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透水混凝土路面在中国“海绵城市”“呼吸式”设计中的应用。

Application of pervious concrete pavement in the "breathe in-breathe out" design for sponge cities in China.

机构信息

Shaanxi Provincial Key Laboratory of Surface System and Environmental Carrying Capacity, College of Urban and Environmental Sciences, Northwest University, Xi'an, 710127, China.

School of Highway, Chang'an University, Xi'an, 710064, China.

出版信息

Environ Sci Pollut Res Int. 2024 Jun;31(28):40818-40837. doi: 10.1007/s11356-024-33760-6. Epub 2024 Jun 2.

Abstract

Sponge city construction is an ideal approach to mitigate the degradation of urban water environments. Among road materials, permeable concrete pavement stands out due to its unique structure that allows rainwater runoff to flow through its pores. This paper analyzes the current application status and the prospect of different permeable pavement designs in China's sponge cities, aiming to offer valuable insights for urban planning and construction. Statistical analysis summarizes the spatial-temporal distribution patterns of urban flooding disasters in China and their causes. By comparing the characteristics and advantages of pervious concrete pavement with traditional concrete pavement, the potential of permeable concrete pavement in sponge city construction is summarized through case studies. The findings highlight that by adjusting the pore size, permeable concrete pavement can collect rainwater while filtering impurities, thereby purifying surface runoff. The range of the pervious coefficient should ideally fall within the range of 4~8 mm/s. In addition, the pavement's large contact area with the air and internal water evaporation contributes to its self-regulating capability, reducing the occurrence of extreme temperatures. Related experiments have shown that from 8 am to 12 pm, pervious concrete pavement can reduce the temperature by approximately 1 °C compared to conventional concrete. From 12 pm to 8 pm, this temperature difference increases to approximately 3 °C. To meet the needs of environmental protection and resource utilization, permeable concrete pavement can serve as an ideal tool to achieve green and low-carbon development.

摘要

海绵城市建设是缓解城市水环境恶化的理想途径。在道路材料中,透水混凝土路面因其独特的结构而脱颖而出,雨水可以通过其孔隙流走。本文分析了中国海绵城市中不同透水路面设计的应用现状和前景,旨在为城市规划和建设提供有价值的见解。统计分析总结了中国城市内涝灾害的时空分布规律及其成因。通过比较透水混凝土路面与传统混凝土路面的特点和优势,通过案例研究总结了透水混凝土路面在海绵城市建设中的潜力。研究结果表明,通过调整孔径大小,透水混凝土路面可以在收集雨水的同时过滤杂质,从而净化地表径流。透水系数的范围理想情况下应在 4~8mm/s 之间。此外,路面与空气的大面积接触和内部水的蒸发有助于其自我调节能力,降低极端温度的发生。相关实验表明,从上午 8 点到下午 12 点,透水混凝土路面可比传统混凝土路面降低约 1°C 的温度。从下午 12 点到晚上 8 点,温差增加到约 3°C。为了满足环境保护和资源利用的需求,透水混凝土路面可以作为实现绿色低碳发展的理想工具。

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