Water Science and Technology (Jun 2024)

Urban flood modeling with a novel coupling method of surface and sewer hydrodynamic processes

  • Siyi Wang,
  • Jiaying Wang,
  • Kunlun Xin,
  • Hexiang Yan,
  • Shuping Li,
  • Tao Tao

DOI
https://doi.org/10.2166/wst.2024.172
Journal volume & issue
Vol. 89, no. 11
pp. 3021 – 3034

Abstract

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Drainage modeling that accurately captures urban storm inundation serves as the foundation for flood warning and drainage scheduling. In this paper, we proposed a novel coupling ideology that, by integrating 2D-1D and 1D-2D unidirectional processes, overcomes the drawback of the conventional unidirectional coupling approach that fails to properly represent the rainfall surface catchment dynamics, and provides more coherent hydrological implications compared to the bidirectional coupling concept. This paper first referred to a laboratory experimental case from the literature, applied and analyzed the coupling scheme proposed in this paper and the bidirectional coupling scheme that has been widely studied in recent years, compared the two coupling solutions in terms of the resulting accuracy and applicability, and discussed their respective strengths and weaknesses to validate the reliability of the proposed method. The verified proposed coupling scheme was then applied to the modeling of a real drainage system in a region of Nanjing, China, and the results proved that the coupling mechanism proposed in this study is of practical application value. HIGHLIGHTS A novel coupling approach by combining two unidirectional processes.; Comparison with bidirectional tight coupling scheme in terms of simulation accuracy and applicability.; The proposed coupling idea provides reliable outcomes with enhanced applicability.;

Keywords