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1.
黄强  任慧龙  李辉  张楷红  彭亚康 《船舶力学》2021,25(9):1147-1158
本文基于船波相对运动理论,对舷侧砰击压力和甲板上浪载荷的数值及试验预报方法分别进行了研究.利用三维势流理论计算船舶与波浪之间的相对运动,可以得到船波相对速度及甲板上浪高度.对于砰击压力通过数值模拟方法得到砰击压力系数后结合船波相对速度来预报;对于上浪载荷则采用考虑船舶航速的溃坝模型结合甲板上浪高度来预报.此外,开展了船舶运动和砰击压力模型试验,船波相对运动由沿着模型横剖面布置在舷侧的浪高仪测量,并且测得了相应位置处的砰击压力.最后分别对船波相对运动和砰击压力的数值结果与试验数据进行了比较分析,同时基于船波相对运动给出了一种砰击持续时间计算方法.  相似文献   

2.
计及随机海浪波面倾角的影响,研究了船舶底部砰击压力的概率分布问题。在计算船底砰击压力时引入随机海浪的波面条件,根据海浪波面斜率和船波之间相对速度的统计特性导出砰击压力随机变量的概率密度函数。计算结果表明,计及随机海浪波面倾角影响的概率密度函数与试验结果更加一致。  相似文献   

3.
基于海浪波面的随机特性,研究船舶底部砰击压力的计算方法.分析纵向入水角对船底砰击压力量值的影响程度,建立二者之间的定量关系.在预报船舶砰击压力时引入随机海浪的波面条件,计及船舶运动和海浪波面倾角因素对砰击压力的影响.采用蒙特卡罗数值模拟法对砰击压力的统计规律进行研究,结果表明:计及纵向入水角的船底砰击压力计算方法.更加...  相似文献   

4.
顾刚  陈震  王然章  唐文勇 《船舶》2008,19(3):26-29
针对箱形驳船,建立了三维水动力计算模型,对箱形驳船系列在设计海况下的船体与波浪之间的相对运动和相对速度做了短期预报。运用Ochi船舶砰击理论,分析了箱形驳船在不同吃水和拖航速度时船首砰击的发生概率和砰击压力极值等,并讨论了吃水、拖航速度等因素对箱形驳船底部砰击特性的影响。在此基础上,提出了箱形驳船首部砰击加强的临界航速建议,为箱形驳船规范中有关底部砰击载荷的修订提供参考和依据。  相似文献   

5.
采用Sesam软件计算出船舶相对运动及砰击瞬时船舶与波浪之间的相对速度,采用FLUENT和MSC. DYTRAN软件计算出船体各点的砰击压力系数,最终计算出不同海况条件下各点的砰击压力,对双体船砰击载荷沿船长及高度方向的分布进行了分析,并讨论结构弹性效应对砰击载荷的影响。  相似文献   

6.
大型集装箱船舷侧外飘砰击特性研究   总被引:2,自引:0,他引:2  
陈震  冯永军  肖熙 《船海工程》2011,40(3):1-4,9
基于概率随机理论研究大型集装箱船舷侧外飘砰击特性,预报不同海况和航速情况下船舶非线性运动响应时历,采用Chuang理论计算船艏舷侧区域的外飘砰击压力,对随机海浪下集装箱船外飘砰击概率、砰击压力极值沿船长和高度方向空间分布规律进行分析,在直接预报的基础上给出载荷的确定方法。  相似文献   

7.
为得到不同海况对小水线面双体船砰击概率的影响,基于势流理论中的Rankine面源法对该船的波浪砰击进行研究。通过挪威船级社(Det Norske Veritas,DNV)水动力软件SESAM的Wasim模块,预报该船在不同速度、不同海况下的短期运动响应,获得不同海况、不同速度下该船湿甲板的波浪砰击压力。研究7种海况下的不同吃水对砰击概率的影响,结果表明:该船的运动响应均随着航速的增加和海况的恶劣而增大;与航速相比,海况对双体船的运动响应影响较大。预报点离艏部越近,相对速度和相对运动值越大;该船的砰击概率随着海况的恶劣而增大,但当吃水增加时,砰击概率会减小。  相似文献   

