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Experimental testing of cooling internal loads with a radiant wall

机译:用辐射壁冷却内部负载的实验测试

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Thermally activated building systems (TABS) consist of pipes or ducts embedded in the building structure. This is a well-known technology for its capability to reduce energy use for cooling buildings. Additionally, TABS help integrating renewable energies, such as free-cooling with ground heat exchangers (GHE). However, TABS cooling load is sensitive to the internal load, and the use of GHE for free cooling is limited to low energy buildings. In a previously published research, a radiant wall cubicle without internal gains demonstrated to achieve significant energy savings. However, the current research showed that under domestic and office scheduled internal gains equivalent to 42 W m(-2) the radiant cubicle increased its energy consumption for cooling more than the reference cubicle with air-to-air heat pumps: As a result, the radiant cubicle used around 20% more energy than the reference at air temperature set-point 24 degrees C but saved around 20% compared to the reference at 26 degrees C. Despite this, the radiant wall could still reduce the cooling cost through peak load shifting even though it showed to consume more energy than a conventional HP. (C) 2017 Elsevier Ltd. All rights reserved.
机译:热激活建筑系统(TABS)由嵌入建筑结构中的管道或管道组成。这是一项众所周知的技术,它具有减少建筑物制冷的能耗的能力。此外,TABS还有助于整合可再生能源,例如利用地面热交换器(GHE)进行自然冷却。但是,TABS的冷却负荷对内部负荷很敏感,而GHE进行自然冷却的用途仅限于低能耗建筑。在先前发表的一项研究中,没有内部增益的辐射墙柜被证明可以节省大量能源。但是,当前的研究表明,在家用和办公室计划的内部增益等于42 W m(-2)的情况下,辐射小房间增加的能耗比空对空热泵的参考小房间要多:在温度设定为24摄氏度时,辐射柜的能耗比参考能耗高出约20%,但与在26摄氏度时相比,辐射柜节省了约20%的能耗。尽管如此,辐射墙仍可通过峰值负荷降低冷却成本即使它比传统的HP消耗更多的能量,它也可以移动。 (C)2017 Elsevier Ltd.保留所有权利。

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