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Experimental investigation of stabilization of flowing water temperature with a water-PCM heat exchanger

机译:水-PCM换热器稳定流水温度的实验研究

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Experiments have been carried out in order to investigate the stabilization of water temperature with a water-PCM heat exchanger. The water-PCM heat exchanger was of a rather simple design. It was a round tube, through which the water flowed, surrounded with an annular layer of PCM. The heat exchanger was divided into one meter long segments (modules) and the water temperature was monitored at the outlet of each of the segments. A paraffin-based PCM with the melting temperature of 42 °C was used in the experiments. The experimental set-up consisted of two water reservoirs kept at different temperatures, the water-PCM heat exchanger, PC controlled valves and a data acquisition system. As the first step a response to a step change in the water temperature at the inlet of the heat exchanger was investigated. Subsequently, a series of experiments with a square wave change of temperature at the inlet of the exchanger were carried out. The square wave temperature profile was achieved by periodic switching between the two water reservoirs. Several amplitudes and periods of temperature square wave were used. The results of experiments show that a water-PCM heat exchanger can effectively be used to stabilize the flowing water temperature when the inlet temperature changes are around the melting range of the PCM.
机译:为了研究使用水-PCM换热器的水温稳定性,已经进行了实验。水-PCM热交换器的设计相当简单。它是一个圆管,水从中流过,并被PCM的环形层包围着。将热交换器分成一米长的段(模块),并在每个段的出口处监控水温。实验中使用的是基于石蜡的PCM,熔点为42°C。实验装置由两个保持不同温度的储水器,水PCM换热器,PC控制阀和数据采集系统组成。作为第一步,研究了对热交换器入口处水温的阶跃变化的响应。随后,进行了一系列实验,在交换器的入口处进行了方波温度变化。方波温度曲线是通过在两个水箱之间进行定期切换来实现的。使用了几个振幅和周期的温度方波。实验结果表明,当入口温度变化在PCM的熔化范围附近时,水PCM换热器可以有效地用于稳定流水温度。

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