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Temperature Uncertainties for Bare-Bead and Aspirated Thermocouple Measurements in Fire Environments

机译:消防环境中裸珠和吸气热电偶测量的温度不确定性

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Two common approaches for correcting thermocouple readings for radialive heal transfer are aspirated thermocouples and the use of multiple bare-bead thermocouples with varying diameters. In order to characterize the effectiveness of these approaches, two types of aspiraled thermocouples and combinations of bare-bead thermocouples with different diameters were used to record lemperalures at mulliple localions during idealized enclosure fires, and the resulls were compared with measuremenls using typical bare-bead thermocouples. The largesl uncertainties were found for thermocouples located in relatively cool regions subject to high radialive fluxes. The aspiraled thermocouples measured significantly lower lemperalures in the cool regions than the bare-bead thermocouples, but the errors were only reduced by 80-90 %. A simple model for heat transfer processes in bare-bead and aspirated thermocouples successfully predicts the experimenlal trends. The multiple bare-bead thermocouples could not be used for temperature correction because significanl lemperalure fluclualions were presenl wilh time scales comparable to the response times of the thermocouples.
机译:用于校正辐射愈合传递的热电偶读数的两种常见方法是吸出热电偶的热电偶,并且使用具有不同直径的多个裸珠热电偶。为了表征这些方法的有效性,使用两种类型的展示热电偶和具有不同直径的裸珠热电偶的组合来记录在理想的外壳火灾期间Mulliple本质上的lemperalupes,并且使用典型的裸珠与测量蛋白的重组进行比较热电偶。发现含有高辐射通量的相对较低区域的热电偶的庞格的不确定性。普通的热电偶比裸珠热电偶在凉爽区域中测得显着降低,但误差仅减少了80-90%。裸珠和吸气热电偶中的传热过程的简单模型成功预测了实验趋势。多个裸珠热电偶不能用于温度校正,因为意义的LemPeralure Flullulions是PareenL的延长时间尺度与热电偶的响应时间相当。

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