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171.
采用SESAM软件包对一种三浮桶式海上风电基础结构进行了运动响应计算。采用GeniE模块建立了该三浮桶海上风电基础结构的结构模型和水动力模型,并在HydroD模块中进行了组合载荷以及运动响应的计算,对其水动力特性进行了分析。在其中的波浪载荷计算过程中,采用基于三维水动力理论的设计波方法。  相似文献   
172.
结合某大跨双塔斜拉桥工程设计实例,采用大型有限元软件ANSYS建立了三维有限元计算模型,分析了该桥的动力特性,并采用反应谱法进行了地震反应分析。研究结果表明:由于采用了半漂浮斜拉桥体系,主梁梁端位移较大,极易造成主、引桥间碰撞且对两端伸缩缝不利,可采用弹性约束或设置阻尼器等措施来限制主梁梁端位移。  相似文献   
173.
车架可靠性对整车的安全性有着重要的作用。为了获得车架的动态特性,运用SOLIDWORKS建立某半挂车车架有限元模型,并在ANSYS中对车架做了动载荷、模态、谐响应等动态分析。在分析的基础上为车架的结构改进提供了理论依据。  相似文献   
174.
针对目前设计部门感兴趣的双层壳体结构中外壳对水下爆炸作用的影响问题,用简单平面波理论对双层壳体结构的外板对冲击波的透射特性进行分析,给出透射冲击波的计算公式,与试验比较吻合良好.并详细介绍相关的双层平板的水下爆炸试验结果,表明双层壳体结构的外壳对水下爆炸作用的影响主要表现在高频部分,冲击波压力约减小20%,结构冲击加速度和应变响应减小约50%以上,内部流体的作用使对整体冲击响应速度略有增大.  相似文献   
175.
舰船机械设备冲击隔离技术研究进展   总被引:5,自引:0,他引:5  
本文回顾了舰船设备冲击隔离技术的研究历史,综述了该领域的研究现状,主要包括理论分析方法和试验研究方法,如经验公式方法、动力分析方法、有限元方法、冲击响应谱(SRS)法、动力设计分析方法(DDAM)、冲击隔离优化设计等.  相似文献   
176.
利用伪力法计算带限位器的船舶设备非线性冲击响应   总被引:1,自引:0,他引:1  
带有限位器的浮筏隔振系统是非线性系统,该文建立了这一非线性系统的模型,利用伪力(pseudo-forces)法计算了带有限位器的浮筏隔振系统模型的冲击响应,分析了限位器参数对冲击响应的影响.设计制作了带有限位器的浮筏隔振系统试验模型,进行了冲击试验研究,数值计算与实验结果比较表明了伪力法在计算带限位器的舰船设备隔振系统冲击响应时的适用性和有效性.  相似文献   
177.
结合郑州市第一条城市轨道交通高架桥的工程实例,通过建立有限元计算模型,对简支梁不同墩高的钢筋混凝土圆形桥墩进行结构动力特性分析、E1地震作用下的多振型反应谱分析以及E2地震作用下基于纤维模型的弹塑性非线性时程地震反应分析,研究不同墩高桥墩的抗震性能和地震响应变化规律。结果表明,桥墩在地震作用下满足抗震设计要求,希望为城市轨道交通桥梁钢筋混凝土圆形桥墩抗震设计提供参考。  相似文献   
178.
Dynamic response of ship-hull structure under slamming has tracked widespread attention in the marine structural design. However, our understanding on the dynamic characteristics largely relies on the symmetrical slamming cases. This paper presented a preliminary numerical investigation on the dynamic response of a truncated ship-hull structure under asymmetrical slamming based on the uncoupled CFD-FE method. Asymmetrical slamming loads were predicted through combining the seakeeping analysis and CFD method. In there, three kinds of motions (vertical, horizontal and roll motions) of 2D ship sections were obtained through the seakeeping analysis and then the slamming pressure was predicted through simulating the water entry with various motions based on CFD method. The dynamic response was analyzed through finite element method. Numerical predictions including ship motions, slamming loads and dynamic analysis were validated against published experimental data and numerical calculations. The characteristics of asymmetrical slamming loads were analyzed showing obvious asymmetry in space, and the dynamic characteristic of the ship bow structure was further clarified through discussing the deformation and stress distribution. These results are useful for readers for better understanding the dynamic characteristics of the bow structure under slamming.  相似文献   
179.
Wind energy is clean and sustainable. Taiwan is establishing offshore wind farms using wind turbines in the Taiwan Strait. However, these are located in an earthquake-prone area with sandy seabed conditions. To ensure their safety and reliability, the turbines’ support structure must be protected against wind, waves, and seismic loads. Tuned mass dampers (TMDs) are commonly employed to reduce structural vibrations. A TMD is more simply incorporated into turbine structures than are other energy dissipation devices. In this study, a 1:25-scale test model with a TMD was constructed and subjected to shaking table tests to experimentally simulate the dynamic behavior of a typical 5-MW wind turbine with a jacket-type support structure and pile foundation. The scaled-down wind turbine model has a nacelle without rotating blades; therefore, the aerodynamic and rotational effects due to the rotating blades were ignored in this study. A large laminar shear box filled with saturated sandy ground was used to simulate the typical seabed conditions of Taiwanese offshore wind farms. The TMD system was designed to be tuned the first-mode frequency of the test model. Two ground accelerations, selected by considering wind farm site condition and near-fault characteristics, were used for excitation in the test. The responses of the test model with and without the TMD system were compared, and the influence of soil liquefaction on the effectiveness of TMD vibration control was addressed.  相似文献   
180.
This paper presents a simplified numerical model capable of analysing the interaction between the structural dynamic response of elastic-plastic struck plate wall of a fluid tank subjected to wedge impact and the resulting fluid motion. The Variational Finite Difference Method (VFDM) is applied to analyse the structural dynamics of the struck plate and 2-D linear potential flow theory is used to study the resulting fluid motion and its effects on the structural dynamics of the struck plate. Experiments of a wedge indenter impacting with both empty and 90% filled tanks are carried out to study the structural deformation of the struck plate. The accuracy of the developed numerical model is validated with published results and experimental results, and good agreement is achieved. Through the comparison of the impact behaviour of empty and partially filled water tank, it is found that the resulting water motion helps to reduce the structural deformation of the struck plate since part of the impact energy is dissipated by the resulting water motion. Parametric studies are performed to investigate the effect of impact velocity and water level on the structural dynamics of the struck plate of a partially filled water tank. A case study is also conducted to demonstrate the potential application of the proposed method in analysing ship-ice impact problems.  相似文献   
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