Epitaxial AIN/AIN bimorph piezocantilevers for geothermal monitoring
The problem of early and reliable prediction of earthquakes, which can lead to catastrophic consequences, is far from being solved, so it remains extremely topical. The next step towards its solution, as it is supposed, could be the creation of a network of sensors located in the hot deep layers of...
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          | Main Authors: | , , , | 
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| Format: | Article | 
| Language: | English | 
| Published: | EDP Sciences
    
        2024-01-01 | 
| Series: | E3S Web of Conferences | 
| Online Access: | https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/122/e3sconf_emmft2024_05005.pdf | 
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| author | Panyutin E.A. Sharofidinov S.S. Kremleva A.V. Sokura L.A. | 
| author_facet | Panyutin E.A. Sharofidinov S.S. Kremleva A.V. Sokura L.A. | 
| author_sort | Panyutin E.A. | 
| collection | DOAJ | 
| description | The problem of early and reliable prediction of earthquakes, which can lead to catastrophic consequences, is far from being solved, so it remains extremely topical. The next step towards its solution, as it is supposed, could be the creation of a network of sensors located in the hot deep layers of geothermal systems and capable of continuous monitoring of geophysical parameters characterizing the activity of magma. In this paper we propose the use of matrices of thermally stable bimorph piezocantilevers formed on the basis of epitaxial AlN/AlN structures and allowing the possibility of excitation of acoustic waves of various types as a universal platform for the subsequent creation of various sensors capable of operating in high-temperature and chemically aggressive environments. Since in static modes the main manifestation of the inverse piezo effect is the appearance of bending deformations, for preliminary estimation of the geometrical parameters of such cantilevers, a mathematical model of the change in the deflection value was constructed, and a computational algorithm (MATLAB environment) was developed to make it possible to obtain the optimal ratios between the thicknesses of active AlN layers from the point of view of minimizing the control stresses. | 
| format | Article | 
| id | doaj-art-eaa2c829e2074239b8e36b0bf1cc4ee0 | 
| institution | Kabale University | 
| issn | 2267-1242 | 
| language | English | 
| publishDate | 2024-01-01 | 
| publisher | EDP Sciences | 
| record_format | Article | 
| series | E3S Web of Conferences | 
| spelling | doaj-art-eaa2c829e2074239b8e36b0bf1cc4ee02024-11-21T11:28:51ZengEDP SciencesE3S Web of Conferences2267-12422024-01-015920500510.1051/e3sconf/202459205005e3sconf_emmft2024_05005Epitaxial AIN/AIN bimorph piezocantilevers for geothermal monitoringPanyutin E.A.0Sharofidinov S.S.1Kremleva A.V.2Sokura L.A.3Ioffe InstituteIoffe InstituteIoffe InstituteIoffe InstituteThe problem of early and reliable prediction of earthquakes, which can lead to catastrophic consequences, is far from being solved, so it remains extremely topical. The next step towards its solution, as it is supposed, could be the creation of a network of sensors located in the hot deep layers of geothermal systems and capable of continuous monitoring of geophysical parameters characterizing the activity of magma. In this paper we propose the use of matrices of thermally stable bimorph piezocantilevers formed on the basis of epitaxial AlN/AlN structures and allowing the possibility of excitation of acoustic waves of various types as a universal platform for the subsequent creation of various sensors capable of operating in high-temperature and chemically aggressive environments. Since in static modes the main manifestation of the inverse piezo effect is the appearance of bending deformations, for preliminary estimation of the geometrical parameters of such cantilevers, a mathematical model of the change in the deflection value was constructed, and a computational algorithm (MATLAB environment) was developed to make it possible to obtain the optimal ratios between the thicknesses of active AlN layers from the point of view of minimizing the control stresses.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/122/e3sconf_emmft2024_05005.pdf | 
| spellingShingle | Panyutin E.A. Sharofidinov S.S. Kremleva A.V. Sokura L.A. Epitaxial AIN/AIN bimorph piezocantilevers for geothermal monitoring E3S Web of Conferences | 
| title | Epitaxial AIN/AIN bimorph piezocantilevers for geothermal monitoring | 
| title_full | Epitaxial AIN/AIN bimorph piezocantilevers for geothermal monitoring | 
| title_fullStr | Epitaxial AIN/AIN bimorph piezocantilevers for geothermal monitoring | 
| title_full_unstemmed | Epitaxial AIN/AIN bimorph piezocantilevers for geothermal monitoring | 
| title_short | Epitaxial AIN/AIN bimorph piezocantilevers for geothermal monitoring | 
| title_sort | epitaxial ain ain bimorph piezocantilevers for geothermal monitoring | 
| url | https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/122/e3sconf_emmft2024_05005.pdf | 
| work_keys_str_mv | AT panyutinea epitaxialainainbimorphpiezocantileversforgeothermalmonitoring AT sharofidinovss epitaxialainainbimorphpiezocantileversforgeothermalmonitoring AT kremlevaav epitaxialainainbimorphpiezocantileversforgeothermalmonitoring AT sokurala epitaxialainainbimorphpiezocantileversforgeothermalmonitoring | 
 
       