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Numerical prediction of thermal performance of liquid-flow window in different climates with anti-freeze

机译:带防冻剂的不同气候下液流窗热性能的数值预测

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摘要

The application of anti-freeze on liquid-flow window was studied. Its thermal performance was evaluated in the seven climate regions of China. Laboratory tests were first carried out with propylene glycol as the working fluid. The measured results also served for numerical model validation. Then year-round energy performance was predicted for one representing city in each of the seven climate regions. The results show that with strong solar radiation (as in Regions V and VI), the energy saving can be significant in the services hot water system. The yearly electricity savings achieved per unit surface area of the liquid flow window installed are well above 8.3 kWh/m2, and they are as large as 93.75 and 117.7 kWh/m2in Regions V and VI. In the subtropical city Guangzhou however, the use of glycol unfavorably reduces the system thermal efficiency by 13–31% when the glycol concentration is 15–35% with a linear relationship. The impact of liquid concentration is less significant under stronger sunlight. For those regions of cold or extremely cold winter plus warm summer (i.e. in Regions I, II, VI and VII), the replacement of anti-freeze with water in the summer months can be a good practice to maximize the thermal performance.
机译:研究了防冻剂在液流窗上的应用。在中国的七个气候区对它的热性能进行了评估。首先使用丙二醇作为工作液进行实验室测试。测量结果也可用于数值模型验证。然后预测了七个气候区域中每个代表城市的全年能源绩效。结果表明,在强烈的太阳辐射下(如V区和VI区),在服务热水系统中可以节省大量能源。所安装的液体流窗的单位表面积所实现的年度节电远高于8.3 kWh / m2,在V区和VI区分别达到93.75和117.7 kWh / m2。然而,在亚热带城市广州,当乙二醇浓度为15-35%且呈线性关系时,使用乙二醇不利地降低系统热效率13-31%。在较强的阳光下,液体浓度的影响较小。对于冬季寒冷或极冷加上夏季温暖的地区(即在I,II,VI和VII地区),在夏季用水代替防冻剂是一种最佳做法,可最大限度地提高热力性能。

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