将拉脱维亚领土的地磁数据还原到 2021.5 年纪元

Lubova Sulakova, J. Kaminskis
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摘要

文章介绍了地磁数据的来源、将拉脱维亚境内的地磁数据还原至 2021.5 年、拉脱维亚以往的磁观测历史、国家大地测量网络数据库中的可用信息以及世界地磁数据中心中的可用信息。详细介绍了绝对测量的顺序。为直观显示拉脱维亚境内磁偏角值的变化,使用 ArcGIS Pro 创建了 2021.5 年偏角波动图。拉脱维亚的偏角值从 6.68°到 10°不等,倾角值从 71.089°到 72.245°不等,总磁场值从 51100 nT 到 52594 nT 不等。所获得的磁场分量值是指磁场洁净的环境,而拉脱维亚境内的自然条件、自然异常地点和人为高磁场噪声地点(如城市、铁路附近、高压线附近等)可能存在差异。在拉脱维亚的网络中,观测点都选在磁场噪声最小的地方,因为这是建造此类观测站的技术流程。磁场观测站的要求更为严格,因此观测站的数据反映的是自然磁场,不受磁场异常的影响。减小的磁场值及其在地图上的表示可用于航空导航、军事应用、识别当地磁异常点或寻找磁清洁环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE REDUCTION OF GEOMAGNETIC DATA FOR THE TERRITORY OF LATVIA TO THE EPOCH 2021.5
The article describes the sources of geomagnetic data, the reduction of geomagnetic data for the territory of Latvia to the epoch 2021.5, the history of previous magnetic observations in Latvia, the information available in the State Geodetic Network database and the information available in the World Geomagnetism Data Centre. The sequence of absolute measurements is described in detail. To visualise the changes in the magnetic declination value in the territory of Latvia, a 2021.5 year declination fluctuation has been created using ArcGIS Pro. The declination values in Latvia range from 6.68° to 10°, the inclination values range from 71.089° to 72.245° and the total magnetic field values from 51100 nT to 52594 nT. The values obtained for the magnetic field components refer to a magnetically clean environment, and there can be, and are, differences in the natural conditions in the Latvian territory, in natural anomalous locations and in locations with artificially high magnetic field noise (e.g. in cities, near railways, near high voltage lines, etc.). In the Latvian network, points have been selected in locations where the magnetic noise is minimal, as this is the technological process for building such stations. Magnetic observatories are even stricter, so the data coming from the observatories reflect the natural magnetic field without the influence of magnetic anomalies. The reduced magnetic field values and their representation on a map can be used for aeronautical navigation, military applications, identification of local magnetic anomaly sites or search for magnetically clean environments.
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