In this study, a simulation-optimization approach is proposed for dynamic design of the urban wastewater collection systems. The proposed approach consists of the mutual integration of the Storm Water Management Model (SWMM), developed by the U.S. Environmental Protection Agency (US-EPA) and the heuristic Harmony Search (HS) optimization approach. Unlike the previous approaches developed to solve wastewater collection system design problems, the proposed approach simulates the hydraulic flow process by considering unsteady state flow conditions based on the dynamic wave model. The objective of the HS-based optimization model is to determine the pipe slopes so that the total system cost is minimized. After determining the pipe slopes, the corresponding pipe diameters were determined by developing an internal solution approach. All the physical and managerial constraints that should be considered during the search process have been considered by means of the penalty function approach. The applicability of the proposed approach was evaluated by solving two example problems. Identified results indicated that the proposed approach can effectively solve the dynamic design problems of the wastewater collection systems.
Wastewater collection system, SWMM, harmony search, dynamic design
In this study, a simulation-optimization approach is proposed for dynamic design of the urban wastewater collection systems. The proposed approach consists of the mutual integration of the Storm Water Management Model (SWMM), developed by the U.S. Environmental Protection Agency (US-EPA) and the heuristic Harmony Search (HS) optimization approach. Unlike the previous approaches developed to solve wastewater collection system design problems, the proposed approach simulates the hydraulic flow process by considering unsteady state flow conditions based on the dynamic wave model. The objective of the HS-based optimization model is to determine the pipe slopes so that the total system cost is minimized. After determining the pipe slopes, the corresponding pipe diameters were determined by developing an internal solution approach. All the physical and managerial constraints that should be considered during the search process have been considered by means of the penalty function approach. The applicability of the proposed approach was evaluated by solving two example problems. Identified results indicated that the proposed approach can effectively solve the dynamic design problems of the wastewater collection systems.
Wastewater collection system, SWMM, harmony search, dynamic design
Primary Language | English |
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Subjects | Civil Engineering |
Journal Section | Research Articles |
Authors |
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Publication Date | January 1, 2023 |
Submission Date | March 29, 2022 |
Acceptance Date | October 10, 2022 |
Published in Issue | Year 2023, Volume 34, Issue 1 |
Bibtex | @research article { tjce1209180, journal = {Turkish Journal of Civil Engineering}, issn = {2822-6836}, address = {İnşaat Mühendisleri Odası Necatibey Cad. No: 57 Kızılay / Ankara}, publisher = {UCTEA Turkish Chamber of Civil Engineering}, year = {2023}, volume = {34}, number = {1}, pages = {105 - 134}, doi = {10.18400/tjce.1209180}, title = {An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems}, key = {cite}, author = {Gholami, Abbas and Durgut, Pınar Gökçe and Ayvaz, M. Tamer} } |
APA | Gholami, A. , Durgut, P. G. & Ayvaz, M. T. (2023). An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems . Turkish Journal of Civil Engineering , 34 (1) , 105-134 . DOI: 10.18400/tjce.1209180 |
MLA | Gholami, A. , Durgut, P. G. , Ayvaz, M. T. "An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems" . Turkish Journal of Civil Engineering 34 (2023 ): 105-134 <https://dergipark.org.tr/en/pub/tjce/issue/73513/1209180> |
Chicago | Gholami, A. , Durgut, P. G. , Ayvaz, M. T. "An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems". Turkish Journal of Civil Engineering 34 (2023 ): 105-134 |
RIS | TY - JOUR T1 - An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems AU - AbbasGholami, Pınar GökçeDurgut, M. TamerAyvaz Y1 - 2023 PY - 2023 N1 - doi: 10.18400/tjce.1209180 DO - 10.18400/tjce.1209180 T2 - Turkish Journal of Civil Engineering JF - Journal JO - JOR SP - 105 EP - 134 VL - 34 IS - 1 SN - 2822-6836- M3 - doi: 10.18400/tjce.1209180 UR - https://doi.org/10.18400/tjce.1209180 Y2 - 2022 ER - |
EndNote | %0 Turkish Journal of Civil Engineering An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems %A Abbas Gholami , Pınar Gökçe Durgut , M. Tamer Ayvaz %T An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems %D 2023 %J Turkish Journal of Civil Engineering %P 2822-6836- %V 34 %N 1 %R doi: 10.18400/tjce.1209180 %U 10.18400/tjce.1209180 |
ISNAD | Gholami, Abbas , Durgut, Pınar Gökçe , Ayvaz, M. Tamer . "An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems". Turkish Journal of Civil Engineering 34 / 1 (January 2023): 105-134 . https://doi.org/10.18400/tjce.1209180 |
AMA | Gholami A. , Durgut P. G. , Ayvaz M. T. An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems. tjce. 2023; 34(1): 105-134. |
Vancouver | Gholami A. , Durgut P. G. , Ayvaz M. T. An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems. Turkish Journal of Civil Engineering. 2023; 34(1): 105-134. |
IEEE | A. Gholami , P. G. Durgut and M. T. Ayvaz , "An Integrated Simulation-Optimization Approach for Dynamic Design of the Urban Wastewater Collection Systems", Turkish Journal of Civil Engineering, vol. 34, no. 1, pp. 105-134, Jan. 2023, doi:10.18400/tjce.1209180 |