• 제목/요약/키워드: 3D Deformation

검색결과 1,187건 처리시간 0.024초

수치해석을 활용한 가스차단문의 폭발압력저항 성능평가 (Performance Evaluation on Blast-resistant of Gastight Door using Numerical Simulation)

  • 신배근;김지유;김의수
    • 한국가스학회지
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    • 제26권1호
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    • pp.27-33
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    • 2022
  • 가스 취급 및 저장시설의 확충과 더불어 폭발의 규모가 다양해짐에 따라 사고를 대비한 방폭 설비 관련 연구가 활발하게 이루어지고 있다. 방폭 인증시험 대상 설비 중 하나인 가스차단문은 폭풍파나 내부 화재로 인한 팽창압력을 차단하는 동시에 내부의 인원과 장비를 보호하는 역할을 한다. 현재 사용되는 가스차단문은 방폭성능 인증시험 대상 설비임에도 방폭 설계 관련 규정이 명확히 제시되지 않고 있으며 해당 설비의 폭발압력저항성능평가에 관한 연구는 미비한 실정이다. 이에 본 연구에서는 미국재료시험협회(ASTM)에서 제시하는 가스차단문 규격에 관한 규정(ASTM F-1069-87, F-1068-90)을 참고하여 가스차단문을 3D 형상으로 모델링하고 ANSYS Explicit Dynamics 해석을 통해 기준 대비 가스차단문의 영구적 변형량을 비교하였다. 또한, 방폭 설비 관련 연구에서 사용되고 있는 회전연성도·변위연성도 계산을 통한 방폭성능 평가 방법을 함께 고려하여 가스차단문의 수치해석적 폭발압력저항 성능평가를 수행하였다.

열-수리-역학적 연계해석을 위한 OGS-FLAC 시뮬레이터의 성능 평가 (Performance Evaluation of OGS-FLAC Simulator for Coupled Thermal-Hydrological-Mechanical Analysis)

  • 박도현;박찬희
    • 터널과지하공간
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    • 제32권2호
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    • pp.144-159
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    • 2022
  • 본 연구에서는 지반의 열-수리-역학적 복합거동을 모델링하기 위한 순차적 접근법 기반의 시뮬레이터를 개발하고 적용된 연계해석 알고리즘의 계산성능을 분석하였다. 본 연구의 순차적 연계해석에서는 다공성 매질의 열 및 유체거동 분석을 위한 오픈소스 기반의 OpenGeoSys 수치코드와 역학해석을 위한 상용 소프트웨어 FLAC3D가 연동되었다. 해석해가 주어진 열-수리-역학적 복합거동 문제를 토대로 개발된 시뮬레이터에 대한 벤치마크 테스트가 수행되었다. 적용된 벤치마크 문제는 완전포화된 지반 내 점열원 작용 시 지반거동(시간에 따른 온도, 간극수압, 응력, 변형 변화)과 관계된다. 해석해와 수치해석 시뮬레이션 결과를 비교 분석하고 연계해석 시뮬레이터의 적정성을 조사하였다.

Meso-scale based parameter identification for 3D concrete plasticity model

  • Suljevic, Samir;Ibrahimbegovic, Adnan;Karavelic, Emir;Dolarevic, Samir
    • Coupled systems mechanics
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    • 제11권1호
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    • pp.55-78
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    • 2022
  • The main aim of this paper is the identification of the model parameters for the constitutive model of concrete and concrete-like materials capable of representing full set of 3D failure mechanisms under various stress states. Identification procedure is performed taking into account multi-scale character of concrete as a structural material. In that sense, macro-scale model is used as a model on which the identification procedure is based, while multi-scale model which assume strong coupling between coarse and fine scale is used for numerical simulation of experimental results. Since concrete possess a few clearly distinguished phases in process of deformation until failure, macro-scale model contains practically all important ingredients to include both bulk dissipation and surface dissipation. On the other side, multi-scale model consisted of an assembly micro-scale elements perfectly fitted into macro-scale elements domain describes localized failure through the implementation of embedded strong discontinuity. This corresponds to surface dissipation in macro-scale model which is described by practically the same approach. Identification procedure is divided into three completely separate stages to utilize the fact that all material parameters of macro-scale model have clear physical interpretation. In this way, computational cost is significantly reduced as solving three simpler identification steps in a batch form is much more efficient than the dealing with the full-scale problem. Since complexity of identification procedure primarily depends on the choice of either experimental or numerical setup, several numerical examples capable of representing both homogeneous and heterogeneous stress state are performed to illustrate performance of the proposed methodology.

