Comparison of the performance of a whole house low energy ventilation system in contrasting European climatic regions

M. McEvoy, R. Southall
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引用次数: 4

Abstract

An experimental ‘whole house low energy ventilation system’ has been installed and tested in dwellings in Denmark and Poland. Both sites have adjacent houses of identical plan layout, which have been used as a control for the experimental dwellings. A weather station was installed adjacent to each site, and each of the dwellings, test and control, has been extensively monitored to measure indoor airflow and comfort conditions, and the amount of energy being supplied for heating in winter. The design of the systems was established by computer fluid dynamic (CFD) analysis and by a dynamic simulation using ESP-r. The low U-values that can be achieved by ‘air supply’ windows, suggested by previous tests and simulations, have been confirmed by the monitored results. Similarly the levels of preheat to ventilation air achieved by the windows have reached the percentages expected from the simulation models. Practical application: This study is part of an ongoing investigation into the use of an innovative technology for whole house ventilation. Since this is the direction of the forthcoming revision to the UK Building Regulations it has obvious implications for practice.
全屋低能耗通风系统在欧洲不同气候区域的性能比较
一种实验性的“全屋低能耗通风系统”已经在丹麦和波兰的住宅中安装和测试。两个场地都有相同平面布局的相邻房屋,这些房屋被用作实验住宅的控制。每个站点附近都安装了一个气象站,每个住宅,测试和控制,都被广泛监测,以测量室内气流和舒适条件,以及冬季供暖所需的能量。通过计算机流体动力学(CFD)分析和ESP-r软件的动态仿真,确定了系统的设计方案。以前的试验和模拟表明,“送风”窗口可以实现低u值,监测结果证实了这一点。同样,窗户对通风空气的预热水平也达到了模拟模型所期望的百分比。实际应用:本研究是一项正在进行的全屋通风创新技术使用调查的一部分。由于这是即将修订的英国建筑法规的方向,它对实践具有明显的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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