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1.
邬卡佳  田华勇 《船舶》2019,30(3):97-103
排水式高速艇的阻力构成和变化规律与排水式船舶、滑行艇不同。文章基于模型试验和试验图谱分析了排水式高速艇的阻力特征,并研究了排水体积长度系数、棱形系数、方形系数等船型特征对该型船阻力性能的影响,从而为该类船舶的快速性设计提供一定的参考。  相似文献   

2.
Simulation-based design hull form optimization has become one of the most effective ways to develop energy-saving ships. However, the traditional method is time consuming and inefficient, so it is difficult to apply it to practical engineering. One of the reasons for this difficulty is that there are numerous parameters for expressing the hull form, making it difficult to find the optimal solution within a short amount of time. Therefore, this paper presents a sensitivity analysis method based on radial basis function and partial least squares regression neural network with uniform design for sampling, to study the sensitivity of local hull parameters of a class of container ships on wave-making resistance performance, and to reduce the number of dimensions in the design space. According to the results of sensitivity analysis, the parameters that are of negligible influence on the objective function can be removed from the optimization model. Comparison of results of the original model and the simplified model shows that the presented sensitivity analysis method can effectively reduce the dimension of the design space so that the time consumed to achieve the optimum is decreased.  相似文献   

3.
A computational fluid dynamics simulation method called WISDAM-X was developed to evaluate the added resistance of ships in waves. The Reynolds-averaged Navier–Stokes (RANS) equation was solved by the finite-volume method and a MAC-type solution algorithm. An overlapping grid system was employed to implement rigorous wave generation, the interactions of ships with incident waves, and the resultant ship motions. The motion of the ship is simultaneously solved by combining the solution of the motion of the ship with the solution of the flow about the ship. The free surface is captured by treatment by the density-function method. The accuracy of WISDAM-X is examined by a comparison with experimental data from a container carrier hull form, and shows a fairly good agreement with respect to ship motion and added resistance. Simulations were also conducted for a bow-form series of a medium-speed tanker to examine the effectiveness of the WISDAM-X method as a design tool for a hull form with a smaller resistance in waves. It was confirmed that the WISDAM-X method can evaluate the added resistance with sufficient relative accuracy and can be used as a design tool for ships.  相似文献   

4.
运用升力线、升力面以及面元法理论为海事40m级巡逻船设计新型螺旋桨。采用给定环量分布进行螺旋桨理论设计,并通过桨模敞水试验和实桨装船后的实船测试验证该桨的理论设计方法。实船测试主要通过2条相同船型的实船,分别加装图谱桨和理论桨进行航速、轴功率、艉部振动对比测试,用实船试航的试验数据对比分析理论桨相对图谱桨的性能指标。结果表明:采用理论方法设计的螺旋桨相对原来的图谱方法,与船型匹配得更加精确,实船的螺旋桨效率约提高2%;船体艉部振动约减小5dB。  相似文献   

5.
The scale effect leads to large discrepancies between the wake fields of model-scale and actual ships, and causes differences in cavitation performance and exciting forces tests in predicting the performance of actual ships. Therefore, when test data from ship models are directly applied to predict the performance of actual ships, test results must be subjected to empirical corrections. This study proposes a method for the reverse design of the hull model. Compared to a geometrically similar hull model, the wake field generated by the modified model is closer to that of an actual ship. A non- geometrically similar model of a Korean Research Institute of Ship and Ocean Engineering (KRISO)’s container ship (KCS) was designed. Numerical simulations were performed using this model, and its results were compared with full-scale calculation results. The deformation method of getting the wake field of full-scale ships by the non-geometrically similar model is applied to the KCS successfully.  相似文献   

6.
The scale effect leads to large discrepancies between the wake fields of model-scale and actual ships, and causes differences in cavitation performance and exciting forces tests in predicting the performance of actual ships. Therefore, when test data from ship models are directly applied to predict the performance of actual ships, test results must be subjected to empirical corrections. This study proposes a method for the reverse design of the hull model. Compared to a geometrically similar hull model, the wake field generated by the modified model is closer to that of an actual ship. A non- geometrically similar model of a Korean Research Institute of Ship and Ocean Engineering(KRISO)'s container ship(KCS) was designed. Numerical simulations were performed using this model, and its results were compared with full-scale calculation results. The deformation method of getting the wake field of full-scale ships by the non-geometrically similar model is applied to the KCS successfully.  相似文献   

