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Cost-optimal sizing of solar thermal and photovoltaic systems for the heating and cooling needs of a nearly Zero-Energy Building: the case study of a farm hostel in Italy

机译:满足接近零能耗建筑的供热和制冷需求的太阳能热能和光伏系统的成本优化选型:以意大利一家农场旅馆为例

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摘要

In this paper, the second of two parts, we apply the cost-optimal design method illustrated in Part 1 to a case study. We select a farm hostel located in Enna, Italy, as the local climate and the required energy services are suitable for the development of a solar-assisted nearly zero-energy building. The system is connected to the electric grid and does not use any other thermal energy vector. Energy demand includes heating, cooling, domestic hot water production, lighting and other electric uses, viz. inductance cooking, food refrigeration, local dehumidification, household appliances, and office devices. The building-plant system is described in terms of both technical characteristics of each component and internal loads. According to the proposed simulation-based methodology, we investigate the best design configuration by minimizing the lifecycle cost after 20 years of operation. The results of the procedure identify the optimal solution, in terms of number of solar thermal and photovoltaic panels, volume and control strategy of the thermal storage. Other outputs are the dynamic and seasonal energy balance of each system component and of the whole system, and additional economic parameters. The results show that the proposed method leads to a very favorable design with relevant notable economic and energy benefits with respect to a no-solar design solution (ΔCTOT=11%, ΔEINTOT=67%). However, several nearly optimal configurations provide very similar outcomes in terms of lifecycle costs, with different initial investment and energy performances. Consequentially, we introduce a multi-objective optimization approach aimed at identifying the best solution in terms of investment availability and energy objectives.
机译:在本文的第二部分(第二部分)中,我们将第1部分所述的成本最优设计方法应用于案例研究。我们选择位于意大利恩纳的一家农场旅馆,因为当地的气候和所需的能源服务适合开发太阳能辅助的几乎零能耗的建筑物。该系统连接到电网,并且不使用任何其他热能矢量。能源需求包括供暖,制冷,生活热水生产,照明和其他电力用途。电感烹饪,食品冷藏,局部除湿,家用电器和办公设备。根据每个组件的技术特征和内部负载来描述建筑系统。根据提出的基于仿真的方法,我们通过最小化20年运行后的生命周期成本来研究最佳设计配置。该过程的结果确定了最佳解决方案,涉及太阳能热板和光伏板的数量,蓄热器的体积和控制策略。其他输出是每个系统组件和整个系统的动态和季节性能量平衡,以及其他经济参数。结果表明,相对于无太阳能设计解决方案(ΔCTOT= 11%,ΔEINTOT= 67%),所提出的方法可带来非常令人满意的设计,并具有显着的经济和能源效益。但是,就生命周期成本而言,几种几乎最佳的配置提供了非常相似的结果,并且具有不同的初始投资和能源绩效。因此,我们引入了一种多目标优化方法,旨在根据投资可用性和能源目标确定最佳解决方案。

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