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Validity and reliability of temperature measurement by heat flow thermistors, flexible thermocouple probes and thermistors in a stirred water bath

机译:在搅拌水浴中通过热流热敏电阻,柔性热电偶探头和热敏电阻进行温度测量的有效性和可靠性

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We determined the validity and reliability of heat flow thermistors, flexible thermocouple probes and general purpose thermistors compared with a calibrated reference thermometer in a stirred water bath. Validity (bias) was defined as the difference between the observed and criterion values, and reliability as the repeatability (standard deviation or typical error) of measurement. Data were logged every 5 s for 10 min at water temperatures of 14, 26 and 38 °C for ten heat flow thermistors and 24 general purpose thermistors, and at 35, 38 and 41 °C for eight flexible thermocouple probes. Statistical analyses were conducted using spreadsheets for validity and reliability, where an acceptable bias was set at 0.1 °C. None of the heat flow thermistors, 17% of the flexible thermocouple probes and 71% of the general purpose thermistors met the validity criterion for temperature. The inter-probe reliabilities were 0.03 °C for heat flow thermistors, 0.04 °C for flexible thermocouple probes and 0.09 °C for general purpose thermistors. The within trial intra-probe reliability of all three temperature probes was 0.01 °C. The results suggest that these temperature sensors should be calibrated individually before use at relevant temperatures and the raw data corrected using individual linear regression equations.
机译:我们确定了热流热敏电阻,柔性热电偶探头和通用热敏电阻在搅拌水浴中与校准参考温度计相比的有效性和可靠性。有效性(偏差)定义为观测值与标准值之间的差,可靠性定义为测量的可重复性(标准偏差或典型误差)。对于10个热流热敏电阻和24个通用热敏电阻,在水温为14、26和38°C的情况下,每5秒钟记录一次数据,持续10分钟,对于八个柔性热电偶探头,则分别在35、38和41°C的温度下记录数据。使用电子表格进行统计分析以确保有效性和可靠性,其中可接受的偏差设置为0.1°C。没有热流热敏电阻,17%的柔性热电偶探头和71%的通用热敏电阻符合温度有效标准。探针间的可靠性对于热流热敏电阻为0.03°C,对于柔性热电偶探头为0.04°C,对于通用热敏电阻为0.09°C。所有三个温度探针的试验内探针内部可靠性均为0.01°C。结果表明,应在相关温度下使用之前分别校准这些温度传感器,并使用单独的线性回归方程式对原始数据进行校正。

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