7.
The prediction of a ship's resistance especially the viscous wave-making resistance is an important issue in CFD applications. In this paper, the resistances of six ships from hull 1 to hull 6 with different hull forms advancing in still water are numerically studied using the solver naoe-FOAM-SJTU, which was developed based on the open source code package OpenFOAM. Different components of the resistances are computed and compared while considering two speed conditions (12 kn and 16 kn). The resistance of hull 3 is the smallest while that of hull 5 is the largest at the same speed. The results show hull 3 is a good reference for the design of similar ships, which can provide some valuable guidelines for hull form optimization.  相似文献   

8.
The prediction of a ship's resistance especially the viscous wave-making resistance is an important issue in CFD applications. In this paper, the resistances of six ships from hull 1 to hull 6 with different hull forms advancing in still water are numerically studied using the solver naoe-FOAM-SJTU, which was developed based on the open source code package OpenFOAM. Different components of the resistances are computed and compared while considering two speed conditions(12 kn and 16 kn). The resistance of hull 3 is the smallest while that of hull 5 is the largest at the same speed. The results show hull 3 is a good reference for the design of similar ships, which can provide some valuable guidelines for hull form optimization.  相似文献   

9.
Hydrodynamic standards have been derived for the improvement of propulsive performance of twin-skeg hull forms. Three important physical observations were used in the optimization of design practice for the stern hull form of twin-skeg ships: limiting streamline pattern on the inner and outer skeg surface of a stern skeg, the balance between the flow intensity over the inner and outer skeg surface of a stern skeg and nominal wake distribution in the propeller plane. Numerical calculations and model tests have been compared to validate a CFD code used in the current work. Based on the stern flow analysis for the evaluation of self-propulsion performance, effects of stern skeg arrangement on the propulsion efficiency, i.e. the distance between skegs and the angle of the skeg with respect to shaft centerline, were intensively investigated. An optimized hull form design for a twin-skeg ship was developed using the design practice derived in this work.  相似文献   

10.
A computational method for improving hull form in shallow water with respect to wave resistance is presented. The method involves coupling ideas from two distinct research fields: numerical ship hydrodynamics and nonlinear programming techniques. The wave resistance is estimated by means of Morinos panel method, which is extended to free surface flow and considers the influence of finite depth on the wave resistance of ships. This is linked to the optimization procedure of the sequential quadratic programming (SQP) technique, and an optimum hull form can be obtained through a series of iterations giving some design constraints. Sinkage is an important factor in shallow water, and this method considers sinkage as a hydrodynamic design constraint. The optimization procedure developed is demonstrated by selecting a Wigley (C B = 0.444) hull and the Series 60 (C B = 0.60) hull, and new hull forms are obtained at Froude number 0.316. The Froude number specified corresponds to a lower than critical speed since most of the ships operating in shallow water move below their critical speed. The numerical results of the optimization procedure indicate that the optimized hull forms yields a reduction in wave resistance.  相似文献   

11.
基于RBF的船体曲面变形方法及在船体型线优化中的应用   总被引:2,自引:0,他引:2  
周昊  冯佰威  沈通 《船舶工程》2014,36(5):103-106
介绍了径向基函数插值(RBF)的基本原理及其在船体曲面变形中的应用。将基于径向基函数插值的船体曲面修改方法与CFD软件及优化算法结合,成功开发了船体型线优化平台。运用该平台对美国海军水面舰艇DTMB5415进行了艏部型线的优化设计,获得了给定约束条件下阻力性能最优的船体外形。结果表明,基于径向基函数插值的船体曲面变形方法是有效可行的,建立的船型优化平台具有一定的工程应用价值。  相似文献   

