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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Energy-exergy and economic analyses of a hybrid solar-hydrogen renewable energy system in Ankara, Turkey
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Energy-exergy and economic analyses of a hybrid solar-hydrogen renewable energy system in Ankara, Turkey

机译:土耳其安卡拉混合太阳能-氢可再生能源系统的能量-能量和经济分析

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摘要

A hybrid (Solar-Hydrogen) stand-alone renewable energy system that consists of photovoltaic panels (PV), Proton Exchange Membrane (PEM) fuel cells, PEM based electrolyzers and hydrogen storage is investigated by developing a complete model of the system using TRNSYS. The PV panels are mounted on a tiltable platform to improve the performance of the system by monthly adjustments of the tilt angle. The total area of the PV panels is 300 m(2), the PEM fuel cell capacity is 5 kW, and the hydrogen storage is at 55 bars pressure and with 45 m(3) capacity. The main goal of this study is to verify that the system meets the electrical power demand of the emergency room without experiencing a shortage for a complete year in an emergency blackout situation. For this purpose, after modeling the system, energy and exergy analyses for the hydrogen cycle of the system for a complete year are performed, and the energy and exergy efficiencies are found as 4.06% and 4.25%, respectively. Furthermore, an economic analysis is performed for a project lifetime of 25 years based on Levelized Cost of Electricity (LCE), and the LCE is calculated as 0.626 $/kWh. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过使用TRNSYS开发系统的完整模型,研究了混合式(太阳能-氢)独立可再生能源系统,该系统由光伏板(PV),质子交换膜(PEM)燃料电池,基于PEM的电解槽和储氢组成。光伏面板安装在可倾斜的平台上,可通过每月调整倾斜角度来提高系统性能。光伏面板的总面积为300 m(2),PEM燃料电池的容量为5 kW,储氢压力为55 bar,容量为45 m(3)。这项研究的主要目的是验证系统是否满足急诊室的电力需求,而在紧急停电情况下却不会出现整年的短缺。为此,在对系统建模之后,对系统进行了整整一年的氢气循环的能量和火用分析,发现能量和火用效率分别为4.06%和4.25%。此外,根据平均电费(LCE)对项目寿命25年进行了经济分析,LCE计算为0.626 $ / kWh。 (C)2016 Elsevier Ltd.保留所有权利。

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