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首页> 外文期刊>Journal of Computational Engineering >Computational Model for Internal Relative Humidity Distributions in Concrete
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Computational Model for Internal Relative Humidity Distributions in Concrete

机译:混凝土内部相对湿度分布的计算模型

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A computational model is developed for predicting nonuniform internal relative humidity distribution in concrete. Internal relative humidity distribution is known to have a direct effect on the nonuniform drying shrinkage strains. These nonuniform drying shrinkage strains result in the buildup of internal stresses, which may lead to cracking of concrete. This may be particularly true at early ages of concrete since the concrete is relatively weak while the difference in internal relative humidity is probably high. The results obtained from this model can be used by structural and construction engineers to predict critical drying shrinkage stresses induced due to differential internal humidity distribution. The model uses finite elment-finite difference numerical methods. The finite element is used to space discretization while the finite difference is used to obtain transient solutions of the model. The numerical formulations are then programmed in Matlab. The numerical results were compared with experimental results found in the literature and demonstrated very good agreement.
机译:开发了用于预测混凝土内部相对湿度分布不均匀的计算模型。已知内部相对湿度分布对不均匀的干燥收缩应变有直接影响。这些不均匀的干燥收缩应变导致内部应力的累积,这可能导致混凝土开裂。由于混凝土相对较弱,而内部相对湿度的差异可能较大,因此在混凝土的早期尤其如此。从该模型获得的结果可被结构和建筑工程师用来预测由于内部湿度分布不同而引起的临界干燥收缩应力。该模型使用有限元素-有限差分数值方法。有限元用于空间离散化,而有限差分用于获得模型的瞬态解。然后在Matlab中对数值公式进行编程。数值结果与文献中的实验结果进行了比较,并显示出很好的一致性。

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