8.
船首外飘砰击设计载荷直接计算   总被引:1,自引:0,他引:1  
文章结合三维线性势流理论和砰击速度的长期分析方法,求解出船体外飘位置的设计砰击速度;以首垂线和静水面交点处的设计砰击速度为目标值,给出了用于确定船首外飘砰击设计载荷的等效设计波,进而得到了设计状态下船体外飘剖面与波面相对运动关系;将船体剖面与波面间的相对运动关系等效转化为船体剖面与静水面的相对运动,利用显式有限元方法实现了外飘剖面砰击设计载荷的预报。针对直接计算方法中涉及的设计砰击速度、砰击压力和砰击压力系数,对比分析了文中结果和相应的规范值或试验值,论证了文中船舶外飘砰击压力设计载荷直接计算方法的合理性。  相似文献   

9.
船舶表面点砰击压力的预报方法   总被引:2,自引:0,他引:2  
本文基于线性切片理论,结合船舶在波浪中运动时历的数值模拟方法,考虑船舶表面点的运动与波浪的相位关系,给出了船舶表面点的入水速度的预报方法,再运用二维剖面入水砰击压力与入水速度之间的关系,对船舶表面入水点的砰击压力进行了预报.最后,给出了一条船的计算实例.  相似文献   

10.
船舶在恶劣海况下航行时,船体与波浪之间会发生剧烈的砰击现象,严重时会造成船体局部结构损坏或降低船舶总纵强度。随着工业技术的革新和海洋资源开发的需要,当代船舶不断向高速化和大型化发展,船舶发生砰击现象的概率也越来越高。开展结构砰击特性研究,准确地预报结构物的砰击载荷,对船舶航行和人员安全有重要的意义。本文基于水动力学软件Fine/Marine,建立水域-空气域-结构耦合的分析模型,对楔形结构的砰击特性进行数值仿真分析,并研究不同斜升角及不同入水速度对砰击载荷的影响。  相似文献   

11.
An efficient method for calculation of the slamming pressures on ship hulls in irregular waves is presented and validated for a 290-m cruise ship. Nonlinear strip theory was used to calculate the ship–wave relative motions. The relative vertical and roll velocities for a slamming event were input to the slamming calculation program, which used a two-dimensional boundary element method (BEM) based on the generalized 2D Wagner formulation presented by Zhao et al. To improve the calculation efficiency, the method was divided into two separate steps. In the first step, the velocity potentials were calculated for unit relative velocities between the section and the water. In the next step, these precalculated velocity potentials were used together with the real relative velocities experienced in a seaway to calculate the slamming pressure and total slamming force on the section. This saved considerable computer time for slamming calculations in irregular waves, without significant loss of accuracy. The calculated slamming pressures on the bow flare of the cruise ship agreed quite well with the measured values, at least for time windows in which the calculated and experimental ship motions agreed well. A simplified method for calculation of the instantaneous peak pressure on each ship section in irregular waves is also presented. The method was used to identify slamming events to be analyzed with the more refined 2D BEM method, but comparisons with measured values indicate that the method may also be used for a quick quantitative assessment of the maximum slamming pressures.  相似文献   

12.
杨凡  任慧龙  王建辉  李欣 《船舶工程》2016,38(11):33-35
研究基于CFD技术的船舶砰击载荷预报及强度的直接计算,以通过对船波相对运动的短期预报得到入水速度极值,由积分变换得到入水速度的时历曲线,以CFD软件实现船体典型剖面入水砰击载荷的计算,得到船体剖面压力的空间分布,结果表明,船体剖面的压力随着位置高度的增加呈减小趋势,最后通过对某集装箱船进行有限元强度评估,验证了本文砰击强度直接计算方法的合理性和实用性。  相似文献   

