This course provides a comprehensive exploration of building decarbonization, equipping professionals with the knowledge and strategies needed to achieve sustainable, energy-efficient buildings. Through expert-led modules, participants will learn how to use energy efficient, electrification, renewable energy, low embodied carbon materials, and market-based approaches in the design of the next generation of high performance buildings. Featuring case studies from the US, Asia, the EU, and global leaders, the course highlights practical approaches, emerging technologies, and policy frameworks to guide building managers, developers, and policymakers toward impactful, scalable solutions for a low-carbon future. The course is taught by industry veterans and global experts from Stanford including world famous Amory Lovins.
Learn the core principles of decarbonization, including the differences between operational and embodied carbon, the financial and regulatory drivers behind sustainability efforts, and the risks of inaction.
Das ist alles enthalten
1 Video8 Lektüren1 Aufgabe
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1 Video•Insgesamt 6 Minuten
Why building decarbonization matters•6 Minuten
8 Lektüren•Insgesamt 34 Minuten
Before we begin•8 Minuten
Why decarbonization matters today•4 Minuten
Tracking the carbon story of buildings•2 Minuten
Decarbonizing embodied carbon•4 Minuten
Decarbonizing operational carbon•4 Minuten
Future impacts on building design and construction•1 Minute
Inside Infosys: a climate leadership story from India (Audio)•6 Minuten
Conclusion•5 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Check your knowledge (5 questions)•30 Minuten
Designing for energy efficiency: harnessing innovative building design to lower operational carbon
Modul 2•2 Stunden abzuschließen
Moduldetails
Investigate the evolution and future of building energy efficiency, and examine how modern buildings use significantly less energy than their historical counterparts.
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2 Videos21 Lektüren1 Aufgabe
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2 Videos•Insgesamt 15 Minuten
Integrative design for deep energy efficiency•7 Minuten
Elements and examples of deep energy-efficient design•8 Minuten
21 Lektüren•Insgesamt 60 Minuten
Welcome!•1 Minute
The lighting transition: a powerful example of energy efficiency•3 Minuten
Systems, standards, and integration•3 Minuten
Looking ahead and thinking systemically•3 Minuten
Architectural strategies for energy efficiency•1 Minute
Strategy 1: Building orientation and massing•2 Minuten
Strategy 5: Exterior shading and light shelves•2 Minuten
Strategy 6: Improved insulation•2 Minuten
Strategy 7: Tight building envelope•1 Minute
Strategy 8: Thermal mass•3 Minuten
Strategy 9: Sufficient space for building systems•1 Minute
Strategy 10: Integrated design•1 Minute
The RMI Innovation Center: where architectural design drives building performance (Audio)•6 Minuten
The power of light: optimizing daylighting and lighting for energy efficiency•3 Minuten
Daylighting fundamentals: optimizing natural light for energy efficiency•7 Minuten
Efficient electric lighting fundamentals•4 Minuten
The importance of smart lighting design (Audio)•7 Minuten
Conclusion•5 Minuten
1 Aufgabe•Insgesamt 40 Minuten
Check your knowledge (7 questions)•40 Minuten
HVAC innovations: optimizing system performance for maximum impact
Modul 3•2 Stunden abzuschließen
Moduldetails
Examine advanced strategies for optimizing HVAC systems, focusing on energy-efficient heating, cooling, and distribution methods, while gaining insights into the latest technologies and case studies that drive sustainability and reduce operational carbon in building management.
