국내에는 지형적인 조건 또는 그 외의 여러 제약에 따라 줄눈 콘크리트 포장(JCP)을 시공하는 경우가 많았다. JCP는 시공 이후 양생 제로 도포함에도 불구하고 시간이 지남에 따라 부등건조수축이 나타나, 운전자의 승차감과 안정성을 악화시킨다. 이를 해결하기 위해 포장설계 지침을 지속적으로 개정하고 있지만, 부등건조수축으로 인한 민원이 계속 발생하고 있는 실정이다. 본 연구에서는 JCP의 부등건조수축량에 영향을 줄 수 있는 변수를 설정하여 변수에 따른 거동 차이를 보고자 하였다. 3D 유한요소해 석 프로그램 ABAQUS를 이용하여 유한요소법을 통한 해석을 진행하였고, 모델링은 2차로 6 슬래브를 모형화하였다. JCP의 부등건조 수축량에 영향을 주는 슬래브 깊이별 온도변화가 포장설계에 따라 어떻게 변화하는지 고려하기 위하여, 그에 대한 변수로 하부층 종 류의 영향, 슬래브 두께의 영향, 주행차로 다웰바 추가 설치 유무의 영향, 줄눈 간격의 영향을 설정하였다. 기본적인 모델의 유한요소해석 부등건조수축량 결과와 위에서 설정한 변수를 적용하여 만든 모델에 대한 유한요소해석 부등건조수축 량 결과를 각각 도출하였고, 기본 모델 결과와 변수를 적용한 모델 결과를 비교하여 각각의 인자가 어느 정도의 영향을 미치는지 확 인해 보았다. 영향이 큰 인자들을 선별하여 복합적인 변수에 대한 영향을 보고자 하였고, 복합 변수를 적용한 모델의 유한요소해석 부등건조수축 량 결과와 기본 모델의 유항요소해석 부등건조수축량 결과를 비교하여 그 차이가 어느 정도인지 확인하였다. 이에 따라 앞으로 JCP구 간 부등건조수축에 대한 해결을 위해 중점을 두어야 할 인자를 파악할 수 있었으며, 결과를 현장에 적절하게 적용한다면 도로 주행성 과 안전성을 개선할 수 있을 것으로 판단된다. 유한요소해석 결과에 대한 신뢰도를 부여하기 위해 현장 데이터와도 비교 분석하였고, 계절에 따라 약간의 차이는 있었으나, 평균값 과는 유사하여 본 연구의 구조해석 모형이 다양한 조건에 따른 연직변위 발생함에 있어 비교하는데 유용하다고 판단하였다.
Although many attempts have been made to solve the atmospheric diffusion equation, there are many limits that prevent both solving it and its application. The causes of these impediments are primarily due to both the partial differentiation term and the turbulence diffusion coefficient. In consideration of this dilemma, this study aims to discuss the methodology and cases of utilizing a passive air sampler to increase the applicability of atmospheric dispersion modeling. Passive air samplers do not require pumps or electric power, allowing us to achieve a high resolution of spatial distribution data at a low cost and with minimal effort. They are also used to validate and calibrate the results of dispersion modeling. Currently, passive air samplers are able to measure air pollutants, including SO2, NO2, O3, dust, asbestos, heavy metals, indoor HCHO, and CO2. Additionally, they can measure odorous substances such as NH3, H2S, and VOCs. In this paper, many cases for application were introduced for several purposes, such as classifying the VOCs’ emission characteristics, surveying spatial distribution, identifying sources of airborne or odorous pollutants, and so on. In conclusion, the validation and calibration cases for modeling results were discussed, which will be very beneficial for increasing the accuracy and reliability of modeling results.