Turbulent-image Restoration Based on a Compound Multibranch Feature Fusion Network

  • Banglian Xu;Yao Fang;Leihong Zhang;Dawei Zhang;Lulu Zheng
    • Current Optics and Photonics
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    • 제7권3호
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    • pp.237-247
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    • 2023
  • In middle- and long-distance imaging systems, due to the atmospheric turbulence caused by temperature, wind speed, humidity, and so on, light waves propagating in the air are distorted, resulting in image-quality degradation such as geometric deformation and fuzziness. In remote sensing, astronomical observation, and traffic monitoring, image information loss due to degradation causes huge losses, so effective restoration of degraded images is very important. To restore images degraded by atmospheric turbulence, an image-restoration method based on improved compound multibranch feature fusion (CMFNetPro) was proposed. Based on the CMFNet network, an efficient channel-attention mechanism was used to replace the channel-attention mechanism to improve image quality and network efficiency. In the experiment, two-dimensional random distortion vector fields were used to construct two turbulent datasets with different degrees of distortion, based on the Google Landmarks Dataset v2 dataset. The experimental results showed that compared to the CMFNet, DeblurGAN-v2, and MIMO-UNet models, the proposed CMFNetPro network achieves better performance in both quality and training cost of turbulent-image restoration. In the mixed training, CMFNetPro was 1.2391 dB (weak turbulence), 0.8602 dB (strong turbulence) respectively higher in terms of peak signal-to-noise ratio and 0.0015 (weak turbulence), 0.0136 (strong turbulence) respectively higher in terms of structure similarity compared to CMFNet. CMFNetPro was 14.4 hours faster compared to the CMFNet. This provides a feasible scheme for turbulent-image restoration based on deep learning.

A semi-analytical and numerical approach for solving 3D nonlinear cylindrical shell systems

  • Liming Dai;Kamran Foroutan
    • Structural Engineering and Mechanics
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    • 제87권5호
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    • pp.461-473
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    • 2023
  • This study aims to solve for nonlinear cylindrical shell systems with a semi-analytical and numerical approach implementing the P-T method. The procedures and conditions for such a study are presented in practically solving and analyzing the cylindrical shell systems. An analytical model for a nonlinear thick cylindrical shell (TCS) is established on the basis of the stress function and Reddy's higher-order shear deformation theory (HSDT). According to Reddy's HSDT, Hooke's law in three dimensions, and the von-Kármán equation, the stress-strain relations are developed for the thick cylindrical shell systems, and the three coupled nonlinear governing equations are thus established and discretized as per the Galerkin method, for implementing the P-T method. The solution generated with the approach is continuous everywhere in the entire time domain considered. The approach proposed can also be used to numerically solve and analyze the nonlinear shell systems. The procedures and recurrence relations for numerical solutions of shell systems are presented. To demonstrate the application of the approach in numerically solving for nonlinear cylindrical shell systems, a specific nonlinear cylindrical shell system subjected to an external excitation is solved numerically. In numerically solving for the system, the present approach shows higher efficiency, accuracy, and reliability in comparison with that of the Runge-Kutta method. The approach with the P-T method presented is practically sound especially when continuous and high-quality numerical solutions for the shell systems are considered.

