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Pomembnost uporabe naprednih lastnosti tekočin v tokovnih simulacijah hidrostatičnih strojev
ID Čelik, Anže (Author)

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Abstract
Hidrostatični stroji so naprave, ki prenašajo energijo s pomočjo tlaka tekočine, najpogosteje olja ali vode. Delujejo na principu hidrostatike (Pascalov zakon). Simulacija takšnih strojev še vedno zahteva visoko usposobljene inženirje, uporabo naprednih simulacijskih orodij in napreden simulacijski pristop kljub razpoložljivosti sodobnih simulacijskih orodij z dobro prilagojenim grafičnim uporabniškim vmesni- kom in numeričnimi tehnikami. Prispevek predstavlja dejavnosti in napredek pri simulaciji aksialne batne črpalke. Čeprav te stroje podjetje Poclain načrtuje in proizvaja že desetletja, še vedno obstajajo področja, ki niso podrobno raziskana. Napredek pri simulaciji se nanaša predvsem na uporabo zapletenega kinematičnega gibanja strojnih delov, naprednih fizikalnih lastnosti tekočin in tudi tehnik mreženja ter numeričnih algoritmov. V tem članku se osredotočeno na modeliranje naprednih lastnosti tekočin (stisljivost, kavitacija). Numerični pristop je izveden s pomočjo računalniške dinamike tekočin (CFD) v okolju Siemens Simcenter Star-CCM+. Napovedovanje kavitacije je možno z implementacijo obstoječega »polnega modela kavitacije«.

Language:Slovenian
Keywords:hidravlični radialni batni motor, hidravlična aksialna batna črpalka, CFD-simulacija, kavitacija, batna komora, nagibna plošča
Work type:Article
Typology:1.04 - Professional Article
Organization:FS - Faculty of Mechanical Engineering
Publication status:Published
Publication version:Version of Record
Year:2026
Number of pages:Str. 112-115
Numbering:Letn. 32, št. 2
PID:20.500.12556/RUL-186384 This link opens in a new window
UDC:621.22
ISSN on article:1318-7279
COBISS.SI-ID:277731075 This link opens in a new window
Publication date in RUL:31.08.2026
Views:56
Downloads:18
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Record is a part of a journal

Title:Ventil : revija za fluidno tehniko in avtomatizacijo
Shortened title:Ventil
Publisher:Univerza v Ljubljani, Fakulteta za strojništvo
ISSN:1318-7279
COBISS.SI-ID:54233856 This link opens in a new window

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.

Secondary language

Language:English
Title:Development of energy-consumption digital twins for a discrete production lines
Abstract:
Hydrostatic machines are devices that transfer power using pressurized hydraulic fluid within a closed circuit, relying on positive displacement pumps and motors. They convert mechanical energy into fluid pressure and back into mechanical torque. Simulation of such machines still requires highly skilled engineers, use of advanced simulation tools and advanced simulation approach … despite the availability of modern simulation tools with well suited graphical user interface (GUI) and numerical techniques. The paper presents recent activities and progress on simulation of hydrostatic machines – in particular, the axial piston pump and the radial hydraulic motor. Despite that these machines have been designed and produced by Poclain for decades, there are still (design) features and phenomena not being investigated in detail or never being simulated. The simulation advancements mainly refer to the application of complicated kinematic motion, fluid properties, physics to consider as well as mesh and numerical algorithm techniques. In this paper, the focus is given on modelling of advanced fluid properties (e.g. compressibility, cavitation etc.). Fluid with such advanced properties is used in fluid flow simulation. Numerical approach has been performed by means of computational fluid dynamic (CFD) within the environment of Siemens Simcenter Star-CCM+. The anticipation of cavitation has been possible by implementation of existing »full cavitation model«.

Keywords:radial hydraulic motor, axial piston pump, CFD simulation, cavitation, piston chamber, swash plate

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