• 제목/요약/키워드: Model membrane

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하이브리드 박막/쉘 방법을 이용한 박판성형공정의 스프링백 해석 (Spring-Back Prediction for Sheet Metal Forming Process Using Hybrid Membrane/shell Method)

  • 윤정환;정관수;양동열
    • 소성∙가공
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    • 제12권1호
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    • pp.49-59
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    • 2003
  • To reduce the cost of finite element analyses for sheet forming, a 3D hybrid membrane/shell method has been developed to study the springback of anisotropic sheet metals. In the hybrid method, the bending strains and stresses were analytically calculated as post-processing, using incremental shapes of the sheet obtained previously from the membrane finite element analysis. To calculate springback, a shell finite element model was used to unload the final shape of the sheet obtained from the membrane code and the stresses and strains that were calculated analytically. For verification, the hybrid method was applied to predict the springback of a 2036-T4 aluminum square blank formed into a cylindrical cup. The springback predictions obtained with the hybrid method was in good agreement with results obtained using a full shell model to simulate both loading and unloading and the experimentally measured data. The CPU time saving with the hybrid method, over the full shell model, was 75% for the punch stretching problem.

A numerical solution to fluid-structure interaction of membrane structures under wind action

  • Sun, Fang-Jin;Gu, Ming
    • Wind and Structures
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    • 제19권1호
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    • pp.35-58
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    • 2014
  • A numerical simultaneous solution involving a linear elastic model was applied to study the fluid-structure interaction (FSI) of membrane structures under wind actions, i.e., formulating the fluid-structure system with a single equation system and solving it simultaneously. The linear elastic model was applied to managing the data transfer at the fluid and structure interface. The monolithic equation of the FSI system was formulated by means of variational forms of equations for the fluid, structure and linear elastic model, and was solved by the Newton-Raphson method. Computation procedures of the proposed simultaneous solution are presented. It was applied to computation of flow around an elastic cylinder and a typical FSI problem to verify the validity and accuracy of the method. Then fluid-structure interaction analyses of a saddle membrane structure under wind actions for three typical cases were performed with the method. Wind pressure, wind-induced responses, displacement power spectra, aerodynamic damping and added mass of the membrane structure were computed and analyzed.

인체심장의 심부전모델에서의 獨蔘湯 투여에 따른 심장막전위 분석에 관한 연구 (Study of Membrane Potential Analysis According to Applying Doksam-tang to a Human Heart Failure Model)

  • 정대영;이부균;홍진우;안원근
    • 대한한의학방제학회지
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    • 제23권1호
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    • pp.121-131
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    • 2015
  • Objectives : This study was conducted to investigate the membrane potential to apply Doksam-tang to a human heart failure model. Methods : The human heart model was built by Luo et al. CellML model, Priebe et al. CellML model, and a human heart mesh file. Doksam-tang gives channel the half maximal inhibitory concentration(IC 50 ), half maximal effective concentration(EC 50 ) values and compounds concentrations. These data load into the laptop with Ubuntu OS, and build the library with the data. Results : While results of the study with the heart failure model shows abnormal membrane potential from the normal heart model, the study with applying Doksam-tang to heart failure model shows restoring membrane potential that is similar to normal heart model. Conclusions : These results of the testings suggest that a conception of novel technique to investigate the effects of Korean herbal medicine.

Fouling behaviours of two stages microalgae/membrane filtration system applied to palm oil mill effluent treatment

  • Teow, Yeit Haan;Wong, Zhong Huo;Takriff, Mohd Sobri;Mohammad, Abdul Wahab
    • Membrane and Water Treatment
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    • 제9권5호
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    • pp.373-383
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    • 2018
  • Fouling by solids and microorganisms is the major obstacle limiting the efficient use of membrane wastewater treatment. In our previous study, two stages microalgae/membrane filtration system was proposed to treat anaerobic digested palm oil mill effluent (AnPOME). This two stages microalgae/membrane filtration system had showed great potential for the treatment of AnPOME with high removal of COD, $NH_3-N$, $PO_4{^{3-}}$, TSS, turbidity, and colour. However, fouling behavior of the membrane in this two stages microalgae/membrane filtration system was still unknown. In this study, empirical models that describe permeate flux decline for dead-end filtration (pore blocking - complete, intermediate, and standard; and cake layer formation) presented by Hermia were used to fit the experimental results in identifying the fouling mechanism under different experimental conditions. Both centrifuged and non-centrifuged samples were taken from the medium with 3 days RT intervals, from day 0 to day 12 to study their influence on fouling mechanisms described by Hermia for ultrafiltration (UF), nanofiltration (NF), and reverse osmosis (RO) filtration mode. Besides, a more detailed study on the use of resistance-in-series model for deadend filtration was done to investigate the fouling mechanisms involved in membrane filtration of AnPOME collected after microalgae treatment. The results showed that fouling of UF and NF membrane was mainly caused by cake layer formation and it was also supported by the analysis for resistance-in-series model. Whereas, fouling of RO membrane was dominated by concentration polarization.

