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Sizing and optimizing the operation of thermal energy storage units in combined heat and power plants: An integrated modeling approach

机译:尺寸和优化热能储能单元在综合建模方法中的热能储能单元:综合建模方法

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摘要

Thermal energy storage technologies are of great importance for the power and heating sector. They have received much recent attention due to the essential role that combined heat and power plants with thermal stores will play in the transition from conventional district heating systems to 4th and 5th generation district heating systems. This paper presents a novel decision support method for sizing and optimizing the operation of thermal energy storage units in combined heat and power plants. To achieve this goal, the method in this paper comprises three steps. The first step provides an approximation of the storage capacity based on the characterization of the thermal load. The second step extends the applicability of the method by enabling the evaluation of the hourly operation of the combined heat and power plant with thermal storage. The third step evaluates the long-term economic effects of retrofitting the combined heat and power plant with a heat storage option. The applicability of the method is illustrated using the example of a coal-fired combined heat and power plant and the study of two scenarios. The analysis of the scenarios shows that the utilization of the energy storage enhances the operational flexibility of the system by increasing the number of hours in which the combined heat and power plant operates at its maximum electrical output and, at the same time, reduces the thermal contribution of the heat-only boilers. The method developed in this work can be applied to carry out the financial analysis of an energy storage project.
机译:热能存储技术对电力和供热部门具有重要意义。由于在传统地区供热系统到第四和第五代区域供暖系统的转变中,它们已经收到了最近的主要作用。本文介绍了一种新型决策支持方法,用于施加和优化组合热电厂中热能储能单元的运行。为了实现这一目标,本文中的方法包括三个步骤。第一步基于热负荷的表征提供存储容量的近似值。第二步通过使得具有热存储器的组合热量和发电厂的每小时操作评估来扩展该方法的适用性。第三步评估了用热储存选项改装了混合热量和发电厂的长期经济影响。使用燃煤组合热量和发电厂的示例和两种情况的研究说明该方法的适用性。对情景的分析表明,通过增加组合的热量和发电厂在其最大电输出处运行的小时数来降低热量,利用能量存储器提高了系统的操作灵活性,并且同时降低了热量唯一的锅炉的贡献。本工作中开发的方法可用于执行能量存储项目的财务分析。

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