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Determination of cost-efficient cooling power range for improving the performance of internally cooled ultrasonic atomization liquid desiccant dehumidifiers

机译:改善内部冷却超声雾化液干燥剂除湿剂的成本高效的冷却功率范围的测定

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Liquid desiccant dehumidifiers (LDDs) can be improved by adding internal cooling. However, the addition of excessive cooling power may deteriorate the system's cost-efficiency, whereas the addition of insufficient cooling power leads to negligible performance improvements. The objective of this study is to determine the suitable cost-efficient cooling power range for improving the performance of internally cooled LDDs (IC-LDDs). A novel method and a set of criteria related to the moisture removal rate, cooling-power efficiency (eta(c)) and coefficient of dehumidification performance from cooling power (DCOPcooling) were proposed to determine cost-efficient cooling power. The internally cooled ultrasonic atomization liquid desiccant system (IC-UADS), together with a well-validated model based on the conservation laws of mass and energy and the sensible heat balance, was adopted to demonstrate the analysis. The results showed that, although the dehumidification performance improves with increasing cooling power, the improvement rate decreases, while eta(c)and DCOP(cooling)decline quickly (by 87.9%). For cost-efficient improvement, the necessary power proportion of internal cooling to the system's target dehumidification capacity tends to be stable, which was about 29% for the IC-UADS, and independent of the operating conditions. The results may help to determine the reasonable cooling power range for cost-efficient improvement of IC-LDDs.
机译:通过添加内部冷却,可以提高液体干燥剂除湿器(LDDS)。然而,增加冷却功率可能会使系统的成本效率恶化,而添加不足的冷却功率导致可忽略的性能改进。本研究的目的是确定适当的成本效益的冷却功率范围,用于提高内部冷却的LDDS(IC-LDDS)的性能。提出了一种新的方法和与水分去除率,冷却功率效率(ETA(C))和来自冷却功率(直流电)的除湿性能系数相关的一组标准,以确定成本有效的冷却功率。内部冷却的超声雾化液体干燥剂系统(IC-UAD)与基于质量和能量的守恒定律和明智的热平衡的良好验证的模型一起进行了展示分析。结果表明,尽管除湿性能随着冷却功率的增加而改善,但提高率降低,而ETA(C)和DCOP(冷却)迅速下降(87.9%)。为了成本效益,内部冷却与系统的目标除湿能力的必要动力比例趋于稳定,煤气uads的稳定性约为29%,并且独立于操作条件。结果可以有助于确定合理的冷却功率范围,以便有效地改进IC-LDD。

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