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Probabilistic approach for modelling the load-bearing capacity of glued laminated timber

机译:胶合层板承重能力建模的概率方法

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In this paper, a probabilistic approach for modelling the load-bearing capacity of glued laminated timber is presented. The specific characteristic of this approach is that, at first, timber boards are simulated according the natural growth characteristic of timber. Subsequent, glued laminated timber beams are virtually composed out of the simulated timber boards. Thereby, every kind of fabrication procedure, such as the length of the timber boards or the beam dimensions, can be recreated. Afterwards, a numerical model is used to estimate the load-bearing capacity, the bending stiffness and the type of failure of the simulated GLT beams. To ensure the quality of the numerical model it is validated with 24 GLT beams with a precisely-known beam setup; a wide agreement between the measured and the estimated material properties is identified. For a probabilistic investigation of different input parameters a Monte Carlo simulation is performed. The application of the presented approach is illustrated on selected examples (size effect, the quality of finger joint connections and grading criteria). (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种概率模型,用于对胶合层压木材的承载能力进行建模。这种方法的特定特征是,首先,根据木材的自然生长特性模拟了木板。随后,胶合层压木梁实际上由模拟木板组成。因此,可以重建各种制造程序,例如木板的长度或梁的尺寸。然后,使用数值模型来估计模拟的GLT梁的承载能力,弯曲刚度和破坏类型。为了确保数值模型的质量,已使用24根GLT光束和精确已知的光束设置对其进行了验证;确定了测量的和估计的材料特性之间的广泛一致性。为了对不同输入参数进行概率研究,执行了蒙特卡洛模拟。在选定的示例(大小效果,手指关节连接的质量和分级标准)上说明了所提出方法的应用。 (C)2015 Elsevier Ltd.保留所有权利。

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