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Effect of Substrate Conductivity on the Transient Thermal Transport of Hygroscopic Droplets during Vapor Absorption

机译:基质电导率对蒸气吸收过程中吸湿液滴瞬态热传输的影响

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摘要

In all kinds of liquid desiccant dehumidification systems, the temperature increase of the desiccant solution due to the effect of absorptive heating is one of the main reasons of performance deterioration. In this study, we look into the thermal effects during vapor absorption into single hygroscopic liquid desiccant droplets. Specifically, the effect of substrate conductivity on the transient heat and mass transfer process is analyzed in detail. The relative strength of the thermal effect and the solutal effect on the rate of vapor absorption is investigated and compared to the thermal effect by evaporative cooling taking place in pure water droplets. In the case of liquid desiccants, results indicate that the high thermal conductivity of copper substrates ensures more efficient heat removal, and the temperature at the droplet surface decreases more rapidly than that on Polytetrafluoroethylene (PTFE) substrates. As a result, the initial rate of vapor absorption on copper substrates slightly outweighs that on PTFE substrates. Further analysis by decomposing the vapor pressure difference indicates that the variation of vapor pressure caused by the temperature change during vapor absorption is much weaker than that induced by the concentration change. The conclusions demonstrate that a simplified isothermal model can be applied to capture the main mechanisms during vapor absorption into hygroscopic droplets even though it is evidenced to be unreliable for droplet evaporation.
机译:在各种液体干燥剂除湿系统中,由于吸收加热的作用而导致的干燥剂溶液的温度升高是性能下降的主要原因之一。在这项研究中,我们研究了将蒸气吸收到单个吸湿性液体干燥剂液滴中的热效应。具体而言,详细分析了基材电导率对瞬态传热和传质过程的影响。研究了相对于蒸汽吸收率的热效应和溶解效应的相对强度,并将其与纯水滴中蒸发冷却产生的热效应进行了比较。在液体干燥剂的情况下,结果表明,铜基板的高导热性可确保更有效的散热,并且液滴表面的温度下降速度比聚四氟乙烯(PTFE)基板快。结果,铜基板上的初始蒸气吸收速率略大于PTFE基板上的初始吸收速率。通过分解蒸气压差进行的进一步分析表明,由蒸气吸收过程中的温度变化引起的蒸气压力变化要比浓度变化引起的蒸气压力变化小得多。结论表明,简化的等温模型可以应用于捕获蒸汽吸收到吸湿性液滴中的主要机理,即使它被证明对液滴蒸发不可靠。

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