A new method for predicting the vortex induced aerodynamic characteristics of a body of revolution

The problem of mathematically modelling the symmetric vortex pair formed on the lee side of a body of revolution at moderate incidence to the freestream direction is addressed with a view to predicting its aerodynamic characteristics. The objective being to develop a model simple enough to enable ra...

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Bibliographic Details
Main Author: Smith, Howard
Other Authors: Christopher, P. A. T.
Published: Cranfield University 1995
Subjects:
Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.309845
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spelling ndltd-bl.uk-oai-ethos.bl.uk-3098452018-05-12T03:24:46ZA new method for predicting the vortex induced aerodynamic characteristics of a body of revolutionSmith, HowardChristopher, P. A. T.1995The problem of mathematically modelling the symmetric vortex pair formed on the lee side of a body of revolution at moderate incidence to the freestream direction is addressed with a view to predicting its aerodynamic characteristics. The objective being to develop a model simple enough to enable rapid calculation whilst maintaining acceptable levels of accuracy. Existing techniques are reviewed and their strengths and weaknesses evaluated. The physics of the flow are explored with an emphasis on its three dimensional aspects. Experimental results, including surface pressure tapping data and flow visualisation, are used to investigate the nature of the flow. To gain a deeper insight into the flow processes less measurable experimentally, Navier-Stokes solutions are examined in considerable detail. The mechanisms of vorticity generation and propagation are explored. A simple mathematical model is presented, based upon an extension to slender body theory, which predicts aerodynamic characteristics that compare well with experiment.629.1323AerodynamicsCranfield Universityhttp://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.309845http://dspace.lib.cranfield.ac.uk/handle/1826/3375Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 629.1323
Aerodynamics
spellingShingle 629.1323
Aerodynamics
Smith, Howard
A new method for predicting the vortex induced aerodynamic characteristics of a body of revolution
description The problem of mathematically modelling the symmetric vortex pair formed on the lee side of a body of revolution at moderate incidence to the freestream direction is addressed with a view to predicting its aerodynamic characteristics. The objective being to develop a model simple enough to enable rapid calculation whilst maintaining acceptable levels of accuracy. Existing techniques are reviewed and their strengths and weaknesses evaluated. The physics of the flow are explored with an emphasis on its three dimensional aspects. Experimental results, including surface pressure tapping data and flow visualisation, are used to investigate the nature of the flow. To gain a deeper insight into the flow processes less measurable experimentally, Navier-Stokes solutions are examined in considerable detail. The mechanisms of vorticity generation and propagation are explored. A simple mathematical model is presented, based upon an extension to slender body theory, which predicts aerodynamic characteristics that compare well with experiment.
author2 Christopher, P. A. T.
author_facet Christopher, P. A. T.
Smith, Howard
author Smith, Howard
author_sort Smith, Howard
title A new method for predicting the vortex induced aerodynamic characteristics of a body of revolution
title_short A new method for predicting the vortex induced aerodynamic characteristics of a body of revolution
title_full A new method for predicting the vortex induced aerodynamic characteristics of a body of revolution
title_fullStr A new method for predicting the vortex induced aerodynamic characteristics of a body of revolution
title_full_unstemmed A new method for predicting the vortex induced aerodynamic characteristics of a body of revolution
title_sort new method for predicting the vortex induced aerodynamic characteristics of a body of revolution
publisher Cranfield University
publishDate 1995
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.309845
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