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Experimental Research On Hydroelasticbehaviour Of A Tank Model Subdividedrninto Liquid-filled Compartments

机译:储液室细分为坦克模型的水弹性行为实验研究

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The research was performed with the use of plexiglass models subdivided into 12 separate compartments. The compartments can be filled with a liquid. The model was excited to vibrations within a given frequency band by means of an exciter and accelerations were measured in selected points of the model. During measurement series oscillograms were obtained for various filling states at continuously changing range of measured frequencies. The oscillograms obtained for free vibrations measured on liquid-filled tank models were then processed. Results of the model tests were compared with those theoretically calculatedrnfor simple cases of tank-liquid system. The simple cases were used to test correctness of the elaboratedrncomputational program for determining hydrodynamic loads applied to tank walls. The application program for determining hydrodynamic internal loads was elaborated. Also, the influence of liquid filling state on values of loading, accelerations and wall deformations was demonstrated.
机译:这项研究是使用有机玻璃模型进行的,该模型分为12个独立的隔室。隔室可以充满液体。该模型通过激励器被激发到给定频带内的振动,并在模型的选定点测量加速度。在测量过程中,在不断变化的测量频率范围内,获得了各种填充状态的波形图。然后处理在充满液体的水箱模型上获得的自由振动的波形图。将模型测试的结果与简单的罐-液系统情况下的理论计算结果进行了比较。简单的案例被用来测试用于确定施加到罐壁的流体动力载荷的精心设计的计算程序的正确性。制定了确定水动力内部载荷的应用程序。此外,还证明了液体填充状态对载荷,加速度和壁变形值的影响。

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