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Boundary element method based vibration analysis of elastic bottom plates of fluid storage tanks resting on Pasternak foundation

机译:基于边界元法的Pasternak地基储水罐弹性底板振动分析

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A higher-order boundary element procedure is presented for the free vibration analysis of flexible base plates of rigid fluid storage tanks resting on elastic foundation. The main principles of the procedure are replacing the biharmonic operator of the thin plate vibration problem by two successive harmonic operators, and representing the forcing terms (plate inertia, fluid loading and foundation influence) by applying the dual reciprocity boundary element formulation. The fluid effect on the plate dynamics is incorporated into the analysis by invoicing another boundary element solution, which expresses the fluid pressure over the plate surface in terms of plate deflection. The performance of the method is thoroughly investigated and the nature of dynamic plate-foundation-fluid interaction is studied from several perspectives. The method provides excellent predictions, within the limits of Kirchhoff plate, potential flow, and Pasternak foundation models.
机译:提出了一个高阶边界元程序,对位于弹性基础上的刚性储油罐的柔性基板进行自由振动分析。该程序的主要原理是用两个连续的谐波算子代替薄板振动问题的双谐波算子,并通过应用对等互惠边界元公式来表示强迫项(板惯性,流体载荷和地基影响)。通过开具另一种边界元素解决方案的发票将流体对板动力学的影响并入分析中,该解决方案以板的挠度表示板表面上的流体压力。对该方法的性能进行了深入研究,并从多个角度研究了动态板-基础-流体相互作用的性质。该方法在Kirchhoff板块,势流和Pasternak基础模型的范围内提供了出色的预测。

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