Das ist alles enthalten
1 Video19 Lektüren1 Aufgabe
Infos zu Modulinhalt anzeigen
1 Video•Insgesamt 6 Minuten
Impact of HVAC systems on sustainability•6 Minuten
19 Lektüren•Insgesamt 55 Minuten
Welcome!•1 Minute
The path to energy-efficient cooling and heating•2 Minuten
Sources of and cooling and heating•1 Minute
Category 1: Traditional passive cooling systems •3 Minuten
Tamedia office building, Zurich, Switzerland: a model of sustainable innovation and energy efficiency•2 Minuten
Smarter heating and cooling for sustainable buildings (Audio)•7 Minuten
Importance of heating and cooling distribution systems - fans and pumps•1 Minute
Conventional distribution systems•4 Minuten
Low energy distribution systems•4 Minuten
Low energy distribution systems (Continued)•5 Minuten
Designing for impact: Lee Eng Lock’s vision for super low-energy pumping •1 Minute
The bottom line: why distribution systems make or break efficiency goals (Audio)•6 Minuten
Conclusion•5 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Check your knowledge (5 questions)•30 Minuten
Electrification: powering the future of low-carbon buildings
Modul 4•2 Stunden abzuschließen
Moduldetails
Gain a deeper understanding of how electrification reduces operational carbon, enhances efficiency, and supports the transition to renewable energy in building management, and examine the latest technologies and energy-efficient solutions for space heating, water heating, and cooking.
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2 Videos19 Lektüren1 Aufgabe
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2 Videos•Insgesamt 11 Minuten
How hybrid systems enable building decarbonization•5 Minuten
Heat pumps in action: large-scale energy efficiency•6 Minuten
19 Lektüren•Insgesamt 83 Minuten
Welcome!•1 Minute
How to electrify buildings•6 Minuten
Why electrify buildings?•8 Minuten
Electrification excellence in action: lessons from the Exelixis Corporate HQ•8 Minuten
Why heat pumps are central to the future of sustainable buildings (Audio)•7 Minuten
An introduction to heat pumps and how they work•6 Minuten
Heat sources•3 Minuten
Cost and efficiency in electric heating•3 Minuten
Types of heat pumps and their applications•3 Minuten
Affordability - hybrid approach to boiler replacement•2 Minuten
Key considerations for heat pump deployment•3 Minuten
Heat pumps for domestic hot water•3 Minuten
The transformational impact of multi-use heat pumps (Audio)•6 Minuten
The energy and health impacts of cooking•5 Minuten
Induction cooking•4 Minuten
The bigger picture: equity, infrastructure, and policy•2 Minuten
The power of induction: revolutionizing energy use in buildings (Audio)•6 Minuten
Conclusion•5 Minuten
1 Aufgabe•Insgesamt 40 Minuten
Check your knowledge (7 questions)•40 Minuten
Renewable energy and energy storage: decarbonizing building operations with advanced energy solutions
Modul 5•2 Stunden abzuschließen
Moduldetails
Examine the integration of renewable energy and storage systems in buildings as a crucial step in achieving operational decarbonization.
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1 Video16 Lektüren1 Aufgabe
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1 Video•Insgesamt 6 Minuten
Energy solutions in context: how needs, finances, and location shape renewable energy decisions•6 Minuten
16 Lektüren•Insgesamt 62 Minuten
Welcome!•1 Minute
How solar panels power the shift to affordable, low-carbon buildings•3 Minuten
Components of solar photovoltaic systems•2 Minuten
Residential vs Commercial building PV systems and sizing•3 Minuten
Selling power back to the grid•4 Minuten
St. Peter Apartments New Orleans, LA: affordable, all-electric, and net zero•4 Minuten
Solar energy’s role in decarbonization (Audio)•7 Minuten
Renewable energy from the grid•5 Minuten
Credits, offsets, and making the best choice for clean energy•5 Minuten
Advancements in batteries•3 Minuten
Types of batteries•2 Minuten
Why battery storage in buildings?•4 Minuten
Resilience in action: how batteries keep St. Peter Apartments running•4 Minuten
Banking on batteries: how Officeworks Warana cuts costs with solar power and battery storage•3 Minuten
Why grid-sourced renewable energy and storage matter for decarbonization (Audio)•7 Minuten
Conclusion•5 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Check your knowledge (5 questions)•30 Minuten
Embodied carbon demystified: reducing carbon footprints through smart construction choices
Modul 6•2 Stunden abzuschließen
Moduldetails
Review how structural system and building material selection impact a building’s embodied carbon, the role of building reuse in carbon reduction, and the tools available to assess and manage embodied carbon.
