D'Agostino Delia, Parker Danny
European Commission, Joint Research Centre (JRC), Directorate C - Energy, Transport and Climate, Energy Efficiency and Renewables Unit, Via E. Fermi 2749, I-21027 Ispra (VA), Italy.
Florida Solar Energy Center, University of Central Florida, USA.
Data Brief. 2018 Feb 16;17:1168-1174. doi: 10.1016/j.dib.2018.02.038. eCollection 2018 Apr.
This data article refers to the research paper A model for the cost-optimal design of Nearly Zero Energy Buildings (NZEBs) in representative climates across Europe [1]. The reported data deal with the design optimization of a residential building prototype located in representative European locations. The study focus on the research of cost-optimal choices and efficiency measures in new buildings depending on the climate. The data linked within this article relate to the modelled building energy consumption, renewable production, potential energy savings, and costs. Data allow to visualize energy consumption before and after the optimization, selected efficiency measures, costs and renewable production. The reduction of electricity and natural gas consumption towards the NZEB target can be visualized together with incremental and cumulative costs in each location. Further data is available about building geometry, costs, CO emissions, envelope, materials, lighting, appliances and systems.
本数据文章参考了研究论文《欧洲代表性气候条件下近零能耗建筑(NZEBs)成本最优设计模型》[1]。所报告的数据涉及位于欧洲代表性地点的住宅建筑原型的设计优化。该研究聚焦于根据气候条件对新建建筑进行成本最优选择和效率措施的研究。本文所关联的数据涉及模拟的建筑能耗、可再生能源产量、潜在节能以及成本。这些数据能够直观呈现优化前后的能源消耗、所选效率措施、成本以及可再生能源产量。朝着近零能耗建筑目标减少电力和天然气消耗的情况,能够与每个地点的增量成本和累计成本一同直观呈现。此外,还有关于建筑几何形状、成本、碳排放、围护结构、材料、照明、电器和系统的进一步数据。