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Numerical Analysis on the Effects of Submerged Depth of the Grid and Direction of Incident Wave on Gravity Cage 被引量:12
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作者 陈昌平 李玉成 +2 位作者 赵云鹏 董国海 桂福坤 《China Ocean Engineering》 SCIE EI 2009年第2期233-250,共18页
In this paper, the numerical model of the net cage with the grid mooring system in waves is set up by the lumped mass method and rigid kinematics theory, and then the motion equations of floating system, net system, m... In this paper, the numerical model of the net cage with the grid mooring system in waves is set up by the lumped mass method and rigid kinematics theory, and then the motion equations of floating system, net system, mooring system, and floaters are solved by the Runge-Kutta fifth-order method. For the verification of the numerical model, a series of physical model tests have been carried out. According to the comparisons between the simulated and experimental results, it can be found that the simulated and experimental results agree well in each condition. Then, the effects of submerged depth of grid and direction of incident wave propagation on hydrodynamic behaviors of the net cage are analyzed. According to the simulated results, it can be found that with the increase of submerged depth of grid, the forces acting on mooring lines and bridle lines increase, while the forces on grid lines decrease; the horizontal motion amplitudes of floating collar decrease obviously, while the vertical motion amplitudes of floating collar change little. When the direction of incident wave propagation changes, forces on mooring lines and motion of net cage also change accordingly. When the propagation direction of incident wave changes from 0° to 45°, forces on the main ropes and bridle ropes increase, while the forces on the grid ropes decrease. With the increasing propagation direction of incident wave, the horizontal amplitude of the forces collar decreases, while the vertical amplitude of the floating collar has little variation. 展开更多
关键词 submerged depth of grid gravity cage physical model test numerical simulation
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ECAE法制备铜铝双金属复合棒材数值模拟与试验研究
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作者 张翔 王晓溪 +2 位作者 王海波 张飞 石凤健 《金属热处理》 CAS CSCD 北大核心 2023年第10期291-296,共6页
利用Deform-3D有限元软件对铜铝双金属复合棒材室温4道次BC路径ECAE变形过程进行模拟,研究了金属流动、挤压载荷、等效应变以及平均应力的分布及变化规律;并在自行设计的模具上进行了试验验证,成功制备出铜铝双金属复合棒材,对变形材料... 利用Deform-3D有限元软件对铜铝双金属复合棒材室温4道次BC路径ECAE变形过程进行模拟,研究了金属流动、挤压载荷、等效应变以及平均应力的分布及变化规律;并在自行设计的模具上进行了试验验证,成功制备出铜铝双金属复合棒材,对变形材料进行了物理网格试验及组织性能测试。结果表明,ECAE工艺下铜铝双金属复合棒材内部存在剧烈剪切变形区,复合坯料由不稳定变形逐渐过渡为均匀协调变形,材料内部处于理想的三向压应力状态,静水压力较高,界面处金属结合紧密。4道次ECAE挤压后,铜铝双金属复合坯料整体变形相对均匀,平均累积等效应变量为4.49。随着挤压道次的增加,载荷峰值不断增加,同时复合坯料内部显微硬度不断升高,但包覆层增幅大于芯部材料。 展开更多
关键词 等通道转角挤压(ECAE) 铜铝双金属 有限元模拟 载荷曲线 物理网格试验
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