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Numerical simulation of fluid flow inside the flow control valve

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Hydraulic valves are widely used in many branches and they are still developed and improved. Due to the problem with verification of flow phenomena which appears during valves operation numerical simulations methods are tools which allows to improved valves design. This paper presents numerical simulation of fluid flow inside flow control valve.
Wydawca
Rocznik
Strony
394--399
Opis fizyczny
Bibliogr. 23 poz., rys.
Twórcy
  • Cracow University of Technology, Institute of Applied Informatics, Jana Pawla II 37, 31-841 Cracow, Poland
  • Western Norway University of Applied Sciences, Department of Mechanical and Marine Engineering, Inndalsveien 28, 5063 Bergen, Norway
  • Cracow University of Technology, Institute of Applied Informatics, Jana Pawla II 37, 31-841 Cracow, Poland
  • Cracow University of Technology, Institute of Applied Informatics, Jana Pawla II 37, 31-841 Cracow, Poland
  • Cracow University of Technology, Institute of Applied Informatics, Jana Pawla II 37, 31-841 Cracow, Poland
autor
  • Western Norway University of Applied Sciences, Department of Mechanical and Marine Engineering, Inndalsveien 28, 5063 Bergen, Norway
Bibliografia
  • 1.Bara, M., Kmita, T., Korzekwa, J., 2016. Microstructure and properties of composite coatings obtained on aluminium alloys. Arch. Metall. Mater., 61, 1107-1112. DOI: 10.1515/amm-2016-0238
  • 2.Beune A., Kuerten J.G.M., van Heumen M.P.C., 2012. CFD analysis with fluid–structure interaction of opening high-pressure safety valves, Computers & Fluids, 64, 108- 116. DOI: 10.1016/j.compfluid.2012.05.010
  • 3.Domagala M., 2008. CFD analysis of pilot operated relief valve, Technical Transactions. Mechanics, 3-M, 23-29
  • 4.Domagala M., 2015. Modelling of direct acting relief valve using CFD-FSI simulation, Technical Transactions. Mechanics, 2-M, 43-48
  • 5.Domagala, M., Momeni, H., Domagala-Fabis, J., Filo, G., Krawczyk, M., 2018a. Simulation of Cavitation Erosion in a Hydraulic Valve. Materials Research Proceedings, 5, 1-6. DOI: 10.21741/9781945291814-1
  • 6.Domagala, M., Momeni, H., Domagala-Fabis, J., Filo, G., Kwiatkowski, D., 2018b. Simulation of Particle Erosion in a Hydraulic Valve. Materials Research Proceedings, 5, 17-24. DOI: 10.21741/9781945291814-4
  • 7.Ferdek, U.; Kozien, M. S. 2013. Simulation of Application of FGM Piezoelectric Actuators for Active Reduction of Beam Vibrations. Acta Physica Polonica A, 123, 1044-1047. DOI: 10.12693/APhysPolA.123.1044
  • 8.Gadek-Moszczak, A., Radek, N., Wronski, S., Tarasiuk, J., 2014. Application the 3D image analysis techniques for assessment the quality of material surface layer before and after laser treatment. Adv. Mat. Res. Switz., 874, 133-138. DOI: 10.4028/www.scientific.net/AMR.874.133
  • 9.Gawlik, J., Kielbus, A., Karpisz, D., 2015. Application of an integrated database system for processing difficult material. Solid State Phenomena, 223, 35-45. DOI: 10.4028/www.scientific.net/SSP.223.35
  • 10.Karpisz, D., Kielbus, A., 2018. Selected problems of designing modern industrial databases. MATEC Web Conf., 183, art. 01017. DOI: 10.1051/matecconf/201818301017
  • 11.Kielbus, A., Karpisz, D., 2019. Risk management as a process security tool. System Safety: Human-Technical Facility-Environment, 1, 234-239. DOI: 10.2478/czoto2019-0030
  • 12.Kozien, E., Kozien, M.S., 2017. Interval analysis as a method of measurement of uncertainity in the check-list method applied to identification of stage phase of companies. 26th Int. Scientific Conf. Economic and Social Development. Zagreb, Varazdin, 210-215.
  • 13.Krawczyk, J., Sobczyk, A., 2018. Tests of New Methods of Manufacturing Elements for Water Hydraulics. Materials Research Proceedings, 5, 200-205. DOI: 10.21741/9781945291814-35
  • 14.Lipinski, T., Wach, A., 2014. Influence of outside furnace treatment on purity medium carbon steel. Metal 2014: 23rd Int. Conf. Metallurgy And Materials, Ostrava, Tanger, 738-743.
  • 15.Lisowski E., Filo G., Rajda J., 2015. Pressure compensation using flow forces in a multisection proportional directional control valve, Energy Conv. Manag., 103, 1052- 1064. DOI: 10.1016/j.enconman.2015.07.038
  • 16.Lisowski E., Filo G., Rajda J., 2018. Analysis of flow forces in the initial phase of throttle gap opening in a proportional control valve, Flow Meas. Instrum., 59, 157-167. DOI: 10.1016/j.flowmeasinst.2017.12.011
  • 17.Lisowski E., Filo G., Rajda J., 2016. CFD analysis of the characteristics of a proportional flow control valve with an innovative opening shape, Energy Conv. Manag., 123, 15- 28. DOI: 10.1016/j.enconman.2016.06.025
  • 18.Opydo, M., Kobylecki, R., Dudek, A., Bis, Z. 2016. The effect of biomass co-combustion in a CFB boiler on solids accumulation on surfaces of P91 steel tube samples. Biomass & Bioenergy, 85, 61-68. DOI: 10.1016/j.biombioe.2015.12.011
  • 19.Pietraszek, J., Kolomycki, M., Szczotok, A., Dwornicka, R., 2016. The fuzzy approach to assessment of ANOVA results. ICCCI 2016: Conf. on Comp. Collective Intell. Springer, 260-268. DOI: 10.1007/978-3-319-45243-2_24
  • 20.Pobedza, J., Sobczyk, A., 2013. Modern Coating Used in High Pressure Water Hydraulic Components. Key Engineering Materials, 542, 143-155. DOI: 10.4028/www.scientific.net/KEM.542.143
  • 21.Radek, N., Szczotok, A., Gadek-Moszczak, A., Dwornicka, R., Broncek, J., Pietraszek, J., 2018. The impact of laser processing parameters on the properties of electrospark deposited coatings. Arch. Metall. Mater., 63, 809-816. DOI: 10.24425/122407
  • 22.Skrzypczak-Pietraszek, E., Reiss, K., Zmudzki, P., Pietraszek, J., 2018. Enhanced accumulation of harpagide and 8-O-acetyl-harpagide in Melittis melissophyllum L. agitated shoot cultures analyzed by UPLC-MS/MS. PLoS ONE 2018, 13, art. e0202556. DOI: 10.1371/journal.pone.0202556
  • 23.Szczotok, A., Radek, N., Dwornicka, R., 2018. Effect of the induction hardening on microstructures of the selected steels. METAL 2018: 27th Int. Conf. Metallurgy and Materials. Ostrava, Tanger, 1264-1269.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-60fe93c1-26ee-4fc3-8ed8-73bb9d8c1196
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