|
所在平台: Udemy |
课程主页: https://www.udemy.com/course/fundamentals-of-thermodynamics/
课程评论:没有评论
课程名称:工程热力学基础 课程概述: 本课程全面探讨热力学的基本原理,涵盖简单纯可压缩物质、热力学第一和第二定律以及熵的概念。通过深入学习能量、热量和熵的原理,您将能够将这些概念应用于系统和控制体,增强您对热力学核心原理的理解。 课程内容: - 重要定义、术语、系统属性、压力、温度尺度、热量、功、热力学的零定律、热力学平衡和各种实际应用中的功的类型。 - 热力学第一定律及其在系统中的应用,包括能量守恒和热与功的相互关系。 - 纯可压缩物质的属性、相和相变,揭示不同材料在不同条件下的行为。 - 热力学第一定律在控制体中的应用:流动过程的能量关系,促进对各种工程系统和过程的分析。 - 热力学第二定律、相关原理、可逆与不可逆过程,帮助您区分理想与现实过程。 - 熵与熵产生的概念,包括无序度及其在理解系统效率中的作用。 - 控制体的熵率平衡,对热力学系统的优化与性能评价至关重要。 - 动力、制冷和热泵循环分析,帮助您评估这些关键组分在各个行业中的性能。 课程成果: - 学习基于热力学第一定律的能量守恒,设计和分析能源系统所必需的基础知识。 - 基于热力学第二定律确定过程可行性,提高项目的效率和实用性。 - 将热力学的第一和第二定律应用于分析发电厂、发动机和制冷系统,扩展您在这些重要领域的专业知识。 开始掌握热力学基础,获得关于能量、热量和熵的实际见解。现在就报名,享受快乐学习的体验!
Explore Thermodynamics Fundamentals: Simple Pure Compressible Substances, First & Second Laws, and Entropy in this comprehensive course. Delve into the principles of energy, heat, and entropy, and learn to apply these concepts to systems and control volumes, enhancing your understanding of the core principles of thermodynamics.Topics:Definitions, terminology, system properties, pressure, temperature scale, heat, work, zeroth law of thermodynamics, thermodynamic equilibrium, and various types of work in practical applications.First law of thermodynamics and its application to systems, including the conservation of energy and the interplay between heat and work.Properties of pure compressible substances, phases, and phase transitions, providing insights into the behavior of different materials under varying conditions.First law application to control volume: energy relationship for flow processes, enabling the analysis of various engineering systems and processes.Second law of thermodynamics, corollaries, reversible and irreversible processes, helping you differentiate between ideal and real-world processes.Entropy and entropy production, including the concept of disorder and its role in understanding the efficiency of systems.Entropy rate balance for control volume, essential for the optimization and performance evaluation of thermodynamic systems.Power, refrigeration, and heat pump cycle analysis, equipping you with the skills to assess the performance of these critical components in various industries.Course Outcomes:Learn energy conservation based on the first law of thermodynamics, essential for designing and analyzing energy systems.Determine process feasibility based on the second law of thermodynamics, improving the efficiency and practicality of your projects.Apply 1st and 2nd laws of thermodynamics to analyze power plants, engines, and refrigeration systems, expanding your expertise in these vital areas.Embark on a journey to master the fundamentals of thermodynamics and gain practical insights into energy, heat, and entropy. Enroll now to enjoy and experience happy learning!