Number 1. (in 1 part) June 20, 2014
1. Botakoz R. Kasimova, Askar A. Baubek, Darkhan Y. Baxultanov
Modeling and Imitation of Electrical Filter with Rotatory Settling Electrode Operation
2. Oleg S. KochetovAbstract:
The paper considers the operation of electrical filter with settling electrode. To improve the operation efficiency, settling electrode is executed in the form of continuously rotating endless belt. The mathematical model of electrical filter with rotatory settling electrode is performed. The virtual model of electrical filter was made in Blender program. It will enable to visualize the process of the settlement of the particles, charged from the corona-forming plates to settle them at the electrode.
The paper considers the operation of electrical filter with settling electrode. To improve the operation efficiency, settling electrode is executed in the form of continuously rotating endless belt. The mathematical model of electrical filter with rotatory settling electrode is performed. The virtual model of electrical filter was made in Blender program. It will enable to visualize the process of the settlement of the particles, charged from the corona-forming plates to settle them at the electrode.
Study of the Human-operator Vibroprotection Systems
3. Nicholas V. Mitiukov, Yulia V. Ganzy, Elena L. BusyginaAbstract:
The work studies the new means of human-operator protection against hyper vibration, provides constructive schemes of vibration-isolating seat suspension for human-operator and vibration-isolating platform for vibroactive equipment operation.
The work studies the new means of human-operator protection against hyper vibration, provides constructive schemes of vibration-isolating seat suspension for human-operator and vibration-isolating platform for vibroactive equipment operation.
Identification of Subsonic Aerodynamic Parameters Damaging Elements
4. Victor Ya. TsvetkovAbstract:
Traditionally, on the initial design stage of rocket and artillery systems are used simplified analytical techniques for the aerodynamic calculations with the adjustment of the drag-function standard for form factor or the calculation with using algebraic formulas proposed by Dorodnitsin, Krasnov and etc. However, these techniques, adapted for ranges of transonic and supersonic speeds, are give unreasonably low accuracy for the subsonic range. We have studied the possibility of using existing software packages for example, ANSYS CFX to the modeling of aerodynamics differential equations in partial derivatives in finite difference form. On the test case – the American standard form ARROW shown that the calculations in ANSYS CFX were generally in line with those ARROW using the theory of turbulence k-ε. The discrepancy at M < 0.4 is extremely small and does not exceed one percent. In the range of M = 0.4...1.0 discrepancy increases, but also does not exceed 5...10%, due to the need to select other add-ons ANSYS to calculate the wave resistance. For comparison, the function cx (M) is calculated on the existing analytical dependencies. Error calculation increases of M and reaches several hundred percent! Probably, this effect is associated with problems of application for the low-velocity of Dorodnitsin's formula for calculating resistance.
Traditionally, on the initial design stage of rocket and artillery systems are used simplified analytical techniques for the aerodynamic calculations with the adjustment of the drag-function standard for form factor or the calculation with using algebraic formulas proposed by Dorodnitsin, Krasnov and etc. However, these techniques, adapted for ranges of transonic and supersonic speeds, are give unreasonably low accuracy for the subsonic range. We have studied the possibility of using existing software packages for example, ANSYS CFX to the modeling of aerodynamics differential equations in partial derivatives in finite difference form. On the test case – the American standard form ARROW shown that the calculations in ANSYS CFX were generally in line with those ARROW using the theory of turbulence k-ε. The discrepancy at M < 0.4 is extremely small and does not exceed one percent. In the range of M = 0.4...1.0 discrepancy increases, but also does not exceed 5...10%, due to the need to select other add-ons ANSYS to calculate the wave resistance. For comparison, the function cx (M) is calculated on the existing analytical dependencies. Error calculation increases of M and reaches several hundred percent! Probably, this effect is associated with problems of application for the low-velocity of Dorodnitsin's formula for calculating resistance.
Resource Method of Information System Life Cycle Estimation
5. Victor Ya. Tsvetkov, Vasiliy T. MatchinAbstract:
The article estimates the information system life cycle, using the resource method, describes the features of different methods of life cycle estimation, shows that the open-access information systems possess the dissipation property, defines the reasons for the dissipation. To reduce dissipation information resources are required. The method of calculation of information system life cycle, using information resources is presented.
The article estimates the information system life cycle, using the resource method, describes the features of different methods of life cycle estimation, shows that the open-access information systems possess the dissipation property, defines the reasons for the dissipation. To reduce dissipation information resources are required. The method of calculation of information system life cycle, using information resources is presented.
Information Conversion into Information Resources
6. Abstract:
The article conducts a survey of the information resources features, describes the properties of information resources and reveals their content, defines application and types of information resources, reveals legal and regulatory support of the system of state information resources management, discloses different types of resources, shows organizational aspects of information resources management. The technology of information resources management is described.
The article conducts a survey of the information resources features, describes the properties of information resources and reveals their content, defines application and types of information resources, reveals legal and regulatory support of the system of state information resources management, discloses different types of resources, shows organizational aspects of information resources management. The technology of information resources management is described.
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