Abstract
The small amplitude natural oscillation of liquid in a partially filled canal of arbitrary shape is investigated. The method is based on potential theory. The field equation subject to the appropriate boundary conditions is transformed into an integral equation, which is then solved numerically. Two specific geometries were chosen for the numerical examples; namely, a circular canal with arbitrary depth of liquid, and half full elliptical canals with various eccentricities. The results are presented and discussed.
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More From: Zeitschrift für angewandte Mathematik und Physik ZAMP
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