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A semi-centralized, valveless and demand controlled ventilation system in comparison to other concepts in field tests

机译:与现场测试中的其他概念相比,半集中式,无阀,按需控制的通风系统

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摘要

The idea of adapting the air supply rate to the actual demand in a building is not a new one. In commercial buildings it is already state-of-the-art to establish a demand controlled ventilation, where the level of air flow is based on sensors or time control. In residential buildings however, mechanical ventilation systems, whether centralized or decentralized, are in most cases operated in a constant modus, providing fresh air regardless if the fresh air is needed or not, even though the technology and the components needed for demand controlled ventilation exist and can be purchased at reasonable prices. In this article, results of field tests with a semi-centralized demand feedback-controlled ventilation system are shown and compared to outcomes with other demand controlled systems. The semic-entralized prototype includes decentralized fans per ventilation zone, making a room-wise ventilation possible and valves to balance the system hydraulically unnecessary. It is shown that each presented concept of demand controlled ventilation can save energy by decreasing the operational time or the mean air flow rate without compromising air quality. Concepts which make a zone- or even a room-wise control of air flow possible, showed the highest energy saving potential of up to two-thirds compared to a system operating at constant flow rates. In addition to the energy savings due to decreased operational time, the maintenance and filter costs are decreased while the user comfort is increased, as natural ventilation in spring, summer and autumn may easily be added when Delta T between inside and outside is small. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使空气供应速率适应建筑物中的实际需求的想法并不是一个新想法。在商业建筑中,建立按需控制的通风已成为最新技术,其中气流水平基于传感器或时间控制。然而,在住宅建筑中,无论是集中式还是分散式机械通风系统,在大多数情况下都以恒定的方式运行,无论是否需要新鲜空气,都可以提供新鲜空气,即使存在需求控制通风所需的技术和组件也是如此并可以以合理的价格购买。在本文中,显示了使用半集中需求反馈控制通风系统进行的现场测试结果,并将其与其他需求控制系统的结果进行了比较。半集中式原型在每个通风区域均包括分散式风扇,这使得在房间内进行通风成为可能,并且不需要阀来平衡液压系统。结果表明,每个提出的按需控制通风的概念都可以通过减少运行时间或平均空气流量来节省能源,而不会影响空气质量。与以恒定流量运行的系统相比,实现对区域空气流量甚至是房间范围内的空气流量控制的概念显示出最高的节能潜力,高达三分之二。除了由于减少工作时间而节省能源外,维护和过滤器成本也降低了,同时用户的舒适度得到了提高,因为当内部和外部之间的Delta T小时,很容易在春季,夏季和秋季增加自然通风。 (C)2015 Elsevier Ltd.保留所有权利。

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