基于太阳辐射的清洁能源电解制氢系统综合分析

Ronald Mas, Antonios Antoniou, Cesar Celis, A. Berastain
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引用次数: 1

摘要

本文对基于太阳辐射的电解制氢系统进行了全面的分析。在参考分析中,研究了直接耦合的光伏-电解槽制氢系统。具体来说,所研究的系统分为三个子系统,(i)光伏发电,(ii)基于电解槽的制氢,(iii)储氢罐,每个子系统都有自己的模型考虑和限制。详细的数学模型涉及子系统,包括不同的光伏和电解槽相关技术,已经开发和使用在这里进行的分析。特别地,利用上述数学模型,开发了一个建模和仿真平台。一旦开发完成,该平台已被用于参数化研究整个制氢系统的行为,包括太阳辐照度、光伏组件和电解槽温度以及制氢速率等关键变量。已经首先确定了几个工厂设计方案,并从获得的结果中选择了一个具体方案进行进一步评估。这里研究的特定系统目前处于设计阶段,因此这项工作的结果将在将来不仅用于适当地确定其大小,而且用于构建和测试它。预计大规模绿色制氢工厂的实施将减少能源生产系统对健康和环境的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comprehensive Analysis of an Electrolytic Hydrogen Production System Based on Solar Radiation for the Generation of Clean Energy
A comprehensive analysis of electrolytic hydrogen production systems based on solar radiation is carried in this work. In the referred analysis, directly coupled photovoltaic-electrolyzer hydrogen production systems were studied. Specifically, the studied systems were split into three subsystems, (i) photovoltaic (PV) power production, (ii) electrolyzer based hydrogen production, and (iii) hydrogen storage in tanks, each of them having its own model considerations and restrictions. Detailed mathematical models for the referred subsystems, including different photovoltaic and electrolyzer related technologies, have been developed and utilized in the analyses performed here. In particular, employing the aforementioned mathematical models, a modeling and simulation platform has been developed. Once developed, such platform has been used to parametrically study the behavior of entire hydrogen production systems, accounting for key variables such as solar irradiance, photovoltaic modules and electrolyzer cells temperature, and hydrogen production rate. Several plant designs options have been firstly determined and from the obtained results a specific one has been selected to further assessments. The particular system studied here is currently in the design phase so the outcomes from this work will be used in future for not only properly sizing it but also building and testing it. It is expected that the implementation of large-scale green hydrogen production plants will reduce the impact of energy production systems on both health and environment.
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