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

Author:

Wang Jinfei1,Kochan Orest23,Przystupa Krzysztof4,Su Jun2

Affiliation:

1. School of Mechanical Engineering , Northwestern Polytechnical University , 127 Youyi Ave. West, Xi’an 710072 , China

2. School of Computer Science , Hubei University of Technology , Hubei , China

3. Institute of Computer Technologies, Automation and Metrology , Lviv Polytechnic National University , Karpinskoho Str. 1, 79013 , Lviv , Ukraine .

4. Faculty of Mechanical Engineering , Technical University of Lublin , Nadbystrzycka 36, 20618 , Lublin , Poland

Abstract

Abstract 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/XMAX–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.

Publisher

Walter de Gruyter GmbH

Subject

Instrumentation,Biomedical Engineering,Control and Systems Engineering

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