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The lateral vibration differential equation for a marine riser conveying fluid is derived by useof the small deflection theory.and the effect of internal flow velocity and top tension on the natural fre-quency of the riser is studied by use of FEM.At the same time,the preliminary relationship between thenatural frequency and riser span under different internal flow velocities is obtained,the effect of riser sup-ports on the vibration frequency is computed.It is found that the natural frequency of the marine riser in-creases with the increase of top tension.however decreases with the increase of internal flow velocity.In ad-dition,the frequency decreases drastically with the increase of riser span.
The lateral vibration differential equation for a marine riser conveying fluid is derived by use of the small deflection theory. And the effect of internal flow velocity and top tension on the natural fre-quency of the riser is studied by use of FEM. At the same time , the preliminary relationship between then natural frequency and riser span under different internal flow velocities is obtained, the effect of riser sup-ports on the vibration frequency is computed. It is found that the natural frequency of the marine riser in-creases with the increase of top tension.however decreases with the increase of internal flow velocity.In ad-dition, the frequency decreases drastically with the increase of riser span.