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首页> 外文期刊>Transport in Porous Media >A Dual-Permeability Approach to Study Anomalous Moisture Transport Properties of Cement-Based Materials
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A Dual-Permeability Approach to Study Anomalous Moisture Transport Properties of Cement-Based Materials

机译:研究水泥基材料异常水分运输性能的双渗透性方法

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摘要

Anomalous moisture transport in cement-based materials is often reported in the literature, but the conventional single-porosity moisture transport models generally fail to provide accurate simulation results. Previous studies suggested that the anomalous moisture transport could be caused by different moisture transport velocity in large and small pores. Based on this concept, the present study proposes a continuous dual-permeability model for cement-based material. The proposed model includes the transport contribution of both liquid water and water vapor, which are governed by liquid advection and vapor diffusion, respectively. We explicitly consider that moisture transport in the large pore region is faster than the small pore region. The volumetric fraction of each region is determined when fitting the measured sorption isotherms by using a bimodal equation. The validation with experimental data shows that the dual-permeability model can well simulate both the "normal" and the anomalous moisture transport. The applicability of the proposed model implies that the "dual-porosity property" could be one of reasons that cause anomalous moisture transport in cementitious materials. In addition, results show that vapor diffusion can be neglected for moisture transport in both porosities at high relative humidity (RH), while at low RH, vapor diffusion must be considered.
机译:在文献中经常报道水泥基材料中的异常水分运输,但传统的单孔隙度水分运输模型通常不能提供精确的模拟结果。以前的研究表明,异常的水分运输可能是大小孔隙中的不同水分运输速度引起的。基于该概念,本研究提出了一种用于水泥基材料的连续双渗透性模型。所提出的模型包括分别由液体平流和蒸汽扩散的液态水和水蒸气的传输贡献。我们明确认为大孔区域的水分运输比小孔区域更快。当使用双模方程将测量的吸附等温线拟合时,确定每个区域的体积分数。实验数据的验证表明,双渗透模型可以很好地模拟“正常”和异常水分运输。所提出的模型的适用性意味着“双孔隙性质”可以是导致水泥材料中不正常水分运输的原因之一。另外,结果表明,对于在高相对湿度(RH)的两个孔隙中,可以忽略蒸汽扩散,而在低RH时,必须考虑蒸汽扩散。

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