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Experimental analysis and performance optimization of a counter-flow enthalpy recovery device using liquid desiccant

机译:液体干燥剂逆流式焓回收装置的实验分析及性能优化

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The liquid desiccant enthalpy recovery is an efficient way to save energy in air-conditioning systems. In this study, a counter-flow liquid desiccant enthalpy recovery device was proposed and experimentally analyzed. Enthalpy transfer capacity, enthalpy efficiency and pressure drop per height of packing were used as indices to describe its performances. Based on the experiment results, the heat and mass transfer model of a packed tower was used to simulate and optimize the performance of this device. The maximum enthalpy efficiency and enthalpy transfer capacity were achieved when the optimal air velocity (1.9–2.1 m/s in this study) maintained to be slightly below the air velocity at the loading point and the thermal capacity ratio of air to desiccant ( m* ) equaled to 1. These conclusions are valuable to both design and operation of such an enthalpy recovery device. Practical application : A counter-flow enthalpy recovery device with liquid desiccant was proposed and experimentally investigated. Based on the experiment results, a numerical model for this device was built and validated. The optimal air and desiccant mass fluxes were analyzed to maximize the enthalpy efficiency of this device, which could be higher than the conventional device with cross-flow pattern. These results could provide guidelines for both design and operation management of counter-flow enthalpy recovery devices in liquid desiccant-based air-conditioning systems.
机译:液体干燥剂焓的回收是节省空调系统能量的有效方法。在这项研究中,提出了一种逆流式液体干燥剂焓回收装置并进行了实验分析。焓传递能力,焓效率和每填料高度的压降被用作描述其性能的指标。根据实验结果,使用填充塔的传热传质模型来模拟和优化该设备的性能。当最佳风速(在本研究中为1.9-2.1 m / s)保持在加载点的风速和空气与干燥剂的热容量比(m *)以下时,可以达到最大的焓效率和焓传递能力。 )等于1。这些结论对于这种焓回收装置的设计和运行都是有价值的。实际应用:提出了一种带有液体干燥剂的逆流焓回收装置并进行了实验研究。根据实验结果,建立并验证了该设备的数值模型。分析了最佳的空气和干燥剂质量通量,以使该设备的焓效率最大化,该效率可能高于具有错流模式的常规设备。这些结果可为基于液体干燥剂的空调系统中逆流焓回收装置的设计和运行管理提供指导。

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