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Influence of pore tortuosity on hydraulic conductivity of pervious concrete: Characterization and modeling

机译:孔曲率对透水混凝土水力传导率的影响:表征与建模

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A variety of empirical models have been proposed by other researchers correlating hydraulic conductivity to effective porosity for pervious concrete (PC). However, most of these models do not account for the influence of pore tortuosity or require complicated measurements. To quantify the influence of pore tortuosity, PC with different microstructure is proportioned through varying workability of matrix, amount of binder and size of aggregate. A relationship between relative mean pore size and pore tortuosity is proposed and incorporated into the Kozeny-Carman model. The relative mean pore size is defined as the ratio of mean pore size to aggregate size. Mean pore size is derived from the pore size distribution (PSD) extracted from linear path function (LPF) tailored to PC. The modified Kozeny-Carman model is validated by the agreement between predicted and experimentally obtained results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:其他研究人员已经提出了各种经验模型,这些模型将渗透性与渗透混凝土的有效孔隙率相关。但是,大多数这些模型都没有考虑孔隙曲折的影响或需要复杂的测量。为了量化孔隙曲率的影响,通过改变基体的可加工性,粘合剂的量和聚集体的大小,对具有不同微观结构的PC进行配比。提出了相对平均孔径和曲折度之间的关系,并将其纳入Kozeny-Carman模型。相对平均孔径定义为平均孔径与聚集体大小之比。平均孔径是从为PC定制的线性路径函数(LPF)中提取的孔径分布(PSD)得出的。修改后的Kozeny-Carman模型通过预测和实验获得的结果之间的一致性进行了验证。 (C)2016 Elsevier Ltd.保留所有权利。

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