Large eddy simulation of synthetic jets in the context of flow control

The current research focuses on the use of synthetic jets with a rectangular orifice of high aspect ratio as means of separation suppression. Large Eddy Simulations of a synthetic jet in a quiescent domain and a the flow over a two-dimensional hill with a synthetic jet in the vicinity of separation...

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Main Author: Avdis, Alexandros
Published: Imperial College London 2008
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Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.497939
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spelling ndltd-bl.uk-oai-ethos.bl.uk-4979392015-03-20T06:22:01ZLarge eddy simulation of synthetic jets in the context of flow controlAvdis, Alexandros2008The current research focuses on the use of synthetic jets with a rectangular orifice of high aspect ratio as means of separation suppression. Large Eddy Simulations of a synthetic jet in a quiescent domain and a the flow over a two-dimensional hill with a synthetic jet in the vicinity of separation were undertaken. Experimental results presented during the NASA workshop titledI "CFD Validation a of Synthetic Jets and Turbulent Separation Control" were used for validation purposes. In the case of the flow of a synthetic jet in a quiescent domain, agreement between LES and experimental results is only qualitative. The The jet spread is under-predicted and the centre-line velocity is over-predicted downstream of the jet orifice. Also the primary vortex pair is shown to travel slower than that in the experiment. In the case of the flow over a two-dimensional hill, the flow without any kind of separation control as well as the tlow with a synthetic jet in the vicinity of separation were simulated. The agreement in long-time-averaged velocity and Reynolds stresses between LES and experimental resuhs was good in both baseline and synthetic-jet cases.532.051Imperial College Londonhttp://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.497939Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 532.051
spellingShingle 532.051
Avdis, Alexandros
Large eddy simulation of synthetic jets in the context of flow control
description The current research focuses on the use of synthetic jets with a rectangular orifice of high aspect ratio as means of separation suppression. Large Eddy Simulations of a synthetic jet in a quiescent domain and a the flow over a two-dimensional hill with a synthetic jet in the vicinity of separation were undertaken. Experimental results presented during the NASA workshop titledI "CFD Validation a of Synthetic Jets and Turbulent Separation Control" were used for validation purposes. In the case of the flow of a synthetic jet in a quiescent domain, agreement between LES and experimental results is only qualitative. The The jet spread is under-predicted and the centre-line velocity is over-predicted downstream of the jet orifice. Also the primary vortex pair is shown to travel slower than that in the experiment. In the case of the flow over a two-dimensional hill, the flow without any kind of separation control as well as the tlow with a synthetic jet in the vicinity of separation were simulated. The agreement in long-time-averaged velocity and Reynolds stresses between LES and experimental resuhs was good in both baseline and synthetic-jet cases.
author Avdis, Alexandros
author_facet Avdis, Alexandros
author_sort Avdis, Alexandros
title Large eddy simulation of synthetic jets in the context of flow control
title_short Large eddy simulation of synthetic jets in the context of flow control
title_full Large eddy simulation of synthetic jets in the context of flow control
title_fullStr Large eddy simulation of synthetic jets in the context of flow control
title_full_unstemmed Large eddy simulation of synthetic jets in the context of flow control
title_sort large eddy simulation of synthetic jets in the context of flow control
publisher Imperial College London
publishDate 2008
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.497939
work_keys_str_mv AT avdisalexandros largeeddysimulationofsyntheticjetsinthecontextofflowcontrol
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