In this study, numerical modeling on the gas flow and off-gases in the low temperature carbonization furnace for carbon fiber was analyzed. The furnace was designed for testing carbonization process of carbon fibers made from various precursors. Nitrogen gas was used as a working gas and it was treated as an incompressible ideal gas. Three-dimensional computational fluid dynamics for steady state turbulent flow was used to analyze flow pattern and temperature field in the furnace. The off-gas mass fraction and cumulative emission gas of species were incorporated into the CFD analyses by using the user defined function(UDF). As a results, during the carbonization process, the emission of CO2 was the dominant among the off-gases, and tow moving made the flow in the furnace be uniform.
최근, 구조설계 기준 및 평가방법의 전문화로 인하여, 선급 규칙의 통합화가 이뤄졌었다. 그 좋은 일례가 국제공통규칙(CSR, Common Structural Rule)이다. 그러나, 종강도 하중이 크게 작용하는 화물창 구역에만 국한하여 세부규정이 제시되어 있고, 선수와 선미부 구조에는 별다른 평가 지침이 없다. 언급한 구역의 구조설계는 조선사의 설계 경험에 의존하여 진행하고 있으며, 선급에서도 명확한 기준 이 없으므로 구조 손상 문제가 발생하더라도 근본적인 원인을 파악하기가 힘들다. 본 연구에서는 선미부에 주로 발생하고 있는 좌굴 손 상의 대표적인 사례에 대한 근본적인 원인을 파악하기 위한 엔지니어링 기반의 해법을 제시하였다. 유한요소해석 모델링 기반 구조 강도 검증을 위하여, 하중 조건, 경계조건, 모델링 방법 그리고 평가 기준에 대한 합리적인 해법을 제시하였다. 선미부에 작용하는 휨 모멘트에 의하여 높이 방향으로 압축하중에 의해서 좌굴이 발생할 가능성이 있으며, 좌굴 강성 증가를 위하여 판 두께 증가 혹은 수직 보강재의 추 가가 필요하다. 앞으로도 이 결과는 유사 운반선의 선미부 구조 강도 검토 시 도움을 줄 것으로 기대된다.
Damages by jellyfish are occurring frequently around the world. Among them, accidents caused by jellyfish stings are serious enough to cause death. So we designed a jellyfish blocking net and analyzed its stability to prevent sting caused by jellyfish entering the beach. To this end, the dynamic behavior of the jellyfish blocking net according to the current speed (0.25-1.0 m/s) and the net type (50, 100 and 150 mm) on the upper part of the blocking net was modeled using the mass spring model. As a result of simulations for the model, the horizontal tension (horizontal component of the mooring tension) of the mooring line increased with the decrease in the mesh size on the upper part of the blocking net at all current speeds, but exceeded the holding force at high tides faster than 0.5 m/s and exceeded the holding force at all current speeds at low tide. Therefore, the jellyfish blocking nets showed poor stability overall. The depth of the float line had a little difference according to the upper mesh size and increased lineary proportional to the current speed. However, the float line sank too much to block the incoming jellyfish. These analysis results helped us find ways to improve the stability of the jellyfish blocking net, such as adjusting the length of the mooring line and improving the holding power. Therefore, it is expected that this technology will be applied us various underwater structures to discover the weaknesses of the structures and contribute to increasing the stability in the future.
The Korean stow net is a fishing method that utilizes the changing direction of the net entrance with the tidal current. This study attempted to obtain basic data from the recent offshore stow net fisheries to improve the gear by analyzing the dynamic behavior of the nets affected by current speed and direction using computer simulations. A numerical calculation was performed at a current speed of 0.5 knot between 2.5 knot at each 0.5 knot. The time taken for the gear opening was the longest from 0.5 knot at 1,500 seconds and the shortest from 2.5 knot at 450 seconds in the simulations. In all cases, the net width and tension at net deployment gradually decreased as the current speed decreased. However, the net height tended to increase inversely proportional to the current speed. During the net rotation, the net height was maintained at all cases. The net width and tension fluctuated, but the regularity was very low. In this study, the calculated simulation data showed that the opening efficiency decreased proportional to the current speed. The opening efficiency is related to the catching efficiency; therefore, it is necessary to improve the gear to enhance its opening efficiency.