비완전 막분리시 투과증발 막촉진 에스터화 반응 거동 연구 (A Characterization of Pervaporation-facilitated Esterification Reaction with non-perfect Separation)

  • C. K Yeom;F. U. Baig
    • 멤브레인
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    • 제13권4호
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    • pp.268-282
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    • 2003
  • 불완전 분리의 실질적인 분리투과 특성을 근거로 하는 모사모델을 이용하여 투과증발 막촉진 에스터화 반응의 실질적인 거동을 연구하였다. 막의 분리효율, 막의 물제거 능력을 모델에 포함시킴으로써 반응모사를 통하여 이들이 막촉진반응에 어떻게 영향을 끼치는지를 체계적으로 관찰할 수 있었다. 막을 통한 비완전분리가 일어날 경우에 초기 반응물 몰비율이 1이 아닐 때 반응 혼합물중 소량으로 존재하는 반응성분이 투과되거나, 혹은 초기 반응물 몰비율이 1인 반응 혼합물중 어느 반응성분이 투과되든지 반응이 완결될 수 없었다. 생성물인 에스터가 물과 함께 일부 투과될 경우 정방향 반응속도를 증가시켜 시간에 따른 반응 전환률을 증가시킨다. 막을 통한 불완전 분리시 막을 통한 투과로 인하여 발생하는 반응혼합물의 부피감소로 인하여 반응성분 뿐 아니라 생성성분의 농도가 증가되는데 이들 농도증가가 반응속도에 상반된 영향을 끼친다; 반응물 농축은 반응속도를 증가시키나 생성물 농축은 역방향의 반응을 촉진시킴으로서 반응속도를 감소시킨다. 반응초기에는 반응물 농축효과가 우세하나 반응이 진행됨에 따라 생성물 농축효과가 우세하여 반응속도를 저하시킴이 모사결과 관찰되었다.

Effect of compressible membrane's nonlinear stress-strain behavior on spiral case structure

  • Zhang, Qi-Ling;Wu, He-Gao
    • Structural Engineering and Mechanics
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    • 제42권1호
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    • pp.73-93
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    • 2012
  • With an active structural involvement in spiral case structure (SCS) that is always the design and research focus of hydroelectric power plant (HPP), the compressible membrane sandwiched between steel spiral case and surrounding reinforced concrete was often assumed to be linear elastic material in conventional design analysis of SCS. Unfortunately considerable previous studies have proved that the foam material serving as membrane exhibits essentially nonlinear mechanical behavior. In order to clarify the effect of membrane (foam) material's nonlinear stress-strain behavior on SCS, this work performed a case study on SCS with a compressible membrane using the ABAQUS code after a sound calibration of the employed constitutive model describing foam material. In view of the successful capture of fitted stress-strain curve of test by the FEM program, we recommend an application and dissemination of the simulation technique employed in this work for membrane material description to structural designers of SCS. Even more important, the case study argues that taking into account the nonlinear stress-strain response of membrane material in loading process is definitely essential. However, we hold it unnecessary to consider the membrane material's hysteresis and additionally, employment of nonlinear elastic model for membrane material description is adequate to the structural design of SCS. Understanding and accepting these concepts will help to analyze and predict the structural performance of SCS more accurately in design effort.

Analytical solution and experimental study of membrane penetration in triaxial test

  • Ji, Enyue;Zhu, Jungao;Chen, Shengshui;Jin, Wei
    • Geomechanics and Engineering
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    • 제13권6호
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    • pp.1027-1044
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    • 2017
  • Membrane penetration is the most important factor influencing the measurement of volume change for triaxial consolidated-drained shear test for coarse-grained soil. The effective pressure p, average particle size $d_{50}$, thickness $t_m$ and elastic modulus $E_m$ of membrane, contact area between membrane and soil $A_m$ as well as the initial void ratio e are the major factors influencing membrane penetration. According to the membrane deformation model given by Kramer and Sivaneswaran, an analytical solution of the membrane penetration considering the initial void ratio is deduced using the energy conservation law. The basic equations from theory of plates and shells and the elastic mechanics are employed during the derivation. To verify the presented solution, isotropic consolidation tests of a coarse-grained soil are performed by using the method of embedding different diameter of iron rods in the triaxial samples, and volume changes due to membrane penetration are obtained. The predictions from presented solution and previous analytical solutions are compared with the test results. It is found that the prediction from presented analytical solution agrees well with the test results.

