• 제목/요약/키워드: Homogenization Model

검색결과 144건 처리시간 0.02초

A Method of Coupling Expected Patch Log Likelihood and Guided Filtering for Image De-noising

  • Wang, Shunfeng;Xie, Jiacen;Zheng, Yuhui;Wang, Jin;Jiang, Tao
    • Journal of Information Processing Systems
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    • 제14권2호
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    • pp.552-562
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    • 2018
  • With the advent of the information society, image restoration technology has aroused considerable interest. Guided image filtering is more effective in suppressing noise in homogeneous regions, but its edge-preserving property is poor. As such, the critical part of guided filtering lies in the selection of the guided image. The result of the Expected Patch Log Likelihood (EPLL) method maintains a good structure, but it is easy to produce the ladder effect in homogeneous areas. According to the complementarity of EPLL with guided filtering, we propose a method of coupling EPLL and guided filtering for image de-noising. The EPLL model is adopted to construct the guided image for the guided filtering, which can provide better structural information for the guided filtering. Meanwhile, with the secondary smoothing of guided image filtering in image homogenization areas, we can improve the noise suppression effect in those areas while reducing the ladder effect brought about by the EPLL. The experimental results show that it not only retains the excellent performance of EPLL, but also produces better visual effects and a higher peak signal-to-noise ratio by adopting the proposed method.

몬주 고속증식로 상부플레넘에서의 열성층에 관한 전산유체역학 해석 (COMPUTATIONAL FLUID DYNAMICS ANALYSIS OF THERMAL STRATIFICATION IN THE UPPER PLENUM OF THE MONJU FAST BREEDER REACTOR)

  • 최석기;이태호
    • 한국전산유체공학회지
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    • 제17권4호
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    • pp.41-48
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    • 2012
  • A numerical analysis of thermal stratification in the upper plenum of the MONJU fast breeder reactor was performed. Calculations were performed for a 1/6 simplified model of the MONJU reactor using the commercial code, CFX-13. To better resolve the geometrically complex upper core structure of the MONJU reactor, the porous media approach was adopted for the simulation. First, a steady state solution was obtained and the transient solutions were then obtained for the turbine trip test conducted in December 1995. The time dependent inlet conditions for the mass flow rate and temperature were provided by JAEA. Good agreement with the experimental data was observed for steady state solution. The numerical solution of the transient analysis shows the formation of thermal stratification within the upper plenum of the reactor vessel during the turbine trip test. The temporal variations of temperature were predicted accurately by the present method in the initial rapid coastdown period (~300 seconds). However, transient numerical solutions show a faster thermal mixing than that observed in the experiment after the initial coastdown period. A nearly homogenization of the temperature field in the upper plenum is predicted after about 900 seconds, which is a much shorter-term thermal stratification than the experimental data indicates. This discrepancy is due to the shortcoming of the turbulence models available in the CFX-13 code for a natural convection flow with thermal stratification.

An extended finite element method for modeling elastoplastic FGM plate-shell type structures

  • Jrad, Hanen;Mars, Jamel;Wali, Mondher;Dammak, Fakhreddine
    • Structural Engineering and Mechanics
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    • 제68권3호
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    • pp.299-312
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    • 2018
  • In this paper, an extended finite element method is proposed to analyze both geometric and material non-linear behavior of general Functionally Graded Material (FGM) plate-shell type structures. A user defined subroutine (UMAT) is developed and implemented in Abaqus/Standard to study the elastoplastic behavior of the ceramic particle-reinforced metal-matrix FGM plates-shells. The standard quadrilateral 4-nodes shell element with three rotational and three translational degrees of freedom per node, S4, is extended in the present study, to deal with elasto-plastic analysis of geometrically non-linear FGM plate-shell structures. The elastoplastic material properties are assumed to vary smoothly through the thickness of the plate-shell type structures. The nonlinear approach is based on Mori-Tanaka model to underline micromechanics and locally determine the effective FGM properties and self-consistent method of Suquet for the homogenization of the stress-field. The elasto-plastic behavior of the ceramic/metal FGM is assumed to follow Ludwik hardening law. An incremental formulation of the elasto-plastic constitutive relation is developed to predict the tangent operator. In order to to highlight the effectiveness and the accuracy of the present finite element procedure, numerical examples of geometrically non-linear elastoplastic functionally graded plates and shells are presented. The effects of the geometrical parameters and the volume fraction index on nonlinear responses are performed.

