New Methods of Solving the Equations for the Flow of a Compressible Fluid
<p>The usual equations for the flow of a compressible fluid are non-linear in character and difficult to solve. It has been found that if the components of velocity are taken as independent variables, the resulting equations are linear. These equations are developed and new forms introduced....
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ndltd-CALTECH-oai-thesis.library.caltech.edu-45262021-07-27T05:01:25Z https://thesis.library.caltech.edu/4526/ New Methods of Solving the Equations for the Flow of a Compressible Fluid Clauser, Francis Hettinger Clauser, Milton Ure <p>The usual equations for the flow of a compressible fluid are non-linear in character and difficult to solve. It has been found that if the components of velocity are taken as independent variables, the resulting equations are linear. These equations are developed and new forms introduced.</p> <p>A new function, Γ is introduced and a method advanced for effecting the transformation from the plane where the velocity components are coordinates, to the physical plane where x and y are coordinates.</p> <p>A new way of finding plausible solutions to investigate is given and the case of flow in a corner is worked out in detail. The flow is found to have an anomalous behavior, the reason for which is explained. This solution is applied to the flow behind a curved shock wave.</p> 1937 Thesis NonPeerReviewed application/pdf en other https://thesis.library.caltech.edu/4526/3/Clauser_f_1937.pdf Clauser, Francis Hettinger and Clauser, Milton Ure (1937) New Methods of Solving the Equations for the Flow of a Compressible Fluid. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/ZAWH-VK93. https://resolver.caltech.edu/CaltechETD:etd-11122003-175229 <https://resolver.caltech.edu/CaltechETD:etd-11122003-175229> https://resolver.caltech.edu/CaltechETD:etd-11122003-175229 CaltechETD:etd-11122003-175229 10.7907/ZAWH-VK93 |
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<p>The usual equations for the flow of a compressible fluid are non-linear in character and difficult to solve. It has been found that if the components of velocity are taken as independent variables, the resulting equations are linear. These equations are developed and new forms introduced.</p>
<p>A new function, Γ is introduced and a method advanced for effecting the transformation from the plane where the velocity components are coordinates, to the physical plane where x and y are coordinates.</p>
<p>A new way of finding plausible solutions to investigate is given and the case of flow in a corner is worked out in detail. The flow is found to have an anomalous behavior, the reason for which is explained. This solution is applied to the flow behind a curved shock wave.</p> |
author |
Clauser, Francis Hettinger Clauser, Milton Ure |
spellingShingle |
Clauser, Francis Hettinger Clauser, Milton Ure New Methods of Solving the Equations for the Flow of a Compressible Fluid |
author_facet |
Clauser, Francis Hettinger Clauser, Milton Ure |
author_sort |
Clauser, Francis Hettinger |
title |
New Methods of Solving the Equations for the Flow of a Compressible Fluid |
title_short |
New Methods of Solving the Equations for the Flow of a Compressible Fluid |
title_full |
New Methods of Solving the Equations for the Flow of a Compressible Fluid |
title_fullStr |
New Methods of Solving the Equations for the Flow of a Compressible Fluid |
title_full_unstemmed |
New Methods of Solving the Equations for the Flow of a Compressible Fluid |
title_sort |
new methods of solving the equations for the flow of a compressible fluid |
publishDate |
1937 |
url |
https://thesis.library.caltech.edu/4526/3/Clauser_f_1937.pdf Clauser, Francis Hettinger and Clauser, Milton Ure (1937) New Methods of Solving the Equations for the Flow of a Compressible Fluid. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/ZAWH-VK93. https://resolver.caltech.edu/CaltechETD:etd-11122003-175229 <https://resolver.caltech.edu/CaltechETD:etd-11122003-175229> |
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