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基于储氢的微电网技术经济数据集。

Techno-economic dataset for hydrogen storage-based microgrids.

作者信息

Rozzi Elena, Minuto Francesco D, Lanzini Andrea

机构信息

Department of Energy, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.

Energy Center Lab, Politecnico di Torino, Via Paolo Borsellino, 38, 10138 Torino, Italy.

出版信息

Data Brief. 2024 Aug 3;56:110795. doi: 10.1016/j.dib.2024.110795. eCollection 2024 Oct.

Abstract

The challenge of energy storage is a pivotal consideration in renewable energy-based power systems. Hydrogen emerges as a highly promising alternative or complementary solution to electric batteries, showcasing its potential for long-term and high-capacity storage. In this context, energy system modeling and optimization has gained prominence as an indispensable research tool, aiding in the processes of designing, sizing, and managing the day-to-day operations of renewable energy systems integrated with a hydrogen storage unit. However, the gathering of reliable and accurate techno-economic data emerges as time-consuming tasks, and the lack of standardized reference data introduces variability in model results. This variability arises from inconsistent input parameters rather than the physics or complexity of energy systems, leading to potentially erroneous results and misguided policy recommendations. Recognizing the need for comprehensive and transparent datasets, we introduce this open data techno-economic repository. The dataset is meticulously designed to encompass key technologies essential for hydrogen production, compression, storage, and utilization within a power-to-power system. Specifically, techno-economic data are reported for electrolysers, fuel cells, battery energy storage systems, hydrogen compression units, and hydrogen storage vessels. The learning curves and cost functions embedded in this paper, delineating investment costs as a function of production scale up and size, are derived directly from the raw data, providing a nuanced understanding of the economic landscape.

摘要

储能挑战是基于可再生能源的电力系统中的一个关键考量因素。氢作为一种极具潜力的替代或补充解决方案,相对于电池而言脱颖而出,展现出其在长期和大容量存储方面的潜力。在此背景下,能源系统建模与优化已成为一种不可或缺的研究工具,有助于设计、确定规模以及管理与氢存储单元集成的可再生能源系统的日常运行。然而,收集可靠且准确的技术经济数据是一项耗时的任务,并且缺乏标准化参考数据会导致模型结果出现差异。这种差异源于输入参数不一致,而非能源系统的物理特性或复杂性,从而可能导致错误结果和误导性的政策建议。认识到需要全面且透明的数据集,我们引入了这个开放数据技术经济知识库。该数据集经过精心设计,涵盖了电力到电力系统中氢气生产、压缩、存储和利用所需的关键技术。具体而言,报告了电解槽、燃料电池、电池储能系统、氢气压缩单元和氢气存储容器的技术经济数据。本文中嵌入的学习曲线和成本函数,将投资成本描述为生产规模扩大和规模的函数,直接源自原始数据,从而对经济格局提供了细致入微的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd68/11372607/444617e07018/gr1.jpg

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