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Potential energy savings achievable by zoned control of individual rooms in UK housing compared to standard central heating controls

机译:与标准中央供暖控制相比,英国住房中的个别房间可实现的潜在节能

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摘要

Energy is wasted in domestic buildings when rooms that are heated are not occupied. Allowing those rooms to cool reduces the inside – outside temperature difference and therefore rate of heat loss, resulting in an energy saving. This suggests a cost effective way to upgrade an existing modern heating system, especially in older properties where other energy saving possibilities are limited. Assessing the savings achievable requires an analysis of a range of influencing factors, such as house type and age, location and occupancy patterns. Door opening has a major influence due to the impact on air exchange between heated and unheated zones in a house, so this was also considered. Annual simulations were carried out on dynamic models of the thermal and air flow interactions, for all combinations of influencing factors, to compare the potential energy savings of zoned versus non-zoned control. Savings of between 12% and 31% were obtained in the case of a semi-detached house model, and between 8% and 37% for a single storey bungalow. The largest percentage savings occurred in older properties, with interconnecting doors kept closed, and for the more intermittent types of occupancy. The average saving obtained for both house types was around 20%.
机译:当没有暖气的房间被占用时,在住宅建筑中会浪费能源。让这些房间冷却可减少内部与外部的温度差异,从而减少热量的流失率,从而节省能源。这表明升级现有的现代供暖系统的成本有效的方法,特别是在其他节能潜力有限的较旧的物业中。评估可实现的节省需要分析一系列影响因素,例如房屋类型和年龄,位置和居住模式。由于对房屋中加热区和非加热区之间的空气交换有影响,因此开门会产生重大影响,因此也考虑了这一点。针对影响因素的所有组合,在热和气流相互作用的动态模型上进行了年度模拟,以比较分区控制与非分区控制的潜在节能量。对于半独立式住宅,可节省12%至31%,对于单层平房则可节省8%至37%。节省最多的百分比发生在较旧的物业中,即互连门保持关闭状态,并且占用类型更断断续续。两种房屋类型的平均节省量约为20%。

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