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Future power market and sustainable energy solutions - The treatment of uncertainties in the daily operation of combined heat and power plants

机译:未来的电力市场和可持续能源解决方案-处理热电联产工厂日常运行中的不确定性

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摘要

Intermittent renewable energy sources (RES) are increasingly used in many energy systems. The higher capacity of intermittent RES increases the importance of introducing flexible generation units into the electricity system balancing. Distributed district heating plants with combined heat and power (CHP) can provide this flexibility. However, in electricity systems with a high penetration of intermittent RES, CHP units are currently experiencing decreasing hours of operation, making it likely that existing CHP capacity will be phased out from the energy system. Furthermore, when the plants provide balancing for the electricity system, the complexity of their daily operation planning is increased. This article analyses and discusses how these units can improve their economic feasibility by providing balancing services to the electricity system, benefitting both each individual plant and the system as a whole. This is done by using the case of the Danish district heating plant, Ringkebing District Heating, which has a relatively high capacity of solar heating installed and is located in an area with a high penetration of wind power. It is found that the plant can increase the economic feasibility of the CHP unit by participating in the electricity balancing tasks; however, it is uncertain whether the benefits are substantial enough to keep the distributed CHP capacity in operation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:间歇性可再生能源(RES)越来越多地用于许多能源系统中。间歇式RES的更高容量增加了将灵活的发电设备引入电力系统平衡的重要性。具有热电联产(CHP)的分布式区域供热厂可以提供这种灵活性。但是,在间歇性RES渗透率较高的电力系统中,CHP装置的运行小时数正在减少,这使得现有的CHP容量可能会从能源系统中逐步淘汰。此外,当工厂为电力系统提供平衡时,其日常运营计划的复杂性也会增加。本文分析并讨论了这些单元如何通过为电力系统提供平衡服务来提高其经济可行性,从而使每个工厂和整个系统受益。这可以通过丹麦区域供热厂Ringkebing区域供热的案例来完成,该工厂安装了相对较高的太阳能供热能力,并且位于风能渗透率较高的区域。发现该工厂可以通过参与电力平衡任务来提高CHP装置的经济可行性。但是,尚不确定收益是否足够大以保持分布式CHP容量运行。 (C)2015 Elsevier Ltd.保留所有权利。

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