State primary special standard of acceleration unit in the field of gravimetry GET 190-2023: reproduction and transmission of the unit under the influence of geophysical factors
L. F. Vitushkin, E. P. Krivtsov, P. P. Krolitsky, V. V. Nalivaev, O. A. Orlov, M. M. Haleev
{"title":"State primary special standard of acceleration unit in the field of gravimetry GET 190-2023: reproduction and transmission of the unit under the influence of geophysical factors","authors":"L. F. Vitushkin, E. P. Krivtsov, P. P. Krolitsky, V. V. Nalivaev, O. A. Orlov, M. M. Haleev","doi":"10.32446/0368-1025it.2024-1-4-11","DOIUrl":null,"url":null,"abstract":"The relevance of research on the reproduction and transmission of the acceleration unit in gravimetry is determined by the development of measuring instruments for the absolute value of the acceleration of free fall and its changes. Qualitative and quantitative changes in the instrument base are due to the requirements of applied tasks solved using gravimetric data in such fields as geodesy, navigation, geodynamics, as well as the expansion of the field of practical application of absolute gravimeters. At the same time, in order to solve applied problems, along with accuracy requirements at a level close to the maximum achievable at the current level of technology development, maximum territorial coverage of measurement sites within the entire territory of the Russian Federation is often necessary. The accuracy of the results obtained with the help of measuring instruments is determined by the level of their metrological support, the main stages of which are the reproduction of the corresponding unit by the standard and its transfer to the measuring instrument. An analysis of possible sources of errors in gravimetric equipment has shown that when reproducing and transmitting the acceleration unit in gravimetry, it is necessary to take into account the influence of geophysical factors that manifest themselves as additional accelerations of a gravitational or inertial nature. The distribution of the gravitational field within a gravimetric point can manifest itself as an additional constant acceleration. Seismic processes and lunar and solar tides manifest themselves as variable accelerations. For various stages of metrological support of gravimetric devices, the mechanisms of the effects of such accelerations have been studied, as well as methods for accounting and reducing their influence using additional equipment have been developed. An additional gravimetric point with a cryogenic relative gravimeter and a broadband seismometer, as well as transported absolute ballistic and relative quartz gravimeters, were introduced into the State primary special standard of acceleration units in the field of gravimetry GET 190-2023.","PeriodicalId":14651,"journal":{"name":"Izmeritel`naya Tekhnika","volume":"23 26","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-03-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Izmeritel`naya Tekhnika","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.32446/0368-1025it.2024-1-4-11","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The relevance of research on the reproduction and transmission of the acceleration unit in gravimetry is determined by the development of measuring instruments for the absolute value of the acceleration of free fall and its changes. Qualitative and quantitative changes in the instrument base are due to the requirements of applied tasks solved using gravimetric data in such fields as geodesy, navigation, geodynamics, as well as the expansion of the field of practical application of absolute gravimeters. At the same time, in order to solve applied problems, along with accuracy requirements at a level close to the maximum achievable at the current level of technology development, maximum territorial coverage of measurement sites within the entire territory of the Russian Federation is often necessary. The accuracy of the results obtained with the help of measuring instruments is determined by the level of their metrological support, the main stages of which are the reproduction of the corresponding unit by the standard and its transfer to the measuring instrument. An analysis of possible sources of errors in gravimetric equipment has shown that when reproducing and transmitting the acceleration unit in gravimetry, it is necessary to take into account the influence of geophysical factors that manifest themselves as additional accelerations of a gravitational or inertial nature. The distribution of the gravitational field within a gravimetric point can manifest itself as an additional constant acceleration. Seismic processes and lunar and solar tides manifest themselves as variable accelerations. For various stages of metrological support of gravimetric devices, the mechanisms of the effects of such accelerations have been studied, as well as methods for accounting and reducing their influence using additional equipment have been developed. An additional gravimetric point with a cryogenic relative gravimeter and a broadband seismometer, as well as transported absolute ballistic and relative quartz gravimeters, were introduced into the State primary special standard of acceleration units in the field of gravimetry GET 190-2023.
重力测量领域加速度单位国家初级特殊标准 GET 190-2023:地球物理因素影响下的单位再现和传输
重力测量学中加速度单位的再现和传输研究的相关性是由自由落体加速度绝对值及其变化的测量仪器的发展决定的。由于大地测量学、导航、地球动力学等领域利用重力测量数据解决应用任务的要求,以及绝对重力仪实际应用领域的扩大,仪器基础发生了质和量的变化。与此同时,为了解决应用问题,同时满足接近当前技术发展水平所能达到的最高精度要求,通常需要在俄罗斯联邦全境最大限度地覆盖测量点。借助测量仪器获得的结果的准确性取决于其计量支持的水平,其主要阶段是按照标准复制相应的单位并将其传输到测量仪器。对重力测量设备中可能的误差来源进行的分析表明,在重力测量中复制和传输加速度单位时,必须考虑到地球物理因素的影响,这些因素表现为重力或惯性性质的附加加速度。重力测量点内的重力场分布可以表现为额外的恒定加速度。地震过程以及月球和太阳潮汐则表现为可变加速度。针对重力测量装置的不同计量支持阶段,对这些加速度的影响机制进行了研究,并开发了使用附加设备计算和减少其影响的方法。在重力测量领域的加速度单位国家主要特殊标准 GET 190-2023 中,增加了一个带有低温相对重力仪和宽带地震仪的重力测量点,以及运输绝对弹道重力仪和相对石英重力仪。