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GHG reduction and energy efficiency analyses in a zero-energy solar house archetype

机译:零能耗太阳能房屋原型中的温室气体减少和能源效率分析

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The objective of this study is to validate a zero-energy solar house (ZESH) as a sustainable development tool, based in accounting greenhouse gases (GHG) emissions mitigation. The method considers a multi-criterial assessment for electricity conservation, power generation and GHG reduction. The potential and limitations of photovoltaic systems (PVSs) and the electricity consumption of the residential sector are studied. The guidelines and strategies of a ZESH are defined, focusing on the use of the sun in architecture, solar heating and PVSs through a qualitative analysis. These studies are carried out through a zero-energy house model (considering the annual consumption of a residence connected to the grid) that incorporates the guidelines and strategies of a solar house. The bioclimatic strategies and solar systems are analysed considering its application in Sao Paulo. The evaluation of passive strategies for thermal conditioning demonstrates a potential to increase by 70% the hours of comfort in the year. Using more efficient technologies for artificial lighting shows an energy conservation potential of around 12.5%, within the defined parameters and considering the average residential consumption. The use of a solar system to heat water has the potential to save up to 16.3% of energy compared to a business-as-usual scenario (traditional house). The electricity generation by PVSs combined with the adoption of energy efficiency measures demonstrates a potential to achieve, at least, zero net annual energy balance relative to the business-as-usual residential consumption of the grid. Thus, a potential to avoid up to 1.66 t CO_2 per year for each housing unit is estimated.
机译:这项研究的目的是基于核算温室气体(GHG)的排放量来验证零能耗太阳能房屋(ZESH)作为一种可持续发展工具。该方法考虑了关于节能,发电和减少温室气体的多标准评估。研究了光伏系统(PVS)的潜力和局限性以及住宅部门的电力消耗。定义了ZESH的指导方针和策略,通过定性分析,重点关注太阳在建筑,太阳能供热和PVS中的使用。这些研究是通过零能耗房屋模型(考虑并网住宅的年消耗量)进行的,其中纳入了太阳能房屋的指导方针和策略。考虑到其在圣保罗的应用,对生物气候策略和太阳系进行了分析。对被动式热调节策略的评估表明,一年中可能增加70%的舒适时间。在定义的参数范围内,并考虑到平均住宅能耗,使用更高效的人工照明技术可实现约12.5%的节能潜力。与照常使用的情况(传统房屋)相比,使用太阳能系统加热水有可能节省多达16.3%的能源。 PVS的发电与采取节能措施相结合,显示出相对于电网日常使用的居民消费,至少有零年净净能源平衡的潜力。因此,估计每个住房单元每年最多可避免1.66 t CO_2的潜力。

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