High-precision piezoelectric gravimeter of automated aviation gravimetric system for measurements of anomalies of gravity acceleration
DOI:
https://doi.org/10.24028/gzh.0203-3100.v37i4.2015.111134Keywords:
piezoelectric gravimeter, aviation gravimetric system, gravity acceleration, piezoelectric effect, sensor elementAbstract
A new piezoelectric gravimeter of automated aviation gravimetric system (AGS), which has higher accuracy (1 mGal) and speed (fully automated) than known to date, is considered in this article. The principle of work of the piezoelectric gravimeter based on the physical phenomenon of direct piezoelectric effect is described and its mathematical model is derived. It has been established that by choosing the design parameters of the piezoelectric sensing element of piezoelectric gravimeter we can set its own frequency of 0.1 rad/s and avoid the need for a low-pass filter in automated AGS. The prospects for further improving the accuracy of a new piezoelectric gravimeter are analyzed.
References
Bezvesilna O. M., 2007. Aviation gravimetric systems and gravimeters. Zhytomyr: ZSTU, 604 p. (in Ukrainian).
Bezvesilnaya Е. N., Tkachuk A. G., 2014. Аviation gravimetric system. Sborka v mashinostroenii, priborostroenii (6), 32—37 (in Russian).
Bezvesilna O. M., Tkachuk A. G., 2013. Piezoelectric gravimeter of aviation gravimetric system. Zhytomyr: ZSTU, 240 p. (in Ukrainian).
Bezvesilna O. M., Koval A. V., 2013. Twogyro gravimeter of automated aviation gravimetric system. Zhytomyr: ZSTU, 252 p. (in Ukrainian).
Bezvesilna O. M., Ostapchuk O. O., Tymchyk G. S., 2014. Automated laser ballistic gravimeter. Zhytomyr: ZSTU, 180 p. (in Ukrainian).
Veselov K. E., 1968. Gravimetric exploration. Moscow: Nedra, 512 p. (in Russian).
Pat. 99084 Ukraine, 2012. Piezogravimeter. O. M. Bezvesilna, A. G. Tkachuk. Published 10.07.2012. Bull. № 13 (in Ukrainian).
Pat. 105949 Ukraine, 2014. Aviation Gravimetric system for measuring the gravity anomalies. O. M. Bezvesilna, A. H. Tkachuk. Published 10.07.2014. Bull. № 13 (in Ukrainian).
Bezvesilna O. M., Tkachuk A. G., 2014. Corrected gyrocompass synthesis as a system with changeable structure for aviation gravimetric system with piezoelectric gravimeter. Aviation (18), 134—140. doi:10.3846/16487788.2014.969878.
Bezvesilna O. M., Tkachuk A. G., Chepyuk L. O., Ostapchuk O. O., 2013a. Angle measurement device for posting the sensitivity axis of aviation gravimeter. Adv. Sci. J. (12), 31—37.
Bezvesilna O. M., Tkachuk A. G., Kozko K. S., 2013b. System for airborne gravimetry. Eur. Appl. Sci. J. (5), 37—40.
Bezvesilna O. M., Tkachuk A. G., Chepyuk L. O., Ostapchuk O. O., 2014. Electromechanical gravimeter. Adv. Sci. J. (7), 45—48, doi: 10.15550/ASJ.2014.07.045.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2020 Geofizicheskiy Zhurnal
This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors who publish with this journal agree to the following terms:
1. Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
2. Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
3. Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).