Аннотация:
Конвективный теплообмен в трубе с последовательностью периодических выступов различной геометрии на основе численного решения системы уравнений Рейнольдса, замыкаемых с помощью
модели переноса сдвиговых напряжений Ментера, и уравнения энергии на разномасштабных пересекающихся структурированных сетках.
Образец цитирования:
Г. А. Дрейцер, С. А. Исаев, И. Е. Лобанов, “Расчет конвективного теплообмена в трубе с периодически расположенными поверхностными турбулизаторами потока”, ТВТ, 43:2 (2005), 223–230; High Temperature, 43:2 (2005), 214–221
\RBibitem{DreIsaLob05}
\by Г.~А.~Дрейцер, С.~А.~Исаев, И.~Е.~Лобанов
\paper Расчет конвективного теплообмена в трубе с периодически расположенными поверхностными турбулизаторами потока
\jour ТВТ
\yr 2005
\vol 43
\issue 2
\pages 223--230
\mathnet{http://mi.mathnet.ru/tvt1268}
\transl
\jour High Temperature
\yr 2005
\vol 43
\issue 2
\pages 214--221
\crossref{https://doi.org/10.1007/s10740-005-0062-z}
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/tvt1268
https://www.mathnet.ru/rus/tvt/v43/i2/p223
Эта публикация цитируется в следующих 22 статьяx:
I. E. Lobanov, “Modeling of the flow and heat exchange in pipes with turbulators of viscous heat carriers in the laminar region, as well as in the transition to turbulent flow”, Vestn. Dagest. gos. teh. univ., Teh. nauki, 50:3 (2023), 24
Sergey Isaev, Dmitry Nikushchenko, Alexandr Sudakov, Nikita Tryaskin, Leonid Iunakov, Alexandr Usachov, Valery Kharchenko, “Numerical Simulation of Heat Transfer Enhancement in the Paths of Propulsion Systems with Single-Row Spherical and Oval Dimples on the Wall”, Energies, 15:19 (2022), 7198
Viktor I. Terekhov, Aleksey Yu. Dyachenko, Yaroslav J. Smulsky, Tatyana V. Bogatko, Nadezhda I. Yarygina, Heat and Mass Transfer, Heat Transfer in Subsonic Separated Flows, 2022, 81
I. E. Lobanov, “Modeling of heat transfer and hydraulic resistance in short and long straight round pipes with semicircular turbulators depending on geometric and operating parameters”, Vestn. Dagest. gos. teh. univ., Teh. nauki, 49:1 (2022), 14
Viktor I. Terekhov, Aleksey Yu. Dyachenko, Yaroslav J. Smulsky, Tatyana V. Bogatko, Nadezhda I. Yarygina, Heat and Mass Transfer, Heat Transfer in Subsonic Separated Flows, 2022, 129
Isaev S., Nikushchenko D., Sudakov A., Tryaskin N., Egorova A., Iunakov L., Usachov A., Kharchenko V., “Standard and Modified Sst Models With the Consideration of the Streamline Curvature For Separated Flow Calculation in a Narrow Channel With a Conical Dimple on the Heated Wall”, Energies, 14:16 (2021), 5038
I. E. Lobanov, “Modeling of the dynamics of tornado structures in a pipe with turbulators of square, semicircular and triangular profiles”, Vestn. Dagest. gos. teh. univ., Teh. nauki, 48:3 (2021), 26
I. E. Lobanov, “SIMULATION OF AIR HEAT TRANSFER IN CIRCULAR PIPES WITH TRIANGULAR AND SQUARE TURBULENCE STIMULATORS FOR HIGH REYNOLDS CRITERIA UP TO ONE MILLION”, Vestn. Dagest. gos. teh. univ., Teh. nauki, 48:1 (2021), 37
Kong D., Afanasiev V.N., Isaev S.A., Nikushchenko D.V., “Jet Vortex Heat Transfer in Turbulent Air Flow Around a Plate With a Slit Rib”, Int. J. Heat Mass Transf., 146 (2020), 118867
I. E. Lobanov, “MODELING HEAT EXCHANGE DEPENDING ON THE PRANDTL NUMBER FOR VARIOUS GEOMETRIC AND REGIME PARAMETERS”, Vestn. Dagest. gos. teh. univ., Teh. nauki, 46:4 (2020), 91
Isaev S.A., Chornyi A.D., Zhukova V Yu., Vysotskaya A.A., Kharchenko V.B., “Vortex Intensification of Heat Transfer in Channels and Pipes With Periodic Elements of Discrete Roughness”, J. Eng. Phys. Thermophys., 92:6 (2019), 1509–1516
I. E. Lobanov, “MODELING OF HEAT EXCHANGE AT TURBULENT FLOW IN FLAT CHANNELS WITH SYMMETRIC TURBULIZERS ON BOTH PARTIES”, Vestn. Dagest. gos. teh. univ., Teh. nauki, 46:1 (2019), 53
S. A. Isaev, AIP Conference Proceedings, 2027, 2018, 020015
Lobanov IE, “Theoretical study of heat transfer in straight circular pipes with periodically arranged surface flow turbulence semicircular cross-section for the flow of liquid metal to various geometrical and operating parameters”, AAOAJ, 2:5 (2018), 287
I. E. Lobanov, “MATHEMATICAL LOW-REYNOLDS MODELING OF HEAT EXCHANGE IIN TURBULENT FLOW IN FLAT CHANNELS WITH TURBULATORS SYMMETRICALLY LOCATED ON BOTH SIDES”, Vestn. Dagest. gos. teh. univ., Teh. nauki, 45:2 (2018), 70
M S Makarov, V S Naumkin, “Heat transfer in helium-xenon mixture flowing in straight and twisted tubes with triangle cross-section”, J. Phys.: Conf. Ser., 1105 (2018), 012010
M S Makarov, V S Naumkin, “Heat transfer in helium-xenon mixture flowing in straight and twisted tubes with square cross-section”, J. Phys.: Conf. Ser., 1128 (2018), 012020
S. A. Isaev, P. A. Baranov, Yu. V. Zhukova, A. E. Usachov, V. B. Kharchenko, “Correction of the Shear-Stress-Transfer Model with Account of the Curvature of Streamlines in Calculating Separated Flows of an Incompressible Viscous Fluid”, J Eng Phys Thermophy, 87:4 (2014), 1002
И. Е. Лобанов, “Моделирование структуры вихревых зон между периодическими поверхностно расположенными турбулизаторами потока прямоугольного поперечного сечения”, Матем. моделирование, 24:7 (2012), 45–58; I. E. Lobanov, “Theoretical research of structure of vortical zones between periodic superficially located turbulators of a flow of rectangular cross section”, Math. Models Comput. Simul., 5:1 (2013), 63–74
B. V. Perepelitsa, “Experimental studies of influence of the turbulent flow structure on temperature distribution in a compact heat exchanger”, Thermophys. Aeromech., 15:4 (2008), 567