Shaterabadi, MohammadMehrjerdi, HasanDehghanian, PaymanKarimi, Houshang2026-09-252026-09-252024-11-08M. Shaterabadi, H. Mehrjerdi, P. Dehghanian and H. Karimi, "The Energy Management and Planning of the Proposed Water-Energy Nexus Concept by Considering Tidal Turbine and INVELOX as Novel Options," 2024 7th International Conference on Electrical Engineering and Green Energy (CEEGE), Los Angeles, CA, USA, 2024, pp. 29-34, doi: 10.1109/CEEGE62093.2024.107440969798350350623https://doi.org/10.1109/CEEGE62093.2024.10744096https://hdl.handle.net/10315/44081© 2024 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works. This accepted conference paper is published as M. Shaterabadi, H. Mehrjerdi, P. Dehghanian and H. Karimi, "The Energy Management and Planning of the Proposed Water-Energy Nexus Concept by Considering Tidal Turbine and INVELOX as Novel Options," 2024 7th International Conference on Electrical Engineering and Green Energy (CEEGE), Los Angeles, CA, USA, 2024, pp. 29-34, doi: 10.1109/CEEGE62093.2024.10744096.The energy and water crisis due to the rapidly growing population and developing societies caused countries and governments to think about novel technologies and ways to respond to this issue. Therefore, this paper is about energy planning and management of the proposed concept for supplying water and energy simultaneously. This approach helps to overcome and supply the dramatic energy need of desalination and distribution systems. This article aims to supply the demands and minimize the total cost at the same time. Various renewable and non-renewable energy resources such as tidal turbines, INVELOX turbines, CHP, micro-turbines, and other elements are utilized in the proposed planning. Real weather conditions are considered to compute the output power of wind and tidal turbines. The presented water-energy nexus structure is modeled as a MINLP concept and solved in GAMS software using various solvers to illustrate the reliability of the optimization answers. The final results show a high improvement in the total cost reduction.enGreen energyWindCostsEnergy resourcesGovernmentSoftwarePlanningWind turbinesSoftware reliabilityOptimizationEnergy managementINVELOX turbinesRenewable energy sources (RES)Tidal turbinesWater-energy nexusThe energy management and planning of the proposed Water-Energy nexus concept by considering tidal turbine and INVELOX as novel optionsConference Paper