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dc.contributor.authorKurmanova, Dinara
dc.contributor.authorJaichibekov, Nurbolat
dc.contributor.authorKarpenko, Anton
dc.contributor.authorVolkov, Konstantin
dc.date.accessioned2024-09-17T05:49:16Z
dc.date.available2024-09-17T05:49:16Z
dc.date.issued2023
dc.identifier.citationKurmanova, D.; Jaichibekov, N.; Karpenko, A.; Volkov, K. Modelling and Simulation of Heat Exchanger with Strong Dependence of Oil Viscosity on Temperature. Fluids 2023, 8, 95. https://doi.org/ 10.3390/fluids8030095ru
dc.identifier.issn2311-5521
dc.identifier.otherdoi.org/10.3390/fluids8030095
dc.identifier.urihttp://rep.enu.kz/handle/enu/16439
dc.description.abstractThe heating of oil and oil products is widely used to reduce energy losses during transportation. An approach is developed to determine the effective length of the heat exchanger and the temperature of the cold coolant (oil) at its outlet in the case of a strong dependence of oil viscosity on temperature. Oil from the Uzen field (Kazakhstan) is considered as a heated coolant, and water is considered as a heating component. The method of the log–mean temperature difference, modified for the case of variable viscosity, and the methods of computational fluid dynamics (CFD) are used for calculations. The results of the numerical calculations are compared with the data obtained on the basis of a theoretical approach at a constant viscosity. When using a theoretical approach with a constant or variable viscosity, the heat transfer coefficients to cold and hot coolants are found using criterion dependencies. The Reynolds-averaged Navier–Stokes (RANS) and a turbulence model that takes into account the laminar–turbulent transition are applied. In the case of variable oil viscosity, a transition from the laminar flow regime to the turbulent one is manifested, which has a significant effect on the effective length of the heat exchanger. The obtained results of the CFD calculations are of interest for the design of heat exchangers of a new type, for example, helicoid onesru
dc.language.isoenru
dc.publisherFluidsru
dc.relation.ispartofseriesVolume 8;Issue 3
dc.subjectenergyru
dc.subjectheat transferru
dc.subjectviscosityru
dc.subjectfluid dynamicru
dc.subjectoilru
dc.subjectnumerical simulationru
dc.subjectlaminar– turbulent transitionru
dc.titleModelling and Simulation of Heat Exchanger with Strong Dependence of Oil Viscosity on Temperatureru
dc.typeArticleru


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