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Integrated investigation of an incremental launching method for the construction of long-span bridges

机译:大跨度桥梁施工增量发射法综合研究

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This paper conducts a combined experimental and numerical study of the effectiveness of the incremental launching method for the construction and erection of continuous hybrid arch-girder bridges. To verify construction safety for these bridges, the investigation focuses on the stress and deformation levels of the launched structures during the launching process. The stress fluctuation of structural members is analyzed at critical launching stages under the mechanical and wind loads. It is shown that the temporary connectors between steel arches and longitudinal girders are critical to the structures during the launching process, and that the front connector of the first launched span needs specific attention to avoid fatigue and buckling issues. It is further demonstrated that the wind load has a significant effect on both stress and deformation, especially during the critical launching stages. Stiffening the key components is recommended to ensure the safety of bridge structures during the erection process under severe weather and wind conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文对增量发射法在连续混合拱形梁桥施工和安装中的有效性进行了实验和数值研究。为了验证这些桥梁的施工安全性,研究重点在于下水过程中下水结构的应力和变形水平。在机械和风荷载作用下的关键发射阶段,分析结构构件的应力波动。结果表明,在下水过程中,钢拱和纵梁之间的临时连接器对于结构至关重要,并且首次下水跨度的前连接器需要特别注意以避免疲劳和屈曲问题。进一步证明,风荷载对应力和变形都有重要影响,尤其是在关键的发射阶段。建议加强关键部件,以确保在恶劣天气和风条件下安装过程中桥梁结构的安全。 (C)2015 Elsevier Ltd.保留所有权利。

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