Selection of a calibration system for relative gravimeters and testing of the processing using the example of the Zhetygen calibration baseline in Kazakhstan

IF 1.4 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Acta Geodaetica et Geophysica Pub Date : 2024-09-17 DOI:10.1007/s40328-024-00454-x
Roman Sermiagin, Nurgan Kemerbayev, Khaini-Kamal Kassymkanova, Guzyaliya Mussina, Maral Shkiyeva, Nikolay Kosarev, Kanat Samarkhanov, Assel Batalova, Azamat Rakhimzhanov, Yeraly Kalen
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Abstract

This article consolidates and organizes modern methods for calibrating relative gravimeters, aiming to streamline the selection and implementation of effective calibration systems, particularly in Kazakhstan. The concept of the calibration function and various methods for its determination are presented. Practical implementations of laboratory methods relevant to modern high-precision relative gravimeters are discussed, including the tilt, moving mass, artificial acceleration, and line calibration methods. Data processing through least squares adjustment at the calibration line and an overview of existing software packages for gravity observation equalization are explored. The article also covers existing horizontal and vertical calibration systems in different countries, detailing their main characteristics and schematics. Finally, an estimation of scale factors for five years of measurements with Scintrex CG-5 gravimeters at the Zhetygen calibration line in Kazakhstan is provided.

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选择相对重力仪的校准系统,并以哈萨克斯坦的热蒂根校准基线为例对处理过程进行测试
本文综合整理了校准相对重力仪的现代方法,旨在简化有效校准系统的选择和实施,尤其是在哈萨克斯坦。文章介绍了校准功能的概念及其确定的各种方法。讨论了与现代高精度相对重力仪相关的实验室方法的实际应用,包括倾斜、移动质量、人工加速度和线校准方法。文章还探讨了通过校准线最小二乘法调整进行数据处理的方法,以及现有重力观测均衡软件包的概况。文章还介绍了不同国家现有的水平和垂直校准系统,详细说明了它们的主要特点和示意图。最后,文章提供了在哈萨克斯坦 Zhetygen 校准线使用 Scintrex CG-5 重力计进行五年测量的比例因子估算。
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来源期刊
Acta Geodaetica et Geophysica
Acta Geodaetica et Geophysica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
3.10
自引率
7.10%
发文量
26
期刊介绍: The journal publishes original research papers in the field of geodesy and geophysics under headings: aeronomy and space physics, electromagnetic studies, geodesy and gravimetry, geodynamics, geomathematics, rock physics, seismology, solid earth physics, history. Papers dealing with problems of the Carpathian region and its surroundings are preferred. Similarly, papers on topics traditionally covered by Hungarian geodesists and geophysicists (e.g. robust estimations, geoid, EM properties of the Earth’s crust, geomagnetic pulsations and seismological risk) are especially welcome.
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