Information Technologies of Development of Preprocessor of SIGMA Software Package for Numerical Modelling in Continuum Mechanics

Author(s):  
Yury I. Dimitrienko ◽  
Andrey A. Zakharov
Author(s):  
И.Е. Яковлев ◽  
Ю.А. Егорова ◽  
Т.В. Бирюков

Рассматриваются вопросы внедрения в ООО «Самарские коммунальные системы» программного комплекса автоматического дистанционного сбора показаний с приборов учета воды и последовательность выполнения работ в этом направлении. Описаны особенности существующих в настоящее время информационных технологий передачи данных, используемых в так называемых «умных» приборах учета. Отмечены проблемные моменты внедрения подобных систем в ресурсоснабжающих компаниях и преимущества, которые могут быть получены в результате использования программного комплекса. The issues of introducing a software package for automatic remote water meter reading and the workflow process in this respect are considered. The specific features of the currently existing information technologies for data transmission used in the so-called «smart» metering devices are described. The problem points of the implementation of such systems in resource supplying companies and the advantages that can be gained as a result of using the software package are noted.


2021 ◽  
Author(s):  
Laetitia Le Pourhiet

<p>Tectonic modelling is a very wide area of application over a large range of time scale and length scale. What mainly characterize this modelling field is the coexistence of brittle fractures which relates to the field of fracture mechanics and plastic to viscous shear zones which belongs to the two main branch of continuum mechanics (solid and fluid respectively).</p><p>This type of problems arises sometimes in engineering but material do not change their behavior with loading rate or with time or with temperature, and rarely are engineers interested in modelling large displacement in post failure stage.  As a result, tectonicists cannot use commercial packages to simulate their problems and need to develop methodologies specific to their field.</p><p>Historically, the first tectonics models made use of simple analogue materials and corresponded more to modelism than actual analogue models. While the imaging of the models, and the characterization of the analogue materials have made a lot of progress in the last 15 years, up to recently, most analogue models still relied on sand and silicone putty to represent the brittle and viscous counter part of tectonic plates.</p><p>Since the late 80’s, but mostly during the years 2000, numerical modelling has exploded on the market, as contrarily to analogue modelling, it was easier to capture the thermal dependence of frictional-viscous transition, I use frictional here because most models in tectonics use continuum mechanics approach and in fine do not include brittle material s.s. but rather frictional shear bands. Some groups run these types of simulation routinely in 3D today but this performance has been made at the cost of a major simplification in the rheology: the disappearance of elasticity and compressibility which was present in late 90’s early 2000 simulations and is still very costly because the treatment of “brittle” rheology seriously amped code performances.</p><p>Until recently, in both analogue and numerical modelling, I have some kind of feeling that we have been running the same routine experiments over and over again with better performance, or better acquisition.  </p><p>We are now entering a new exciting era in tectonic modelling both from experimental and numerical side: a ) emergence of complex analogue material or rheological laws that efforts in upscaling from micro-mechanical process observed on the field to plate boundary scale, or from earthquake cycle to plate tectonics, b) emergence of new interesting set up’s in terms of boundary conditions in 3D, c) development of robust numerical technics for brittle behavior d) development of new applications to make our field more predictive that will enlarge the community of end-users of the modelling results</p><p>I will review these novelties with some of the work develop with colleagues and students but also with examples from the literature and try to quickly draw a picture of where we are at and where we go.</p>


2014 ◽  
Vol 15 (4) ◽  
pp. 981-995 ◽  
Author(s):  
T. S. Ramazanov ◽  
S. K. Kodanova ◽  
M. K. Issanova ◽  
N. Kh. Bastykova ◽  
Zh. A. Moldabekov

AbstractIn this paper we present a software package based on modern information technologies that allows rapid analysis and visualization of the properties of complex plasmas. The properties of plasma are simulated by two means. First of all, we have applied the molecular dynamics simulation method which numerically solves the equations of motions for plasma particles. Secondly, we calculate microscopic properties of plasma by using the Boltzmann equation with additional relations, initial and boundary conditions.


2021 ◽  
Vol 7 (5) ◽  
pp. 457-461

The article analyzes the importance of computer technologies in the educational process in higher education. The possibilities of entering the educational information space for engineering specialties were demonstrated. The capabilities of modern virtual laboratories are analyzed. The possibilities of using a virtual laboratory in distance learning were demonstrated. The use of modern computer technology is illustrated by the use of the Electronics Workbench electronic software package.


The article is devoted to the formation of students' information competence in the study of discipline technical mechanics. This document provides a systematic review of models and methodologies that combine modern teaching technologies, innovations, and applied programs in technical education. The article shows the relevance of the development of students of applied programs that contribute to improving the readiness of students for engineering activities. This paper gives an example of using the application module of the AutoFEM Analysis add-on application is integrated into the AutoCAD software package to calculate one of the problems of technical mechanics.


2021 ◽  
Vol 1022 ◽  
pp. 224-228
Author(s):  
R.A. Kutuev ◽  
Victor A. Sozaev ◽  
A.Kh. Shermetov

The polytherms of density, surface tension of the Cu-Al system melts and wetting angles of Ni-Cr, Co-Cr substrates, 25X18H9C2 stainless steel and titanium were studied by the sessile drop method. The drop contour was processed by dint of current information technologies, in particular, using the ImageJ software package [1]. The equations of density polytherms and surface tension of the Cu-Al system melts were established. It was shown that Cu-Al melts wet the substrates at 1000 K and more. We revealed the features of temperature dependences of the wetting angles.


2011 ◽  
Vol 3 (1) ◽  
pp. 46-57 ◽  
Author(s):  
S. V. Polyakov ◽  
T. A. Kudryashova ◽  
A. A. Sverdlin ◽  
E. M. Kononov ◽  
O. A. Kosolapov

2016 ◽  
Vol 817 ◽  
pp. 64-69
Author(s):  
Tatiana Vitenko ◽  
Paweł Droździel ◽  
Nazar Horodysky

This paper presents the results of numerical modelling of cavitation flows in a hydrodynamic module. The simulation was performed using the SolidWorks software package. The computations were made based on the Navier-Stokes equation combined with liquid state equations and empirical dependencies which define liquid parameters. The numerical results are in good agreement with experimental data.


Author(s):  
Bazar Dzhumaevich Ulugov ◽  
Shavkat Urolovich Kasimov

The article is devoted to the formation of students' information competence in the study of discipline technical mechanics. This document provides a systematic review of models and methodologies that combine modern teaching technologies, innovations, and applied programs in technical education. The article shows the relevance of the development of students of applied programs that contribute to improving the readiness of students for engineering activities. This paper gives an example of using the application module of the AutoFEM Analysis add-on application is integrated into the AutoCAD software package to calculate one of the problems of technical mechanics.


2016 ◽  
Author(s):  
Marcel Carbillet ◽  
Andrea La Camera ◽  
Jean-Pierre Folcher ◽  
Ulysse Perruchon-Monge ◽  
Adama Sy

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