Stress analysis of a two-phase composite having a negative-stiffness inclusion in two dimensions

  • Wang, Yun-Che;Ko, Chi-Ching
    • Interaction and multiscale mechanics
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    • 제2권3호
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    • pp.321-332
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    • 2009
  • Recent development in composites containing phase-transforming particles, such as vanadium dioxide or barium titanate, reveals the overall stiffness and viscoelastic damping of the composites may be unbounded (Lakes et al. 2001, Jaglinski et al. 2007). Negative stiffness is induced from phase transformation predicted by the Landau phase transformation theory. Although this unbounded phenomenon is theoretically supported with the composite homogenization theory, detailed stress analyses of the composites are still lacking. In this work, we analyze the stress distribution of the Hashin-Shtrikman (HS) composite and its two-dimensional variant, namely a circular inclusion in a square plate, under the assumption that the Young's modulus of the inclusion is negative. Assumption of negative stiffness is a priori in the present analysis. For stress analysis, a closed form solution for the HS model and finite element solutions for the 2D composite are presented. A static loading condition is adopted to estimate the effective modulus of the composites by the ratio of stress to average strain on the loading edges. It is found that the interfacial stresses between the circular inclusion and matrix increase dramatically when the negative stiffness is so tuned that overall stiffness is unbounded. Furthermore, it is found that stress distributions in the inclusion are not uniform, contrary to Eshelby's theorem, which states, for two-phase, infinite composites, the inclusion's stress distribution is uniform when the shape of the inclusion has higher symmetry than an ellipse. The stability of the composites is discussed from the viewpoint of deterioration of perfect interface conditions due to excessive interfacial stresses.

배전계통 사고시 부하절체 방법의 GA 적용에 관한 연구 (The Application of Load Re-configuration Using Genetic Algorithm for the Distribute Systems Mischance)

  • 최대섭;신호철
    • 한국인터넷방송통신학회논문지
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    • 제11권1호
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    • pp.115-123
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    • 2011
  • 본 논문에서는 배전 손실 최소화 문제에 있어서 GA의 수렴특성을 개선하기 위해서는 새로운 수명의 개념을 도입한다. 즉 개체군의 균질화와 유전적 부동의 문제에 대해서 연령을 가진 집단에 유한의 수명을 부여하여 적응도에 의한 도태외에 어느수명에 도달한 경우에도 도태시키려는 방법을 제안하였다. 이 방법은 적응도가 가장 높은 개체는 개체수의 양, 엘리트 보존전략의 영향에 의해 자손을 남기는 확률이 높은 것인데 비해 적응도가 낮은 개체는 수명에 의해 빨리 도태되고 또한 수렴성의 향상을 기대할 수 있다. 게다가 수명을 고려한 볼수 법과 이미 제안되어 있는 DPM을 조합하여 이하와 같은 특징을 가진 GA의 탐색알고리즘을 개발한다.

A nonlocal zeroth-order shear deformation theory for free vibration of functionally graded nanoscale plates resting on elastic foundation

  • Bounouara, Fatima;Benrahou, Kouider Halim;Belkorissat, Ismahene;Tounsi, Abdelouahed
    • Steel and Composite Structures
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    • 제20권2호
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    • pp.227-249
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    • 2016
  • The objective of this work is to present a zeroth-order shear deformation theory for free vibration analysis of functionally graded (FG) nanoscale plates resting on elastic foundation. The model takes into consideration the influences of small scale and the parabolic variation of the transverse shear strains across the thickness of the nanoscale plate and thus, it avoids the employ use of shear correction factors. Also, in this present theory, the effect of transverse shear deformation is included in the axial displacements by using the shear forces instead of rotational displacements as in available high order plate theories. The material properties are supposed to be graded only in the thickness direction and the effective properties for the FG nanoscale plate are calculated by considering Mori-Tanaka homogenization scheme. The equations of motion are obtained using the nonlocal differential constitutive expressions of Eringen in conjunction with the zeroth-order shear deformation theory via Hamilton's principle. Numerical results for vibration of FG nanoscale plates resting on elastic foundations are presented and compared with the existing solutions. The influences of small scale, shear deformation, gradient index, Winkler modulus parameter and Pasternak shear modulus parameter on the vibration responses of the FG nanoscale plates are investigated.

Influence of micromechanical models on the bending response of bidirectional FG beams under linear, uniform, exponential and sinusoidal distributed loading

  • Meksi, Abdeljalil;Benyoucef, Samir;Sekkal, Mohamed;Bouiadjra, Rabbab Bachir;Selim, Mahmoud M.;Tounsi, Abdelouahed;Hussain, Muzamal
    • Steel and Composite Structures
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    • 제39권2호
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    • pp.215-228
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    • 2021
  • This paper investigates the effect of micromechanical models on the bending behavior of bidirectional functionally graded (BDFG) beams subjected to different mechanical loading. The material properties of the beam are considered to be graded in both axial and thickness directions according to a power law. The beam's behavior is modeled by the mean of quasi 3D displacement field that contain undetermined integral terms and involves a reduced unknown functions. Navier's method is employed to determine and compute the displacements and stress for a simply supported beam. Different homogenization schemes such as Voigt, Reus, and Mori-Tanaka are employed to analyze the response of the BDFG beam subjected to linear, uniform, exponential and sinusoidal distributed loading. The results obtained by the present method are compared with available results in the literature and a good agreement was found. Several numerical results are presented in tabular form and in figures to examine the effects of the material gradation, micromechanical models and types of loading on the bending response of BDFG beams. It can be concluded that the present theory is not only accurate but also simple in predicting the bending response of BDFG beam subjected to different static loads.