13.
舰船的砰击载荷与结构响应的研究一直备受关注.对于双体船来说,砰击按部位可分为底部砰击、外飘砰击和甲板上浪,和连接相邻船体的甲板下侧,即湿甲板砰击.目前对于双体船的砰击计算还不完善,因此对于该船型的砰击研究十分必要.本文分别利用规范计算和直接计算的方式,对砰击载荷作用下双体船强度影响进行研究.规范计算主要基于中国船级社规范计算砰击载荷,直接计算则是通过线性势流理论预报船波相对速度,借助相关规范确定砰击压力系数,实现砰击载荷的直接计算.通过有限元软件加载计算,分析比较2种载荷计算方法对双体船强度的影响,以指导砰击载荷作用下双体船局部结构的设计实践.  相似文献   

14.
Since the research of flare slamming prediction is seldom when parametric rolling happens, we present an efficient approximation method for flare slamming analysis of large container ships in parametric rolling conditions. We adopt a 6-DOF weakly nonlinear time domain model to predict the ship motions of parametric rolling conditions. Unlike previous flare slamming analysis, our proposed method takes roll motion into account to calculate the impact angle and relative vertical velocity between ship sections on the bow flare and wave surface. We use the Wagner model to analyze the slamming impact forces and the slamming occurrence probability. Through numerical simulations, we investigate the maximum flare slamming pressures of a container ship for different speeds and wave conditions. To further clarify the mechanism of flare slamming phenomena in parametric rolling conditions, we also conduct real-time simulations to determine the relationship between slamming pressure and 3-DOF motions, namely roll, pitch, and heave.  相似文献   

15.
张文挺  王建辉 《船舶工程》2016,38(10):58-62
船舶在航行时发生砰击是一种高度非线性的物理现象。本文基于势流理论Rankine源法,研究用时域非线性方法计算船舶运动响应,获得船波垂向相对运动速度;并选取合适的砰击压力系数,计算船舶砰击载荷。最后用该方法评估了一艘集装箱船艏部砰击强度,验证了该方法的合理性。  相似文献   

16.
A hydroelastic analysis of a rectangular plate subjected to slamming loads is presented. An analytical model based on Wagner theory is used for calculations of transient slamming load on the ship plate. A thin isotropic plate theory is considered for determining the vibration of a rectangular plate excited by an external slamming force. The forced vibration of the plate is calculated by the modal expansion method. Analytical results of the transient response of a rectangular plate induced by slamming loads are compared with numerical calculations from finite element method. The theoretical slamming pressure based on Wagner model is applied on the finite element model of a plate. Good agreement is obtained between the analytical and numerical results for the structural deflection of a rectangular plate due to slamming pressure. The effects of plate dimension and wave profile on the structural vibration are discussed as well. The results show that a low impact velocity and a small wetted radial length of wave yield negligible effects of hydroelasticity.  相似文献   

17.
A method for the prediction of slamming loads on ship hulls is presented and validated for a 20-knot, 120-m car carrier. A nonlinear strip theory is used to calculate the relative motions of ship and wave. The relative vertical and roll velocities for a slamming event are given as input to the slamming calculation program, which is based on a generalized two-dimensional Wagner formulation and solved by the boundary element method. The method is fast and robust. Model tests of a car carrier have been carried out in regular head, bow, and bow quartering waves of various heights. Slamming on two panels in the upper part of the bow flare has been studied. It has been found that the water pile-up around the bow due to the forward speed of the vessel significantly increases the slamming pressures. A simplified way of including this effect is presented. When the calculated slamming pressures are corrected for 3D effects, they compare well with the measured data. Since the effect of the wave elevation due to the forward speed and the effect of three-dimensional flow act in opposite directions, excluding both of them produced results that also agreed quite well with the experiments, especially for the most severe slamming events.  相似文献   

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