在相对湿度 72-95 的循环阶段变化下,在杉木中动态水分传输实验的数据
Jan Richter1, Kamil Staněk1, Pavel Kopecký2
1Czech Technical University in Prague, University Centre for Energy Efficient Buildings, Třinecká 1024, Buštěhrad 273 43, Czechia.
Data in brief
|September 5, 2024
概括
这项研究量化了不同湿度下的杉木中的水分传输,揭示了吸附歇斯底里如何影响水分含量稳定和温度变化. 这些发现有助于验证工业应用的高热模拟工具.
科学领域:
- 材料科学 材料科学 材料科学
- 木材科学 木材科学 木材科学
- 建筑物理 建筑物理
背景情况:
- 木材的湿透性大大影响其技术性质,包括湿透性.
- 了解水分传输对于工业应用和精确的热建模至关重要.
- 吸附歇斯底里和异型透性 (辐射,接触,轴) 复杂化了湿度行为预测.
研究的目的:
- 介绍一维水分传输在杉木中的实验数据.
- 为了研究吸附吸附期间吸附歇斯底里和温度变化的影响.
- 为数值模拟提供材料功能,用于杉木的吸附性能和水分透性.
主要方法:
- 一个45天的动态实验室实验是在杉木样本上进行的.
- 应用了同热条件 (23°C) 与周期性相对湿度 (72-95%) 的阶段性变化.
- 材料功能通过在同一木材来源的实验室测量来确定.
主要成果:
- 观察了杉木样本中的水分稳定率.
- 测量了吸附歇斯底里斯对水分传输动态的影响.
- 由于水分吸附而导致的样本内的温度变化被记录下来.
结论:
- 实验数据和衍生材料函数对于验证湿热数值模拟工具是有价值的.
- 精确建模木材的动态高热行为需要考虑吸附歇斯底里和异构透性.
- 该研究提供了改善木材相关工业部门预测的基本数据.
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