ACM을 이용한 가스 투과막 특성 해석 모델 (Simulation Model of Membrane Gas Separator Using Aspen Custom Modeler)

  • 송동근;신가희;윤진원;유상석
    • 대한기계학회논문집B
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    • 제40권12호
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    • pp.761-768
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    • 2016
  • 분리막을 이용한 탄화수소계 가스의 종 분리는 화학적 방법에 비해 공정 구성이 용이하고, 유지 보수가 쉬우며 또 경제성이 우수하다. 분리막 기술의 발전과 함께 다양한 응용이 가능하지만, 이를 위한 체계적인 공정 연구를 위한 해석 방법은 다양하지 않다. 본 연구에서는 상용 프로그램에서 제공하는 유저 루틴을 이용해 분리막의 공정 해석을 하기 위한 분리막 물질 전달 모델을 개발하였다. 모델 개발에서는 집중용량법, 다중 셀 기법, 그리고 차분형 모델링 기법을 비교하여 각각의 특징을 분석하였으며, 확장성과 정밀도가 우수한 차분형 모델링 기법을 최종 모델로 선정하였다. 선정모델을 이용해 분리막의 가스 투과율에 영향을 주는 인자인 투과율, 투과면적, 양단 압력차, 투과 유량 등에 대한 기초 해석을 수행하였다. 이를 통해 압력비가 높아지게 되면 투과율은 점진적으로 향상되지만, 실제 선택도는 압력비 상승에 대해 최적점이 존재함을 알 수 있으며, 투과율도 최적점이 존재하였다.

Multiple State Hidden Markov Model to Predict Transmembrane Protein Topology

  • Chi, Sang-Mun
    • Journal of the Korean Data and Information Science Society
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    • 제15권4호
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    • pp.1019-1031
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    • 2004
  • This paper describes a new modeling method for the prediction of transmembrane protein topology. The structural regions of the transmembrane protein have been modeled by means of a multiple state hidden Markov model that has provided for the detailed modeling of the heterogeneous amino acid distributions of each structural region. Grammatical constraints have been incorporated to the prediction method in order to capture the biological order of membrane protein topology. The proposed method correctly predicted 76% of all membrane spanning regions and 92% sidedness of the integration when all membrane spanning regions were found correctly.

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Poly(vinyl Alcohol) 용액의 한외여과 특성과 이론적 고찰 (Ultrafiltration Characteristics of Poly(vinyl Alcohol) Solution and Theoretical Investigations)

  • 이상화;이영철
    • 멤브레인
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    • 제6권4호
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    • pp.203-212
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    • 1996
  • 본 연구의 목적은 수용성고분자 PVA의 한외여과 실험을 통해 한계투과량(limiting flux) 현상에 미치는 조업변수들의 효과들을 고찰하고, 또한 겔층모델(gel-layer model)의 한계성을 극복하기 위해 열전달 계수의 개념을 도입한 Amiar 모델식을 바탕으로 새로운 모델식을 제시하여 이의 적용 가능성을 살펴보았다. Polysulfone 재질의 평판막(MWCO=20,000)과 중공사형막(MWCO= 30,000)을 사용하여 막내선속도, 투과압력, 온도, PVA 농도 등의 변화에 따른 한외여과 특성을 살펴보았다. 실험결과를 통해 polysulfone 재질의 막을 통해 PVA의 한외여과 과정은 겔층형성에 따른 투과저항 메커니즘이 작용하는 것으로 나타났다. 반면에 중공사형막의 경우는 한계투과량 조건하에서 겔층모델에 의해 예측할 수 없는 upward 한계투과량 현상이 관측되었다. 점성도 보정인자(viscosity correction factor)가 포함된 새로운 모델식의 적용을 통해서 upward 한계투과량 현상을 예측하였으나 완전히 만족할만한 결과를 얻지 못했다. 그러나 이와 같은 모델식의 적용을 통해서 PVA의 한외여과 과정이 투과용액의 점성도와 매우 밀접한 관계를 가짐을 알 수 있었다.

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