Mastering ANSYS CFD from zero to expert

所在平台: Udemy

课程主页: https://www.udemy.com/course/mastering-ansys-cfd/

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课程名称:从零到专家掌握ANSYS CFD 概述:本课程于2023年4月更新(第34节:使用CFD研究湍流管流和努塞尔数的确定),旨在帮助学生和专业人士学习计算流体动力学(CFD),使用行业标准工具。课程从基础知识入手,逐步深入到高级概念,既适合初学者,也适合有一定CFD基础的学习者。课程采用结构化的学习方式,注重理论理解与实际应用相结合。在过去七年中,课程已帮助全球数千名学生提升CFD技能,内容包含详细的解释、逐步演示和真实案例研究。 您将学习到的内容包括: - 理解CFD的基础知识及其应用 - 使用ANSYS Fluent、CFX、ICEMCFD、ANSYS Meshing、DesignModeler和Workbench - 几何体创建、网格生成(结构化和非结构化)及网格质量检查 - 在Fluent和CFX中设置仿真,包括求解器设置、边界条件和湍流模型 - 进行网格独立性研究以提高准确性 - 后处理结果以分析流动行为、压力分布和热传递 - 将CFD结果与实验数据进行比较以验证 - 结果的展示和解释,适用于报告、研究论文和行业项目 课程更新及附加主题: - 两种流体混合(2020年2月) - 后处理技术和网格独立性研究 - 90°弯头双收缩管(2020年7月) - 使用MultiZone的六面体网格和CFD-Post分析 - 混合肘的旋流器效应对混合和热传递的影响(2021年3月) - 使用凹坑的流动分离控制(2021年3月) - 被动控制流动分离的方法 - NACA 4412机翼分析(2021年8月) - 具有弯曲翼型的空气动力学分析 - 湊流管流和努塞尔数的热传递分析(2023年4月) 课程特点: - 35小时以上的视频内容,包含详细的解释和案例研究 - 98个可下载资源,包括ANSYS项目文件、几何和网格文件、研究论文和演示幻灯片 - 终身访问所有课程材料,并提供更新 - 可在移动设备、电视和桌面上访问,实现灵活学习 - 学生疑问支持,24小时内提供答复 适合人群: - 希望提升CFD专业技能的学生和专业人士 - 需要CFD仿真进行学术研究的研究人员 - 使用CFD进行设计分析和优化的工程师 - 对学习使用ANSYS软件进行流体流动和热传递仿真感兴趣的任何人 本课程为CFD提供了坚实的基础和行业工具的实践经验。如果您希望在此领域发展技能,本课程将是一个有价值的资源。

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Last Updated: April 2023 (Section 34: Turbulent Pipe Flow & Nusselt Number Determination Using CFD)This course is designed for students and professionals who want to learn Computational Fluid Dynamics (CFD) using industry-standard tools. It starts from the basics and gradually covers advanced concepts, making it suitable for beginners as well as those with some prior experience in CFD. The course provides a structured approach to learning, focusing on both theoretical understanding and practical applications.Over the past seven years, this course has helped thousands of students from around the world build their skills in CFD, with detailed explanations, step-by-step demonstrations, and real-world case studies.What You Will LearnUnderstanding the fundamentals of CFD and its applicationsUsing ANSYS Fluent, CFX, ICEMCFD, ANSYS Meshing, DesignModeler, and WorkbenchGeometry creation, mesh generation (structured and unstructured), and mesh quality checksSetting up simulations in Fluent and CFX, including solver settings, boundary conditions, and turbulence modelingPerforming mesh independence studies to improve accuracyPost-processing results to analyze flow behavior, pressure distribution, and heat transferComparing CFD results with experimental data for validationPresenting and interpreting results for reports, research papers, and industry projectsCourse Updates & Additional TopicsMixing of Two Fluids (Feb 2020) - Post-processing techniques and mesh independence studyDouble Contraction Pipe with 90° Bend (July 2020) - Hexa meshing using MultiZone and CFD-Post analysisSwirler Effect on Mixing & Heat Transfer (March 2021) - Studying flow and heat transfer in a mixing elbowFlow Separation Control Using Dimples (March 2021) - Passive control methods for flow separationNACA 4412 Airfoil Analysis (August 2021) - Aerodynamic analysis of a cambered airfoilTurbulent Pipe Flow & Nusselt Number Determination (April 2023) - Heat transfer analysis in turbulent pipe flowCourse Features35+ hours of video content with detailed explanations and case studies98 downloadable resources, including ANSYS project files, geometry and meshing files, research papers, and presentation slidesLifetime access to all course materials with updatesAccessible on mobile, TV, and desktop for flexible learningSupport for student queries, with responses provided within 24 hoursWho Should Take This Course?Students and professionals looking to build CFD expertiseResearchers needing CFD simulations for academic workEngineers using CFD for design analysis and optimizationAnyone interested in learning how to use ANSYS software for fluid flow and heat transfer simulationsThis course provides a solid foundation in CFD and practical experience with industry tools. If you are looking to develop your skills in this field, this course can be a helpful resource.

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