본 논문에서는 Needle-punched C/SiC 복합재료 해석을 위한 효율적인 멀티스케일 해석기법을 소개한다. 기존 Needle-punching으 로 인해 복잡한 미소구조를 갖는 NP 복합재료는 기존의 제안된 복합재료 멀티스케일 기법으로 물성을 계산하는 것은 한계가 있어 왔다. 이를 극복하기 위해 micro-CT 이미지 촬영을 통해 NP 복합재료의 미소구조를 면밀히 파악할 수 있었고, 이미지 프로세싱을 바탕으로 실제구조와 직접적으로 대응할 수 있는 3D high fidelity 모델을 구축하였다. 또한 유한요소해석에 맞춰 요소크기를 조절할 수 있는 sub-region processing 소개를 바탕으로 효율적인 유한요소해석을 수행하였다. NP 복합재료의 미소구조 거동뿐만 아니라, macro-scale 구조해석의 적용을 위해 subcell 모델링을 제안하였다. Needle-punching에 의한 Z축 NP 섬유의 규칙적인 간격을 이용하여 모델링을 수행할 수 있었다. 제안한 두 종류의 모델은 균질화 기법을 이용하여 등가거동 및 등가물성을 파악하였으며, 추가적인 실험 결과와의 비교를 통해 검증을 수행하였다.
The fatigue characteristics of glass fiber reinforced plastic (GFRP) composites were studied under repeated loads using the finite element method (FEM). To realize the material characteristics of GFRP composites, Digimat, a mean-field homogenization tool, was employed. Additionally, the micro-structures and material models of GFRP composites were defined with it to predict the fatigue behavior of composites more realistically. Specifically, the fatigue characteristics of polybutylene terephthalate with short fiber fractions of 30wt% were investigated with respect to fiber orientation, stress ratio, and thickness. The injection analysis was conducted using Moldflow software to obtain the information on fiber orientations. It was mapped over FEM concerned with fatigue specimens. LS-DYNA, a typical finite element commercial software, was used in the coupled analysis of Digimat to calculate the stress amplitude of composites. FEMFAT software consisting of various numerical material models was used to predict the fatigue life. The results of coupled analysis of linear and nonlinear material models of Digimat were analyzed to identify the fatigue characteristics of GFRP composites using FEMFAT. Neuber’s rule was applied to the linear material model to analyze the fatigue behavior in LCF regimen. Additionally, to evaluate the morphological and mechanical structure of GFRP composites, the coupled and fatigue analysis were conducted in terms of thickness.
In this study, system modeling and dynamic analysis of crane are conducted. Especially, among many different kinds of a crane system, the issues on crane operating problems installed on the vessel are considered. As well known, marine systems including cranes are exposed to various disturbances such as vessel motions, hydrodynamic forces, wave and wind attack, etc. In order to analysis the system dynamic with environmental conditions, the authors derived the nonlinear dynamic model of offshore crane and derived a linear model which is used for designing the control system. Using the obtained nonlinear and linear models, simulations were conducted to evaluate the usefulness of the obtained models. By simulation and result evaluation, the usefulness of the linear model, which presents the dynamics, is effectively verified.
It is inevitable to use the distinct element method in the analysis of structural dynamics for stacked stone pagoda system. However, the experimental verification of analytical results produced by the discrete element method is not sufficient yet, and the theory of distinct element method is not universal in Korea. This study introduces how to model the stacked stone pagoda system using the distinct element method, and draws some considerations in the seismic analysis procedures. First, the rocking mode and sliding mode are locally mixed in the seismic responses. Second, the vertical stiffness and the horizontal stiffness on the friction surface have the greatest influence on the seismic behavior. Third, the complete seismic analysis of stacked stone pagoda system requires a set of the horizontal, vertical, and rotational velocity time histories of the ground. However, earthquake data monitored in Korea are limited to acceleration and velocity signals in some areas.
