Application of statistical and spectral methods to computational modeling of internal wave attractors

Direct numerical simulation of internal gravity waves propagation and formation of internal waves attractors in trapezoidal tank, which was filled with stably stratified salt solution of constant buoyancy frequency. The left vertical boundary oscillates with constant time frequency and has the form...

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Published in:Труды Института системного программирования РАН
Main Authors: M. Providukhina, I. Sibgatullin
Format: Article
Language:English
Published: Russian Academy of Sciences, Ivannikov Institute for System Programming 2018-10-01
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Online Access:https://ispranproceedings.elpub.ru/jour/article/view/39
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author M. Providukhina
I. Sibgatullin
author_facet M. Providukhina
I. Sibgatullin
author_sort M. Providukhina
collection DOAJ
container_title Труды Института системного программирования РАН
description Direct numerical simulation of internal gravity waves propagation and formation of internal waves attractors in trapezoidal tank, which was filled with stably stratified salt solution of constant buoyancy frequency. The left vertical boundary oscillates with constant time frequency and has the form of semi-cosine of the tank height. The right wall is inclined to the vertical and performs focusing of waves, the other two boundaries are horizontal. The upper wall has stress free boundary conditions, on the other boundaries no-slip condition is imposed. Navier-Stokes equations in Boussinesq approximation and diffusive transport of salt are used as mathematical model. Direct numerical simulation is performed with the help of spectral element approach of 8-th order and modified code nek5000. Hilbert transforms and time-frequency diagrams were applied to the results of direct numerical simulation of internal wave attractors. In particular, with the help of phase reconstruction we obtained wave vectors, corresponding to time frequencies from time-frequency diagrams. To obtain phase images Hilbert transforms with filtration over narrow intervals of frequencies were used. Time-frequency diagrams for moderate forcing amplitudes show appearance of daughter waves of frequencies, corresponding to triadic resonance, which is also demonstrated with the help of bispectra: product of amplitudes on the background of cross product of frequency intervals. The results are close to data of experiments, being carried out at ENS de Lyon.
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spelling doaj-d7e8e1e4c33041b684c5b73bbd4c19392025-11-02T23:11:51ZengRussian Academy of Sciences, Ivannikov Institute for System ProgrammingТруды Института системного программирования РАН2079-81562220-64262018-10-0128127528210.15514/ISPRAS-2016-28(1)-1639Application of statistical and spectral methods to computational modeling of internal wave attractorsM. Providukhina0I. Sibgatullin1Механико-математический факультет МГУ им. М.В. ЛомоносоваМеханико-математический факультет МГУ им. М.В. Ломоносова; ИСП РАНDirect numerical simulation of internal gravity waves propagation and formation of internal waves attractors in trapezoidal tank, which was filled with stably stratified salt solution of constant buoyancy frequency. The left vertical boundary oscillates with constant time frequency and has the form of semi-cosine of the tank height. The right wall is inclined to the vertical and performs focusing of waves, the other two boundaries are horizontal. The upper wall has stress free boundary conditions, on the other boundaries no-slip condition is imposed. Navier-Stokes equations in Boussinesq approximation and diffusive transport of salt are used as mathematical model. Direct numerical simulation is performed with the help of spectral element approach of 8-th order and modified code nek5000. Hilbert transforms and time-frequency diagrams were applied to the results of direct numerical simulation of internal wave attractors. In particular, with the help of phase reconstruction we obtained wave vectors, corresponding to time frequencies from time-frequency diagrams. To obtain phase images Hilbert transforms with filtration over narrow intervals of frequencies were used. Time-frequency diagrams for moderate forcing amplitudes show appearance of daughter waves of frequencies, corresponding to triadic resonance, which is also demonstrated with the help of bispectra: product of amplitudes on the background of cross product of frequency intervals. The results are close to data of experiments, being carried out at ENS de Lyon.https://ispranproceedings.elpub.ru/jour/article/view/39волновые аттракторывнутренние волныпреобразование гильбертапреобразование фурьечастотно-временные диаграммы
spellingShingle M. Providukhina
I. Sibgatullin
Application of statistical and spectral methods to computational modeling of internal wave attractors
волновые аттракторы
внутренние волны
преобразование гильберта
преобразование фурье
частотно-временные диаграммы
title Application of statistical and spectral methods to computational modeling of internal wave attractors
title_full Application of statistical and spectral methods to computational modeling of internal wave attractors
title_fullStr Application of statistical and spectral methods to computational modeling of internal wave attractors
title_full_unstemmed Application of statistical and spectral methods to computational modeling of internal wave attractors
title_short Application of statistical and spectral methods to computational modeling of internal wave attractors
title_sort application of statistical and spectral methods to computational modeling of internal wave attractors
topic волновые аттракторы
внутренние волны
преобразование гильберта
преобразование фурье
частотно-временные диаграммы
url https://ispranproceedings.elpub.ru/jour/article/view/39
work_keys_str_mv AT mprovidukhina applicationofstatisticalandspectralmethodstocomputationalmodelingofinternalwaveattractors
AT isibgatullin applicationofstatisticalandspectralmethodstocomputationalmodelingofinternalwaveattractors