Techno-Economic and Environmental Analysis of a Renewable Hybrid System in Southern Morocco

E. Achbab, R. Lambarki, Hassan Rhinane, D. Saifaoui
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Abstract

This article presents an assessment of the technical and economic feasibility of a 20 MW grid-connected wind-solar-photovoltaic hybrid system in the city of Dakhla, located in southern Morocco. During this study, GIS and virtual reality were integrated to model and simulate the productivity of the hybrid system under local climatic conditions. Additionally, 3D modeling of the system provides an immersive view to visually assess the system’s impact on the local landscape and anticipate potential logistical challenges. By taking advantage of this technology, our study goes beyond traditional models, proposing an innovative approach to better understand the spatial and visual dimensions of the project. The results of our study, based on these state-of-the-art methodologies, reveal promising conclusions regarding its annual energy production, which is approximately 60 GW, the level-ized cost of energy of the system, which is approximately LCOE = $0.045/kWh, the net present value (NPV) of $27,439,559.00, the internal rate of return (IRR) of 17.5%, and a discounted payback period (DPP) of 8 years. Ad-ditionally, from an environmental perspective, the hybrid system has the capacity to avoid approximately 936,494 tons of greenhouse gas emissions, equivalent to savings of approximately $18,729,875.00 in terms of carbon dioxide reduction over its lifetime.
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摩洛哥南部可再生混合动力系统的技术经济和环境分析
本文对位于摩洛哥南部达赫拉市的 20 兆瓦并网风能-太阳能-光伏发电混合系统的技术和经济可行性进行了评估。在这项研究中,地理信息系统(GIS)与虚拟现实相结合,对混合系统在当地气候条件下的生产率进行了建模和模拟。此外,该系统的三维建模提供了一个身临其境的视角,可直观地评估该系统对当地景观的影响,并预测潜在的物流挑战。通过利用这项技术,我们的研究超越了传统模型,提出了一种创新方法,以更好地理解项目的空间和视觉维度。基于这些最先进的方法,我们的研究结果表明,该项目年发电量约为 60 千兆瓦,系统的平准化能源成本约为 LCOE = 0.045 美元/千瓦时,净现值 (NPV) 为 27,439,559.00 美元,内部收益率 (IRR) 为 17.5%,贴现回收期 (DPP) 为 8 年。此外,从环保角度来看,混合动力系统可避免约 936,494 吨温室气体排放,相当于在其使用寿命内减少二氧化碳排放约 18,729,875.00 美元。
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