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Determination of the effects of different inlet-outlet locations and temperatures on PCCP panel radiator heat transfer and fluid flow characteristics

机译:确定不同入口出口位置的影响和温度对PCCP面板散热器传热和流体流动特性的测定

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摘要

Enhancing the heat output of panel radiators, which are one of the most widely used heating systems, could play an important role in energy saving. The aim of this study is to investigate the heat output of panel-convector-convector-panel (PCCP type 22) radiators for different connection positions, and inlet/outlet temperatures using laboratory measurements and CFD analysis. Experimental studies were carried out in a climatized room. Same conditions were implemented in a CFD code. CFD results were validated with the experimental measurements, and a good agreement was obtained. The highest heat output for all inlet/outlet temperature ranges was obtained for the top-bottom-opposite-end connection position. In addition, the most uniform temperature distribution on the front panel was observed for the same connection position. It was observed that the effect of radiation on the heat output of the radiator could not be neglected. The simulation results performed for constant panel temperature showed a high increase in'heat output. So, it is important to uniformly distribute the water inside the water channels to increase the heat output of the radiator. It was obtained experimentally as well as numerically, that the top cover of the radiator has a degrading effect on heat output of the radiator. The findings of this study are important in the design of a new radiator with higher heat output as well as the optimum use of radiators. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:增强面板散热器的热量输出,这是最广泛使用的加热系统之一,可以在节能中发挥重要作用。本研究的目的是研究使用实验室测量和CFD分析的不同连接位置和入口/出口温度的面板 - 汇流盘 - 对流板(PCCP型22)散热器的热输出。实验研究在气候室进行。在CFD代码中实施了相同的条件。 CFD结果用实验测量验证,获得了良好的一致性。为顶部底部相对的端部连接位置获得所有入口/出口温度范围的最高热输出。另外,对于相同的连接位置,观察到前面板上最均匀的温度分布。观察到辐射对散热器的热输出的影响无法被忽略。对恒定面板温度进行的仿真结果显示出高度增加的输出。因此,重要的是均匀地分布水通道内的水,以增加散热器的热量输出。它是在实验上的和数值上获得的,即散热器的顶盖对散热器的热输出具有降低的影响。该研究的调查结果在设计具有较高热输出的新散热器以及散热器的最佳使用方面非常重要。 (c)2017年Elsevier Masson SAS。版权所有。

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