首页> 外文期刊>Building and Environment >Analysis of UK domestic building retrofit scenarios based on the E.ON Retrofit Research House using energetic hygrothermics simulation-Energy efficiency, indoor air quality, occupant comfort, and mould growth potential
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Analysis of UK domestic building retrofit scenarios based on the E.ON Retrofit Research House using energetic hygrothermics simulation-Energy efficiency, indoor air quality, occupant comfort, and mould growth potential

机译:基于E.ON改造研究中心的E.ON改造研究室,使用高能湿热模拟对英国住宅建筑改造方案进行分析-能源效率,室内空气质量,乘员舒适度和霉菌生长潜力

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摘要

The work forms part of the CALEBRE project (2008-2013), the aim of which was to investigate a suite of technologies and staged approaches for retrofit upgrades for 'hard-to-treat' solid/thin cavity masonrywalled UK domestic buildings that would ⅰ) reduce operational energy demand/carbon emissions, and ⅱ) be acceptable and appealing to the building occupants. The E.ON Retrofit Research House (Nottingham, UK) was used as an instrumented test platform as part of this study. The retrofitting phases (and technologies) have been used as the basis for the modelling methodology in this paper, together with the corresponding envelope assemblies, material properties, climate, and internal load parameters. The approach to retrofit was to increase air tightness (reduce ACH), decrease static U-values of the external envelope (wall, floor and glazing), and upgrade heating system efficiency. This was complemented by a combination of options that included a whole-building system of mechanical ventilation with heat recovery (MVHR). These interventions were analysed alongside simulated passive buffering of variations in indoor air psychrometric conditions using conventional (clay, timber) and advanced (mesoporous silica) wall surface treatments. Each retrofit scenario was modelled using an energetic hygrothermics building performance simulation (BPS) approach to determine the combined effects of retrofit packages on indoor air psychrometric conditions, external envelope (dynamic) heat transfer, operational energy efficiency, occupant comfort, and mould growth potential. It is proposed that this approach can provide the basis for an intelligent risk management strategy to inform both the design and deployment of retrofit upgrade packages intended for residential buildings.
机译:这项工作是CALEBRE项目(2008-2013年)的一部分,目的是研究一套技术和分阶段的方法来对“难以处理”的实心/薄腔砌体砌筑的英国家用建筑进行升级改造。 )减少运营能源需求/碳排放量,并且ⅱ)可以接受并吸引建筑用人。 E.ON改造研究中心(英国诺丁汉)被用作仪器化测试平台,是这项研究的一部分。改造阶段(和技术)已用作本文中建模方法的基础,以及相应的封套组件,材料特性,气候和内部载荷参数。改造的方法是增加气密性(降低ACH),降低外部封套(墙,地板和玻璃)的静态U值,并提高加热系统的效率。此外,还结合了多种选择,其中包括整个建筑的机械通风和热回收系统(MVHR)。这些干预措施与使用常规(粘土,木材)和高级(中等氧化硅)墙体表面处理的室内空气湿度条件变化的模拟被动缓冲方法一起进行了分析。使用高能湿热建筑性能模拟(BPS)方法对每个改造方案进行建模,以确定改造套件对室内空气湿度,外部包络(动态)传热,运行能效,乘员舒适度和霉菌生长潜力的综合影响。提议该方法可以为智能风险管理策略提供基础,以告知设计和部署用于住宅建筑的改造升级包。

著录项

  • 来源
    《Building and Environment》 |2013年第12期|48-59|共12页
  • 作者单位

    Division of Materials, Mechanics and Structures, Faculty of Engineering, University of Nottingham, University Park, Nottingham NC7 2RD, UK;

    Division of Energy and Sustainability, Faculty of Engineering, University of Nottingham, University Park, Nottingham NC7 2RD, UK;

    School of Civil and Building Engineering, Loughborough University, Loughborough, Leicestershire LEU 3TU, UK;

    Division of Energy and Sustainability, Faculty of Engineering, University of Nottingham, University Park, Nottingham NC7 2RD, UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Building retrofit; Hygrothermics; Energy efficiency; Indoor air quality; Occupant comfort; Mould growth;

    机译:建筑改造;湿热剂;能源效率;室内空气质量乘员舒适度;霉菌生长;
  • 入库时间 2022-08-17 23:54:24

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