Impact of viscoelastic foundation on bending behavior of FG plate subjected to hygro-thermo-mechanical loads

  • Ismail M. Mudhaffar;Abdelbaki Chikh;Abdelouahed Tounsi;Mohammed A. Al-Osta;Mesfer M. Al-Zahrani;Salah U. Al-Dulaijan
    • Structural Engineering and Mechanics
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    • 제86권2호
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    • pp.167-180
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    • 2023
  • This work applies a four-known quasi-3D shear deformation theory to investigate the bending behavior of a functionally graded plate resting on a viscoelastic foundation and subjected to hygro-thermo-mechanical loading. The theory utilizes a hyperbolic shape function to predict the transverse shear stress, and the transverse stretching effect of the plate is considered. The principle of virtual displacement is applied to obtain the governing differential equations, and the Navier method, which comprises an exponential term, is used to obtain the solution. Novel to the current study, the impact of the viscoelastic foundation model, which includes a time-dependent viscosity parameter in addition to Winkler's and Pasternak parameters, is carefully investigated. Numerical examples are presented to validate the theory. A parametric study is conducted to study the effect of the damping coefficient, the linear and nonlinear loadings, the power-law index, and the plate width-tothickness ratio on the plate bending response. The results show that the presence of the viscoelastic foundation causes an 18% decrease in the plate deflection and about a 10% increase in transverse shear stresses under both linear and nonlinear loading conditions. Additionally, nonlinear loading causes a one-and-a-half times increase in horizontal stresses and a nearly two-times increase in normal transverse stresses compared to linear loading. Based on the article's findings, it can be concluded that the viscosity effect plays a significant role in the bending response of plates in hygrothermal environments. Hence it shall be considered in the design.

포장가속시험을 통한 개질아스팔트 혼합물의 소성변형 저항성 평가 연구 (Evaluation of Rutting Resistance of Modified Asphalt Concrete by Accelerated Pavement Testing)

  • 김준형;서영찬;권수안;조용주
    • 대한토목학회논문집
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    • 제26권2D호
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    • pp.285-292
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    • 2006
  • 본 연구에서는 국내에서 개발된 Full-Scale 포장가속시험기(HAPT; Hanyang Accelerated Pavement Tester)를 소개하고, 이 시험의 시험운영과 함께 개질아스팔트 혼합물과 일반 밀입도 아스팔트 혼합물의 소성변형 저항성 비교 연구를 수행하였다. 포장가속시험은 일반 밀입도와 3종의 개질아스팔트 각각에 대해 3가지 온도조건(25-30, 40, $50^{\circ}C$)에서 소성변형 저항성을 평가하였으며, 이 평가 결과들은 DSR실험등 바인더의 실내실험 결과들과도 비교하였다. 포장가속시험을 통한 소성변형 발생량을 분석한 결과, 시험 대상이 된 모든 개질아스팔트 구간에서 일반 밀입도에 비해 소성변형 저항성이 큰 것으로 나타났다. 특히 고온조건에서는 그 차이가 매우 크게 나타났다. 일반 밀입도 아스팔트포장을 대상으로 포장온도 증가에 따른 소성변형 저항성을 분석한 결과 온도가 어느 이상 되면 소성변형 저항성이 급격히 떨어짐을 알 수 있었다. 또한 소성변형에 관련한 중요한 인자로 제시되는 $G^*/sin{\delta}$는 소성변형 저항성을 잘 나타내고 있는 것으로 나타났다. 반면에 회복탄성계수는 소성변형 저항성을 나타내는 인자로 바람직하지 않음도 확인하였다.

Thermodynamical bending analysis of P-FG sandwich plates resting on nonlinear visco-Pasternak's elastic foundations

  • Abdeldjebbar Tounsi;Adda Hadj Mostefa;Abdelmoumen Anis Bousahla;Abdelouahed Tounsi;Mofareh Hassan Ghazwani;Fouad Bourada;Abdelhakim Bouhadra
    • Steel and Composite Structures
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    • 제49권3호
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    • pp.307-323
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    • 2023
  • In this research, the study of the thermoelastic flexural analysis of silicon carbide/Aluminum graded (FG) sandwich 2D uniform structure (plate) under harmonic sinusoidal temperature load over time is presented. The plate is modeled using a simple two dimensional integral shear deformation plate theory. The current formulation contains an integral terms whose aim is to reduce a number of variables compared to others similar solutions and therefore minimize the computation time. The transverse shear stresses vary according to parabolic distribution and vanish at the free surfaces of the structure without any use of correction factors. The external load is applied on the upper face and varying in the thickness of the plates. The structure is supposed to be composed of "three layers" and resting on nonlinear visco-Pasternak's-foundations. The governing equations of the system are deduced and solved via Hamilton's principle and general solution. The computed results are compared with those existing in the literature to validate the current formulation. The impacts of the parameters (material index, temperature exponent, geometry ratio, time, top/bottom temperature ratio, elastic foundation type, and damping coefficient) on the dynamic flexural response are studied.

