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Hydronic circuit topologies for thermally activated building systems - design questions and case study

机译:热活化建筑系统的水力回路拓扑-设计问题和案例研究

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摘要

For proper implementation of thermally activated building systems (TABS), control strategy and hydronic circuit topology, which take into account the large, thermal time constant of TABS, are required. It is shown that hydronic topology is strongly related to the division into TABS zones and the additional control system at an individual room level. In this article, results from measurements of two buildings with advanced hydronic circuit topology are presented. From the results, it can be concluded that, in order to meet thermal comfort requirements, TABS should be divided into several zones. For zone division, differences in both external and internal heat loads should be taken into account. The required hydronic circuit topology to supply warm and cold water to each TABS zone can be simplified into two distribution pipes that have the ability to disconnect from the central water supply but do not have the ability to allow circulation. Furthermore, the measurements show that with an appropriate control strategy the issue of energy squandering within TABS can be eliminated.
机译:为了正确实施热激活建筑系统(TABS),需要考虑TABS较大的热时间常数的控制策略和流体循环拓扑。结果表明,水力拓扑结构与在单个房间级别划分为TABS区域和附加控制系统密切相关。在本文中,介绍了使用先进的水力回路拓扑结构对两座建筑物进行测量的结果。从结果可以得出结论,为了满足热舒适性要求,TABS应该分为几个区域。对于区域划分,应考虑外部和内部热负荷的差异。可以将向每个TABS区供应冷水和热水的必要的水力循环拓扑简化为两个分配管道,该两个分配管道具有与中央供水系统断开的能力,但没有允许循环的能力。此外,测量结果表明,采用适当的控制策略,可以消除TABS内的能量浪费问题。

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