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This article is cited in 1 scientific paper (total in 1 paper)
Numerical research $\nu$t-92 turbulence model for axisymmetric jet flow
Madaliev M.E. Institute of Mechanics and Earthquake Engineering, Academy of Sciences of the Republic of Uzbekistan (Durman yuli 51, Tashkent, 100125 Uzbekistan)
Abstract:
In this work, we verify the turbulent Secundov $\nu$t-92 model for various jets. Based on this model, numerical studies of an axisymmetric subsonic cold, hot, and transonic jet are carried out. For the numerical implementation of the equations of hydrodynamics are written in the Mises variables and an implicit absolutely stable scheme of the second order of accuracy in the transverse and first order in the longitudinal directions is used. To compare the obtained numerical results, we used experimental data from the NASA database, which presents not only experimental data of recent years, but a comparative analysis of many turbulence models. Comparisons were made on the propagation of the axial flow velocity, along the profile of turbulent stresses and longitudinal velocity in various sections. It is shown that the model quantitatively describes well the main parameters of incompressible and compressible turbulent jets. It is shown that the Secundov $\nu$t-92 model is less prone to the so-called “anomaly” of the circular jet, the essence of which is that many other RANS models give a very strong expansion for axisymmetric jets.
Keywords:
Reynolds-averaged Navier–Stokes equations, Secundov $\nu$t-92 model, sweep, current function, turbulent voltage.
Received: 06.04.2020
Citation:
Madaliev M.E., “Numerical research $\nu$t-92 turbulence model for axisymmetric jet flow”, Vestn. YuUrGU. Ser. Vych. Matem. Inform., 9:4 (2020), 67–78
Linking options:
https://www.mathnet.ru/eng/vyurv247 https://www.mathnet.ru/eng/vyurv/v9/i4/p67
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