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Design, construction and validation of a guarded hot plate apparatus for thermal conductivity measurement of high thickness crop-based specimens

机译:设计,构造和验证用于厚壁农作物标本热导率测量的热板保护装置

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摘要

The search for sustainability achievement in the building sector led to the use of crop-based insulation materials. Among these, raw products like plant straws bales can present elementary representative volumes in the size order of several square centimeters. Fibers orientation may play an important role on material thermal behavior. Measuring their thermal conductivities with standard steady-state equipment can thus lead to some inaccuracies due to the necessity of resetting lower thickness samples. This paper presents a guarded hot plate apparatus designed to test high thickness samples, up to 40 cm, with an accuracy of 2 %. The different parts of the machine are described in details along with design process and challenges encountered. Temperature and heat flux measurements in the device represent critical design stages where optimal accuracy is needed in order to optimize the resulting global error. Regarding this, necessary numerical and experimental analyzes were conducted emphasizing on intrinsic systematic error assessment. To complete the study, some validations tests are performed on a reference material and other widely-spread polystyrene slabs. These tests take into account the optimal computation parameters resulting from the numerical analysis and the apparatus proved to be in accordance with accuracy requirements.
机译:在建筑领域寻求可持续发展的成就导致使用了农作物绝缘材料。在这些产品中,像植物秸秆捆这样的原始产品的基本代表体积可以达到几平方厘米。纤维取向可能对材料的热行为起重要作用。由于需要重置较低厚度的样品,因此使用标准的稳态设备测量其热导率可能会导致一些误差。本文介绍了一种带保护的热板设备,该设备设计用于测试厚度最大为40 cm,精度为2%的样品。详细描述了机器的不同部分以及设计过程和遇到的挑战。器件中的温度和热通量测量值代表了关键的设计阶段,在这些阶段中,需要最佳的精度才能优化最终的整体误差。对此,进行了必要的数值和实验分析,着重于内在的系统误差评估。为了完成研究,对参考材料和其他广泛使用的聚苯乙烯平板进行了一些验证测试。这些测试考虑了由数值分析得出的最佳计算参数,并且该设备证明符合精度要求。

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