Application of Metrological Approaches in the Design of Calibration Equipment for Verification of Float Level Gauges

Author:

Kučera Ľuboš1,Patin Branislav1,Gajdošík Tomáš1,Palenčár Rudolf2,Palenčár Jakub2,Ujlaky Miloš3

Affiliation:

1. University of Žilina , Department of Design and Machine Elements, Faculty of Mechanical Engineering, University of Žilina , Univerzitná 8215/1, 01026 Žilina , Slovakia

2. Slovak Technical University of Bratislava , Department of Automation, Measurement and Applied informatics, Faculty of Mechanical Engineering , Namestie slobody 17, 813 21 , Bratislava , Slovakia

3. Slovak Legal Metrology n. o. Banská Bystrica , Hviezdoslavova 31,974 01 , Banska Bystrica , Slovakia

Abstract

Abstract The paper deals with a scientific approach for an increase of accuracy of measurement and possibilities for automation of the standard equipment for calibration and verification of float level gauges. They are applied in high-capacity fuel storage tanks, and they are intended to measure the level of stored liquid hydrocarbons. In the submitted paper, we describe original approaches towards metrological control of float level gauges. Firstly, we present and describe the current ways of control by means of the standard equipment of the first generation with a precision caliper and manual measuring wire with the application of modern scientific and developing processes. A new system, whose design is based on research and development, represents a fully automated measuring system which utilizes the incremental optical encoder with a precision graduated ring and a rewind pulley. The paper deals with the issue of a design of the standard equipment and its measurement system from the standpoint of metrology and construction. Based on scientific procedures, we solve reasons of errors in measurement and their reduction on concrete components of the measurement system. The result is that, following the scientific approach and mathematical description of the determination of measurement uncertainties, constructors are able to design suitable tolerances for the production of components of measuring devices and related materials and technologies.

Publisher

Walter de Gruyter GmbH

Subject

Instrumentation,Biomedical Engineering,Control and Systems Engineering

Reference23 articles.

1. [1] (2018). Law of 15. May 2018 on metrology and on amendments to certain laws. In Collection of Laws of the Slovak Republic, 157/2018 Z. z. (in Slovak)

2. [2] (2019). Decree of the ÚNMS SR of 27. May 2019 on measuring instruments and metrological control. In Collection of Laws of the Slovak Republic, 161/2019 Z. z. (in Slovak)

3. [3] International Organization of Legal Metrology (OIML). (2008). Automatic level gauges for measuring the level of liquid in stationary storage tanks. Part 1: Metrological and technical requirements. Part 2: Metrological control and tests. OIML R 85-1 & 2. Edition 2008 (E).

4. [4] Endress+Hauser Group Services AG. Operating instruction Proservo NMS5. https://portal.endress.com/wa001/dla/5000404/6055/000/06/BA00401G08EN08.16.pdf.

5. [5] Chren, I. (2014). Method and equipment for testing and calibrating float level meters. Utility model SK 6864 Y1. (in Slovak)

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