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Natural ventilation in London: Towards energy-efficient and healthy buildings

机译:伦敦的自然通风:迈向节能健康的建筑

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Natural ventilation (NV) is a sustainable solution to improve building energy efficiency and reduce carbon emission. In this study, we quantified the impact of air pollution and noise pollution on the NV potential at both city scale and building scale in London. At city scale, the loss of annual cooling energy saving potential due to noise pollution (8.1 kWh/m2) was found to be comparable to that due to air pollution (9.0 kWh/m2). At building scale, we selected a naturally ventilated office building in central London with two windows facing a noisy and polluted traffic road and one window overlooking a quiet and clean courtyard for case study. By coupling EnergyPlus simulation with advanced wind tunnel experiments, we identified the prevailing inflow directions and cooling energy saving potentials of 26 NV modes with different window combinations. It was found that cross ventilation with stack effects is the most efficient NV mode for indoor-outdoor exchanges and prevailing building inflow direction can be regulated by optimising window openings at different heights. Particularly for the case study building, we can save cooling energy by up to 5.6 kWh/m2 per month in the optimal NV mode while minimising the negative health impact of ambient pollution by introducing more fresh air from the cleaner side. In addition, local urban morphological changes such as the presence of a tall building or the expansion of an adjacent road were also found to be influential on NV performances.
机译:自然通风(NV)是一种可持续的解决方案,以提高建筑能效,减少碳排放。在这项研究中,我们量化了空气污染和噪声污染对伦敦城市规模和建筑规模的对冲潜力的影响。在城市规模,发现由于噪音污染(8.1kWh / m2)导致的年冷却节能潜力损失与由于空气污染(9.0千瓦时/平方米)相当。在建筑规模,我们在伦敦中部选择了一座自然通风的办公大楼,拥有两个窗户,面向嘈杂和污染的交通道路,一个俯瞰着一个安静而干净的庭院的窗户。通过通过先进的风洞实验耦合EnergyPlus模拟,我们确定了具有不同窗口组合的26个NV模式的主要流入方向和冷却节能电位。发现具有堆叠效应的交叉通风是室外室外交换的最有效的NV模式,通过在不同高度的窗口开口优化窗口开口,可以调节现行建筑物流入方向。特别是对于案例研究建筑,我们可以在最佳的NV模式下每月节省高达5.6千瓦时/平方米,同时通过从清洁侧引入更多新鲜空气来最小化环境污染的负面健康影响。此外,还发现当地的城市形态学变化,例如高层建筑物的存在或相邻的道路的扩展,对NV性能有影响力。

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