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Lattice Discrete Particle Model (LDPM) for failure behavior of concrete. I: Theory

机译:用于混凝土破坏行为的晶格离散粒子模型(LDPM)。一:理论

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This paper deals with the formulation, calibration, and validation of the Lattice Discrete Particle Model (LDPM) suitable for the simulation of the failure behavior of concrete. LDPM simulates concrete at the meso-scale considered to be the length scale of coarse aggregate pieces. LDPM is formulated in the framework of discrete models for which the unknown displacement field is not continuous but only defined at a finite number of points representing the center of aggregate particles. Size and distribution of the particles are obtained according to the actual aggregate size distribution of concrete. Discrete compatibility and equilibrium equations are used to formulate the governing equations of the LDPM computational framework. Particle contact behavior represents the mechanical interaction among adjacent aggregate particles through the embedding mortar. Such interaction is governed by meso-scale constitutive equations simulating meso-scale tensile fracturing with strain-softening, cohesive and frictional shearing, and nonlinear compressive behavior with strain-hardening. The present, Part I, of this two-part study deals with model formulation leaving model calibration and validation to the subsequent Part II.
机译:本文研究适用于混凝土破坏行为模拟的格子离散颗粒模型(LDPM)的制定,校准和验证。 LDPM以被认为是粗骨料块长度尺度的中尺度模拟混凝土。 LDPM是在离散模型的框架中制定的,该模型的未知位移场不是连续的,而是仅在代表聚集颗粒中心的有限数量的点处定义。根据混凝土的实际骨料粒度分布获得颗粒的大小和分布。离散相容性和平衡方程式被用来制定LDPM计算框架的控制方程式。颗粒接触行为表示通过埋入砂浆的相邻聚集体颗粒之间的机械相互作用。这种相互作用受中尺度本构方程控制,中尺度本构方程模拟具有应变软化,内聚和摩擦剪切的中尺度拉伸断裂,以及具有应变硬化的非线性压缩行为。这个由两部分组成的研究的第一部分目前涉及模型制定,而模型的校准和验证则留给后续的第二部分。

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