Applied fluid mechanics: Basic and advanced levels

所在平台: Udemy

课程主页: https://www.udemy.com/course/applied-fluid-mechanics-basic-and-advanced-levels/

课程评论:没有评论

第一个写评论        关注课程

课程简介

课程名称:应用流体力学:基础与高级水平 课程概述:本课程将以简明、实用的方式涵盖流体力学的基本知识及其复杂主题,帮助您理解每个主题的物理含义以及它们与其他主题的整体联系。该课程将成为您在未来遇到任何与流体力学相关问题时的重要参考资料,因为其内容全面且综合。此外,课程中每个主题都包含应用问题的解决方案,帮助您更好地理解信息。课程由法德尔·埃萨教授进行现场录制,展示了他在机械工程系向学生讲解流体力学的过程。 课程内容包括: 1. 流体力学的介绍及重要定义,以及该学科在机械工程中的实际应用。 2. 流体属性的详细讲解,包括密度、比体积、比重、连续性方程、气体定律、压缩性、粘度等,配以相关问题的解决方案。 3. 表面张力现象的介绍,气泡和肥皂泡内压力的计算,毛细现象及其处理方法。 4. 流体静力学,涵盖静水法则、压力计算、各种测量设备、测量方法及其相关公式。 5. 悬浮物体与沉没物体的浮力讨论,包括阿基米德浮力原理及稳定性的分析。 6. 线性与旋转运动物体的相对平衡分析,并配有实例。 7. 流体运动学和流体动力学的基本概念,包括运动方程、欧拉方程、伯努利方程的推导与应用。 8. 文丘里流量计与孔口的流量计算、雷诺数的定义及其实验,管道内流动的处理。 该课程结构清晰,适合希望深入了解流体力学的学生和工程师。

课程评论(0条)

课程详情

In this course, you will learn everything you need in fluid mechanics with all its complex topics in a brief, useful, practical and applied manner.You will understand the physical meanings of each topic separately and in an integrated way with the rest of the topics.Also, this course is a source and reference for you at any time to extract from it what you will need in the future when dealing with any problem related to fluid mechanics, because it is a comprehensive and integrated content in fluid mechanics.Moreover, this course contains solutions to applied problems in each topic covered, which will bring the information closer to your mind.Also, this course is a live filming of a live explanation during practical lectures by Prof. Fadl Essa while he was explaining fluid mechanics to students of the College of Engineering - Department of Mechanical Engineering.To clarify what you will find in this course, Dr. Fadel Issa explains an introduction and an important introduction to the science of fluid mechanics - this introduction includes some important definitions and a detailed explanation of the practical applications of this very important science in the life of all mechanical engineers and an explanation of the different unit systems and some physical phenomena that are related to fluid mechanics.Then, a detailed explanation of all fluid properties such as density, specific volume, specific weight, rate of disposal, continuity equation, gas laws, compressibility, viscosity and their various applications are given with solutions to many issues on each topic of the above.Then, you will find everything related to the phenomenon of surface tension, how to calculate the pressure inside air and soap bubbles, as well as the capillary property and how to deal with it, with solutions to many issues and examples on each topic.Also, fluid statics will be dealt with - this science that includes many, many important topics in fluid mechanics, such as the law of hydrostatics, how to calculate pressure, how to measure it in different ways, what is the difference between measured pressure and absolute pressure, what are the devices that measure each type, what are the manometers and how to deal with them And what are the laws governing it.Then we move on to how to calculate the hydrostatic force that affects submerged objects, whether they are flat surfaces (flat horizontal - flat vertical - flat inclined) or curved, how to deal with it, how to calculate it, and what are the equations that govern it.Then we discuss everything related to buoyancy, what is the Archimedes principle of buoyancy, what is meant by the stability of submerged and floating bodies, how to deal with them, and what are the relationships that we need in this subject in its details, with solutions to some issues and examples.Likewise, what is the relative balance of objects that move and we treat them as static with a detailed explanation of each type in this topic - such as objects that move in a linear motion with a regular acceleration, whether the linear motion is horizontal, vertical or inclined, and also objects that move in a rotational motion with a constant acceleration with solutions Some examples in this regard.After that, fluid kinematics is explained in a simple way that helps to understand the topic and is considered as an introduction to fluid dynamics.Then we move on to a detailed explanation of fluid dynamics, what is the equation of motion, Euler's equation, Bernoulli's equation, and how to prove and apply them in many examples.What is the Venturi meter and Orifice, how to calculate the flow rate, what is the Reynolds number, what experience did it do, how to deal with the flow inside the pipes, and apply Bernoulli's equation in the ideal form and the real form - all of this we will address in this course

课程标签

0人关注该课程

主题相关的课程