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Thermodynamic and economic analysis of a hybrid ocean thermal energy conversion/photovoltaic system with hydrogen-based energy storage system

机译:具有氢基储能系统的混合海洋热能转换/光伏系统的热力学和经济分析

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The purpose of this study is to define and assess a new, renewable and sustainable energy supply system for islands and remote area where ocean thermal energy conversion (OTEC)/photovoltaic with hydrogen storage system is proposed. Components of this system are a turbine, generator, evaporator, condenser, pumps, photovoltaic panels, electrolyzer, hydrogen tanks, fuel cell and converter. To evaluate the proposed hybrid system, energy, exergy and economic analysis are employed. For OTEC, an optimization algorithm is applied to find the optimum working fluid (R134A, R407C, R410A, R717, R404A, and R423A), evaporation and condensation temperatures, and cold and warm seawater temperature differences between the inlet and outlet of evaporator/condenser. The results demonstrate that the maximum specific power of OTEC was achieved to be 03622 kW/m(2) for R717 and 0.3294 kW/m(2) for R423A working fluids. The overall energy efficiency for the hybrid renewable energy system was obtained 3.318%. The maximum energy loss was occurred by the turbine. The exergy efficiency of the hybrid system was obtained 18.35% and the payback period of the proposed system was obtained around 8 years. The unit electricity cost for the system was achieved as 0.168 $/kWh which is valuable compared to 0.28 $/kWh of the previous system. (C) 2019 Published by Elsevier Ltd.
机译:这项研究的目的是为岛屿和偏远地区定义和评估一种新的,可再生的和可持续的能源供应系统,在该系统中提出了海洋热能转换(OTEC)/光伏储氢系统。该系统的组件是涡轮机,发电机,蒸发器,冷凝器,泵,光伏板,电解器,氢气罐,燃料电池和转换器。为了评估所提出的混合动力系统,需要进行能源,火用和经济分析。对于OTEC,应用了一种优化算法来查找最佳工作流体(R134A,R407C,R410A,R717,R404A和R423A),蒸发和冷凝温度以及蒸发器/冷凝器的入口和出口之间的海水温度和冷海水温差。结果表明,对于R717,OTEC的最大比功率达到了03622 kW / m(2),而对于R423A工作液,则达到了0.3294 kW / m(2)。混合可再生能源系统的整体能效为3.318%。涡轮机发生了最大的能量损失。混合系统的火用效率为18.35%,投资回收期为8年左右。该系统的单位电费成本为0.168 $ / kWh,与之前系统的0.28 $ / kWh相比,这是很有价值的。 (C)2019由Elsevier Ltd.发布

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