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961.
Prandtl’s lifting line theory was generalized to the lifting problem of a three-dimensional hydrofoil in the presence of a free surface. Similar to the classical lifting theory, the singularity distribution method was utilized to solve two-dimensional lifting problems for the hydrofoil beneath the free surface at the air-water interface, and a lifting line theory was developed to correct three-dimensional effects of the hydrofoil with a large aspect ratio. Differing from the classical lifting theory, the main focus was on finding the three-dimensional Green function of the free surface induced by the steady motion of a system of horseshoe vortices under the free surface. Finally, numerical examples were given to show the relationship between the lift coefficient and submergence Froude numbers for 2-D and 3-D hydrofoils. If the submergence Froude number is small free surface effect will be significant registered as the increase of lift coefficient. The validity of these approaches was examined in comparison with the results calculated by other methods. 相似文献
962.
Bundled hybrid offset riser (BHOR) global strength analysis, which is more complex than single line offset riser global strength analysis, was carried out in this paper. At first, the equivalent theory is used to deal with BHOR, and then its global strength in manifold cases was analyzed, along with the use of a three-dimensional nonlinear time domain finite element program. So the max bending stress, max circumferential stress, and max axial stress in the BHOR bundle main section (BMS) were obtained, and the values of these three stresses in each riser were obtained through the "stress distribution method". Finally, the Max Von Mises stress in each riser was given and a check was made whether or not they met the demand. This paper provides a reference for strength analysis of the bundled hybrid offset riser and some other bundled pipelines. 相似文献
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为更好地研究磁流变阻尼器应用于舰船设备抗冲击的控制方法,需要准确、全面了解其动态力学特性。对磁流变阻尼器的动态特性进行试验研究,详细讨论速度、振幅、频率、电流等各个因素对阻尼力的影响。结果表明,在低速区域阻尼器的阻尼力以不可控的粘滞阻尼力为主,阻尼力随速度的变化明显;在高速区域,阻尼力以磁流变液屈服引起的库仑阻尼力为主,阻尼力随速度的变化不大,而主要决定于控制电流,但是随着电流的增大,出现饱和现象;振幅和频率主要影响磁流变阻尼力的粘滞阻尼力,随频率和振幅的增加,速度的变化范围也明显增大,但是在相同的速度下,频率和振幅对阻尼力的影响不明显。为进一步获得磁流变阻尼器动态特性参数及研究舰船设备抗冲击半主动控制方法提供了重要依据。 相似文献