考虑能量载体依赖性和储能系统的热电能系统的本地能源市场

IF 5.4 Q2 ENERGY & FUELS Smart Energy Pub Date : 2022-05-01 DOI:10.1016/j.segy.2022.100065
Thanh Huynh , Franziska Schmidt , Sebastian Thiem , Martin Kautz , Florian Steinke , Stefan Niessen
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引用次数: 3

摘要

本文介绍了区域供热与电力系统耦合的局部多模式能源市场。在能源系统不断脱碳的过程中,电力系统必须整合越来越多的易挥发的可再生能源,而在热力系统中,对可持续产热的需求不断增加。以市场为基础的地方热电能源系统协调可以帮助缓解这些挑战。在这项工作中,转换资产的充分代表,例如,热泵,是通过在市场上引入新的耦合订单实现的。这使得热和电的明确耦合成为可能,从而实现跨能量负载转移。此外,引入了一种新型的储能订单,为储能系统在本地能源系统中提供了灵活性选择。市场方案的效益以德国一个示范性地方能源系统的提前一天循环为例进行了论证。除其他外,研究结果表明,耦合订单能够缓解具有转换资产的市场参与者的价格和数量风险。此外,储能订单可以在尊重储能系统物理特性的同时为当地能源系统提供运行效益。在指定的日前周期内,输电网的峰值负荷最多可降低18.34%,从而提高了当地能源系统的自给率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Local energy markets for thermal-electric energy systems considering energy carrier dependency and energy storage systems

In this work, a local multi-modal energy market is introduced to couple district heating and electric systems. In the course of the ongoing decarbonization of energy systems, electric systems have to integrate more and more volatile renewable energies, whereas in thermal systems, the demand for sustainable heat generation is continuously increasing. Market-based coordination of local thermal-electric energy systems can help to alleviate these challenges. In this work, an adequate representation of conversion assets, e.g., heat pumps, is achieved by introducing novel coupling orders in the market. These enable an explicit coupling of heat and electricity, and thus cross-energy load-shifts. In addition, a new type of storage orders is introduced to offer flexibility options by energy storage systems in the local energy system. The benefits of the market scheme are demonstrated for a day ahead cycle of an exemplary local energy system in Germany. Inter alia, the results lead to the conclusion that coupling orders are able to alleviate price and volume risks of market participants with conversion assets. Moreover, storage orders can provide operational benefits to the local energy system, while respecting the physical characteristics of energy storage systems. For the specified day ahead cycle, the peak load to the transmission grid can be decreased by up to 18.34%, and, thus improving the self-sufficiency of the local energy system.

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来源期刊
Smart Energy
Smart Energy Engineering-Mechanical Engineering
CiteScore
9.20
自引率
0.00%
发文量
29
审稿时长
73 days
期刊最新文献
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