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Biomass-fired CHP and heat storage system simulations in existing district heating Systems

机译:现有区域供热系统中的生物质燃料热电联产和储热系统模拟

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摘要

The installation of a biomass-fired Organic Rankine Cycle (ORC) unit coupled to a heat storage system (HSS) in an existing district heating (DH) system is proposed and analyzed from both energetic and economic point of view. A real DH system is considered as case study, and the optimal layout configuration is investigated varying the size of the components. The analysis is carried out tuning the heat demand dataset obtained from real data of a different existing DH system with a 6-min time step and ten years of operation. The heat demand is used to match the production from different generation units. The overall efficiency of the system, the primary energy savings related to CHP production, as well as the pay back time of the investment are evaluated. Calculations show that for the considered case study the maximum size of the HSS that gives noticeable advantages is 150 m~3/MW_(th). The optimal configuration is different when considering energetic or economic criteria. Moreover, the current Italian incentive tariff on electricity production from renewable sources appears to promote the choice of low efficiency layouts for the case study under consideration.
机译:提出并在现有的区域供热(DH)系统中安装与生物质燃烧的有机朗肯循环(ORC)单元耦合至储热系统(HSS)的方法,并从能量和经济角度进行了分析。实际的DH系统被视为案例研究,并且研究了最佳布局配置,并根据组件的大小进行了研究。该分析是通过从6分钟的时间步长和10年的运行时间,从不同的现有DH系统的真实数据中获得的热量需求数据集进行调整来进行的。热量需求用于匹配不同发电机组的产量。评估系统的整体效率,与CHP生产相关的主要能源节省以及投资的投资回收期。计算表明,对于所考虑的案例研究,具有明显优势的高速钢最大尺寸为150 m〜3 / MW_(th)。考虑能源或经济标准时,最佳配置会有所不同。此外,目前意大利对可再生能源发电的激励性关税似乎正在促进正在考虑的案例研究中低效率布局的选择。

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