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Experimental study on the dynamic performance of a novel system combining natural ventilation with diffuse ceiling inlet and TABS

机译:自然通风与顶棚进风和TABS相结合的新型系统动态性能的实验研究

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This paper investigates the dynamic cooling performance of a novel system combining natural ventilation with diffuse ceiling inlet and thermally activated building systems (TABS). This system is tested in the lab under three climatic conditions representing typical seasons in Denmark, including a typical winter day, a typical day in the transitional season and a typical summer day. The corresponding dynamic control strategies have been designed for these three cases in the measurements. In the winter case, TABS have to be activated for two hours to supply extra heating to ensure a comfortable indoor environment. In the case representing the transitional season, changing the ventilation rate during both occupied and un-occupied hours can ensure the thermal autonomy of the room without extra heating or cooling from TABS. In the summer case, the free cooling potential of ventilation air is limited due to the relatively high inlet air temperature. Therefore, TABS are activated for ten hours to supply the.extra cooling. Due to the use of the diffuse ceiling, the whole-body and local thermal comfort conditions are quite good in the measurements. The dynamic measurements in the paper are beneficial to the future design and application of this system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了将自然通风与扩散式天花板入口和热激活建筑系统(TABS)相结合的新型系统的动态冷却性能。在代表丹麦典型季节的三种气候条件下,在实验室中对该系统进行了测试,包括典型的冬日,过渡季节的典型日和典型的夏季日。针对这三种情况在测量中设计了相应的动态控制策略。在冬季情况下,必须激活TABS两个小时以提供额外的热量,以确保舒适的室内环境。在代表过渡季节的情况下,在有人居住和无人居住期间改变通风率可以确保房间的热自主性,而不会产生来自TABS的额外供暖或制冷。在夏季情况下,由于进气温度较高,通风空气的自由冷却潜力受到限制。因此,TABS被激活十个小时以提供额外的冷却。由于使用了漫射天花板,因此整体和局部热舒适条件在测量中都非常好。本文中的动态测量有利于该系统的未来设计和应用。 (C)2016 Elsevier Ltd.保留所有权利。

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