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In this paper, a description of the design and operation principle of the double-ring dynamically tuned gravimter is given. This design allows for the gravimeter signal separation from the noise, which makes it possible to increase the measurement accuracy of Earth’s gravitational field anomalies using gravimetric aviation system to 1 mGal.
Słowa kluczowe
Rocznik
Tom
Strony
47--51
Opis fizyczny
Bibliogr. 16 poz., rys.
Twórcy
autor
- Industrial Research Institute for Automation and Measurements PIAP, Al. Jerozolimskie 202, 02-486 Warsaw, Poland
autor
- Industrial Research Institut for Automation and Measurements PIAP, Al. Jerozolimskie 202, 02-486 Warsaw, Poland
autor
- Institute of Metrology and Biomedical Engineering, Warsaw University of Technology, Boboli 8, 02-525 Warsaw, Poland
Bibliografia
- [1] Torge, W., Gravimeter, Walter de Gruyter: New York, NY, USA, 1989.
- [2] Taylor B. N., Guide for the Use of the International System of Units (SI), NIST Special Publication 811, Appendix B, 1995 .
- [3] Seigel H.O., A Guide to High Precision Land Gravimeter Surveys, Scintrex Limited: Concord, Canada, 1995.
- [4] Huang Y., et al., “SGA-WZ: A New Strapdown Air-borne Gravimeter”, Sensors, vol. 12, no.7, 2012, 9336-9348. DOI: 10.3390/s120709336.
- [5] Martínez-Moreno F.J, et al., “Regional and residual anomaly separation in microgravity maps for cave detection: The case study of Gruta de las Maravillas (SW Spain)”,Journal of Applied Geophysics, vol. 114, 2015, 1–11. DOI: 10.1016/j.jap-pgeo.2015.01.001.
- [6] Zhai Z., et al.,The accuracy evaluation and analysis of airborne gravimetry in coastal area, Cehui Xuebao/Acta Geodaetica et Cartographica Sinica, vol. 44, issue 1, 2015, 1–5.
- [7] Bezvesilʹna O.M., Vymiryuvannya pryskorenʹ. Pidruchnyk. Pub.: Lybid, Kyyiv, 2001, 261. (In Ukrainian).
- [8] Pelʹpor D.S., Hyroskopycheskye systemy: Élementy hyroskopycheskykh pryborov, 1988, 432. (In Ukrainian).
- [9] Novykov L.Z., Raykhman O.YU., “Shumova H.M. “Blok hyrotakhometrov, osnovannyy na mynyatyurnykh dynamychesky nastrayvaemykh hyroskopakh, dlya kosmycheskykh prymenenyy”. In: Materyaly III Sankt-Peterburhskoy mezhdunarodnoy konferentsyy po yntehryrovannym navyhatsyonnym systemam. Sankt-P.: Hosudarstvennyy nauchnyy tsentr Rosyyskoy Federatsyy-TSNYY «Élektroprybor», 1996, 218. (In Russian).
- [10] Bezvesilʹna O.M., Korobiychuk I.V. “Dynamichno nastroyuvanyy hiroskop dlya vykorystannya v yakosti hravimetra“, Materialy chetvertoyi naukovo-tekhnichnoyi konferentsiyi „Pryladobuduvannya 2005: stan i perspektyvy”, Kyyiv, 2005, 134–135. (In Ukrainian).
- [11] Avtorsʹke svidotstvo No317021, klas G 01V 7/00. – “Byuletenʹ vynakhodiv”, 1971, No30. (In Ukrainian).
- [12] Odyntsov A.A., Dynamychesky nastrayvaemye hyroskopy: Uchebnoe posobye. – K.: KPY, 1982, 68. (In Ukrainian).
- [13] Metrolohiya ta vymiryuvalʹna tekhnika: Pidruchnyk, ed. by: E.S. Polishchuka,Lʹviv: Beskyd Bit, 2003, 544. (In Ukrainian).
- [14] Pavlovskyy M.A., Teoryya hyroskopov. - K.: Vyshcha. shk., 1986, 303.
- [15] Holʹdenberh L.M., Matyushkyn B.D., Polyak M.N., Tsyfrovaya obrabotka syhanalov: Uchebnoe posobye dlya vuzov, Radyo y svyazʹ, 1990, 256. (In Ukrainian).
- [16] Bezvesilna О., “Autocompensation of the gyroscopic gravimeter measurement errors”. In: Proceedings of the International Scientific Conference Mechanics 2004, Rzeszow University of Technology, Poland, 2004, 21–28
Typ dokumentu
Bibliografia
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