of resilient moduli are in good agreement with the measured values indicating that the proposed model is suitable to describe the nonlinear resilient behavior of the granular material with wide range of stress states which meet in airfield pavements.

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Effect of soil Venting on Dissolution Potential of Gasoline Components in Contaminated Soil : 2. Modeling Approach (Soil Venting이 오염토양중 가솔린 성분의 용출성에 미치는 영향: 2. 모델링 접근)

  • 염익태;이상현;허상철;안규홍
    • Journal of Korea Soil Environment Society
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    • v.3 no.3
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    • pp.11-20
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    • 1998
  • The effects of soil venting on the leaching potential of residual gasoline were characterized by applying a simple multi-component volatilization/dissolution model based on Raoult's law. The validity of Raoult's law in describing dissolution of gasoline was evaluated separately using both pure gasoline and gasoline contaminated soil. The aqueous concentrations of gasoline components equilibrated with pure gasoline could be described by Raoult's law within one order of magnitude, regardless of the composition of the gasoline. The leaching concentrations from contaminated soil could be well predicted at a relatively high gasoline concentration in soil. However, after 93.5% removal of gasoline by venting, the calculated values were higher than the experimental values by 50∼100%. A model involving multi-component evaporation and dissolution was applied and the results were compared with the experimental values. Possible causes of the discrepancy between the predicted values and experimental values were given.

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Prediction of Thermo-mechanical Behavior for CNT/epoxy Composites Using Molecular Dynamics Simulation (분자동역학 시뮬레이션을 이용한 CNT/에폭시 복합재의 열기계적 거동 예측)

  • Choi, Hoi Kil;Jung, Hana;Yu, Jaesang;Shin, Eui Sup
    • Composites Research
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    • v.28 no.5
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    • pp.260-264
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    • 2015
  • In this paper, molecular dynamics (MD) simulation was carried to predict thermo-mechanical behaviors for carbon nanotube (CNT) reinforced epoxy composites and to analyze the trends. Total of six models having the volume fractions of CNT from 0 to 25% in epoxy were constructed. To predict thermal behaviors, temperature was increased constantly from 300 to 600 K, and the glass transition temperature ($T_g$) and coefficient of thermal expansion (CTE) analyzed using the relationship between temperature and specific volume. The elastic moduli that represented to the mechanical behaviors were also predicted by constant strain. Additionally, the effects of functionalization of CNT on mechanical behaviors of composite were analyzed. Models were constructed to represent CNTs functionalized by nitrogen doping and COOH groops, and interfacial behaviors and elastic moduli were analyzed. Results showed that the agglomerations of CNTs in epoxy cause by perturbations of thermo-mechanical behaviors, and the functionalization of CNTs improved the interfacial response as well as mechanical properties.

Time-Dependent Behavior Analysis of Pre-Tensioned Members Using High-Performance Concrete(HPC) (고성능 콘크리트(HPC)를 사용한 프리텐션 부재의 시간의존거동 해석)

  • Nam, Yoo-Seok;Cho, Chang-Geun;Park, Moon-Ho
    • Journal of the Korea Concrete Institute
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    • v.18 no.4 s.94
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    • pp.479-487
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    • 2006
  • This paper deals with a research about the time-dependent behavior analysis for pre-tensioned high-performance concrete(HPC) members. By improving AASHTO-LRFD(2004) method for predicting the creep and shrinkage of normal concrete, and the relaxation of prestressing tendon, a time-dependent behavior analysis of high-performance concrete structures has been introduced. Two methods, the step-function method and the time-step method have been incorporated in the time-dependent analysis. The developed program can predict the initial and time-dependent losses of prestressing forces and the deflections of high-performance concrete structures. The present model has been verified by comparing with the experimental results from the test of time-dependent behaviors of pre-tensioned members using high-performance concrete. From this, the current model gives good relations with the experimental results, but the AASHTO method is not good for the prediction of time-dependent behaviors of high-performance concrete members.