12.
由于作业方式不同,用于计算FPSO与不限定航线条件下船舶设计载荷的规范计算公式不一样,如何将现有的关于普通海船的规范用于FPSO的设计评估是FPSO研究中的关键问题.基于现有常规钢质海船规范,文章采用环境烈度因子(ESF)对用于计算运营于无限航区船舶设计载荷的规范公式进行修正,将修正后的公式作为FPSO设计载荷的计算公式.利用所得FPSO载荷计算公式计算某30万吨FPSO设计载荷,并采用薄壁梁理论对船体梁强度进行校核.将校核结果与未经ESF修正的船体梁校核结果进行比较,发现未经ESF修正的船体梁校核结果明显偏大.同时,采用薄壁梁理论进行船体梁剪切强度评估,可以避免建立全船有限元模型.  相似文献   

13.
郑义  卢晓平  董祖舜  郦云 《船舶力学》2007,11(4):553-563
对一种新型高性能船-小水线面单体船的船型与阻力性能作探索性研究,通过船型分析与设计计算,提出了两种小水线面单体船的船型方案,绘制了其中一种型线简图,结合理论计算、模型试验与经验公式方法,对设计船型的阻力性能进行了分析,阐述了小水线面单体船各阻力成分分配特性、主船体部分几何参数、潜深、支柱形状对阻力影响的规律.  相似文献   

14.
试验研究客滚船的阻力性能,在理论分析的基础上,应用 CFD 软件 RAPID 及其前处理软件 GMS 对98 m 客滚船的线型进行部分优化,制成船模,进行阻力试验,分析了优化前后的阻力性能及推进性能,比较部分线型的调整对船舶阻力性能产生的影响.  相似文献   

15.
三体船型与单体驱护舰型阻力性能的比较试验研究   总被引:1,自引:0,他引:1  
徐萍  韩芸  任毅  蔡新功 《上海造船》2009,(1):30-32,57
三体船型是1990年代发展起来的新船型,因为其主体长宽比远大于常规单体船型,从而在高航速时有效地降低了兴波阻力,通常具有比单体船型更为优秀的阻力性能。文章首先建立了基于二因次方法的三体船型模型一实船阻力换算方法,完成了一型长宽比约13的三体船模阻力试验,并将其结果与我国常规单体驱护舰船型的系列模型试验资料进行了比较分析。结果表明,三体船型在高航速时,其总阻力可望比单体驱护舰船型降低10%以上。  相似文献   

16.
罗薇  王德恂 《船舶工程》2007,29(5):27-29
针对两艘机动驳船,其一为赤水河现有优秀船,隧道尾型称为对比船,其二为武汉理工大学开发研制的双尾新船型,称为设计船,进行了不同水深、不同装载工况的浅水阻力性能、推进性能试验研究.探讨了不同船型、水深变化和装载工况变化对船舶浅水快速性能影响,给出了一些有益的结论.  相似文献   

17.
18.
高速三体船阻力性能研究   总被引:10,自引:1,他引:9  
郦云  卢晓平 《船舶力学》2007,11(2):191-198
对中体和侧体均为Wigley船型的高速三体船模在Fr=0.1~0.8时3个横向偏距、5个纵向偏距共15个状态进行了阻力试验,将高速三体船线性兴波阻力理论计算结果与模型试验结果进行了比较,并据模型试验结果分析了横向偏距和纵向偏距对兴波阻力系数的影响,其中各状态的形状因子(1 K)按普鲁哈斯卡法确定,对形状因子与偏距的关系也进行了探讨.  相似文献   

19.
在分析球艏形状特征参数、特征曲线和曲面生成的基础上,介绍以Feature、Curve engine和Metasurface为特征机制的球艏参数化方法和实现过程。生成的曲面模型光顺、精度高,可满足工程的需要。  相似文献   

20.
基于我国舰船的设计规律,提出了一种精确计算大型舰船总振动固有频率所需初始数据的虚拟设计方法。以某舰船为原型,设计出177~200 m船长范围内系列虚拟船型主尺度及船体等值梁数据。计算出系列舰船虚拟船型船体的总振动固有频率值,扩展了船体总振动固有频率近似公式中统计系数的统计样本范围,利用扩展的统计样本数据提出了适合估算大型舰船船体总振动固有频率的经验公式。  相似文献   

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