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Long-Term Behavior of Timber-Concrete Composite Beams. II: Numerical Analysis and Simplified Evaluation

机译:木材混凝土组合梁的长期性能。 II:数值分析和简化评估

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摘要

This second part of two companion papers investigates the contribution of different rheological phenomena and thermohygrometric variations on long-term behavior of timber-concrete composite beams (TCCs) in outdoor conditions. The numerical algorithm presented and validated against two experimental tests in the first part is employed with this aim.. Such a model fully considers all rheological phenomena and, therefore, leads to rigorous solutions. Effects on the beam response include the creep and mechanosorptive creep of both timber and connection, along with concrete creep and shrinkage, and may markedly increase the elastic deflection due to live load. The inelastic strains due to yearly and daily variations of environmental conditions (temperature and relative humidity) produce an important fluctuation of the deflection. A simplified method, which is suitable for practical design of TCCs under long-term loading, is at last proposed. The effects of load, concrete shrinkage, and inelastic strains due to environmental variations are evaluated one by one using approximate formulas and are then superimposed. Creep and mechanosorptive creep are taken into account by adopting modified elastic moduli. The reliability of the proposed method is checked by way of some comparisons with numerical results. The applicability for the case of TCCs in heated indoor conditions is also discussed.
机译:这两篇随附论文的第二部分研究了室外流变条件和湿度计变化对木材-混凝土复合梁(TCC)长期性能的影响。为此,采用了在第一部分中针对两个实验测试提出并验证的数值算法。这种模型充分考虑了所有流变现象,因此提出了严格的解决方案。对梁响应的影响包括木材和连接件的蠕变和机械蠕变,以及混凝土的蠕变和收缩,并且可能显着增加由于活荷载引起的弹性挠度。由于环境条件(温度和相对湿度)的逐日变化而产生的非弹性应变会产生重要的挠度波动。最后提出一种简化的方法,适用于长期载荷下TCC的实际设计。使用近似公式逐一评估荷载,混凝土收缩和因环境变化引起的非弹性应变的影响,然后将其叠加。通过采用改进的弹性模量考虑了蠕变和机械蠕变。通过与数值结果的一些比较,检验了所提出方法的可靠性。还讨论了TCC在加热的室内条件下的适用性。

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