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Influence of Water on the Total Heat Transfer in ‘Evacuated’ Insulations

机译:水对“真空”绝热层总传热的影响

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The impact of water vapor on the thermal conductivity of vacuum insulation panels (VIPs) filled with fumed silica kernels was investigated and found to be surprisingly large. Besides thermal transport by water vapor within the pore space, the question was whether water in the adsorbed phase also contributed significantly to the total heat transfer. In order to quantify these effects, several series of thermal conductivity measurements were performed in an evacuable guarded-hot-plate. The fumed silica specimens were first investigated in the dry state. Then water vapor was added into the vacuum system in different quantities (valves closed and no pumping), yielding water content in the VIP-kernel of up to 4% by mass. Most of the water is adsorbed in the specimens; smaller amounts are to be found in the gas phase. The parameter varied was the temperature; accordingly, the partial pressure of water vapor changed. An empirical equation is presented that describes the influence of water vapor and adsorbed water on the total heat transfer.
机译:研究了水蒸气对填充有气相二氧化硅颗粒的真空绝热板(VIP)的热导率的影响,发现其影响惊人。除了通过水蒸气在孔隙空间中进行热传递外,问题还在于吸附相中的水是否也对总的热传递有显着贡献。为了量化这些影响,在可抽空的防护热板上进行了一系列的热导率测量。首先在干态下研究气相二氧化硅样品。然后将水蒸气以不同的量(真空阀关闭且不抽气)添加到真空系统中,从而在VIP内核中产生的水分含量最高为4质量%。大部分的水被样品吸收。气相中的量较小。变化的参数是温度;因此,水蒸气的分压发生了变化。提出了一个经验方程,该方程描述了水蒸气和吸附水对总传热的影响。

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