• 제목/요약/키워드: multi-surface yield criteria

검색결과 4건 처리시간 0.022초

A general tangent operator applied to concrete using a multi-surface plasticity model

  • Silva, Ana Beatriz C.G.;Telles, Jose Claudio F.;Fairbairn, Eduardo M.R.;Ribeiro, Fernando Luiz B.
    • Computers and Concrete
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    • 제16권2호
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    • pp.329-342
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    • 2015
  • The present paper aims at developing a method to accommodate multi-surface concrete plasticity from the point of view of a consistency concept applied to general tangent operators. The idea is based on a Taylor series expansion of the actual effective stress at the stress point corresponding to the previous accumulated true stresses plus the current increment values, initially taken to be elastic. The proposed algorithm can be generalized for any multi-surface criteria combination and has been tested here for typical cement-based materials. A few examples of application are presented to demonstrate the effectiveness of the multi-surface technique as used to a combination of Rankine and Drucker-Prager yield criteria.

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.

SWAT-CUP을 이용한 SWAT 모형 검·보정 III: 다중 관측 지점 및 변수를 고려한 분석 (SWAT model calibration/validation using SWAT-CUP III: multi-site and multi-variable model analysis)

  • 조영현
    • 한국수자원학회논문집
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    • 제53권12호
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    • pp.1143-1157
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    • 2020
  • 본 연구에서는 SWAT-CUP을 이용한 SWAT 모형의 검·보정 과정에서 다중 관측 지점 및 변수를 고려한 분석의 기준을 제시하였으며, 이의 적용을 위해 용담시험유역에서 장기 관측된 유량, 토양수분량, 그리고 증발산량을 활용한 모의수행 및 유역의 수문 유출특성과 물순환 관점의 물수지를 검토하였다. 모형은 유역 내 다중 관측 자료의 특성을 반영할 수 있도록 순차적 보정 방법과 SWAT-CUP에서의 최적 매개변수 값 산정을 위한 모의 실행 및 반복 횟수 설정(초기 1,000회 모의 실행, 이후 500회 모의 반복), 그리고 전체 및 부분 수행 등을 통해 소유역별 각기 다른 매개변수 값으로 보정하였으며(유역출구 유량 ENS 0.85, R2 0.87, 그리고 PBIAS -7.6%), 이를 유역출구 지점에 대해 순차적이 아닌 일괄 적용한 분석결과(ENS 0.52, R2 0.54, 그리고 PBIAS -22.4%)와 비교하여 그 방법상의 우위를 확인하였다. 총 15개년의 모의 결과로부터 용담댐 유역의 직접유출은 35%, 기저 및 중간유출과 회귀유량을 합한 값은 65%로 전체 유출률은 53%이며, 증발산량은 전체 강우의 39%에 상당하는 양이 발생하는 것을 파악할 수 있었으며, 아울러 소유역별 연간 총 유출량(일평균 21.8 m3/sec) 등을 포함한 물이용 가능 수량은 연간 총 6.96억 m3으로 소유역별로는 약 540 ~ 900 mm로 분석되었다.

Electromagnetic Micro x-y Stage for Probe-Based Data Storage

  • Park, Jae-joon;Park, Hongsik;Kim, Kyu-Yong;Jeon, Jong-Up
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제1권1호
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    • pp.84-93
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    • 2001
  • An electromagnetic micro x-y stage for probe-based data storage (PDS) has been fabricated. The x-y stage consists of a silicon body inside which planar copper coils are embedded, a glass substrate bonded to the silicon body, and eight permanent magnets. The dimensions of flexures and copper coils were determined to yield $100{\;}\mu\textrm{m}$ in x and y directions under 50 mA of supplied current and to have 440 Hz of natural frequency. For the application to PDS devices, electromagnetic stage should have flat top surface for the prevention of its interference with multi-probe array, and have coils with low resistance for low power consumption. In order to satisfy these design criteria, conducting planar copper coils have been electroplated within silicon trenches which have high aspect ratio ($5{\;}\mu\textrm{m}$in width and $30{\;}\mu\textrm{m}$in depth). Silicon flexures with a height of $250{\;}\mu\textrm{m}$ were fabricated by using inductively coupled plasma reactive ion etching (ICP-RIE). The characteristics of a fabricated electromagnetic stage were measured by using laser doppler vibrometer (LDV) and dynamic signal analyzer (DSA). The DC gain was $0.16{\;}\mu\textrm{m}/mA$ and the maximum displacement was $42{\;}\mu\textrm{m}$ at a current of 180 mA. The measured natural frequency of the lowest mode was 325 Hz. Compared with the designed values, the lower natural frequency and DC gain of the fabricated device are due to the reverse-tapered ICP-RIE process and the incomplete assembly of the upper-sided permanent magnets for LDV measurements.

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