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Thermal diffusion of water vapour in porous materials: Fact or fiction?

机译:水蒸气在多孔材料中的热扩散:事实还是虚构?

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The reliable evaluation of moisture transfer in porous materials is essential in many engineering applications, among which building science. One key aspect is a correct description of moisture flow phenomena and their transport potentials. While different issues can be debated in that respect, thermal diffusion of water vapour in porous materials - diffusion driven by temperature gradients - currently stands out, due to the contradictory findings on the topic. Thermal diffusion proponents uphold that, complementary to vapour pressure gradients, temperature gradients equally yield substantial diffusion. Thermal diffusion opponents, on the other hand, assert that these thermal transports are negligibly small. This paper resolves that contradiction. A critical analysis of the investigations supporting the occurrence of thermal diffusion reveals that all are flawed. A correct reinterpretation of all measurements allows concluding that no consistent nor significant thermal diffusion can be observed. This brings these investigations in line with their earlier opponents. This conclusion also agrees with thermodynamics, which confirms the actual existence of thermal diffusion, but also indicates its negligible magnitude. It can in conclusion be stated that thermal diffusion is of no importance for building science applications, leaving vapour pressure as the sole significant transport potential for the diffusion of water vapour in porous materials.
机译:在许多工程应用中,其中包括建筑科学,可靠评估多孔材料中水分的传递至关重要。一个关键方面是对水分流动现象及其传输潜力的正确描述。尽管在这方面可以争论不同的问题,但由于在该主题上的矛盾发现,多孔材料中水蒸气的热扩散(由温度梯度驱动的扩散)目前表现突出。热扩散的支持者认为,与蒸气压梯度互补的温度梯度同样会产生大量的扩散。另一方面,反对热扩散的人则认为这些热传递很小。本文解决了这一矛盾。对支持热扩散发生的研究进行的严格分析表明,所有这些都是有缺陷的。对所有测量值的正确重新解释可以得出结论,无法观察到一致或明显的热扩散。这使这些调查与其早期的对手保持一致。该结论也与热力学一致,后者证实了热扩散的实际存在,但也表明其可忽略不计。可以得出结论,对于建筑科学应用而言,热扩散并不重要,而蒸气压是水蒸气在多孔材料中扩散的唯一重要的运输潜力。

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