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所在平台: Udemy |
课程主页: https://www.udemy.com/course/5-mw-nrel-wind-turbine-cad-modeling/
课程评论:没有评论
**课程名称:5 MW NREL 风力涡轮机 CAD 建模** **课程概述:** 本课程旨在教授学员如何精确地进行 5 MW NREL 风力涡轮机的 CAD 建模。风力涡轮机是可再生能源领域的重要组成部分,在全球能源消费中占有显著比例,并且预计未来其占比将持续增长(例如,预计到 2030 年全球风电发电量将占世界电力的 20%)。 课程将以荷兰海上风能转换器 (DOWEC) 6 MW 涡轮机为参考,该模型被 NREL 扩展为 5 MW 基线模型。学员将学习如何获取精确的涡轮机设计数据,并理解其在不同径向位置的空气动力学特性。通过本课程的学习,学员将掌握在 SolidWorks 软件中进行风力涡轮机建模的技能,为后续的计算流体动力学 (CFD) 模拟奠定基础。 **课程重点:** * 理解风力涡轮机在可再生能源中的重要性及发展趋势。 * 学习 5 MW NREL 风力涡轮机(基于 DOWEC 6 MW 模型)的设计原理。 * 掌握获取和描述风力涡轮机空气动力学特性的方法。 * 熟练运用 SolidWorks 软件进行风力涡轮机的 CAD 建模。 * 为进行 CFD 模拟打下基础。 **目标学员:** 希望学习风力涡轮机设计和 CAD 建模的工程师、学生及相关领域的专业人士。
Wind turbines are essential for harnessing wind power to generate electricity, making a significant contribution to today's renewable energy landscape. In 2023, global energy consumption reached 1.7×10^15 kWh (620 ExaJoules), with wind energy accounting for approximately 2.3×10^12 kWh, or around 7.81% of global electricity production. The Global Wind Energy Council (GWEC) forecasts that wind power will generate 20% of the world's electricity by 2030. Denmark is a notable example, producing 58% of its electricity from wind power in 2023.To meet this ambitious target, it is crucial to design larger and more efficient wind turbines. While both onshore and offshore wind turbines are used, offshore turbines are generally more efficient due to higher wind speeds, more consistent wind conditions, and the absence of obstacles present in onshore environments. Additionally, offshore turbines benefit from more available surface area and can support larger structures. Buoyancy forces also play an important role in the design and stability of these turbines.In this course, students will learn to create an accurate CAD model of the 5 MW NREL wind turbine. Using the Dutch Offshore Wind Energy Converter (DOWEC) 6 MW turbine as a reference, which was scaled by NREL to develop the 5 MW baseline model, students will gain hands-on experience in wind turbine design. They will acquire skills in obtaining precise data and describing the aerodynamic properties of the turbine at various span/radial locations. By the end of the course, students will be proficient in modeling wind turbines in SolidWorks and will be prepared to use their CAD models for subsequent CFD simulations.