马德里拉各斯公园建筑整体修复和提高能源效率的战略

IF 2.2 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
María Eugenia Maciá-Torregrosa, Javier Camacho-Diez, Roberto Alonso González-Lezcano
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引用次数: 0

摘要

作为首要目标,能源消耗不足和过时的建筑系统正在给房主造成经济损失。西班牙未能达到欧洲关于二氧化碳排放的指导方针,这凸显了解决建筑能源效率低下问题的迫切需要,建筑的能源效率低下占二氧化碳排放量的40%。本文介绍了在马德里拉各斯公园住宅楼进行的全面翻新项目。本文详细分析了与周边地区过度湿度和建筑围护结构(包括外墙和屋顶)能源性能不足有关的常见建筑问题。通过对建筑围护结构的改造,解释了实现符合西班牙建筑技术规范(CTE)以及提高能源效率和功能的精确措施。该研究还包括对家庭热水供应系统和空调系统的改进,这有助于建筑物达到最佳能源等级(能源等级A)。在综合设施中进行的大规模翻新将拉各斯公园的住宅转变为“零能耗”住宅。所采用的策略,从电器到房屋的结构设计,都是为了最大限度地提高能源使用效率,从而显著减少每月65%-75%的电费。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strategies for integral rehabilitation and improvement of the energy efficiency of Lagos Park building in Madrid
As a primary goal, Inadequate energy consumption and outdated construction systems are causing financial losses for homeowners. Spain’s failure to meet European guidelines on CO 2 emissions highlights the urgent need to address the energy inefficiency of buildings, responsible for 40% of such emissions. This article presents a comprehensive refurbishment project undertaken in the Lagos Park residential building in Madrid. The paper offers a detailed analysis of common building issues related to excessive humidity in the surrounding areas and deficiencies in the energy performance of the building envelope, including facades and roofs. Precise measures for achieving compliance with the Spanish Technical Building Code (CTE), as well as enhancing energy efficiency and functionality, are explained through the renovation of the building envelopes. The study also encompasses improvements made to the domestic hot water supply systems and the air-conditioning system, which contribute to the building’s attainment of an optimal energy rating (energy Class A). The extensive renovation undertaken in the complex has transformed Lagos Park homes into “zero energy consumption” residences. The strategies employed, ranging from electrical appliances to the house’s structural design, are all geared towards maximizing energy usage efficiency, resulting in significantly reduced monthly electricity bills by 65%–75%.
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来源期刊
Frontiers in Built Environment
Frontiers in Built Environment Social Sciences-Urban Studies
CiteScore
4.80
自引率
6.70%
发文量
266
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