Thermodynamic-based method for supporting design and operation of thermal grids in presence of distributed energy producers

Catrini Pietro, Tancredi Testasecca, M. La Villetta, M. Morale, A. Piacentino
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引用次数: 2

Abstract

District heating networks are well-established technologies to efficiently cover the thermal demand of buildings. Recent research has been devoting large efforts to improve the design and management of these systems for integrating low-temperature heat coming from distributed sources such as industrial processes and renewable energy plants. Passing from a centralized to a decentralized approach in the heat supply, it is important to develop indicators that allow an assessment of the rational use of the available heat sources in supplying heating networks, and a quantification of the effect of inefficiencies on the unit cost of heat. To answer these questions, Exergy Cost Theory is here proposed. Thanks to the unit exergetic cost of heat, energy managers can (i) quantify the effects of thermodynamic inefficiencies occurring in the production and distribution on the final cost of heat, (ii) compare alternative systems for heat production, and (iii) monitor the performance of buildings’ substation over time. To show the capabilities of the method, some operating scenarios are compared for a cluster of five buildings in the tertiary sector interconnected by a thermal grid, where heat is produced by a cogeneration unit, an industrial process, and distributed heat pumps. Results suggest that moving from the centralized production of heat based on fossil fuels to a decentralized production with air-to-water heat pumps, the unit cost of heat can be decreased by almost 30% thanks to the improvement of thermodynamic efficiency. In addition, the analysis reveals a great sensitivity of unit exergetic cost to the maintenance in substations. The developed tool can provide thermodynamic-sound support for the design, operation, and monitoring of innovative district heating networks.
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在分布式能源生产商存在的情况下,支持电网设计和运行的基于热力学的方法
区域供暖网络是一种成熟的技术,可以有效地满足建筑物的热需求。最近的研究一直致力于改进这些系统的设计和管理,以集成来自分布式来源的低温热,如工业过程和可再生能源工厂。从集中供热到分散供热,重要的是制定指标,以便评估供热网络中可用热源的合理使用,并量化低效对单位供热成本的影响。为了回答这些问题,本文提出了火用成本理论。由于热量的单位消耗成本,能源管理者可以(i)量化生产和分配中发生的热力学低效对热量最终成本的影响,(ii)比较热量生产的替代系统,以及(iii)监测建筑物变电站随时间的性能。为了展示该方法的能力,对第三产业中由五栋建筑组成的集群的一些运行场景进行了比较,这些建筑由热电联产机组、工业过程和分布式热泵产生热量。结果表明,从基于化石燃料的集中供热转变为使用空气-水热泵的分散供热,由于热力效率的提高,单位供热成本可以降低近30%。此外,分析还揭示了单位运行成本对变电站维护的敏感性。所开发的工具可以为创新的区域供热网络的设计、运行和监测提供热力学上的可靠支持。
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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来源期刊
CiteScore
5.40
自引率
9.50%
发文量
59
审稿时长
20 weeks
期刊介绍: The Journal of Sustainable Development of Energy, Water and Environment Systems – JSDEWES is an international journal dedicated to the improvement and dissemination of knowledge on methods, policies and technologies for increasing the sustainability of development by de-coupling growth from natural resources and replacing them with knowledge based economy, taking into account its economic, environmental and social pillars, as well as methods for assessing and measuring sustainability of development, regarding energy, transport, water, environment and food production systems and their many combinations.
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