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Practical thermal performance correlations for a wet-coil indirect evaporative cooler

机译:湿盘管间接蒸发冷却器的实用热性能关联

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The objective of this research was to develop practical models for predicting the thermal performance of a wet-coil indirect evaporative cooler (IEC). Through statistical analysis of cooling and heat exchange effectiveness data generated by a simple epsilon-NTU (number of transfer units) method, simplified models returning the thermal performance of a wet-coil IEC were developed. Linear regression equations were derived as a function of the major design parameters and interactions that strongly affected the wet-coil IEC's performance. A pilot wet-coil IEC unit was built to validate the proposed models. Effectiveness data were obtained under a controlled range of operating conditions in an environmental chamber. Then, the energy-saving potential achievable by integrating a wet-coil IEC into a conventional variable air volume (VAV) system for pre-conditioning the outdoor air intake was quantitatively evaluated. The experimental results showed that more than 75% cooling effectiveness and 59% heat reclaim effectiveness could be achieved under wet and dry operating conditions, respectively. The experimental data acquired using the pilot unit agreed well with the thermal effectiveness predicted by the proposed models. Consequently, the VAV system integrated with the wet-coil IEC showed more than 45% reduced annual operating energy consumption compared with the conventional VAV system. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究的目的是开发实用模型来预测湿线圈间接蒸发冷却器(IEC)的热性能。通过对简单的ε-NTU(传输单元数)方法生成的冷却和热交换效率数据进行统计分析,开发了返回湿线圈IEC热性能的简化模型。线性回归方程是根据主要设计参数和相互作用的函数得出的,这些参数和相互作用极大地影响了湿线圈IEC的性能。建造了一个试点湿线圈IEC单元来验证所提出的模型。有效性数据是在环境室内受控条件下获得的。然后,定量评估了通过将湿线圈IEC集成到用于预先调节室外进气口的常规可变风量(VAV)系统中可实现的节能潜力。实验结果表明,在湿和干运行条件下,分别可获得超过75%的冷却效率和59%的热回收效率。使用中试单元获得的实验数据与拟议模型预测的热效率非常吻合。因此,与传统VAV系统相比,与湿线圈IEC集成的VAV系统显示每年的运行能耗降低了45%以上。 (C)2015 Elsevier B.V.保留所有权利。

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