《高等工程热力学》课程教学大纲.docx
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1、高等工程热力学教学大纲一、课程基本信息课程名称高等工程热力学Advanced Engineering Thermodynamics课程编码CNE224511030开课院部石大山能新能源学院课程团队(未设置)学分3.0课内学时48讲授48实验0上机0|实践0课外学时B适用专业机械动力类本研一体班授课语言中文先修课程传热学、工程流体力学、工程热力学(全英文)课程简介 (必修)高等工程热力学是研究热能和其它形式的能量之间相互转化及转化程度的科学,同时,也是研究物质相行为和自发过程进行方向的科 学,是动力工程及工程热物理、土木工程、油气储运工程、动力工程和建筑与土木工程专业研究生的学位课,属专业核心课
2、程。通过本课程的学习,学生能够把握能母转换及转换程度的规律,掌握热力学研究的宏观方法,了解热力学研究的微观方法。除热力学 第一、第二定律的基本概念和原理外,还应掌握实际气体状态方程、热力学函数关系与计算、溶液热力学和相平衡原理。能够对工业热力 过程进行简要的能量分析.评价过程的完善程度,提出改进方案。掌握可用能和量可用性分析.可以求解闭口系统的热力学可用能和稳 定流动工质的炮斓,掌握烟方程及可用能损失、烟效率.理解不可逆过程.掌握昂色格倒易关系、最小熔产率和耗故结构;了解有限时间 热力学,了解资源热力学的思想,了解热力学对环境的影响,了解统计热力学基本特点,可以运用统计热力学对某些具体问题进行
3、基本分 析.Advanced engineering thermodynamics is a science that studies the mutual transformation and transformation degree between heat energy and other forms of energy, and it is also a science to study the behavior of material phase and the direction of spontaneous process. It is a degree course for
4、graduate students majoring in power engineering and Engineering Thennophysics, civil engineering, oi1 and gas storage and transporlat ion engineering, dynamic engineering, construction and civi1 engineering, and belongs to the professional core course.Through the study of this course, students can g
5、rasp the law of energy conversion and conversion degree, master the macro method of thermodynamics research, and understand the micro method of thermodynamics research. In addition to the basic concepts and principles of the first and second laws of thermodynamics, we should also master the equation
6、 of state of real gas, the relationship and calculation of thermodynamic functions, the thermodynamics of solution and the principle of phase equi1ibriuin. Be able to make a brief energy analysis of the industrial thermal process, evaluate thedegree of perfection of the process, and put forward impr
7、ovement plans. Master the available energy and energy availabi1ity analysis, be able to solve the thermodynamic available energy and enthalpy of stable flow working fluid in closed-loop system, master exergy equation, available energy loss, exergy efficiency, understand irreversible process, muster
8、the entropy reciprocal relationship, mini mum entropy yield and dissipation structure; understand finite time thermodynamics, understand the idea of resource thermodynamics, and understand the impact of thermodynamics on the environment To understand the basic characteristics of statistical thermody
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