The main goal of this study is to address pumped hydroelectric energy storage (PHES) technology integration with hydroelectric, solar, and wind sources. It makes an analysis of the costs and the environmental impact of PHES as well as its opportunities. This paper is meant to prevent flooding in the city of Derna and to leverage the solar and wind generators that have become increasingly popular. The model under consideration is a 30, 25, and 40 MW capacity for hydroelectric, solar, and wind power generation, respectively. Through the use of the MATLAB program for simulations, the work provides the underpinning of the success and practicality of this unified station. The results will demonstrate the numerical dimensions of the model. They will also show how PHES is not only cost-effective and environmentally friendly but also a sustainable solution. This paper offers up innovative ideas on the combination of numerous renewable energy sources and the possibility for massive energy storage. This provides policymakers, the research and industry professionals with valuable information on the way forward for sustainable energy.

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Solar and Wind Energy Generation Systems with Pumped Hydro Energy Storage: City of Derna

  • Monaem Elmnifi,
  • Ahmed Nassar Mansur,
  • Ziad M. Almakhyoul,
  • Muhammad Asmail Eleiwi,
  • Duyun Tatyana Aleksandrovna,
  • Hasan Shakir Majdi,
  • Laith Jaafer Habeeb,
  • Mohamed Khaleel,
  • Yasser F. Nassar

摘要

The main goal of this study is to address pumped hydroelectric energy storage (PHES) technology integration with hydroelectric, solar, and wind sources. It makes an analysis of the costs and the environmental impact of PHES as well as its opportunities. This paper is meant to prevent flooding in the city of Derna and to leverage the solar and wind generators that have become increasingly popular. The model under consideration is a 30, 25, and 40 MW capacity for hydroelectric, solar, and wind power generation, respectively. Through the use of the MATLAB program for simulations, the work provides the underpinning of the success and practicality of this unified station. The results will demonstrate the numerical dimensions of the model. They will also show how PHES is not only cost-effective and environmentally friendly but also a sustainable solution. This paper offers up innovative ideas on the combination of numerous renewable energy sources and the possibility for massive energy storage. This provides policymakers, the research and industry professionals with valuable information on the way forward for sustainable energy.