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1.
对单自由度欠阻尼振动特性进行理论推导,得出其一般运动规律,并利用此规律对受电弓参数进行测定。对于框架归算质量的测量,考虑到其结构是一个复杂的空间杆件结构,测量比较困难,于是采用单频稳态正弦激振方法得到其归算质量。 相似文献
2.
3.
从动力分析角度,通过对往复式压缩机引起管道振动原因的分析,提出控制管道振动的方法;以海上已投产平台管道布置为例进行振动分析,通过计算管道因脉动引起管道振动的不平衡力,确定抑制管道振动的最佳方法。 相似文献
4.
以FRP正弦波形夹心桥面板作为研究对象,得到等效正交各项异性实心板,通过理论分析和数值对比,证明了方法的可行性;采用该法对一实际的FRP正弦波形夹心板桥进行了模态分析。 相似文献
5.
海上单桩风力发电平台简化设计 总被引:1,自引:0,他引:1
采用在欧洲已经进行商业化运作的独立桩双段结构,桩基础采用带有过渡段的单桩。塔架上的风力发电机采用丹麦Vestas公司的V80风力发电机。参考DNV-OS-J101和API-RP-2A中的工作应力设计法,进行结构静力、桩基础的承载力,涡激振动、疲劳寿命,结构动力学等分析。静力分析分析极端环境下的组合工况;桩基础主要计算桩的轴向承载力和校核水平承载力,并采用有限元模型模拟桩土相互作用;涡激振动分析主要考虑不同风速下塔架的升力以及引起的横向振动;疲劳分析根据涡激振动分析的结果利用S-N曲线对基础寿命进行了评估;动力学分析求出了结构的固有频率,并进行了波浪力作用下的瞬态历程分析。 相似文献
6.
Shogo Nakasumi Katsuyuki Suzuki Daiji Fujii Hideomi Ohtsubo 《Journal of Marine Science and Technology》2003,7(4):180-188
This article presents a mixed method of analyzing shell elements and solid elements using the overlaying mesh method. In
the structural design of a ship's hull, the shell elements are used for the global model. However, the solid elements are
necessary to analyze the stress concentration zones or the vicinity of a crack. In such cases, the models are analyzed using
zooming analysis, in which the results of a global model analysis are transferred to a local model analysis by imposing boundary
conditions. This method is more advantageous than zooming analysis in terms of the accuracy of the solution and the modeling
flexibility. Some examples of a plate model with a cracked surface or with a projection are shown in order to demonstrate
the effectiveness of the method.
Received: August 6, 2002 / Accepted: November 25, 2002
Address correspondence to: S. Nakasumi (sumi@nasl.t.u-tokyo.ac.jp)
Updated from the Japanese original, which won the 2002 SNAJ prize (J Soc Nav Archit Jpn 2001;189:219–224; and 190:655–662) 相似文献
7.
Takafumi Kawamura Hideaki Miyata Kohji Mashimo 《Journal of Marine Science and Technology》1997,2(4):245-256
A time-marching CFD simulation is performed for self-propelling ships. The flow about the hull is simulated by the finite-volume
method, and the propeller action is approximated as a propeller disk for which the solution is given by a simplified propeller
model. The interaction of two flow models is treated in a time-marching procedure converging towards the steady self-propelling
condition. This method is applied to five tanker models, and detailed comparisons are made between the simulated results and
corresponding experimental results. It is shown that the flow field in the self-propelling condition is qualitatively well
reproduced in the simulation, and the estimated thrust deduction factors for the five hull forms agree well with measured
ones. However, the effective wake factors are underestimated, since the Reynolds number in the simulations differs from that
in the experiment. 相似文献
8.
Dynamics of ships running aground 总被引:3,自引:0,他引:3
Preben Terndrup Pedersen Bo Cerup Simonsen 《Journal of Marine Science and Technology》1995,1(1):37-45
A comprehensive dynamic model is presented for analysis of the transient loads and responses of the hull girder of ships running aground on relatively plane sand, gravel, or rock sea bottoms. Depending on the seabed soil characteristics and the geometry of the ship bow, the bow will plow into the seabed to some extent. The soil forces are determined by a mathematical model based on a theory for frictional soils in rupture and dynamic equilibrium of the fluid phase in the saturated soil. The hydrodynamic pressure forces acting on the decelerated ship hull are determined by taking into account the effect of shallow water. Hydrodynamic memory effects on the transient hull motions are modeled by application of an impulse response technique. The ship hull is modeled as an elastic beam to determine the structural response in the form of flexural and longitudinal stress waves caused by the transient ground reaction and hydrodynamic forces. A number of numerical analysis results are presented for a VLCC running aground. The results include bow trajectory in the seabed, time variation of the grounding force, and the maximum values of the sectional shear forces and bending moments in the hull girder. 相似文献
9.
10.
单磁铁系统的稳定性与仿真分析 总被引:1,自引:1,他引:0
采用带状态观测器的气隙-速度-加速度反馈控制系统,在多体系统仿真软件SIMPACK平台上,考虑悬浮系统、电磁系统及控制系统的耦合作用,建立单磁铁-轨道梁-控制器的综合模型,模拟磁浮列车在弹性轨道梁上静止悬浮的过程,分析轨道梁的特征对车轨耦合振动的影响,研究共振的产生及解决方法,为磁悬浮列车的整车静止悬浮稳定性分析提供依据。 相似文献