Academic literature on the topic 'Pneumohydraulic system'

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Journal articles on the topic "Pneumohydraulic system"

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Амброжевич, М. В., and В. О. Середа. "Model of pneumohydraulic launch system." Системи обробки інформації, no. 3(162), (September 30, 2020): 6–12. http://dx.doi.org/10.30748/soi.2020.162.01.

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A reactive pneumohydraulic displacement system is proposed as an inclined launch system for an aircraft. The advantages of the proposed transport system in relation to the known analogs of comparable energy are stated. A complex non-stationary spatial model of the system is presented. The mathematical apparatus for constructing a model is considered. The calculation results are presented in the form of continual mappings of physical fields and integral characteristics of the launch system. The analysis of the starting characteristics for different proportions of equipment – the ratio of water
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Krivosheev, Nikita S., and Alexander A. Zharkovsky. "Digital technologies in pneumohydraulic drives of technological equipment: problems and prospects." Journal of Dynamics and Vibroacoustics 10, no. 4 (2024): 78–91. https://doi.org/10.18287/2409-4579-2024-10-4-78-91.

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Digital technologies are opening new horizons in the field of pneumohydraulic drives for technological equipment. This article examines the key issues and prospects in this area. The implementation of digital technologies significantly enhances the efficiency and accuracy of pneumohydraulic systems. The use of sensors, microcontrollers, and software provides more precise control over processes, energy consumption optimisation, and predictive maintenance. Digitalisation of pneumohydraulic drives is an inevitable step in the development of technological equipment, offering new opportunities for
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Kiselev, A. V., E. V. Poznyak, and M. M. Kruchinin. "APPLICATION OF A GENETIC ALGORITHM FOR OPTIMIZATION OF THE PNEUMOHYDRAULIC SHOCK ABSORBER OF THE HELICOPTER LANDING GEAR." Spravochnik. Inzhenernyi zhurnal, no. 336 (March 2025): 36–45. https://doi.org/10.14489/hb.2025.03.pp.036-045.

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The development of an impact protection system based on a pneumohydraulic shock absorber of a helicopter landing gear is a complex task leading to the problem of multidimensional global optimization with limitations. The goal of optimization is to maximize the absorption of landing impact energy. The objective function depends on seven optimization parameters that determine the characteristics of the shock absorber. Each of the parameters is subject to limitations related to the design requirements of the system. The pneumohydraulic shock absorber model was developed in the Simcenter Amesim so
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V., Panasyuk,. "The substantiation of the technical solution for improving the application of chemical plant protection products using pneumohydraulic sprayers." Mehanization and electrification of agricultural, no. 9(108) (2019): 51–60. http://dx.doi.org/10.37204/0131-2189-2019-9-6.

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Purpose. Improving the effectiveness of plant protection products when growing crops due to the pneumohydraulic device that ensures their uniform application to the sheet surface. Methods. Analytical and Experimental. Results. Laboratory studies of the process of spraying plants with nozzles with a pneumohydraulic system determined the quality indicators of the process with pressure in injection communication 0.4 MPa – droplet coating density of 19–46 pcs/cm2 for the weighted average droplet diameters in the different experimental variants was within 304–543 microns. These indicators were comp
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Zharov, Anton A., and Alexey V. Kasatkin. "Energy Efficient Air Conditioning System of the Temple Complex." MATEC Web of Conferences 324 (2020): 03006. http://dx.doi.org/10.1051/matecconf/202032403006.

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The purpose of this work is to develop a year-round energy-efficient air conditioning system for the temple complex, that meets modern engineering requirements and standards. And it should not violate the traditional appearance of an Orthodox church. In this article there are considered the requirements and standards for the construction of the temple complex together with the architectural solution and the geographical location of the construction entity. The proposed air conditioning system (ACS) with a pneumohydraulic diagram and design modes is described. This system is valid for the summe
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MYKHALCHYSHYN, R. V., M. S. BREZGIN, and D. A. LOMSKOI. "Methane, kerosene and hydrogen comparative as a rocket fuel for launch vehicle pneumohydraulic supply system development." Kosmìčna nauka ì tehnologìâ 24, no. 2 (2018): 12–17. http://dx.doi.org/10.15407/knit2018.02.012.