Bending analysis of porous microbeams based on the modified strain gradient theory including stretching effect

  • Lemya Hanifi Hachemi Amar;Abdelhakim Kaci;Aicha Bessaim;Mohammed Sid Ahmed Houari;Abdelouahed Tounsi
    • Structural Engineering and Mechanics
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    • 제89권3호
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    • pp.225-238
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    • 2024
  • In this paper, a quasi-3D hyperbolic shear deformation theory for the bending responses of a functionally graded (FG) porous micro-beam is based on a modified couple stress theory requiring only one material length scale parameter that can capture the size influence. The model proposed accounts for both shear and normal deformation effects through an illustrative variation of all displacements across the thickness and satisfies the zero traction boundary conditions on the top and bottom surfaces of the micro-beam. The effective material properties of the functionally graded micro-beam are assumed to vary in the thickness direction and are estimated using the homogenization method of power law distribution, which is modified to approximate the porous material properties with even and uneven distributions of porosity phases. The equilibrium equations are obtained using the virtual work principle and solved using Navier's technique. The validity of the derived formulation is established by comparing it with the ones available in the literature. Numerical examples are presented to investigate the influences of the power law index, material length scale parameter, beam thickness, and shear and normal deformation effects on the mechanical characteristics of the FG micro-beam. The results demonstrate that the inclusion of the size effects increases the microbeams stiffness, which consequently leads to a reduction in deflections. In contrast, the shear and normal deformation effects are just the opposite.

나노 입자의 군집밀도를 이용한 고분자 나노복합재의 기계적 거동 예측에 대한 멀티스케일 연구 (Multiscale Analysis on Expectation of Mechanical Behavior of Polymer Nanocomposites using Nanoparticulate Agglomeration Density Index)

  • 백경민;신현성;한진규;조맹효
    • Composites Research
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    • 제30권5호
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    • pp.323-330
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    • 2017
  • 본 연구에서는 폴리프로필렌 내에 투입된 탄화규소 나노 입자들의 군집현상이 나노복합재의 역학적 거동에 미치는 영향을 고찰하기 위해 분자동역학 전산모사를 통해 얻은 정보를 연속체 역학 수준에 적용시키는 멀티스케일 해석을 수행하였다. 입자 간의 거리에 따른 계면 물성의 하락을 반영하는 모델을 이용하여, 다양한 군집 상황에 따른 고분자 나노복합재의 탄성거동 변화를 관찰하였다. 또한, 나노복합재의 기계적 거동에 영향을 미치는 주요 요인을 파악하여 군집밀도라는 새로운 지표를 정의하였다. 나노 입자의 군집밀도와 나노복합재의 탄성거동 간의 상관관계를 파악한 결과, 군집밀도의 값이 증가할수록 계면효과가 저하되어 최종적으로 나노복합재의 기계적 물성 상승이 억제되었다. 나노 입자의 랜덤분포를 고려한 해석을 통해, 동일한 군집밀도의 수치에 대해 나노복합재가 가질 수 있는 탄성계수의 범위를 파악할 수 있었다. 상관관계는 지수 함수형태로 표현될 수 있었으며, 이를 통해 나노 입자의 군집밀도를 이용하여 고분자 나노복합재의 기계적 거동을 효과적으로 예측 가능하다.

굴과 상추에서 노로바이러스의 대체모델 feline calicivirus의 효율적 검출법 개발 (Development of Protocol for the Effective Detection of Feline Calicivirus as Norovirus Surrogate in Oyster and Lettuce)

  • 이수연;장금일;우건조;곽효선;김광엽
    • 한국식품과학회지
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    • 제39권1호
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    • pp.71-76
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    • 2007
  • 본 연구에서는 노로바이러스의 대체모델인 feline calicivirus(FCV)를 이용하여 식품 중에 존재하는 식중독 바이러스의 신속검출방법을 개발하였다. 일반적으로 식품 중에 존재하는 식중독 바이러스를 검출하기 위해서는 식품으로부터 바이러스를 분리시키고, 분리된 바이러스를 농축한 뒤 RT-PCR 방법을 이용하여 검출하는데, 각각의 과정을 수행하는 데 있어서 다양한 문제점이 존재하고 있다. 첫째, 식품으로부터 바이러스를 분리하고 농축하는 과정에서 시간이 많이 걸린다는 것과 둘째, 농축하여 추출된 바이러스 RNA로 RT-PCR 방법을 수행하는데 있어서 잔존하는 식품 성분이 PCR 반응을 저해하여 검출효율이 낮아지는 문제점이 있다. 본 연구에서는 0.2 ${\mu}m$ syringe filter를 사용하여 바이러스 분리과정에서 PCR 저해물질인 식품성분을 추가적으로 제거시켰으며, 농축과정에서는 분쇄된 얼음에 방치하는 방법을 사용하여 overnight하는 과정을 3시간으로 단축시켰다. 농축된 바이러스의 RNA 추출물에 잔존하는 PCR 저해물질을 희석함으로서 보다 높은 검출효율을 얻을 수 있었다. 본 연구를 통해 개발된 신속검출법은 굴과 상추에서 노로바이러스의 신속검출을 위한 방법으로 적용이 가능할 것으로 판단되며, 또한 다양한 식품에서 식중독 바이러스의 검출 효율을 향상시키는데 기여할 것으로 생각된다.