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Latent Heat Phenomena in Buildings and Potential Integration into Energy Balance

机译:建筑物中的潜热现象和潜在融入能量平衡

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Wood as hygroscopic material has the capacity to absorb moisture and thus to moderate the indoor relative humidity (RH) in a building, resulting in lower ventilation demand. In addition, when moisture migrates in hygroscopic structures energy is released through latent heat phenomena. The diurnal variation of moisture content in wood hold a potential for contributing in the buildings energy balance. This study presents the theoretical energy savings in low energy buildings with interior wooden surfaces under different moisture protocols indoors. The requirements of the Norwegian Building Regulations (TEK10) are followed regarding the U-values of the envelope components. A hygrothermal simulation tool is employed to estimate the potential diurnal variations of moisture content in the wood structure. The latent heat released and absorbed is mathematically calculated for a reference building. The results show the potential of hygroscopic structures to save thermal energy by means of heat of sorption and to reduce the conductive heat losses through opaque building elements. The limitations of the phenomena are also discussed.
机译:作为吸湿材料的木材具有吸收水分的能力,从而适度地在建筑物中适度地进行室内相对湿度(RH),导致通风需求较低。另外,当水分迁移在吸湿结构中时,通过潜热现象释放能量。木材中水分含量的昼夜变化保持在建筑物能量平衡中有助于贡献。本研究介绍了在室内不同水分协议下的内部木表面的低能量建筑物的理论节能。遵循挪威建筑法规(TEK10)的要求,接下来是包络组件的U值。使用湿热模拟工具来估计木结构中水分含量的潜在昼夜变化。诸如参考建筑的数学地计算释放和吸收的潜热。结果表明,通过吸附的热量节省热能的吸湿结构,并通过不透明的建筑元件降低导电热损失。还讨论了现象的局限性。

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