| Abstract: | Potential flow through an eccentric, normal constriction of zero thickness in an infinitely long, straight channel of constant width and unit depth is studied by use of a Schwarz-Christoffel transformation. The transformation is integrated by a direct approach. Parametric equations for streamlines are obtained and used to compute an average streamline length for a potential-flow field. -from ASCE Publications Information |
| Genre: | Article |
| ProdID: | 70012799 |
| Citation Author: | Lee, J. K. |
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| Citation End Page: | 520 |
| Citation Issue: | 4 |
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| Citation Language: | English |
| Citation Larger Work Title: | Journal of Hydraulic Engineering |
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| Citation Number Of Pages: | 6 |
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| Citation Publisher: | ASCE |
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| Citation Search Results Text: | Potential flow through channel constriction.; 1984; Article; Journal; Journal of Hydraulic Engineering; Lee, J. K. |
| Citation Start Page: | 515 |
| Citation Volume: | 110 |
| Citation Year: | 1984 |
| Type: | citation/reference |
| Text: | Potential flow through channel constriction.; 1984; Article; Journal; Journal of Hydraulic Engineering; Lee, J. K. |
| URL (THUMBNAIL): | http://pubs.er.usgs.gov/thumbnails/outside_thumb.jpg |
| URL (DIGITAL OBJECT IDENTIFIER): | http://dx.doi.org/10.1061/(ASCE)0733-9429(1984)110:4(515) |
| Date Other: | Sun, 1 Jan 1984 00:00 -0600 |
| Publisher: | ASCE |