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首页> 外文期刊>Journal of Research of the National Institute of Standards and Technology >Assessment of Uncertainties for the NIST 1016 mm Guarded-Hot-Plate Apparatus: Extended Analysis for Low-Density Fibrous-Glass Thermal Insulation
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Assessment of Uncertainties for the NIST 1016 mm Guarded-Hot-Plate Apparatus: Extended Analysis for Low-Density Fibrous-Glass Thermal Insulation

机译:NIST 1016毫米防护热板设备的不确定度评估:低密度纤维玻璃隔热材料的扩展分析

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摘要

An assessment of uncertainties for the National Institute of Standards and Technology (NIST) 1016 mm Guarded-Hot-Plate apparatus is presented. The uncertainties are reported in a format consistent with current NIST policy on the expression of measurement uncertainty. The report describes a procedure for determination of component uncertainties for thermal conductivity and thermal resistance for the apparatus under operation in either the double-sided or single-sided mode of operation. An extensive example for computation of uncertainties for the single-sided mode of operation is provided for a low-density fibrous-glass blanket thermal insulation. For this material, the relative expanded uncertainty for thermal resistance increases from 1percent for a thickness of 25.4 mm to 3percent for a thickness of 228.6 mm. Although these uncertainties have been developed for a particular insulation material, the procedure and, to a lesser extent, the results are applicable to other insulation materials measured at a mean temperature close to 297 K (23.9 deg C, 75 deg F). The analysis identifies dominant components of uncertainty and, thus, potential areas for future improvement in the measurement process. For the NIST 1016 mm Guarded-Hot-Plate apparatus, considerable improvement, especially at higher values of thermal resistance, may be realized by developing better control strategies for guarding that include better measurement techniques for the guard gap thermopile voltage and the temperature sensors.
机译:提出了对美国国家标准技术研究院(NIST)1016毫米保护热板设备的不确定性的评估。报告不确定性的格式与当前有关测量不确定度的NIST政策一致。该报告介绍了一种确定在双面或单面操作模式下运行的设备的导热系数和热阻的不确定度的过程。对于低密度玻璃纤维毯隔热材料,提供了用于计算单面运行模式不确定性的广泛示例。对于这种材料,热阻的相对扩展不确定性从25.4毫米的厚度的1%增加到228.6毫米的厚度的3%。尽管已经为特定的绝缘材料开发了这些不确定性,但是该过程以及在较小程度上可以将结果应用于在平均温度接近297 K(23.9摄氏度,75摄氏度)的情况下测量的其他绝缘材料。该分析确定了不确定性的主要组成部分,从而确定了测量过程中未来需要改进的潜在领域。对于NIST 1016 mm防护热板设备,可以通过开发更好的防护控制策略(包括针对防护间隙热电堆电压和温度传感器的更好的测量技术)来实现相当大的改进,尤其是在更高的热阻值下。

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