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Control methods for a direct-ground cooling system: An experimental study on office cooling with ground-coupled ceiling cooling panels

机译:直接地面冷却系统的控制方法:地面耦合天花板冷却板对办公室冷却的实验研究

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This article experimentally investigates the performance of two control methods (the supply water temperature method and the water flow control method) for a direct-ground cooling system. The control methods were implemented through three types of indoor feedback controllers: 1) an on/off controller, 2) an on/off controller with a deadband and 3) P controller. The performances of the control methods were evaluated regarding room temperature stability and pump energy use. Ceiling cooling panels were employed to keep the test room air temperature at 25.0 degrees C under periodic heat gain conditions. The cooling system used a ground heat exchanger with a U-pipe in an 80-meter-deep borehole as a cooling source. The findings show that room air temperature was maintained close to the set-point with both control methods, but it was more stable with the temperature control method. In addition, condensation risk was easily preventable with the temperature control method. A parametric study showed that pump energy use when using two-position controllers could be as low as when using modulating controllers if the on-state flow rate of the circulating pump is selected in relation to the ground temperature and heat transfer characteristics of the heat exchanger. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文通过实验研究了直接地面冷却系统的两种控制方法(供水温度方法和水流量控制方法)的性能。该控制方法通过三种类型的室内反馈控制器来实现:1)开/关控制器,2)具有死区的开/关控制器和3)P控制器。评估了控制方法的性能,涉及室温稳定性和泵的能耗。采用天花板冷却板,以在周期性的热量获取条件下将测试室的空气温度保持在25.0摄氏度。冷却系统使用一个地面热交换器,该热交换器具有一个U型管,该U型管位于80米深的钻孔中作为冷却源。结果表明,两种控制方法均使室内空气温度保持在设定值附近,而温度控制方法则更稳定。另外,通过温度控制方法可以容易地防止冷凝的危险。参数研究表明,如果根据地面温度和热交换器的传热特性选择循环泵的开启状态流量,则使用二位控制器时的泵能量消耗可以与使用调节控制器时的泵能量消耗低。 。 (C)2019 Elsevier B.V.保留所有权利。

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