Numerical Modeling of Residual Behavior of Fire-Damaged Reinforced Concrete Interior Columns (화해를 입은 철근콘크리트 내부기둥의 잔존거동 수치해석 모델)

  • Lee Chadon;Shin Yeong-Soo;Lee Seung-Whan;Lee Chang-Eun
    • Journal of the Korea Concrete Institute
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    • v.17 no.6 s.90
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    • pp.893-902
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    • 2005
  • Reasonable prediction of residual capacity of fire-damaged reinforced columns is important for both the safety measurement and the rehabilitation of the reinforced concrete structures suffered from exposure to extensive fire. In order to predict the residual behavior of fire-damaged reinforced concrete columns, its predictive model must be able to take into account the amount of heat transferred into the column, the level of deterioration of constituent materials and various column geometries. The numerical model presented in this research includes all these factors. The model has been shown to reasonably predict the residual behavior of fire-damaged columns. Parametric studies were performed using this model for the effects of cover thickness, exposure time to fire and column geometries on the residual behavior of reinforced concrete columns. It was found that serious damage on the residual capacity of column resulted from a longer exposure time to fire but only marginal differences from other factors.

Experimental and Analytical Study of the Dynamic Behavior of a Polyurethane Spring Restoring Disk Bearing (폴리우레탄 스프링 복원형 디스크 받침의 동적거동에 대한 실험 및 해석적 연구)

  • Park, Hyung-Ghee;Lee, You-In;Jung, Dae-Yu
    • Journal of the Earthquake Engineering Society of Korea
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    • v.15 no.2
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    • pp.61-69
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    • 2011
  • In this paper, the factors affecting the dynamic characteristics of a polyurethane spring restoring disk bearing are analysed to predict the dynamic behavior of the bearing. The prediction results and the test results are compared. The Young's modulus of the polyurethane spring, which varies according to strain of spring and the friction coefficient, of PTFE (PolyTetraFluoroEthylene), which varies according to the velocity and pressure of PTFE, are considered as the factors influencing the dynamic characteristics. W-PTFE virgin products are used and polyurethane springs are produced for the tests. The equation related to changing the friction coefficient and the modulus of elasticity are obtained through an inverse estimation of the test results. The estimation results, considering the factors affecting the dynamic characteristics, simulate the test results more appropriately than the estimation without the consideration of those factors.

Study on numerical analysis of driftwood generation and behavior by tsunami flow (쓰나미에 의한 유목의 발생과 거동의 수치해석적 연구)

