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Identifying and Assessing the Critical Criteria for Material Selection in Storm Drainage Networks: A Stationary Analysis Approach

doi: 10.3390/su142113863
Recent years have seen a rise in the frequency and severity of extreme rainstorm events, which have caused widespread damage and death in numerous cities. The manufacture and use of storm drainage materials result in numerous environmental concerns in the construction industry. Green materials for storm drainage networks are environmentally friendly compared to their traditional counterparts. Identifying and assessing sustainability criteria for green materials for storm drain networks has been challenging. This study aims to determine the critical criteria for selecting green materials for storm drainage networks using a stationary analysis approach. To this end, a questionnaire survey was administered to Egyptian storm engineers to assess their importance based on a selection criteria 29 green materials. From the results obtained, “Operation and maintenance cost” and “Use of local material” were seen to be the “stationary materials”. The obtained findings in this research pave the way for the Egyptian storm industry towards becoming environmentally friendly, which will in turn improve the functioning mechanism of sewer networks.
- SRM Institute of Science and Technology India
- KLE Technological University India
- University of Manchester United Kingdom
- Prince Sattam Bin Abdulaziz University Saudi Arabia
- KLE Technological University India
Environmental effects of industries and plants, sustainability criteria; materials selection; importance index; Ginni’s measure of dispersion, TJ807-830, importance index, Ginni’s measure of dispersion, TD194-195, Renewable energy sources, Environmental sciences, materials selection, sustainability criteria, GE1-350
Environmental effects of industries and plants, sustainability criteria; materials selection; importance index; Ginni’s measure of dispersion, TJ807-830, importance index, Ginni’s measure of dispersion, TD194-195, Renewable energy sources, Environmental sciences, materials selection, sustainability criteria, GE1-350
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