Improving the Efficiency and Environmental Friendliness of Urban Stormwater Management by Enhancing the Water Filtration Model in Rain Gardens

Author:

Kravchenko Maryna1ORCID,Trach Yuliia23ORCID,Trach Roman24ORCID,Tkachenko Tetiana1,Mileikovskyi Viktor1

Affiliation:

1. Institute of Engineering Systems and Ecology, Kyiv National University of Construction and Architecture, Povitrianykh Syl pr., 31, 03037 Kyiv, Ukraine

2. Institute of Civil Engineering, Warsaw University of Life Sciences, 02-776 Warsaw, Poland

3. Institute of Agroecology and Land Management, National University of Water and Environmental Engineering, 33028 Rivne, Ukraine

4. Institute of Civil Engineering and Architecture, National University of Water and Environmental Engineering, 33028 Rivne, Ukraine

Abstract

Rain gardens are used to solve urban problems related to the negative impact of stormwater. (1) Scientific contributions from different countries provide general guidelines for the design and operation of rain gardens in different geographical areas. Given the small spatial scale of rain gardens, the use of existing infiltration models often leads to design errors. (2) The purpose of this paper is to develop a hydrological model by introducing a system of equations that extends the ability to calculate the rate, flow rate and time of saturation of layers with moisture and rainwater leakage from the rain garden system. (3) The results obtained allow us to describe the dynamic processes of passage and saturation of layers of the rain garden at a certain point in time, which extends the ability to calculate the flow rate. It was established that the smaller the area of the rain garden compared to the area of the catchment basin, the faster it reaches its full saturation. Increasing the thickness of the rain garden layers allows for an increase in the efficiency of water retention at a lower value of the area ratio. (4) The practical significance of the results obtained is especially important for the correct description of hydrodynamics in the system and determining the optimal conditions for the effective functioning and management of the rain garden structure for any climatic region.

Funder

Erasmus + Programme “Multilevel Local, Nation- and Regionwide Education and Training in Climate Services, Climate Change Adaptation and Mitigation–Claimed”

State Grant of Ministry of Education and Science of Ukraine

Publisher

MDPI AG

Reference77 articles.

1. Infrastructural events? Flood disaster, narratives and framing under hazardous urbanisation;Coates;Int. J. Disaster Risk Reduct.,2022

2. “Green structures” for effective rainwater management on roads;Hlushchenko;Prod. Eng. Arch.,2022

3. Sustainable Drainage and Urban Landscape Upgrading Using Rain Gardens. Site Selection in Thessaloniki, Greece;Katsifarakis;Agric. Agric. Sci. Procedia,2015

4. Analysis of direct rework costs in Ukrainian construction;Trach;Arch. Civ. Eng.,2021

5. Modeling low impact development in two Chicago communities;Martin;Environ. Sci. Water Res. Technol.,2015

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