随着液舱晃荡运动机理的研究深入,舱内液体运动响应和自由液面波形精细模拟成为研究的重点。本文应用无网格方法中的FPM(Finite Point Method)来对液舱晃荡中的动边界及自由液面大变形等问题进行数值求解和图像模拟。以二维液舱晃荡为例...随着液舱晃荡运动机理的研究深入,舱内液体运动响应和自由液面波形精细模拟成为研究的重点。本文应用无网格方法中的FPM(Finite Point Method)来对液舱晃荡中的动边界及自由液面大变形等问题进行数值求解和图像模拟。以二维液舱晃荡为例,校核运动边界与内部流体粒子点间的运动响应,得到FPM对于边界所受砰击力和内部兴波波高的计算结果以及自由液面模拟图像。将计算结果进行无因次化处理,通过与试验结果进行比对,验证了FPM在液舱晃荡问题中应用的可行性和准确性,也为FPM解决三维复杂液舱晃荡问题中提供铺垫。展开更多
Zongxuan Sun is a Professor at the Department of Mechanical Engineering,University of Minnesota. He received his Ph. D. degree in Mechanical Engineering from University of Illinois at Urbana-Champaign in 2000. He is c...Zongxuan Sun is a Professor at the Department of Mechanical Engineering,University of Minnesota. He received his Ph. D. degree in Mechanical Engineering from University of Illinois at Urbana-Champaign in 2000. He is currently Director of the Center for Compact and Efficient Fluid Power (CCEFP). He was a Staff Researcher (2006-2007) and a Senior Researcher (2000-2006) at General Motors Research and Development Center in Warren,MI. His research interests include controls and mechatronics.展开更多
文摘随着液舱晃荡运动机理的研究深入,舱内液体运动响应和自由液面波形精细模拟成为研究的重点。本文应用无网格方法中的FPM(Finite Point Method)来对液舱晃荡中的动边界及自由液面大变形等问题进行数值求解和图像模拟。以二维液舱晃荡为例,校核运动边界与内部流体粒子点间的运动响应,得到FPM对于边界所受砰击力和内部兴波波高的计算结果以及自由液面模拟图像。将计算结果进行无因次化处理,通过与试验结果进行比对,验证了FPM在液舱晃荡问题中应用的可行性和准确性,也为FPM解决三维复杂液舱晃荡问题中提供铺垫。
文摘Zongxuan Sun is a Professor at the Department of Mechanical Engineering,University of Minnesota. He received his Ph. D. degree in Mechanical Engineering from University of Illinois at Urbana-Champaign in 2000. He is currently Director of the Center for Compact and Efficient Fluid Power (CCEFP). He was a Staff Researcher (2006-2007) and a Senior Researcher (2000-2006) at General Motors Research and Development Center in Warren,MI. His research interests include controls and mechatronics.