ANSYS Explicit Dynamics: Solid Fluid Interaction-Cannonball

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课程主页: https://www.udemy.com/course/simulation_herk_02/

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课程名称:ANSYS显式动力学:固体-流体相互作用-炮弹 课程概述:本课程将为您展示一个简单的固体-流体相互作用模拟。作为逐步教程,推荐给所有希望在欧拉域中模拟流体的初学者。课程内容仅包含必要的元素和步骤,以尽可能简明扼要。课程的目标是让学习者掌握固体-流体相互作用模拟的基本结构和工作流程,不让新手感到困惑。 在未来的高级课程中,我们将扩展模拟的边界和可能性,涵盖如参数化工作流程设置、带失效模型的材料应用、解决物体破裂/断裂问题,以及包含爆炸和压力波等尚未应用的技能。 这是课程系列的第二部分,是一个很好的基础起点。您无需拥有ANSYS的经验,但显式动力学是一个高级领域。如果您有任何问题,请随时询问。在项目或自我练习中,您可以对我们的固体-流体相互作用进行修改,调整尺寸、速度、攻击角、密度或网格分辨率,以观察这些变化对结果的影响。这将是一个很好的练习,以检测您对基本固体-流体相互作用的理解。

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In this class I am going to show you a really simple Solid-Fluid interaction. This is a step by step tutorial and is recommended for everyone with desire to simulate fluids in Euler-Domain.As a beginner compatible course, it contains only the necessary elements and steps, to be as straightforward as possible. The goal is to learn the essential structure and workflow of a Solid-Fluid interaction simulation and not to confuse the newcomers. In future, more advanced courses we are going to expand the limits and possibilities of our simulation and include the following, not yet applied skills like:- set up parametrized workflow- include material with failure model- solve problems, where bodies are breaking/fracturing- include explosions and pressure wavesThis is the second part of the course-serie, a nice basis to start from.You do not require any experience with ANSYS, but explicit dynamics is an advanced field. If you have any questions, don't be shy to ask anything.As project or self-practice you can make a modified version of our Solid-Fluid interaction with a little twist here and there. Modify the dimensions, velocity, angel of attack, densities or the mesh resolution as you like to see the influence at the end.This is going to be a good practice to see, if you have a good understanding of a basic Solid-Fluid interaction.

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