住宅和公共建筑中的超地磁场

V. E. Kriyt, YN Sladkova, O. Volchkova, Dmitriy N. Sklyar, VP Plekhanov
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摘要

导言。地磁场(GMF)对人体的影响已是公认的事实,而地磁场的增强和减弱是关键因素。现有住宅和公共建筑中 GMF 水平的正常化问题导致需要在多层和高层建筑的设计阶段使用计算方法,并在试运行阶段开发仪器控制方法。本研究的目的是制定并科学证实实地测量住宅和公共建筑中 GMF 强度和计算 GMF 衰减系数的方法。材料和方法。分析了当前和以前有效的监管和方法文件,确定了地磁场强度测量的要求,以及2018-2022年完成的30个委托设施的GMF强度测量协议。结果。确定了在住宅和公共建筑中测量 GMF 强度和评估次地磁条件时出现的问题。提出了所需的最低工作量、测量控制点、对测量仪器(MI)的要求以及对所获测量结果的处理和登记。局限性。研究结果只能用于测量住宅和公共建筑内的 GMF 强度和评估次地磁条件,不适用于工作场所的测量。结论所建议的方法论将使测量地磁场强度、处理和记录所获结果以及评估住宅和公共建筑的低地磁条件是否符合现行卫生标准成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hypogeomagnetic field in residential and public buildings
Introduction. The impact of geomagnetic field (GMF) on the human body is a proven fact, while an increased, but also a weakened geomagnetic field is the critical factor. The problems of normalization of GMF levels in existing residential and public buildings lead to the need for the use of calculation methods at the design stage of multistorey and high-rise buildings, the development of instrumental control methods at the stage of commissioning. The purpose of the study was to develop and scientifically substantiate methodological approaches to carrying out field measurements of GMF intensity and calculating the GMF attenuation coefficient in residential and public buildings. Materials and methods. The current and previously valid regulatory and methodological documents establishing requirements for geomagnetic field intensity measurements were analyzed, as well as protocols of GMF intensity measurement at thirty commissioned facilities completed in 2018–2022. Results. Issues arising during the measurements of GMF intensity and assessing hypogeomagnetic conditions in residential and public buildings are identified. The minimum required amount of work, control points of measurements, requirements to measuring instruments (MI), as well as to the processing and registration of the obtained measurement results are proposed. Limitations. The results of the study can be used only for measuring the GMF intensity and assessing hypogeomagnetic conditions in the premises of residential and public buildings, and are not applied to measurements in the workplace. Conclusion. The proposed methodological approaches will make it possible to carry out measurements of the geomagnetic field intensity, process and document the obtained results, as well as assess hypogeomagnetic conditions in residential and public buildings for compliance with current hygienic standards.
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