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所在平台: Udemy |
课程主页: https://www.udemy.com/course/aerodynamic_cfd_structural_thermal/
课程评论:没有评论
课程名称:CATIA与ANSYS Fluent的气动概念设计分析 课程概述:该课程旨在关注与气动学和热力学相关的产品设计与开发,涉及应力产生与结构变形之间的关系。完成课程后,学员将能够在CATIA中进行各种产品设计,并使用ANSYS分析所需的工程属性。 学习内容: - 实际工程设计和分析的技巧 - 工业或学术中的产品开发步骤和程序 - 从概念到可行性的创造性思维与想象 - 在工业项目中应用创造力、工程知识及CATIA与ANSYS工具 - 在CATIA工作台中设计 - 在ANSYS工作台中进行工程分析 - 针对流体(如飞机、船舶、汽车等)设计运动载具 - CATIA设计模块包括草图绘制、生成形状设计和生成部件设计 - ANSYS分析模块包括计算流体动力学(CFD)、结构、热和与CFD合并的谐波分析 课程以最小化理论、最大化实践为目标,包括针对气动车辆设计与分析的工业项目工作。 项目工作:项目内容包括为运输机设计机身、机翼、稳定器和发动机。设计程序与课堂上展示的相似,输入和边界条件可变。设计涉及通过截面和曲线创建三维形状,并使用表面或部件建模技术。CAD文件需要作为STEP文件导入CAE。设计模型将进行计算流体动力学(CFD)与结构参数分析,以计算升力、阻力、推力和由变形产生的变应力。 输入参数包括: - 结构材料:铝 - 流体流动:空气 - 流速(m/s) - 引擎初始压力(Pa) - 出口压力(Pa) - 温度(开尔文) 输出参数包括: - 阻力(牛顿) - 升力(牛顿) - 推力/引擎(牛顿) 该课程将为学员提供全面的实用技能,以应对现代工程设计所需的挑战。
AIM: This program is focused on Product Design & Developments related to Aerodynamics and Thermodynamics results in stress generations against structural deformations. After completion of this one should able to do any kind of product design in Catia and analyse required engineering properties with Ansys.What you learn: Techniques for real life engineering designing and analysisSteps and procedures for products development in Industries or Academic Creative thinking and imagination from concept to feasibilityApply Creativity, Engineering knowledge and Catia Ansys tools in industrial projectsDesigning in Catia workbenchesEngineering analysis with Ansys workbenchesDesign & Development for moving vehicles against fluid like Aircraft, Ship, Car etcDesigning modules in Catia are Sketching, Generative shape design & Generative part designAnalysis modules in Ansys are Computational Fluid Dynamics(CFD), Structural, Thermal and Harmonic merged with CFD All lessons are focused on minimised theory and maximised practical with practice Industrial Project work on Aerodynamic vehicle design & analysis.PROJECT Work: Project work consists of designing structures for fuselage,wings,stabilizers & engines for Transporter. Procedure is very similar to shown in lectures with variable input and boundary conditions. Designing involves creating 3D shapes from sections & curves with techniques in surface or part modeling. Cad file is then have to import in CAE as step file. Designed model to be analysed for Computational fluid dynamics (CFD) & Structural parameters to calculate LIFT,DRAG,THRUST and variable STRESSES due to deformations. INPUT: Structural Material is AluminiumFluid flow is Air Flow velocity in m/sENGINE Initial Gauge Pressure in Pa Outflow Gauge Pressure in Pa Temp in kelvin Outlet Gauge Pressure in Pa Temp in kelvinNumber of iterations = 500OUTPUT: DRAG in newton LIFT in newton THRUST/ENG in newton