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Innovative Energy Storage for Off-Grid RES-Based Power Systems: Integration of Flywheels with Hydrogen Utilization in Fuel Cells

机译:离网基于RES的电力系统的创新储能:飞轮与燃料电池中氢利用的集成

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This work investigates the feasibility of a renewable energy sources (RES)-based stand-alone power system for electricity supply, to several simulated buildings, where energy is stored in a flywheel energy storage system (FESS). The system is assumed to be located on Naxos Island, Greece, due to the island's high wind and solar potential and was designed to cover both the load of a typical house and a country house, where the excess electricity could be sold to the grid. An innovative storage device type, consisting of flywheels and electrochemical batteries, was selected as the energy buffer. The energy produced by hydrogen used in the proton electrolyte membrane (PEM) fuel cell (FC) charges the flywheel. This apparatus is compared to diesel generators commonly used in stationary applications. Optimization of the system, in terms of energy efficiency and economic feasibility, is also considered. The two systems were simulated using sensitivity, optimization, and simulation modeling software, and custom calculations of both energy and finance were carried out. It was found that a oneway grid connected project using state-of-the-art and totally green technologies, including hydrogen-fed PEM-FC and flywheels, can totally cover the electrical demands of a typical house and country house, obtaining cost per consumed energy as low as 1.374 and 0.097 $/KWh, respectively. These results actually indicate that hydrogen technology could be a reliable energy alternative in the near future.
机译:这项工作研究了基于可再生能源(RES)的独立电源系统向几座模拟建筑物供电的可行性,这些建筑物的能量存储在飞轮储能系统(FESS)中。由于该岛的高风能和太阳能潜力,该系统被假定位于希腊的纳克索斯岛,其设计目的是要覆盖典型房屋和乡间别墅的负荷,在多余的电力可以出售给电网的同时。选择了由飞轮和电化学电池组成的创新型存储设备作为能量缓冲。质子电解质膜(PEM)燃料电池(FC)中使用的氢产生的能量为飞轮充电。将该设备与固定应用中常用的柴油发电机进行了比较。还考虑了在能源效率和经济可行性方面的系统优化。使用灵敏度,优化和仿真建模软件对这两个系统进行了仿真,并对能源和财务进行了自定义计算。结果发现,使用氢和PEM-FC和飞轮等最新技术和完全绿色技术的单向并网项目可以完全满足典型房屋和乡间别墅的用电需求,从而获得单位消费成本能量分别低至1.374和0.097 $ / KWh。这些结果实际上表明,氢技术在不久的将来可以成为可靠的能源替代方案。

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