Investigations of countermeasures used to mitigate tunnel deformations due to adjacent basement excavation in soft clays

  • Jinhuo Zheng;Minglong Shen;Shifang Tu;Zhibo Chen;Xiaodong Ni
    • Geomechanics and Engineering
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    • 제36권6호
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    • pp.563-573
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    • 2024
  • In this study, various countermeasures used to mitigate tunnel deformations due to nearby multi-propped basement excavation in soft clay are explored by three-dimensional numerical analyses. Field measurements are used to calibrate the numerical model and model parameters. Since concrete slabs can constrain soil and retaining wall movements, tunnel movements reach the maximum value when soils are excavated to the formation level of basement. Deformation shapes of an existing tunnel due to adjacent basement excavation are greatly affected by relative position between tunnel and basement. When the tunnel is located above or far below the formation level of basement, it elongates downward-toward or upward-toward the basement, respectively. It is found that tunnel movements concentrate in a triangular zone with a width of 2 He (i.e., final excavation depth) and a depth of 1 D (i.e., tunnel diameter) above or 1 D below the formation level of basement. By increasing retaining wall thickness from 0.4 m to 0.9 m, tunnel movements decrease by up to 56.7%. Moreover, tunnel movements are reduced by up to 80.7% and 61.3%, respectively, when the entire depth and width of soil within basement are reinforced. Installation of isolation wall can greatly reduce tunnel movements due to adjacent basement excavation, especially for tunnel with a shallow burial depth. The effectiveness of isolation wall to reduce tunnel movement is negligible unless the wall reaches the level of tunnel invert.

X-밴드 능동적 빔 보상 1 × 2 배열 마이크로스트립 안테나 설계 (Design of a 1 × 2 Array Microstrip Antenna for Active Beam Compensation at X-band)

  • 최윤선;우종명
    • 한국ITS학회 논문지
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    • 제15권2호
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    • pp.111-118
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    • 2016
  • 본 논문은 무인항공기 탑재용 능동 빔 보상이 가능한 X-대역(9.375 GHz) $1{\times}2$ 배열 마이크로스트립 안테나를 제안한다. 먼저 기본형 $1{\times}2$ 배열 마이크로스트립 안테나와 윌킨슨 전력분배기를 결합하여 배열 안테나를 설계 하였고, 배열 안테나의 방사 성능을 확인하였다. 측정 결과, 다음으로 설계된 배열 안테나의 빔 조향을 위해 위상기, 윌킨슨 전력분배기를 모듈구조로 제작하였고, 위상 천이에 따른 빔 조향 특성을 측정 하였다. 금속 차폐를 통해 메인 로브는 $0^{\circ}$ 방향에서 0.3 dB 개선된 -0.6 dBi로, 좌우 대칭인 안정된 방사패턴을 얻었다. 또한 $180^{\circ}$ 방향에서 사이드 로브를 18.8 dB 감소시켰다. 다음으로, 무인항공기 날개에 컴팩트하게 탑재할 수 있도록 배열 안테나의 뒷면에 위상기와 전력분배기를 부착하여 능동 빔 조향 마이크로스트립 배열 안테나를 설계 및 제작 하였다. 측정 결과 최대 이득은 0.7 dB 향상된 0.1 dBi로, 메인 로브는 좌우 대칭이며 사이드 로브가 억제된 형태의 방사 특성을 얻을 수 있었다. 따라서, 무인항공기 날개에 탑재된 배열 안테나에 대해 날개의 변형에 따른 빔 오차를 보상할 수 있는 기본 안테나 설계 기술을 확보하였다.