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A Heat Transfer Analysis and Alternative Method for Calibration of Copper Slug Calorimeters

机译:铜块热量计校准传热分析及替代方法

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Copper slug calorimeters are among several types of sensors that are commonly used to instrument mannequins in ASTM F1930, Standard Test Method for Evaluation of Flame Resistant Clothing for Protection Against Fire Simulations Using an Instrumented Manikin, fire simulations. In tests of protective clothing ensembles where the dressed mannequin is exposed to a 4-s-long simulated flash fire, it is necessary to acquire roughly 90s of heat flux times series data from sensors for model predictions of theoretical skin burn injury. To accurately estimate the absorbed heat flux at the sensor face from the calorimeter's temperature response, a thermal energy balance is used where internal heat loss (i.e., heat transfer from the copper slug to the body of the sensor) is accounted for. Calibration of the sensor is comprised of selecting appropriate values for parameters in the energy balance. In this work, we illustrate a method by which constants in the characterization of heat losses are determined from analysis of the cooling portion of the sensor's response occurring immediately following short-duration intense heat flux. The method is demonstrated in two experimental set-ups: a pure radiant (quartz lamp bank) exposure of single-slug calorimeters in tandem with a water-cooled Schmidt-Boelter sensor and exposure to flame engulfment conditions using a flat panel target instrumented with a cluster of twelve calorimeters surrounding a witness Medtherm thermopile heat flux sensor. Good agreement between the witness sensors and calibrated calorimeters is obtained for both nude exposures and for transmitted heat flux behind a fabric test specimen. Calibration from the cooling portion of the response provides the advantage of calibrating sensors in situ and en masse. These results suggest the technique may be extended to the calibration of 122 sensors installed on the mannequin in situ from a small number of nude exposures.
机译:铜制块量热计是若干类型的传感器,通常用于ASTM F1930中的仪器模型,使用仪表式的Manikin,火灾模拟来评估防火衣服的标准测试方法。在衣服衣服的测试中,穿着衣服的时装模特暴露于4秒的模拟闪光灯,有必要从传感器获得大约90多次的热通量序列数据,以进行理论皮肤烧伤的模型预测。为了精确估计传感器面部的吸收的热通量从量热计的温度响应,占内部热损失(即,从传感器的主体的铜块的热传递)使用热能平衡。传感器的校准由选择能量平衡中的参数选择适当的值。在这项工作中,我们示出了一种方法,通过在短持续时间强度热通量之后立即发生传感器响应的冷却部分的分析来确定热损失表征的常数。该方法以两种实验组:纯辐射(石英灯库)曝光的单块热量计,与水冷施密电阻传感器和暴露于火焰吞噬条件,使用仪表仪表围绕着见证Medtherm热源热通量传感器的十二热量计簇。用于证人传感器和校准量热仪之间的良好一致性地用于裸露曝光和织物试样后面的传输热通量。响应的冷却部分校准提供了校准传感器的优势和en masse。这些结果表明该技术可以扩展到安装在时装模特上的122个传感器的校准,原位从少数裸露的裸露曝光。

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