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Experimental study of radiator, underfloor, ceiling and air heater systems heat emission performance in TUT nZEB test facility

机译:TUT nZEB测试设备中散热器,地板,天花板和空气加热器系统散热性能的实验研究

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This paper reports the results of different heat emitter system measurements, which were carried out at the nZEB test facility near Tallinn University of Technology in early 2018. Radiators, underfloor heating, air heaters and radiant ceiling panels are studied as coupled with different control schemes ranging from ON-OFF to PI-type control. The objective is to assess and quantify the control accuracy and thermal comfort parameters among different configurations.Scheduled heating dummies are used to simulate internal heat gains within the otherwise unoccupied test rooms. Along with outdoor temperature variation, the heating demand is therefore constantly changing and the control systems are continuously adjusting the heat output to maintain the desired indoor air temperatures. Control accuracy is then determined from the temperature deviations against this set value. Air stratification within the room is assessed with vertical temperature gradient calculations from measured air temperatures at different heights. The operative temperature at the point of expected occupancy is calculated from surrounding air and enclosing surface temperatures.The quantified results provide a comprehensive comparison between the different system configurations, enabling further energy simulations in related software packages since these parameters directly influence the energy usage within a system.
机译:本文报告了不同的热辐射器系统测量结果,这些测量结果于2018年初在塔林工业大学附近的nZEB测试设施进行。研究了散热器,地板采暖,空气加热器和辐射顶板以及不同的控制方案。从ON-OFF到PI型控制。目的是评估和量化不同配置之间的控制精度和热舒适性参数。计划的加热假人用于模拟在其他情况下未占用的测试室内的内部热量获取。因此,随着室外温度的变化,供暖需求不断变化,控制系统不断调节热量输出以维持所需的室内空气温度。然后根据相对于该设定值的温度偏差确定控制精度。通过垂直温度梯度计算得出的房间内空气分层情况是根据不同高度处的测量空气温度进行的。预期占用点的工作温度是根据周围的空气和周围的表面温度计算得出的。量化的结果提供了不同系统配置之间的全面比较,从而可以在相关软件包中进行进一步的能源模拟,因为这些参数直接影响了内部能源的使用。系统。

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