脆弱地区社会住房的能源修复。案例研究:一座建于20世纪50年代的中型地中海城市建筑

Rua José, H. Patricia, Cabeza Manuel, S. Beatriz, Civera Vicente
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引用次数: 0

摘要

在城市环境中,建筑作为能源消费者发挥着关键作用。在老旧建筑比例很高的成熟城市,重点应放在人口最脆弱、自然经济条件最恶劣的敏感城市地区。在这项工作中,提出了社会住房的能源改造。本文选择了一个市政建筑块作为案例研究,以考虑公共建筑根据指令2012/27/EU发挥示范作用。该建筑群由12座建筑组成,其中包含120个住宅。这项研究基于两个层面。首先是城市层面。根据新的当地土地规划,该建筑位于城市复兴、改造和城市再生(ARRU)的优先区域。这一领域具有多方面的脆弱性,并考虑到城市、建筑、社会人口和社会经济特征。其次,该建筑的能源性能非常低。它建于1959年,当时对住宅的高需求和当时可用的经济资源导致了低质量的建筑,远远达不到今天的标准。考虑到城市环境的具体特点,提出了一些建议。提出建筑的能源改造方案,综合考虑技术、环境和经济标准,选择最优方案。能源性能模拟表明,节能性能有了显著的改善,从而提高了居住者的热舒适性。此外,减少了能源消耗,这将减少能源账单,另一方面,减少了碳排放到大气中,有助于改善环境质量。考虑到该建筑是用于社会住房,可以避免能源贫困的情况,因为住宅是由低收入居民居住的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Rehabilitation of Social Housing in Vulnerable Areas. Case study: a 1950s Building in a Medium-sized Mediterranean City
In the urban context, buildings play a key role as they are energy consumers. In well-established cities with a high percentage of aged building stock, the focus should lie on sensitive urban areas where the weakest population sectors and the worst physico-economic conditions are usually encountered. In this work, the energy refurbishment of social housing is proposed. A block of municipally owned buildings is selected as a case study to consider that public buildings play an exemplary role according to Directive 2012/27/EU. The group is formed by 12 buildings, which account for 120 dwellings.This study is grounded on two levels. First the urban level. The building is located in a prioritised urban Area of Rehabilitation, Renovation and Urban Regeneration (ARRU), according to the new local Land Plan. This area presents multidimensional vulnerability and considers urban, building, socio-demographic and socio-economic features. Second, the building presents very low energy performance. It was built in 1959 when a high demand of dwellings and the economic resources then available led to low-quality buildings that are far from meeting today’s standards.Some proposals are made, having in mind the specific features of the urban context. The energy refurbishment of the building is proposed, selecting the optimal solution, considering technical, environmental and economic criteria. The energy performance simulation shows a remarkable improvement of the energy performance, resulting in an improvement of the thermal comfort of the dwellers. Besides, a reduction in the energy consumption is reached, which would reduce the energy bills and, on the other hand, a reduction of the carbon emissions to the atmosphere, contributing to a better environment quality. Having in mind that the building is intended for social housing, energy poverty situations could be avoided, as dwellings are inhabited by low-income dwellers.
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