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水力发电学报 ›› 2019, Vol. 38 ›› Issue (3): 218-226.doi: 10.11660/slfdxb.20190323

• • 上一篇    

湿度对混凝土简支梁受力变形影响研究

  

  • 出版日期:2019-03-25 发布日期:2019-03-25

Influence of humidity on stress and deformation of simply supported concrete beams

  • Online:2019-03-25 Published:2019-03-25

摘要: 与水接触的混凝土的湿胀变形必然引起混凝土结构性能变化。基于Fick第二定律建立湿度扩散模型,应用物理试验率定了饱和湿度扩散系数,通过混凝土一维吸水试验验证了模型的合理性。以混凝土简支梁自由吸水为例,采用试验和数值模拟方法研究湿度对梁受力变形影响机理,以数值模拟结果为主研究了湿度引起混凝土弹性模量变化和湿胀效应对梁挠度和截面应变影响,以及二者综合效应对梁截面应力的影响。研究表明,采用的模型和参数可较好地模拟湿度在梁内的非线性分布。因湿度引起弹性模量变化而造成梁挠度及应变变化较小,而吸水湿胀引起梁挠度和应变以及综合效应对梁的应力影响较大。对于与水接触的混凝土结构,设计时有必要考虑湿度对结构产生的影响。

关键词: 湿度, 扩散系数, 弹性模量, 湿胀, 变形

Abstract: Swelling deformation in a concrete structure in direct contact with water inevitably causes changes in its performance. In this study, we develop a humidity diffusion model based on Fick's second law, conduct physical tests to determine saturated humidity diffusion coefficient, and verify the model against the test data of one-dimensional water absorption in concrete. The mechanism of humidity influencing the deformation of a simply supported concrete beam is studied through experimental tests and numerical simulations. And we analyze the simulations to examine humidity effect on elastic modulus, swelling effect on the deflection and strain distribution of the beam, and the combined effects of humidity and swelling on beam stress response. Results show that the model and its parameters adopted in this study are applicable to simulating nonlinear humidity distribution in a beam. The deflection and strain distribution are less affected by humidity change and its effect on elastic modulus, but they are greatly changed by the swelling caused by water absorption. The combined effect of their changes has a greater influence on beam stress response. Thus, we suggest that in designing concrete structures in direct contact with water, the effects of humidity should be considered.

Key words: humidity, diffusion coefficient, elastic modulus, swelling, deformation

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