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In diesem Kurs gibt es 6 Module
Building energy systems have a profound impact on the human condition, providing a comfortable, healthy, and productive indoor environment for daily life, while being responsible for significant energy, environmental, and economic costs. Buildings must meet increasingly complex objectives to achieve greater electrification and decarbonization and respond to societal needs for affordable housing and changes in the use of commercial buildings. To design effective solutions and analyze their performance, both engineers and architects need to stand on a solid foundation of engineering fundamentals, which this course intends to impart. After reviewing the motivation, history, and trends in building energy system design, you will learn psychrometric applications and analysis, the climate factors that affect building system design, the application of heat transfer to building heat gains and losses, and the calculation of heating and cooling loads that drive the engineering design of building energy systems, covered in subsequent courses.
Welcome to Engineering Foundation for Building Energy Systems. Building energy systems have a long history of providing a comfortable, healthy, and productive indoor environment, but at significant cost. This module describes typical system configurations and equipment functionality as well as explores design goals and strategies for design optimization for the benefit of occupants, owners, society, and the environment.
Das ist alles enthalten
8 Videos4 Lektüren1 Aufgabe
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8 Videos•Insgesamt 147 Minuten
Specialization Introduction•3 Minuten
Course Introduction•5 Minuten
Building Energy Systems Impacts•24 Minuten
Building Energy Systems Anatomy•30 Minuten
Designing for a Regenerative Future - Part 1•22 Minuten
Designing for a Regenerative Future - Part 2•22 Minuten
Building Energy System Design Optimization - Part 1•23 Minuten
Building Energy System Design Optimization - Part 2•18 Minuten
4 Lektüren•Insgesamt 14 Minuten
Course Updates and Accessibility Support•1 Minute
Module Introduction•5 Minuten
Designing for a Regenerative Future•3 Minuten
Building Energy System Design Optimization•5 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Introduction to Building Energy Systems•30 Minuten
Psychrometric Applications and Performance Comparisons
Modul 2•10 Stunden abzuschließen
Moduldetails
In this module, you will understand the thermodynamic properties of moist air and psychrometric processes and apply these principles to analyze the performance of building energy equipment and systems in response to building zone loads.
Das ist alles enthalten
4 Videos6 Lektüren4 Aufgaben
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4 Videos•Insgesamt 91 Minuten
Psychrometric Properties•21 Minuten
Psychrometric Processes•29 Minuten
Psychrometric Analysis•21 Minuten
System Performance Comparisons•19 Minuten
6 Lektüren•Insgesamt 105 Minuten
Psychrometrics•5 Minuten
Sample Psychrometrics EES Code•10 Minuten
Sample Psychrometrics Python Code•10 Minuten
Psychrometric Properties•20 Minuten
Psychrometric Processes•30 Minuten
Psychrometric Analysis•30 Minuten
4 Aufgaben•Insgesamt 390 Minuten
Psychrometrics Graded Assignment•240 Minuten
Psychrometric Properties•30 Minuten
Psychrometric Processes•60 Minuten
Psychrometric Analysis•60 Minuten
Outdoor Environment
Modul 3•9 Stunden abzuschließen
Moduldetails
Building loads are driven by the external environment in the form of heat and mass exchange with outdoor air and heat gains from solar energy. In this module, you will calculate the impact of solar radiation on building heat transfer and understand the characteristics of design weather days for building energy system design.
Das ist alles enthalten
5 Videos8 Lektüren5 Aufgaben
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5 Videos•Insgesamt 115 Minuten
Connections among Modules 3, 4, and 5•10 Minuten
Solar Position and Angles•32 Minuten
Solar Radiation on Buildings•27 Minuten
Clear Sky Solar Radiation Model•17 Minuten
Weather and Climatic Design Data•28 Minuten
8 Lektüren•Insgesamt 100 Minuten
Outdoor Environment•5 Minuten
Resource: Climatic Design Data•5 Minuten
Sample EES Clear Sky Radiation Code •10 Minuten
Sample Python Clear Sky Radiation Code•10 Minuten
Solar Position and Angles•30 Minuten
Solar Radiation on Buildings•10 Minuten
Clear Sky Solar Radiation Model•10 Minuten
Weather and Climatic Design Data•20 Minuten
5 Aufgaben•Insgesamt 330 Minuten
Outdoor Environment•120 Minuten
Solar Position and Angles•60 Minuten
Solar Radiation on Buildings•60 Minuten
Clear Sky Solar Radiation Model•60 Minuten
Weather and Climatic Design Data•30 Minuten
Components of Building Heat Gain and Loss
Modul 4•11 Stunden abzuschließen
Moduldetails
In this module, you will apply heat transfer methods to calculate both steady state and transient heat transmission through opaque and transparent construction elements as well as through infiltration and ventilation.
Das ist alles enthalten
4 Videos10 Lektüren5 Aufgaben
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4 Videos•Insgesamt 102 Minuten
Heat Transfer through Opaque Building Surfaces•31 Minuten
Transient Heat Transfer through Opaque Building Surfaces•22 Minuten
Windows and Internal Heat Gains•32 Minuten
Infiltration and Ventilation Heat Gains•18 Minuten
10 Lektüren•Insgesamt 180 Minuten
Components of Building Heat Gain and Loss•5 Minuten
Heat Transfer Fundamentals•30 Minuten
Sample EES Transient Heat Conduction Code•10 Minuten
Heat Transfer through Opaque Building Surfaces•20 Minuten
Transient Heat Transfer through Opaque Building Surfaces•45 Minuten
Windows and Internal Heat Gain•20 Minuten
Infiltration and Ventilation Heat Gain•20 Minuten
5 Aufgaben•Insgesamt 375 Minuten
Components of Building Heat Gain and Loss•90 Minuten
Heat Transfer through Opaque Surfaces•30 Minuten
Transient Heat Transfer through Opaque Surfaces•180 Minuten
Windows and Heat Gains•45 Minuten
Ventilation Heat Gains•30 Minuten
Heating and Cooling Loads
Modul 5•8 Stunden abzuschließen
Moduldetails
In this module, you will apply methods from the previous modules to calculate design heating and cooling loads on building energy systems using alternative calculation strategies. You will analyze the impact of key variables on the design loads.
Das ist alles enthalten
4 Videos6 Lektüren3 Aufgaben
Infos zu Modulinhalt anzeigen
4 Videos•Insgesamt 103 Minuten
Design Heating Load Analysis•16 Minuten
Heat Balance Method using Thermal Network•37 Minuten
This final exam comprehensively tests your understanding of all five modules of this course through a set of both conceptual and quantitative questions. Specifically, you can expect 11 multiple-choice conceptual and 3 quantitative questions. Some of the conceptual questions will involve simple arithmetic calculations, while for the quantitative questions, you will need to employ your computational tools that you developed for a) the Module 3 graded assessment questions on total clear sky solar radiation incident on a vertical building surface, b) the Module 4 graded assessment questions on transient heat transfer through opaque walls using the RC thermal networks, and c) the Module 5 graded assessment questions on design cooling loads. Review these tools and have them ready before you embark on the final exam.
Das ist alles enthalten
1 Lektüre1 Aufgabe
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1 Lektüre•Insgesamt 10 Minuten
Exam Information•10 Minuten
1 Aufgabe•Insgesamt 120 Minuten
Engineering Foundations for Building Energy Systems•120 Minuten
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