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Isyemini, I. "About assembling and operation of safety system with pneumohydraulic buffers of overhead cranes." Engineering 17 (2017): 6–17. http://dx.doi.org/10.32820/2079-1747-2017-17-6-17.

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Sarach, Evgeny B., Maxim E. Krokhin, Alexander A. Lychagov, Ilya A. Smirnov, and Boris B. Kositsyn. "Method for selecting the damping characteristics of the pneumohydraulic suspension system of a wheeled vehicle." Izvestiya MGTU MAMI 17, no. 2 (2023): 147–56. http://dx.doi.org/10.17816/2074-0530-192488.

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BACKGROUND: In the process of developing suspension systems for modern high-speed wheeled and tracked vehicles, having the selected optimal elastic characteristic curve of the suspension system, its unsatisfactory damping characteristic curve can have a significant negative impact on the overall operation of the suspension unit. Therefore, the search for a method for obtaining the optimal damping characteristic curve is a relevant task.
 AIMS: Description the method for selecting the damping characteristic curve of a single-level pneumohydraulic spring for a wheeled vehicle considering th
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Kolganov, I. V. "Review of electric rocket engines for small spacecraft propulsion systems." Omsk Scientific Bulletin. Series Aviation-Rocket and Power Engineering 9, no. 2 (2025): 94–103. https://doi.org/10.25206/2588-0373-2025-9-2-94-103.

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The article analyzes the current state of global development of low-energy plasma propulsion systems for guided small spacecraft. The aim of the research is to review the main types and constructions of electric rocket engines, to identify the problems arising in the development process affecting the energy and design features. One of the most demanded and promising directions in the field of propulsion for small spacecraft is ion engines. The use of electrical energy to create propulsion, as well as high-frequency electromagnetic radiation, allows minimizing power losses. A key advantage of p
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Meshkinpour, Hooshang, Linda Kay, and Michael Mollot. "The Role of the Flow Rate of the Pneumohydraulic System on Post–Sphincter of Oddi Manometry Pancreatitis." Journal of Clinical Gastroenterology 14, no. 3 (1992): 236–39. http://dx.doi.org/10.1097/00004836-199204000-00009.

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Dissertations / Theses on the topic "Pneumohydraulic system"

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Білоненко, А. В., та О. В. Босенко. "Гідравлічні машини майбутнього". Thesis, Сумський державний університет, 2014. http://essuir.sumdu.edu.ua/handle/123456789/38890.

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Books on the topic "Pneumohydraulic system"

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Aizerman, M. A. Pneumatic and Hydraulic Control Systems: Seminar on Pneumohydraulic Automation. Elsevier Science & Technology Books, 2017.

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Aizerman, M. A. Pneumatic and Hydraulic Control Systems: Seminar on Pneumohydraulic Automation. Elsevier Science & Technology Books, 2013.

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Conference papers on the topic "Pneumohydraulic system"

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Savinkov, M., Valeriy Posmetev, Vadim Nikonov, and I. Hrapov. "ANALYSIS OF PROMISING DEVICES FOR ACCUMULATION OF ENERGY OF WORKING FLUID IN HYDRAULIC DRIVES OF TRANSPORT AND TECHNOLOGICAL MACHINES." In Adaptation of forestry to climate change: nature-oriented solutions and digitalization. Forestry – 2024. FSBE Institution of Higher Education Voronezh State University of Forestry and Technologies named after G.F. Morozov, 2025. https://doi.org/10.58168/ffys2024_107-113.

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The relevance of using pneumohydraulic accumulators in hydropneumatic systems of transport and technological machines is substantiated. The design features, operation and limitations in the use of traditional piston-type pneumohydraulic accumulators are described. The analysis of existing designs of hydropneumatic systems for storing and recuperating the energy of the working fluid is performed. Based on the identified shortcomings in the operation of such systems, the authors propose a promising scheme of a pneumohydraulic accumulating device that ensures increased efficiency of the hydraulic
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