OPTIMIZATION OF DESIGN PARAMETERS FOR DEPTH ELECTROMAGNETIC SPEED SENSOR

Պահպանված է:
Մատենագիտական մանրամասներ
Հրատարակված է:Nauchno-Tekhnicheskii Vestnik Informatsionnykh Tekhnologii, Mekhaniki i Optiki vol. 18, no. 1 (Jan/Feb 2018), p. 140
Հիմնական հեղինակ: Avanesov, Y L
Այլ հեղինակներ: Bukanova, A N, Voronov, A S, Evstifeev, M I
Հրապարակվել է:
St. Petersburg National Research University of Information Technologies, Mechanics and Optics
Խորագրեր:
Առցանց հասանելիություն:Citation/Abstract
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LEADER 00000nab a2200000uu 4500
001 2102903337
003 UK-CbPIL
022 |a 2226-1494 
022 |a 2500-0373 
022 |a 1819-222X 
024 7 |a 10.17586/2226-1494-2018-18-1-140-146  |2 doi 
035 |a 2102903337 
045 2 |b d20180101  |b d20180228 
100 1 |a Avanesov, Y L 
245 1 |a OPTIMIZATION OF DESIGN PARAMETERS FOR DEPTH ELECTROMAGNETIC SPEED SENSOR 
260 |b St. Petersburg National Research University of Information Technologies, Mechanics and Optics  |c Jan/Feb 2018 
513 |a Journal Article 
520 3 |a Subject of Research.Design features of a deep water electromagnetic speed sensor are considered. The principle of its operation is described; a finite-element model is developed. The design solutions that improve the performance of the induction sensor are shown. The design parameters are optimized by the criterion of strength increase. Method. The study was performed using the finite element method in the ANSYS Workbench software. The calculations were performed in the Static Structural module with account for the distributed load simulating external hydrostatic pressure. To determine the effect of mechanical stresses on the design parameters a parametric model is used. The parameters in this model are ranged within the prescribed limits. At calculations all materials are taken to be isotropic. Main Results. Calculating results of induction sensor stress-strain state under the impact of external hydrostatic load were obtained by the method of finite element analysis. The effect of the sensor case material, its thickness and geometry, on the maximum stresses arising in the structure is studied. Recommendations on the choice of design parameters are given for increasing the strength of the induction sensor confirmed by computer simulation. Practical Relevance. The results obtained can be applied in modernization, design and construction of new electromagnetic speed sensors operating at high hydrostatic pressures. 
653 |a Computer simulation 
653 |a Sensors 
653 |a Pressure effects 
653 |a Modernization 
653 |a Finite element method 
653 |a Performance enhancement 
653 |a External pressure 
653 |a Deep water 
653 |a Stress concentration 
653 |a Hydrostatic pressure 
653 |a Mathematical models 
653 |a Electromagnetic induction 
653 |a Design optimization 
653 |a Design parameters 
700 1 |a Bukanova, A N 
700 1 |a Voronov, A S 
700 1 |a Evstifeev, M I 
773 0 |t Nauchno-Tekhnicheskii Vestnik Informatsionnykh Tekhnologii, Mekhaniki i Optiki  |g vol. 18, no. 1 (Jan/Feb 2018), p. 140 
786 0 |d ProQuest  |t Engineering Database 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/2102903337/abstract/embedded/ZKJTFFSVAI7CB62C?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/2102903337/fulltextPDF/embedded/ZKJTFFSVAI7CB62C?source=fedsrch