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Optimization of compressed air storage's volume for a stand-alone wind-diesel hybrid system

机译:独立的风-柴油混合动力系统的压缩空气存储量的优化

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Hybrid wind-diesel-compressed air generator with pneumatic hybridization of diesel generator (DG) represents an innovative concept to overcome most of the technical, economic and social barriers that faces the deployment of wind energy in isolated sites. Adding compressed air energy storage (CAES) to the hybrid system increases the wind energy penetration rate in the overall production and further improves fuel savings. The CAES has numerous advantages for wind-diesel systems due to its high power density and reliability. The pneumatic hybridization of the Diesel engine consists to introduce the CAES through the admission valve. The combustion efficiency and the fuel consumption are improved by optimizing air/fuel ratio thanks to the CAES assistance. With limited tank volume, the pressure becomes an influent factor. As the pressure increase inside the tank, more power is required to introduce the same quantity of air. The goal of this study is to find the optimum tank volume, associated with the minimum mass of the tank and the maximum time of feeding DG with CAES.
机译:带有柴油发电机(DG)气动混合动力的混合风柴油压缩空气发电机代表了一种创新概念,可克服在偏远地区部署风能所面临的大多数技术,经济和社会障碍。在混合动力系统中增加压缩空气储能(CAES),可以提高整个生产过程中的风能渗透率,并进一步节省燃料。由于其高功率密度和可靠性,CAES在风柴油系统中具有众多优势。柴油机的气动混合动力是通过进气阀引入CAES。借助CAES的帮助,通过优化空燃比可以提高燃烧效率和燃油消耗。由于油箱容积有限,压力成为影响因素。随着罐内压力的增加,需要更多的功率以引入相同量的空气。这项研究的目的是找到最佳的储罐容积,以及最小的储罐质量和用CAES喂入DG的最长时间。

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