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

机译:计量方法在浮动级仪验证校准设备设计中的应用

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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.
机译:本文涉及一种科学方法,可以提高测量准确性以及用于校准和验证浮法仪表仪表的标准设备的自动化的可能性。它们适用于高容量燃料储罐,它们旨在测量储存液体烃的水平。在提交的论文中,我们描述了对浮子级测量仪进行计量控制的原始方法。首先,我们通过第一代的标准设备提供了目前的控制方式,具有精密卡钳和手动测量线,具有现代科学和开发过程的应用。一种新的系统,其设计基于研发,代表了一种全自动测量系统,其利用具有精密刻度环和倒带滑轮的增量光学编码器。本文从计量和施工的角度涉及标准设备和测量系统的设计问题。基于科学手术,我们解决了测量误差的原因及其对测量系统的混凝土组件的减少。结果是,根据科学的方法和数学描述测量不确定性的确定,构造函数能够为生产测量装置和相关材料和技术的组件设计合适的公差。

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