Experimental research of turbulent flow frequency spectra

Hydraulic and heat transfer processes play a very important role in the design and prototyping of aerospace technology. In most cases this technique works under non-isothermal conditions. Non-isothermal conditions may significantly affect heat transfer and hydrodynamic process. Fundamental research...

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Main Author: Viacheslav KRAEV
Format: Article
Language:English
Published: National Institute for Aerospace Research “Elie Carafoli” - INCAS 2020-06-01
Series:INCAS Bulletin
Subjects:
Online Access:https://bulletin.incas.ro/files/kraev__vol_12_iss_2.pdf
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spelling doaj-32f69d0aaac240f4b7111b660497713e2020-11-25T03:41:05ZengNational Institute for Aerospace Research “Elie Carafoli” - INCASINCAS Bulletin2066-82012247-45282020-06-01122879710.13111/2066-8201.2020.12.2.8Experimental research of turbulent flow frequency spectraViacheslav KRAEV0Moscow Aviation Institute (National Research University), Dep. of Aviation and Space Heat Engineering, Volokolamskoe sh., 4, Moscow, 125993, Russian Federation, kraevvm@mail.ruHydraulic and heat transfer processes play a very important role in the design and prototyping of aerospace technology. In most cases this technique works under non-isothermal conditions. Non-isothermal conditions may significantly affect heat transfer and hydrodynamic process. Fundamental research of Non-isothermal turbulent flow is required for further engineering modeling. Models for unsteady processes calculation must be based on fundamental turbulent structure research. Moscow Aviation Institute National Research University (MAI) has been building non-isothermal turbulent flow structures since 1989. An experimental facility was designed to provide gas flow heating. Experimental data of a turbulent gas flow structure in isothermal and non-isothermal conditions are presented. The frequency spectra of axial and radial velocity pulsations are based on experimental data received. The results of experimental turbulent flow research demonstrate fundamental non-isothermal processes influence on the flow structure. The main results of non-isothermal experimental research show that there are three specific zones in turbulent flow structure: wall area, maximal turbulent structure transformation and flow core. The analysis of non-isothermal conditions influence on turbulent pulsations generation and development mechanisms is presented. The results show significant distinction in turbulent flow spectra between isothermal and non-isothermal conditions. The present paper describes a method of experimental research, methodology of data processing and non-isothermal turbulent flow spectra results.https://bulletin.incas.ro/files/kraev__vol_12_iss_2.pdfturbulent flow structurenon-isothermal flowfrequency pulsations spectra
collection DOAJ
language English
format Article
sources DOAJ
author Viacheslav KRAEV
spellingShingle Viacheslav KRAEV
Experimental research of turbulent flow frequency spectra
INCAS Bulletin
turbulent flow structure
non-isothermal flow
frequency pulsations spectra
author_facet Viacheslav KRAEV
author_sort Viacheslav KRAEV
title Experimental research of turbulent flow frequency spectra
title_short Experimental research of turbulent flow frequency spectra
title_full Experimental research of turbulent flow frequency spectra
title_fullStr Experimental research of turbulent flow frequency spectra
title_full_unstemmed Experimental research of turbulent flow frequency spectra
title_sort experimental research of turbulent flow frequency spectra
publisher National Institute for Aerospace Research “Elie Carafoli” - INCAS
series INCAS Bulletin
issn 2066-8201
2247-4528
publishDate 2020-06-01
description Hydraulic and heat transfer processes play a very important role in the design and prototyping of aerospace technology. In most cases this technique works under non-isothermal conditions. Non-isothermal conditions may significantly affect heat transfer and hydrodynamic process. Fundamental research of Non-isothermal turbulent flow is required for further engineering modeling. Models for unsteady processes calculation must be based on fundamental turbulent structure research. Moscow Aviation Institute National Research University (MAI) has been building non-isothermal turbulent flow structures since 1989. An experimental facility was designed to provide gas flow heating. Experimental data of a turbulent gas flow structure in isothermal and non-isothermal conditions are presented. The frequency spectra of axial and radial velocity pulsations are based on experimental data received. The results of experimental turbulent flow research demonstrate fundamental non-isothermal processes influence on the flow structure. The main results of non-isothermal experimental research show that there are three specific zones in turbulent flow structure: wall area, maximal turbulent structure transformation and flow core. The analysis of non-isothermal conditions influence on turbulent pulsations generation and development mechanisms is presented. The results show significant distinction in turbulent flow spectra between isothermal and non-isothermal conditions. The present paper describes a method of experimental research, methodology of data processing and non-isothermal turbulent flow spectra results.
topic turbulent flow structure
non-isothermal flow
frequency pulsations spectra
url https://bulletin.incas.ro/files/kraev__vol_12_iss_2.pdf
work_keys_str_mv AT viacheslavkraev experimentalresearchofturbulentflowfrequencyspectra
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