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Approximation of building window properties using in situ measurements

机译:使用原位测量构建窗口属性的近似

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From the perspective of homeowners, retrofitting home windows, especially for old houses, would not only facilitate energy savings but also may increase thermal comfort. To make decisions of window retrofitting or replacements, measuring and knowing the existing windows' performance level would become an essential step for the decision-making process. The study of in situ measurements of the thermal and optical performance of the glazing system in residential buildings has not been examined thoroughly. For this purpose, in this project, a portable and easy-to-use in situ measuring system for building windows using the Arduino platform and low-cost sensors have been studied, fabricated, and then examined. It is designed specifically to in situ measure the glazing properties, including Center-of-glass U-factor, Solar Transmittance (tau(s)), and Visible Light Transmittance (VT). We devised the measurement system and associated sensors based on thermodynamic equations and intended to simplify the measuring procedures. For general use by homeowners, this device enables a simple, quick, and reliable in situ approximation of glazing properties, with about 97.2%, 93.3%, and 92.1% accuracy for VT, tau(s), and Center-of-glass U-factor, respectively. The developed system and procedure can further be combined with energy estimation algorithms to support the decision-making in retrofitting building windows.
机译:从房主的角度来看,改造家庭窗户,特别是对于旧房屋,不仅可以促进节能,而且可能会增加热舒适度。要做出窗口改造或替换的决策,测量和了解现有的Windows的性能水平将成为决策过程的重要步骤。彻底检查了在住宅建筑中玻璃系统的热敏和光学性能的原位测量研究。为此目的,在该项目中,已经研究了使用Arduino平台和低成本传感器建立窗户的便携式且易于使用的用于建造窗口,并进行了检查,然后检查。它专门设计用于原位测量玻璃特性,包括玻璃中心U因子,太阳透射率(TAU)和可见光透射率(VT)。我们根据热力学方程设计了测量系统和相关传感器,并旨在简化测量程序。对于房主的一般用途,该装置可以实现简单,快速,可靠的玻璃特性,大约97.2%,93.3%和92.1%的vt,tau和玻璃中心u - 要分别。开发的系统和过程可以进一步与能量估计算法组合,以支持改装建筑窗口的决策。

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