  • Kang, Tae Un;Jang, Chang-Lae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.66-66
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    • 2021
  • 2011년에 일본 도호쿠 지방 태평양 해역에서 규모 9.0의 지진이 발생하여 거대한 쓰나미가 일본 본토 해안을 침수시켰다. 이로 인해, 정확한 피해규모가 파악되기 어려울 정도로 막대한 인명과 재산피해를 입게 되었다. 센다이지역의 경우 쓰나미로 인해 해안에 위치한 약 3.8 평방킬로미터의 방풍림이 모두 전복되었고 일부는 유목이 되어 쓰나미와 함께 내륙으로 흘러들어가 곳곳에 퇴적되어 농지를 훼손하고 가옥에 피해를 주었다. 따라서, 본 연구는 유목의 발생과 흐름에 따른 거동을 수치적으로 분석하여, 폭우나 쓰나미와 같은 거대흐름과 산지와 방풍림 등에서 발생하는 유목의 발생과 거동과정을 예측하고, 흐름과 유목 거동에 따른 피해지역을 선별할 수 있는 방법을 구축하기 위한 초기단계로서, 이를 위해 유목의 발생과정의 역학적 모델링을 수치모듈에 적용하였고 이를 활용하여 수치모의를 수행하였다. 흐름분석을 위해 쓰인 모형은 홍수범람 모형인 Nays2D Flood 이며 천수방정식을 기본으로 한다. 쓰나미의 흐름은 해안가의 방풍림지역을 상류단 경계조건으로 하여 발생 당시 관측된 수심변화를 본 모형의 상류단 경계조건으로 입력하였다. 상류단 경계조건에서 쓰나미의 유속은 수심에 따른 파속으로 계산하였다. 본 연구에서는 또한 유목의 발생과 흐름거동을 기존에 개발된 입자법 기반의 유목동역학모형을 활용하여 수치적으로 모델링 하였다. 유목은 유연성이 없는 원주형 강체로 가정하였고 초기설정으로는, 방풍림지역에 30만개의 유목이 하상의 수직방향으로 배치되어있는 것으로 가정하였다. 여기서, 본 연구에서는 쓰나미가 발생하면 흐름에 따른 항력으로 인해 수직방향으로 배치된 유목이 부러지며, 흐름과 함께 흘러가는 현상을 모델링하였다. 본 연구는 폭우나 쓰나미와 같은 거대흐름으로 인해 발생할 수 있는 유송잡물과 유목의 거동을 예측분석하는 기초연구자료로 활용될 수 있으며, 더 나아가 유목의 발생과정까지 수치적으로 재현하는 모델링을 수행하였기 추후에, 산지와 하천에서 발생할 수 있는 유송잡물의 발생과 연행 과정을 보다 세부적으로 예측할 수 있는 기초방법론으로 쓰일 수 있을 것으로 판단된다.

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Prediction of Compressive Behavior of FRP-Confined Concrete Based on the Three-Dimensional Constitutive Laws (3차원 구성관계를 고려한 FRP-구속 콘크리트의 압축거동 예측모델)

  • Cho Chang-Geun;Kwon Min-ho
    • Journal of the Korea Concrete Institute
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    • v.16 no.4 s.82
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    • pp.501-509
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    • 2004
  • The proposed model can predict the compressive behaviors of concrete confined with fiber reinforced polymer (FRP) jacket. To model confining concrete by FRP jackets, the hypoelasticity-based constitutive law of concrete In tri-axial stress states has been presented. The increment of strength of concrete has been determined by the failure surface of concrete in tri-axial states, and its corresponding peak strain is computed by the strain enhancement factor that is proposed in the present study, Therefore, the newly proposed model is a load-dependent confinement model of concrete wrapped by FRP jackets to compare the previous models which are load-independent confinement models. The behavior of FRP jackets has been modeled using the mechanics of orthotropic laminated composite materials in two-dimension. The developed model is implemented into the incremental analysis of compressive tests. The verification study with several different experiments shows that the model is able to adequately capture the behavior of the compression test by including better estimations of the axial responses as well as the lateral response of FRP-confined concrete cylinders.

Adjustment of Creep Coefficient Using Sensitivity Analysis (민감도 해석을 통한 크리프 계수 오차 보정)

  • Park, Jong-Bum;Park, Bong-Sik;Chang, Sung-Pil
    • Proceedings of the Korea Concrete Institute Conference
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    • 2008.04a
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    • pp.293-296
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    • 2008
  • Creep and shrinkage in concrete structures are very complex phenomena in which various uncertainties exist with regard to inherent material variations as well as modeling uncertainties. The creep and shrinkage models which are capable of predicting long-term structural response are specified in design codes such as ACI 209-92, CEB-FIP Model Code 90, etc. However, in the prediction formulas of creep and shrinkage effects of concrete, various kinds of parameters are involved to express the characteristics of concrete under consideration (i.e. the proportion of concrete, the shape of the structure, relative humidity, etc.). And the predicted values from each design code under same environment differ from each other. To predict the characteristics of concrete, the long-term experiments of creep and shrinkage is necessary but this is not suitable for a construction field. In this study, adjustment method of creep coefficient using sensitivity analysis is proposed to predict creep coefficient of concrete exactly and it is checked up on the validity of the predicting method by comparing to the assumed value and predicted one.

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