首页> 外文期刊>Engineering computations: International journal for computer-aided engineering and software >Mechanical and durability behaviour of growing concrete structures
【24h】

Mechanical and durability behaviour of growing concrete structures

机译:生长混凝土结构的机械和耐久性能

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Purpose - This paper seeks to analyse 3D growing concrete structures taking into account the phenomenon of body accretion, necessary for the simulation of the construction sequence, and carbon dioxide attack. Design/methodology/approach - A typical 3D segmenta! bridge made of precast concrete is studied through a fully coupled thermo-hygro-mechanical F.E. model. The durability of the bridge is evaluated and carbonation effects are considered. Creep, relaxation and shrinkage effects are included according to the theory developed in the 1970s by Bazant for concretes and geomaterials; the fluid phases are considered as a unique mixture which interacts with a solid phase. The porous material is modelled using n Maxwell elements in parallel (Maxwell-chain model). Findings - First, calibration analyses are developed to check the VISCO3I) model capabilities for predicting carbonation phenomena within concrete and the full 3D structure is modelled to further assess the durability of the bridge under severe conditions of CO_2 attack. Originality/value - The adopted numerical model accounts for the strong coupling mechanisms of CO_2 diffusion in the gas phase, moisture and heat transfer, CaCO_3 formation and the availability of Ca(OH)_2 in the pore solution due to its transport by water movement. Additionally, the phenomenon of a sequential construction is studied and numerically reproduced by a sequence of "births" for the 3D finite elements discretizing the bridge. The fully coupled model is here extended to 3D problems for accreting bodies (as segmental bridges) in order to gather the effects of multi-dimensional attacks of carbon dioxide for such structures.
机译:目的 - 本文试图分析三维生长混凝土结构,同时考虑模拟施工顺序所必需的身体吸积现象和二氧化碳侵蚀。设计/方法/途径 - 典型的 3D 分段a!通过完全耦合的热-湿-机械F.E.模型研究了由预制混凝土制成的桥梁。评估桥梁的耐久性并考虑碳化效应。根据 Bazant 在 1970 年代为混凝土和地质材料开发的理论,包括蠕变、松弛和收缩效应;流体相被认为是与固相相互作用的独特混合物。使用n个麦克斯韦单元并联(麦克斯韦链模型)对多孔材料进行建模。结果 - 首先,开发校准分析以检查预测混凝土内碳化现象的VISCO3I)模型能力,并对全三维结构进行建模,以进一步评估桥梁在恶劣CO_2侵蚀条件下的耐久性。独创性/价值 - 所采用的数值模型考虑了气相中CO_2扩散、水分和传热、CaCO_3形成以及孔隙溶液中Ca(OH)_2的可用性的强耦合机制,这是由于其通过水运动传输而产生的。此外,还研究了顺序结构的现象,并通过离散桥梁的 3D 有限元的“出生”序列进行数值再现。在这里,完全耦合模型扩展到吸积体(作为节段桥)的 3D 问题,以收集二氧化碳对此类结构的多维攻击的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号