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March 28, 2026Water0 citationsOpen Access

Assessment of Rainwater Utilization Potential of Sponge Facilities in the Dong–Kang–Ejin Urban Agglomeration

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HRHanyang RanCXChengshun XuJZJinjun Zhou

Key Points

  • The research aims to evaluate the rainwater harvesting potential of sponge city facilities in a specific urban agglomeration.
  • Utilized the Yield Before Spillage (YBS) principle for designing rainwater collection tanks
  • Conducted assessments across different design return periods
  • Analyzed built-up areas within the Dongsheng–Kangbashi–Ejin urban cluster
  • Collection potential varies by year type: wet years > normal years > dry years
  • Ejin Horo Banner shows higher collection potential than Kangbashi District and Dongsheng District
  • Annual runoff volume control rate exceeds 85% in sponge facilities']},
  • simple_explanation':'Rainwater harvesting helps collect rainwater to reduce drainage issues. In sponge cities, special tanks trap rainwater more effectively during wet years compared to dry years. This approach can improve water management in arid areas and reduce costs. 🌧️' } } },

Abstract

While various methods exist for assessing urban rainwater and flood resources, there is a lack of targeted evaluation for the rainwater harvesting potential of areas equipped with sponge city facilities. This study employs the Yield Before Spillage (YBS) principle to design rainwater collection tanks for sponge facilities under different design return periods, conducting a specialized assessment of the rainwater resource potential in built-up sponge facility areas within the “Dongsheng–Kangbashi–Ejin Horo Banner” urban cluster. The results indicate that the collection potential follows the patterns of “wet year > normal year > dry year” and “Ejin Horo Banner > Kangbashi District > Dongsheng District.” A rainwater collection tank designed for a 5-year return period (p = 5a) is more applicable to the study area. The sponge facilities in the study area achieve an annual runoff volume control rate exceeding 85%, effectively alleviating drainage pressure. The conclusions demonstrate that the YBS method can effectively assess the rainwater and flood resources of sponge facilities in arid regions. Tanks designed for the three different return periods all meet the rainwater retention requirements of sponge cities across various hydrological years. In arid areas, tanks designed for lower return periods are sufficient for harnessing rainwater collection potential, offering lower costs.

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Cite This Study

Ran et al. (2026) studied this question.

synapsesocial.com/papers/69c771988bbfbc51511e194chttps://doi.org/10.3390/w18070785
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