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Numerical study of coupled heat and mass transfer in geothermal water cooling tower

机译:地热水冷却塔传热传质耦合数值研究

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摘要

Cross flow mechanical cooling towers, widely spreads all over the south region of Tunisia are used for cooling geothermal water for agriculture and domestic ends. These towers are sized empirically and present several problems in regard to operation and electrical energy consumption. This work aims to study the thermal behaviour of this type of cooling towers through a developed mathematical model considering the variation of the water mass flow rate inside the tower. The analysis of the water and air temperatures distribution along the cooling tower had underlined the negative convection phenomenon at a certain height of the tower. This analysis has shown also that the difference in water temperature between the inlet and the outlet of the tower is much higher than the one of air due to the dominance of the evaporative potential compared to the convective one. In addition, the variations of the air humidity along the cooling tower and the quantity of evaporated water have been investigated. The loss of water by evaporation is found to be 5.1% of the total quantity of water feeding the cooling tower. Interesting future prospects are expected for validation of the developed model to optimize the operating of the cooling tower.
机译:横流机械冷却塔广泛分布在突尼斯南部地区,用于冷却农业和家庭用水的地热水。这些塔的大小根据经验确定,在操作和电能消耗方面存在一些问题。这项工作旨在通过考虑冷却塔内部水质量流量变化的数学模型,研究此类冷却塔的热行为。对冷却塔沿水和空气温度分布的分析强调了冷却塔一定高度处的负对流现象。该分析还表明,与对流相比,由于蒸发势的优势,塔的入口和出口之间的水温差远高于空气温度差。另外,还研究了沿着冷却塔的空气湿度和蒸发水量的变化。蒸发造成的水损失占冷却塔供水量的5.1%。为验证开发的模型以优化冷却塔的运行,有望获得有趣的未来前景。

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