期刊文献+

Uncertainty-based life-cycle analysis of near-zero energy buildings for performance improvements 被引量:5

Uncertainty-based life-cycle analysis of near-zero energy buildings for performance improvements
下载PDF
导出
摘要 Near-zero energy buildings( nZEBs) are considered as an effective solution to mitigating CO_2 emissions and reducing the energy usage in the building sector. A proper sizing of the nZEB systems( e. g. HVAC systems,energy supply systems,energy storage systems, etc.) is essential for achieving the desired annual energy balance,thermal comfort,and grid independence. Two significant factors affecting the sizing of nZEB systems are the uncertainties confronted by the building usage condition and weather condition,and the degradation effects in nZEB system components. The former factor has been studied by many researchers; however,the impact of degradation is still neglected in most studies. Degradation is prevalent in energy components of nZEB and inevitably leads to the deterioration of nZEB life-cycle performance. As a result,neglecting the degradation effects may lead to a system design which can only achieve the desired performance at the beginning several years. This paper,therefore,proposes a life-cycle performance analysis( LCPA) method for investigating the impact of degradation on the longitudinal performance of the nZEBs. The method not only integrates the uncertainties in predicting building thermal load and weather condition,but also considers the degradation in the nZEB systems. Based on the proposed LCPA method,a two-stage method is proposed to improve the sizing of the nZEB systems.The study can improve the designers "understanding of the components"degradation impacts and the proposed method is effective in the life-cycle performance analysis and improvements of nZEBs. It is the first time that the impacts of degradation and uncertainties on nZEB LCP are analysed. Case studies showthat an nZEB might not fulfil its definition at all after some years due to component degradation,while the proposed two-stage design method can effectively alleviate this problem. (1) Modeling the reduction of urban excess heat by greenroofs with respect to different irrigation scenarios, P174 -183, by Jannik Heusinger, David J. Sailor, Stephan Weber Abstract:Urban heat reduction by evaporative cooling from extensive green roofs is explored by applying irrigation scenarios togreen roofs located in different climate zones using a coupled atmosphere - vegetation - substrate green roof model. The model,which is integrated in the building energy simulation software EnergyPlus, is validated with eddy covariance surface energy fluxesfrom a green roof in Berlin, Germany.
出处 《建筑节能》 CAS 2018年第3期144-144,共1页 BUILDING ENERGY EFFICIENCY
关键词 环境保护 新能源 Uncertainty Near-zero energy building Degradation Life-cycle performance Design
  • 相关文献

同被引文献54

引证文献5

二级引证文献12

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部