Designing Environmentally Friendly Drainager Systems In Flood-Potential Urban Areas
DOI:
https://doi.org/10.56338/ijhess.v6i4.6897Keywords:
Drainage System, Environmentally Friendly, Flooding, Urban Areas, SustainabilityAbstract
Rapidly growing urban areas often face flooding issues caused by inadequate drainage management. This article discusses the design of an environmentally friendly drainage system as a solution to address flooding problems in urban areas. The environmentally sustainable drainage system focuses on the principles of sustainability and utilizes natural elements to reduce the negative impacts of flooding. This study explores various approaches that can be applied in designing drainage systems in flood-prone urban areas. The expected outcome is an efficient, environmentally friendly, and sustainable drainage system.
References
Abdelkarim, A., Gaber, A. F. D., Youssef, A. M., & Pradhan, B. (2019). Flood hazard assessment of the urban area of Tabuk city, Kingdom of Saudi Arabia by integrating spatial-based hydrologic and hydrodynamic modeling. Sensors (Switzerland), 19(5). https://doi.org/10.3390/s19051024
Cea, L., & Costabile, P. (2022). Flood Risk in Urban Areas: Modelling, Management and Adaptation to Climate Change: A Review. Hydrology, 9(3). https://doi.org/10.3390/hydrology9030050
Sammen, S. S., Mohammad, T. A., & Majeed, Q. G. (2019). Environmental Consideration in Flood Mitigation and River Restoration. IOP Conference Series: Materials Science and Engineering, 518(2). https://doi.org/10.1088/1757-899X/518/2/022088
Sandink, D., & Binns, A. D. (2021). Reducing Urban Flood Risk Through Building- and Lot-Scale Flood Mitigation Approaches: Challenges and Opportunities. Frontiers in Water, 3(August), 1–20. https://doi.org/10.3389/frwa.2021.689202
Yuan, L. C., & Wai, T. L. (2022). Climate Change Adaptation for Urban Drainage System Design. Recent Trends in Civil Engineering and Built Environment, 3(1), 12–22. http://publisher.uthm.edu.my/periodicals/index.php/rtcebe
Zarei, A. K., Ghasemi, S., Parvaresh, H., & Qanateghestani, M. D. (2024). Design of an environmental management model for the efficient use of urban floods using the DPSIR model ( Case study?: Tehran city ). 8(1), 1–11.
Cea, L., & Costabile, P. (2022). Flood Risk in Urban Areas: Modelling, Management and Adaptation to Climate Change: A Review. Hydrology, 9(3). https://doi.org/10.3390/hydrology9030050
Sammen, S. S., Mohammad, T. A., & Majeed, Q. G. (2019). Environmental Consideration in Flood Mitigation and River Restoration. IOP Conference Series: Materials Science and Engineering, 518(2). https://doi.org/10.1088/1757-899X/518/2/022088
Sandink, D., & Binns, A. D. (2021). Reducing Urban Flood Risk Through Building- and Lot-Scale Flood Mitigation Approaches: Challenges and Opportunities. Frontiers in Water, 3(August), 1–20. https://doi.org/10.3389/frwa.2021.689202
Yuan, L. C., & Wai, T. L. (2022). Climate Change Adaptation for Urban Drainage System Design. Recent Trends in Civil Engineering and Built Environment, 3(1), 12–22. http://publisher.uthm.edu.my/periodicals/index.php/rtcebe
Zarei, A. K., Ghasemi, S., Parvaresh, H., & Qanateghestani, M. D. (2024). Design of an environmental management model for the efficient use of urban floods using the DPSIR model ( Case study?: Tehran city ). 8(1), 1–11.
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Published
2024-11-30
How to Cite
Mohamad Djaelani. (2024). Designing Environmentally Friendly Drainager Systems In Flood-Potential Urban Areas. International Journal of Health, Economics, and Social Sciences (IJHESS), 6(4), 1223–1227. https://doi.org/10.56338/ijhess.v6i4.6897