Bird screen meshes are installed at the air inlet and outlet ducts of spent fuel storage casks to inhibit the intrusion of debris from the external environment. The presence of these screens introduces an additional resistance to air flow through the ducts. In this study, a porous media model was developed to simplify the bird screen meshes. CFD analyses were used to derive and verify the flow resistance factors for the porous media model. Thermal analyses were carried out for concrete storage cask using the porous media model. Thermal tests were performed for concrete casks with bird screen meshes. The measured temperatures were compared with the analysis results for the porous model. The analysis results agreed well with the test results. The analysis temperatures were slightly higher than the test temperatures. Therefore, the reliability and conservatism of the analysis results for the porous model have been verified.
Recently, the trend is emerging a variety of irregular tall buildings. It is important to design the building for lateral load according to this trend. Fluid Structure Interaction(FSI) simulation can be performed to understand the vibrations of the structure against dynamic wind loads. In order to make the physical characteristics of the actual structure and the analytical model the same, we studied core inserting equivalent stiffness modeling method. As a result of this analysis, the stiffness of the structure can be set similar to that of the two axes of the structure, and turbulence can be reproduced through the acceleration tendency.
Concrete-Filled Tube (CFT) has been used as a column of building and bride pier. CFT member consists of outer steel tube and in-filled concrete. Since the concrete is under tri-axial stress state by outer steel tube, the strength and deformation capacity of the in-filled concrete increases. This is called confinement effect of CFT. To simulate this confinement effect, modified stress-strain relationship of the in-filled concrete is generally used. However this approach is not a direct method to simulate the confinement effect, and more novel simulation technic is needed for in-depth understanding of the confinement effect. In this study, direct method for simulating the confinement effect of CFT was proposed, where the modified strain-stress relationship was not used. From the results, the proposed method agrees well with the test results.
신뢰성 해석 및 신뢰성기반 최적설계는 불확실성을 고려한 확률변수를 입력 값으로 요구하며, 확률변수는 모수적․비모수 적 통계모델링 방법을 사용하여 확률분포함수의 형태로 정량화 된다. 신뢰성 해석과 같은 통계적 해석은 입력되는 확률분포 함수의 특성이 결과값에 영향을 미치게 되며, 확률분포함수는 통계모델링 방법에 따라 다른 형태를 가지게 된다. 본 연구에 서는 모수적 통계모델링 방법인 순차적 통계모델링 방법과 비모수적 방법인 커널밀도추정을 사용하여 데이터의 개수에 따 른 통계모델링의 결과를 분석하였다. 또한 수치예제를 통해 두 가지 기법에 따른 신뢰성 해석의 결과를 분석하였고, 데이터 의 개수에 따른 적절한 기법을 제안하였다.
The boundary reaction method(BRM) is a substructure time domain method, it removes global iterations between frequency and time domain analyses commonly required in the hybrid approaches, so that it operates as a two-step uncoupled method. The BRM offers a two-step method as follows: (1) the calculation of boundary reaction forces in the frequency domain on an interface of linear and nonlinear regions, (2) solving the wave radiation problem subjected to the boundary reaction forces in the time domain. In the time domain analysis, the near-field soil is modeled to simulate the wave radiation problem. This paper evaluates the performance of the BRM according to modeling extent of near-field soil for the nonlinear SSI analysis of base-isolated NPP structure. For this purpose, parametric studies are performed using equivalent linear SSI problems. The accuracy of the BRM solution is evaluated by comparing the BRM solution with that of conventional SSI seismic technique. The numerical results show that the soil condition affects the modeling range of near-field soil for the BRM analysis as well as the size of the basemat. Finally, the BRM is applied for the nonlinear SSI analysis of a base-isolated NPP structure to demonstrate the accuracy and effectiveness of the method.