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Heat and mass transfer considerations of moist air

机译:潮湿空气的热量和传质考虑

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This paper first presents a temperature-transforming model to simplify the analysis and calculation of heat transfer in moist air. In this model, an apparent specific heat is defined as a function of temperature, humidity ratio, enthalpy of saturated water vapor, and the specific heats of dry air and water vapor. A correction factor is then proposed to rationalize the impact of moisture on dry air specific heat. Applying this model to analyze a typical air conditioning process demonstrates that an accurate enthalpy prediction along with a clear physical essence has been achieved. Secondly, an enthalpy-based expression of heat exchanger effectiveness is proposed to address the effects of thermal property on heat transfer analysis. A temperature-based effectiveness is then developed as a logic extension of the effectiveness discussion and the apparent specific heat method. Finally, the relationship between the current and traditional expressions of heat exchanger effectiveness is illustrated and explained. The analytical methods developed in this paper provide a systematic approach to assessing the performance of heat exchangers under a complex operating condition where mass transfer and phase change in moist air are included. A unified chain of heat transfer analysis is established to harness the nonlinear characteristics of moist air in an effort to achieve consistency and accuracy.
机译:本文首先提出了一种温度变换模型,以简化潮湿空气中传热的分析和计算。在该模型中,表观比热被定义为温度,湿度比,饱和水蒸气焓的函数,以及干燥空气和水蒸气的特定热量。然后提出校正因子以合理化水分对干燥空气比热的影响。应用该模型来分析典型的空调过程,表明,已经实现了精确的焓预测,并实现了明确的精华。其次,提出了一种基于焓的热交换器效果的表达,以解决热性质对传热分析的影响。然后将基于基于温度的有效性作为有效性讨论和表观特异性热方法的逻辑延伸。最后,说明和解释了热交换器效能的电流与传统表达的关系。本文开发的分析方法提供了一种系统的方法,可以在包括潮湿空气中的质量转移和相变的复块操作条件下评估热交换器的性能。建立统一的传热分析链以利用潮湿空气的非线性特性,以实现一致性和准确性。

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