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Improving energy sustainability for public buildings in Italian mountain communities

机译:改善意大利山区社区公共建筑的能源可持续性

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摘要

The objective of this work is to analyze and then optimize thermal energy consumptions of public buildings located within the mountain community of Lanzo, Ceronda and Casternone Valleys. Some measures have been proposed to reduce energy consumption and consequently the economic cost for energy production, as well as the harmful GHG emissions in the atmosphere.Initially, a study of the mountain territory has been carried out, because of its vast extension and climatic differences. Defined the communities and the buildings under investigation, energy dependant data were collected for the analysis of energy consumption monitoring: consumption data of three heating seasons, geometric buildings characteristics, type of opaque and transparent envelope, heating systems information with boiler performance and climatic data.Afterward, five buildings with critical energy performances were selected; for each of these buildings, different retrofit interventions have been hypothesized to reduce the energy consumption, with thermal insulation of vertical or horizontal structures, new windows or boiler substitution. The cost-optimal technique was used to choose the interventions that offered higher energy performance at lower costs; then a retrofit scenario has been planned with a specific financial investment.Finally, results showed possible future developments and scenarios related to buildings energy efficiency with regard to the topic of biomass exploitation and its local availability in this area. In this context, the biomass energy resource could to create a virtuous environmental, economic and social process, favouring also local development.
机译:这项工作的目的是分析并优化位于Lanzo,Ceronda和Casternone山谷山区社区内的公共建筑的热能消耗。已经提出了一些减少能源消耗的措施,从而减少了能源生产的经济成本以及大气中有害的温室气体排放量。最初,由于山区的广泛延伸和气候差异,已经对山区进行了研究。 。定义了要调查的社区和建筑物,收集了与能源有关的数据,用于能耗监测分析:三个供暖季节的能耗数据,建筑物的几何形状,不透明和透明外壳的类型,带有锅炉性能的供暖系统信息和气候数据。之后,选择了五座具有关键能源性能的建筑物。对于这些建筑物中的每一个,都假设采用不同的改造措施来减少能耗,包括垂直或水平结构的隔热,新窗户或锅炉的替代。成本最优技术用于选择以较低成本提供更高能源性能的干预措施。最后,结果表明,就生物质开发及其在该地区的本地可利用性而言,与建筑物能源效率相关的未来发展和方案可能会得到规划。在这种情况下,生物质能资源可以创造良好的环境,经济和社会进程,也有利于地方发展。

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