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Investigation of the Porosity Distribution, Permeability, and Mechanical Performance of Pervious Concretes

机译:透水混凝土的孔隙率分布,渗透性和力学性能研究

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摘要

Pervious concrete is a kind of porous and permeable material for pavements and slope protection projects, etc. In this paper, a kind of pervious concrete was prepared with Portland cement, silica fume (SF), polycarboxylate superplasticizer (SP), and limestone aggregates. The performance of concrete, such as its porosity, pore distribution, permeability coefficients, and mechanical properties, were studied through laboratory tests. The volumetric porosity was measured by the water displacement method, and the planar porosity and pore size distribution were determined using image processing technology. A permeameter with a transparent sidewall and an exact sidewall sealing method were used to measure the permeability coefficients accurately. The results show that the segregation index and flow values of pastes increased with the increase of SP and water cement ratio (W/C). The measured porosity (volumetric porosity and planar porosity) of pervious concrete with a single-size aggregate was closer to the design porosity than that with the blended aggregate. Compared with the design porosity selected in this study, aggregate size was the main factor influencing the pore distribution of pervious concrete. The standard deviation of the permeability coefficient was less than 0.03 under different hydraulic gradients. It was found that the relationships between the permeability coefficient and volumetric porosity (or effective pore size d 50 ) approximately obey polynomial function. Based on the test results, the optimized parameters were suggested for practical engineering: W/C of 0.26–0.30; 0.5% SP content; 5% SF content; 15–21% design porosity; and aggregate sizes of 4.75–9.5 mm and 9.5–16 mm.
机译:透水混凝土是一种用于路面和护坡工程等的多孔和渗透性材料。本文以硅酸盐水泥,硅粉(SF),聚羧酸类高效减水剂(SP)和石灰石骨料制备了透水混凝土。通过实验室测试研究了混凝土的性能,例如孔隙率,孔分布,渗透系数和机械性能。通过水置换法测量体积孔隙率,并使用图像处理技术确定平面孔隙率和孔径分布。使用具有透明侧壁的渗透仪和精确的侧壁密封方法来精确测量渗透系数。结果表明,随着SP和水灰比(W / C)的增加,浆料的偏析指数和流动值增加。与混合骨料相比,单一尺寸骨料的透水混凝土测得的孔隙度(体积孔隙度和平面孔隙度)更接近设计孔隙度。与本研究选择的设计孔隙度相比,骨料尺寸是影响透水混凝土孔隙分布的主要因素。在不同的水力梯度下,渗透系数的标准偏差小于0.03。发现渗透系数与体积孔隙率(或有效孔径d 50)之间的关系近似服从多项式函数。根据测试结果,为实际工程建议了最佳参数:W / C为0.26-0.30; SP含量为0.5%; SF含量为5%; 15–21%的设计孔隙率;骨料尺寸为4.75–9.5 mm和9.5–16 mm。

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