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自分のスケジュールですぐに学習を始めてください。

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初級レベル

約19時間で修了

推奨:12 hours of videos and quizzes...

英語

字幕:英語

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EnergyEnergy SystemsMechanical EngineeringEnergy Analysis

100%オンライン

自分のスケジュールですぐに学習を始めてください。

柔軟性のある期限

スケジュールに従って期限をリセットします。

初級レベル

約19時間で修了

推奨:12 hours of videos and quizzes...

英語

字幕:英語

シラバス - 本コースの学習内容

1
2時間で修了

Week 1

In this module, we frame the context of energy and power supply and demand around the world. You will learn that understanding and correctly using units are critical skills for successfully analyzing energy systems. It is also important to be able to identify and categorize systems as “open” or “closed” and “steady state” or “transient”. Thermodynamics is a topic that is very notation intense, but the notation is very helpful as a check on our assumptions and our mathematics. Additionally, in this module we will refresh our understanding of some common thermodynamic properties.

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6件のビデオ (合計69分), 1 reading, 1 quiz
6件のビデオ
01.02 - Drivers for Changing the Way We Use Energy9 分
01.03 - The Units of Energy and Power and the Sectors of Energy Supply and Demand13 分
01.04 - Defining Open and Closed Systems12 分
01.05 - Thermodynamic Properties9 分
01.06 - Conservation of Energy for Closed Systems16 分
1件の学習用教材
Help us learn more about you!10 分
1の練習問題
Week 156 分
2
2時間で修了

Week 2

In this module, we will get started with the fundamental definitions for energy transfer, including the definitions of work transfer and heat transfer. We will also show (by example) how state diagrams are valuable for explaining energy transfer processes. Then, we have all the tools we need to define the 1st Law of Thermodynamics also called the Conservation of Energy. Your second assignment will emphasize these principles and skills.

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6件のビデオ (合計85分), 1 quiz
6件のビデオ
02.02 - Example: the Work Required to Compress Air17 分
02.03 - The First Law of Thermodynamics for a Closed System10 分
02.04 - Heat Transfer9 分
02.05 - Phase Diagrams20 分
02.06 - 2D Phase Diagrams17 分
1の練習問題
Week 228 分
3
2時間で修了

Week 3

In this module, we introduce our first abstract concepts of thermodynamics properties – including the specific heats, internal energy, and enthalpy. It will take some time for you to become familiar with what these properties represent and how we use these properties. For example, internal energy and enthalpy are related to temperature and pressure, but they are two distinct thermodynamic properties. One of the hardest concepts of thermodynamics is relating the independent thermodynamic properties to each other. We have to become experts at these state relations in order to be successful in our analysis of energy systems. There are several common approximations, including the ideal gas model, which we will use in this class. The key to determining thermodynamic properties is practice, practice, practice! Do as many examples as you can.

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6件のビデオ (合計88分), 1 quiz
6件のビデオ
03.02 - Internal Energy, Enthalpy, and the Specific Heats15 分
03.03 - The Incompressible Substance and the Ideal Gas Models for Equations of State16 分
03.04 - More Outcomes of the Ideal Gas Model15 分
03.05 - Conservation of Mass for Open Systems11 分
03.06 - Steam Turbine Example - Part 114 分
1の練習問題
Week 330 分
4
2時間で修了

Week 4

In this module we introduce the combined application of the Conservation of Mass and the Conservation of Energy for system analysis. We also review the common assumptions for typical energy transfer devices, like heat exchangers, pumps and turbines. Together these components will form the basis for all power plants used around the world.

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6件のビデオ (合計96分), 1 quiz
6件のビデオ
04.02 - Steady State, Steady Flow Devices24 分
04.03 - Another Example: Compressing Water15 分
04.04 - Steam Turbine Example - Part 211 分
04.05 - Example of Cooling a Microprocessor - Starting the Analysis16 分
04.06 - Steam Tables Discussion8 分
1の練習問題
Week 430 分
4.8
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Introduction to Thermodynamics: Transferring Energy from Here to There からの人気レビュー

by TOApr 11th 2018

Great practical information to thermodynamical processes and machines with many calculated examples. A bit light on the fundamental definitions, like entropy, but very good for hands-on work.

by SHAug 15th 2017

Great intro course to thermodynamics. A follow up course with more advanced topics (2nd law, exergy etc.) would definitely be useful. A course at the graduate level would be very welcome!

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Margaret Wooldridge, Ph.D.

Arthur F. Thurnau Professor
Mechanical Engineering, Aerospace Engineering

ミシガン大学(University of Michigan)について

The mission of the University of Michigan is to serve the people of Michigan and the world through preeminence in creating, communicating, preserving and applying knowledge, art, and academic values, and in developing leaders and citizens who will challenge the present and enrich the future....

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