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Information-measuring System to Study the Thermocouple with Controlled Temperature Field

机译:研究温度场受控的热电偶的信息测量系统

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Error due to inhomogeneity is the main problem of thermocouples (TCs), e.g., during the operation of a type K TC, this error can reach 11-30 °C. Thus, metrological reliability of TCs is threatened by this error because there is a high risk of exceeding the permissible error when the temperature distribution along the TC legs changes. Such a large error, in turn, can threaten a proper operation or even safety of a measured object. A TC with controlled temperature field was proposed to cope with this error. An information-measuring system to perform proper measurements, measurement data acquisition and collection to construct mathematical models is proposed. Its property is high diurnal stability of ±(0.0025+0,002(X/X_(MAX)–1) %. The requirements for the information-measuring system and its structure are considered in this paper. In particular, one of the key problems of such a sensor is how stable is its own temperature field under the influence of the temperature field of a measured object. The experimental studies were carried out using the developed system. They showed that the coefficient of penetration of the temperature field of the measured object is about 0.04. This allows decreasing error due to inhomogeneity by about 10-20 times.
机译:不均匀性引起的误差是热电偶(TC)的主要问题,例如,在K型TC操作期间,该误差可能达到11-30°C。因此,该误差会威胁TC的计量可靠性,因为当沿TC支路的温度分布发生变化时,存在超过允许误差的高风险。如此大的误差又会威胁到被测物体的正常运行甚至安全。提出了一种具有可控温度场的TC来解决此错误。提出了一种信息测量系统,用于进行适当的测量,测量数据的采集和收集,以建立数学模型。它具有±(0.0025 + 0,002(X / X_(MAX)–1)%的高昼夜稳定性,本文考虑了信息测量系统的要求及其结构,特别是它的关键问题之一。这样的传感器在被测物体的温度场的影响下其自身的温度场有多稳定,使用该开发系统进行了实验研究,结果表明被测物体的温度场的渗透系数为大约为0.04,这可以将由于不均匀性引起的误差降低大约10-20倍。

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