Power-to-Heat for Renewable Energy Integration: Technologies, Modeling Approaches, and Flexibility Potentials

A. Bloess, W. Schill, Alexander Zerrahn
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引用次数: 9

Abstract

Flexibly coupling power and heat sectors may contribute to both renewable energy integration and decarbonization. We present a literature review of modelbased analyses in this field, focusing on residential heating. We compare geographical and temporal research scopes and identify state-of-the-art analytical model formulations, particularly concerning heat pumps and thermal storage. While numerical findings are idiosyncratic to specific assumptions, a synthesis of results generally indicates that power-to-heat technologies can cost-effectively contribute to fossil fuel substitution, renewable integration, and decarbonization. Heat pumps and passive thermal storage emerge as particularly favorable options.
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可再生能源的电-热集成:技术、建模方法和灵活性潜力
灵活耦合电力和热力部门可能有助于可再生能源的整合和脱碳。我们提出了基于模型的分析在这一领域的文献综述,重点是住宅供暖。我们比较了地理和时间的研究范围,并确定了最先进的分析模型公式,特别是关于热泵和储热。虽然数值结果是特定假设的特质,但综合结果通常表明,电转热技术可以经济有效地促进化石燃料替代、可再生能源整合和脱碳。热泵和被动式蓄热成为特别有利的选择。
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