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A GIS-based methodology to increase energy flexibility in building cluster through deep renovation: A neighborhood in Seville

机译:基于GIS的方法通过深层装修来提高建筑物集群中的能量灵活性:塞维利亚的邻里

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Natural resource depletion, global warming and pollution pose substantial threats in prioritizing environmental policy, both for private organizations and for governments. Half the EU building stock is prior to energy efficiency standards, thus making it an urgent challenge for the EU to aim at decarbonized cities by 2050. Urban energy retrofitting at cluster level represents a major opportunity, as its current rate is lower than an annual 1%, 3% being the EU desirable rate.This paper presents a bottom-up methodology to assess energy flexibility of building clusters within a Geographic Information System (GIS) framework, applied on a district scale. Energy performance certificates and GIS-based data permit diagnosis and neighborhood selection. The methodology evaluates building cluster energy flexibility via energy demand reduction and PV production. The results show the building cluster hourly load profile for heating and cooling, and thermal comfort indexes. It is expected that this GIS-based methodology will become part of a wider spatial decision support tool for environmental public policies contributing to building stock transformation, from energy consumer to prosumer through deep renovation and renewable energy use. Finally, this methodology is adaptable to other climates, particularly within Spain. (C) 2020 Elsevier B.V. All rights reserved.
机译:自然资源耗尽,全球变暖和污染在优先考虑私人组织和各国政府的优先考虑环境政策方面的实质性威胁。欧盟建筑股票的一半是在能效标准之前,为欧盟致电到2050年的欧盟旨在迎合索碳化的挑战。集群级别的城市能源改造代表着主要机会,因为其当前率低于年度1 %,3%是欧盟理想的速率。本文提出了自下而上的方法,以评估在地区规模上应用的地理信息系统(GIS)框架内建筑集群的能量灵活性。能源绩效证书和基于GIS的数据允许诊断和邻居选择。该方法通过减少能源需求和光伏生产来评估建筑物集群能量灵活性。结果显示了用于加热和冷却的建筑物簇每小时负载型材,以及热舒适指数。预计这项基于GIS的方法将成为有助于建设股票转型的环境公共政策的更广泛空间决策支持工具的一部分,从能源消费者通过深层装修和可再生能源使用。最后,这种方法适用于其他气候,特别是在西班牙内。 (c)2020 Elsevier B.v.保留所有权利。

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