工程流体力学课程教学大纲双语.doc
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1、工程流体力学课程教学大纲(双语)一、课程基本信息课程代码:050246课程名称:工程流体力学英文名称:Engineering Fluid Mechanics课程类别:专业基础课specialized basic course学 时:54Class hours: 54学分:3.0Credits: 3.0适用对象: 热能与动力工程专业的学生考核方式:考试 (平时成绩占总成绩的30%)先修课程:高等数学,大学物理,工程力学Pre-sessional course: Advanced Mathematics, University Physics, Engineering Mechanics二、课程简
2、介工程流体力学是研究流体(包括气体和流体)的平衡和运动规律的科学。它是一门横跨各领域,各不同专业的重要技术基础课。能源、动力、环境、设备、化工,航空、国防等领域均需要流体力学知识。热能与动力工程专业学生尤其需要流体力学知识作为工程设计或从事其他专业技术工作的理论基础。通过本课程的学习,使学生掌握流体力学的基本概念,基本原理和实验技能,为将来的学习和工作打下基础。本课程的前四章为双语教学。Course Description:Engineering Fluid Mechanics is the science of the law of equilibrium and motion of flu
3、ids, which include gases and liquids. It is an important basic technical course stretching across various field and various specialty. A knowledge of fluid mechanics is required in various fields such as energy, power, environment, industry, chemistry, building, aviation and national defense, etc. S
4、tudents of Thermal Energy and Power Engineering Specialty need the knowledge of fluid mechanics in Engineering design or other technical work. This course provides students with basic concepts,basic theories and experimental techniques of fluid mechanics needed in future study or work. Chapter 1 to
5、chapter 4 will be taught in both Chinese and English (bilingual education).三、课程性质与教学目的本课程是热能与动力工程专业的专业基础课。本课程的教学目的是:通过本课程的教学,使学生掌握流体力学的基本概念、基本原理和基本计算,具备一定的实验技能,培养学生分析问题和解决问题的能力以及创新能力,为后继专业课的学习以及将来从事专业技术工作打下基础。此外,通过本课程的的学习,还可以培养学生学会学习。Engineering Fluid Mechanics is the specialized basic course of The
6、rmal Energy and Power Engineering. One objective of this course is to teach the basic concepts,basic theories, basic computational methods and experimental skills in Fluid Mechanics to TEPE-related major students. After this semester, students should be able to develop a sound understanding of and a
7、 good appreciation for the Fluid Mechanics field. Another objective of this course is to foster students problem solving, analysis and creative abilities, lay good foundation for the study of specialized course, and specialized technological job in the future. Whats more, learning to learn is still
8、another objective of this course.四、教学内容及要求 Chapter 1 Introduction and Properties of Fluids(双语教学)(一)目的与要求know about: application of fluid mechanics, historical development of fluid mechanics, surface tensionbe acquainted with: properties of fluids, the continuum medium model of fluid, Newtonian fluid
9、 and non-Newtonian fluidunderstand: fluid viscosity, the concepts of ideal fluid and real fluid, compressible fluid and incompressible fluid, Newtons law of viscosity, the dynamic viscosity, the kinetic viscosity(二)教学内容1、主要内容:This chapter mainly represents the concept and developing history of fluid
10、 mechanics, the application of fluid mechanics, the character and objective of this course, the research method of fluid mechanics. In this chapter we discuss a number of fundamental properties of fluids and the continuum medium model of fluid. Continuum medium model of fluid is the foundation of fl
11、uid mechanics. Based on this assumption, the concepts of ideal fluid and real fluid, compressible fluid and incompressible fluid, Newtonian fluid and non-Newtonian fluid are introduced.Chapter 1 Introduction and Properties of Fluids1.1 Application of Fluid Mechanics1.2 Historical Development of Flui
12、d Mechanics(self-study)1.3 Objective of the Course1.4 Definition of Fluid(1) Definition of Fluid(2) Continuum Medium Model of Fluids 1.5 Density and Compressibility(1)Density Compressibility1) compressible fluid and incompressible fluid2) coefficient of volume compressibilityvolume modulus of elasti
13、city1.6 Viscosity(1) definition of viscosity(2) Newtons equation of viscosityNewton plate experiment and Newtons equation of viscositythe coefficient of viscosityKinetic Viscosity affecting factors of viscosity1.7 Surface Tension (self-study)2、基本概念和知识点:definition of fluid, density, compressibility,
14、viscosity, Newtons law of viscosity, the dynamic viscosity, the kinetic viscosity, ideal fluid and real fluid, compressible fluid and incompressible fluid, Newtonian fluid and non-Newtonian fluid3、问题与应用:Is there energy loss for ideal fluid? Why?What are the factors to influence viscosity of fluid? W
15、hat is the change in viscosity due to temperature?Why is pressure-measuring tubes diameter not less than 1cm?(三)课后练习1.6,1.7,1.9,1.10,1.11,1.12(四)教学方法与手段分组讨论、课堂讨论、问题教学法Chapter 2 Fluid Statics (双语教学)(一)目的与要求know about: Fluid Equilibrium Differential Equation and its integration, various kind of piezom
16、eter, ,pressure distribution in a relative equilibrium fluid, fluid static force on curved surface, Archimedes Principle, be acquainted with: types of forces acting on fluid, fluid static force on plane surface, absolute pressure and relative pressureunderstand: the characteristic of static pressure
17、 in fluid, pressure distribution in a static fluid, piezometric tube, U-tube piezometer, Differential Manometer, pressure prism(二)教学内容 1、主要内容:This chapter mainly represents forces acting on fluid and the mechanics law of fluid at rest. It focuses on the character of fluids static pressure, the distr
18、ibution law of static pressure, Euler differential equation of a fluid in equilibrium, the concept of equipressure surface, piezometer, the calculation method of the static resultant force exerted on plane or curved surface, and introduces the concepts submerged and floating bodies, Archimedes Princ
19、iple. Chapter 2 Fluid Statics2.1 Forces on Fluids(1) Mass force (2) Surface Force 2.2 Characters of Pressure of a Static Fluid at Rest 2.3 Fluid Equilibrium Differential Equations 2.3.1 Differential Equations of a Fluid in Equilibrium (Euler Equilibrium Equatio2.3.2 General Differential Equations of
20、 a Fluid in Equilibrium 2.3.3 Equipressure Surface 2.4 Pressure Distribution in a Static Fluid 2.4.1 Pressure Distribution in a Static Fluid under Gravity 2.4.2 Pressure and its units 2.5 Pressure Distribution in a Relative Equilibrium Fluid 2.6 Piezometer 2.6.1 Piezometric Tube 2.6.2 Mercury Piezom
21、eter and U-tube Piezometer 2.6.3 Differential Manometer 2.6.4 Metal Piezometer (Pressure Gage) 2.6.5 Vacuum Gauge 2.7 Fluid Static Force on Plane Surface 2.8 Fluid Static Force on Curved Surface2.9 Archimedes Principle (1) Archimedes Principle (2) Buoyancy (3) Three States of Immersed Bodies2、基本概念和知
22、识点:forces acting on fluid, characters of pressure of a static fluid at rest, Euler differential equation of a fluid in equilibrium, equipressure surface, the distribution law of static pressure, piezometer, absolute pressure and relative pressure, fluid static force on plane surface, fluid static fo
23、rce on curved surface3、问题与应用:What forces are there in static fluids at rest? What is a equipressure surface? What are the conditions for the equipressure surface?Is the equipressure surface in a relative equilibrium liquidhorizontal? Why?What are the conditions when equipressure surface is horizonta
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