城市分布式径流模型在城市排水管网排水量和水深计算中的有效性

IF 2.5 3区 工程技术
Yang Zhou, Yi-ling Leng, Peng-yu Wang, Shang-hong Zhang, Yu-long Zhu, Yu-jun Yi
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引用次数: 0

摘要

有效的城市土地利用重新规划和排水管网的战略布局可以显著提高城市的防洪能力。为了降低城市内涝的潜在风险,本文介绍了一种简单高效的城市分布式径流模型(UDRM)。该模型用于量化不同降雨强度和土地利用情景下城市排水管网的排水量和水深。UDRM 的纳什效率系数超过 0.9,表明其计算效率高,在预测城市内涝方面具有潜在优势。通过采用不同的洪水重现间隔,实现了对当前和重新规划的土地利用类型下的排水条件的预测。研究结果表明,重新规划的土地利用策略可有效降低排水管网上游 20 年一遇和 50 年一遇洪水重现期的洪水风险。然而,在极端降雨事件(100 年一遇洪水重现期)的情况下,重新规划的土地利用方法无法满足减轻洪水灾害的必要要求。在这种情况下,采用直径更大的排水管道成为满足排水需求的必要条件。因此,所提出的 UDRM 有效地将土地利用信息与管道数据相结合,为管道改造和土地利用优化提供了切实可行的建议,以应对城市洪涝灾害。因此,这种方法值得在城市重新规划领域进一步推广。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effectiveness of urban distributed runoff model for discharge and water depth calculation in urban drainage pipe networks

Effective urban land-use re-planning and the strategic arrangement of drainage pipe networks can significantly enhance urban flood defense capacity. Aimed at reducing the potential risks of urban flooding, this paper presents a straightforward and efficient approach to an urban distributed runoff model (UDRM). The model is developed to quantify the discharge and water depth within urban drainage pipe networks under varying rainfall intensities and land-use scenarios. The Nash efficiency coefficient of UDRM exceeds 0.9, which indicates its high computational efficiency and potential benefit in predicting urban flooding. The prediction of drainage conditions under both current and re-planned land-use types is achieved by adopting different flood recurrence intervals. The findings reveal that the re-planned land-use strategies could effectively diminish flood risk upstream of the drainage pipe network across 20-year and 50-year flood recurrence intervals. However, in the case of extreme rainfall events (a 100-year flood recurrence), the re-planned land-use approach fell short of fulfilling the requirements necessary for flood disaster mitigation. In these instances, the adoption of larger-diameter drainage pipes becomes an essential requisite to satisfy drainage needs. Accordingly, the proposed UDRM effectively combines land-use information with pipeline data to give practical suggestions for pipeline modification and land-use optimization to combat urban floods. Therefore, this methodology warrants further promotion in the field of urban re-planning.

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来源期刊
自引率
12.00%
发文量
2374
审稿时长
4.6 months
期刊介绍: Journal of Hydrodynamics is devoted to the publication of original theoretical, computational and experimental contributions to the all aspects of hydrodynamics. It covers advances in the naval architecture and ocean engineering, marine and ocean engineering, environmental engineering, water conservancy and hydropower engineering, energy exploration, chemical engineering, biological and biomedical engineering etc.
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