Das ist alles enthalten
1 Video26 Lektüren1 Aufgabe
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1 Video•Insgesamt 6 Minuten
Innovations in low embodied carbon•6 Minuten
26 Lektüren•Insgesamt 88 Minuten
Welcome!•1 Minute
What is embodied carbon?•4 Minuten
Sources of embodied carbon •6 Minuten
Strategies for reducing embodied carbon•7 Minuten
Implementation in practice•2 Minuten
Global policy and market trends•2 Minuten
Emerging innovations•1 Minute
Professional implications•2 Minuten
Alternative structural materials: LC3 cement (Audio)•9 Minuten
The business case for building reuse•3 Minuten
Adaptive reuse strategies•3 Minuten
Quantifying carbon savings•1 Minute
Analyzing carbon impacts: reuse vs. new construction•2 Minuten
The French RE2020 example•2 Minuten
Technical and cultural challenges•1 Minute
Reusing residential buildings•1 Minute
Global perspectives•1 Minute
Addressing embodied carbon in the AIA headquarters renovation•5 Minuten
How reusing buildings accelerates our path to decarbonization (Audio)•8 Minuten
Tools for calculating embodied carbon (with a practitioner’s comparison)•4 Minuten
Key metrics and benchmarking (and how to compare apples to apples)•3 Minuten
Why measurement unlocks management•4 Minuten
Measuring embodied carbon (Audio)•8 Minuten
Conclusion•2 Minuten
1 Aufgabe•Insgesamt 40 Minuten
Check your knowledge (7 questions)•40 Minuten
The business of decarbonization: developer and financial perspectives on building decarbonization
Modul 7•2 Stunden abzuschließen
Moduldetails
Examine the business case for building decarbonization, particularly through the lenses of developers and building owners, and learn about strategies for making decarbonization both financially viable and impactful in the long term.
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2 Videos14 Lektüren1 Aufgabe
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2 Videos•Insgesamt 16 Minuten
Reducing initial costs for long-term decarbonization•8 Minuten
The business of building decarbonization•8 Minuten
14 Lektüren•Insgesamt 46 Minuten
Welcome!•1 Minute
Introduction to decarbonization in real estate•1 Minute
The decarbonization journey: more than just compliance•2 Minuten
Overcoming the "split incentive" barrier•3 Minuten
Alternative lease arrangements: the power of green leases•4 Minuten
The financial benefits of building a decarbonized future•4 Minuten
The financial case for decarbonized buildings (Audio)•7 Minuten
The decarbonization imperative: beyond the "why" to the "how"•1 Minute
Strategies for affordability: making decarbonization accessible•4 Minuten
Financed energy efficiency and renewables: unlocking capital•3 Minuten
Strategies for management: navigating stakeholder dynamics•4 Minuten
Prioritization framework for decarbonization initiatives•4 Minuten
Case Study: making the business case for decarbonization•6 Minuten
Conclusion•2 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Check your knowledge (5 questions)•30 Minuten
Your building decarbonization action plan
Modul 8•1 Stunde abzuschließen
Moduldetails
In this final activity, you will demonstrate your understanding and application of building decarbonization principles by evaluating a fictional building that is underperforming on key sustainability goals and propose climate-appropriate, actionable strategies for improvement.
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3 Lektüren
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3 Lektüren•Insgesamt 53 Minuten
Wrap-up and continue learning•8 Minuten
Your building decarbonization action plan: What to expect•25 Minuten
Building decarbonization action plans by Peter Rumsey•20 Minuten
The Leland Stanford Junior University, commonly referred to as Stanford University or Stanford, is an American private research university located in Stanford, California on an 8,180-acre (3,310 ha) campus near Palo Alto, California, United States.
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