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基于STAR-CCM+的船舶尾部流动问题研究-公开版

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吴铁成、邓锐、骆婉珍

中山大学 海洋工程与技术学院

2019.07.17


目 录

一、基于CFD-PIV的尾流场速度与旋涡空间分布研究

二、基于CFD-DEM的碎冰航道内船舶碎冰绕流研究

三、某型气垫船绕流流动问题初步研究


一、基于CFD-PIV的尾流场速度与旋涡空间分布研究

1.所应用的方法

1.1 数值方法

某型船尾部流动数值模拟基于STAR-CCM+ 软件进行URANS模拟:

Turbulence Model: SST k-omega turbulence model

Treatment of Free Surface: HRIC-VOF of STAR-CCM+

Wave Damping model of STAR-CCM+ by Choi and Yoon (2009)

image.png

1.2 试验方法 - P IV

1.2.1 测量设备与2D-3C-SP IV系统

image.png

1.2.2 3D-3C尾流场测量与重构

image.png

3D-3C尾流场的多切面CT扫掠式重构过程:

a)2D-3C速度切面分布与位置;b)CT扫掠后形成的体测量区域;c)原始测量3D-3C体数据集 合网格分布;

d)插值后3D-3C体数据集 合网格分布

image.png


多切面2D-3C速度场和CT扫掠重构后的体空间流场:

a)一半区域的多切面2D-3C速度场; b)CT扫掠重构后的一半区域体空间流场;c)全区域的多切面2D-3C速度场; d)CT扫掠重构后的全区域体空间流场


2.船舶尾流场数值与试验结果

2.1 2D桨盘面区域标称伴流分布(2维切面验证)

2.1.1 标称伴流场速度与流线分布

image.png

2.1.2 标称伴流场涡量分布

image.png

2.2 船艉区域3D-3C尾流场速度特性空间分布(3维空间验证)

2.2.1 无量纲轴向速度u/U三维空间分布

image.png

2.2.2 无量纲垂向速度w/U三维空间分布

image.png

2.2.3 无量纲空间速度长度L/U三维空间分布

image.png

2.3 船艉区域3D-3C尾流场旋涡特性空间分布

2.3.1 涡量场Vorticity(x)三维空间分布

image.png

2.3.2 旋涡空间演化特性

image.png


二、基于CFD-DEM的碎冰航道船舶碎冰绕流特性

1.所应用的方法

1.1 DEM方法

DEM方法最早由Cundall 和 Strack [1] 创立,可以看作为包含密集粒子流的拉格朗日多项流的扩展。用来模拟大量致密堆积的不同尺寸大小、不同形状的颗粒行为。

能精确和快速模拟大量固体颗粒的运动和接触以离散元法(DEM)为基础,采用CFD-DEM耦合的方式对船-冰-水作用进行计算。

1.2 DEM粒子的选择

 DEM复合颗粒  是由很多球形颗粒组合成的刚性颗粒,作为一个具有更复杂形状的单一粒子。 升力、曳力和自旋力作用在复合颗粒的质心,这些力的计算是基于该质心点的流场求解获得。每个复合颗粒有一个球形度属性相关的形状,用来计算颗粒的曳力; 复合颗粒形状能基于CAD几何自动创建。

image.png

1.3 碎冰航道CFD-DEM分析流程

image.png

1.4 碎冰航道与计算区域的建立

image.png

2.碎冰航道中阻力

2.1 CFD与HSVA EFD阻力对比

image.png


3.碎冰航道船舶碎冰绕流特性

3.1 碎冰绕流现象

image.png

3.2 船-碎冰作用过程

image.png


三、某型气垫船绕流流动问题初步研究

1.所应用的方法

1.1 CFD方法

某型气垫船流动数值模拟基于STAR-CCM+ 软件进行URANS模拟:

Turbulence Model: SST k-omega turbulence model

Treatment of Free Surface: HRIC-VOF of STAR-CCM+

Wave Damping model of STAR-CCM+ by Choi and Yoon (2009)

image.png

2.数值结果

2.1 气垫船自由液面分布

image.png

2.2 气垫船艏部围裙溢出气体绕流场

image.png

2.3 气垫船艏部外气体绕流场

image.png

2.4 气垫船围裙内部绕流场

image.png


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