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Electrify Efficiently: Overcoming Heat Pump Objections (Part 1 of 5)

Heat Pumps are quickly gaining traction as a preferred HVAC and water heating technology. California has a goal for 6 million installed heat pumps by 2030, and state plans indicate that new gas furnace and water heaters will not be permitted after 2030. While the path forward for heat pumps seems clear, the technology is still foreign to most homeowners. To meet the above-mentioned goals, contractors and other industry professionals must arm themselves with the knowledge (and sometimes the data)

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Introduction to Heating and Cooling Load Calculations for Electrification Projects

In this webinar, Judy Rachel will explain what a heating and cooling load calculation is and how it provides essential information for the successful implementation of electrification projects. Beyond providing the essential information for properly sizing a residence's HVAC system, the heating and cooling load calculation informs electrification project design and planning in significant ways. In addition, this presentation will explore the business case for this important planning step within the construction process.   Accurately calculating the heating and cooling

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Electrify Efficiently: Operating a Heat Pump – Best Practices to Minimize Call Backs (Part 2 of 5)

Heat pumps are inherently different than gas furnaces or gas water heaters. Contractors and other industry professionals must take time to educate customers, clients, and others on these differences to ensure optimal customer satisfaction. This webinar will outline best practices for system operation of ducted and ductless mini-splits, unitary heat pumps, and heat pump water heaters. Agenda: Introduction and safety message Heat pump operation: characteristics and differences with gas furnaces or water heaters Adding value to the customer journey Minimizing

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Mechanical Rooms: Strategies for Electrification Retrofits in Homes

For as long as we’ve built homes we’ve been using some kind of combustion to heat them. As a result, our buildings are designed and constructed to safely manage the operation of gas appliances. In this webinar, Dan Perunko of Balance Point Home Performance will look at mechanical rooms as we transition from gas appliances to electric appliances. There is an opportunity for contractors and designers to offer their clients additional efficiencies beyond those offered by the change to electric

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Electrify Efficiently: Electrical Panel Assessments – Examples for Heat Pump Installers (Part 3 of 5)

As more California homeowners begin electrifying their homes, heat pump installers will be faced with the challenge of navigating electrical panel challenges including condition, capacity, fitment, supply chain, etc. With panel and service upgrades being costly and complex, it’s important for practitioners to understand their options for running new circuits. In this session, Electrify My Home will discuss real-world electrical panel scenarios including visual assessments, electrical load calculations, and examples of different solutions to make it work. Agenda: Introduction and

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Practical and Efficient Hot Water Delivery: Meeting Hot Water Demand with Heat Pump Water Heaters

On average Californians consume less water than the residents of other states. Even so there is a need for us to conserve even more water. The construction community has an opportunity to further reduce residential water use in ways that do not feel like conservation to customers. In this class, Dan Perunko of Balance Point Home Performance looks at changing the way hot water is stored and delivered to the tap in residential buildings. The theory behind our approach is

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Optimizing Ducted Heat Pumps for Residential Electrification: Efficiency Comfort and Low Loss Duct Systems

This three hour class  will deal with low loss duct systems. The relevant performance factors are: duct leakage, duct conduction, room by room airflow, and system airflow. We will review design, installation and commissioning details as they relate to duct system performance for each of these performance factors. These performance factors can be applied to both conditioning and ventilation system ducts. We have designed, built and commissioned both retrofit and new construction projects that exemplify the concepts covered in class.

Electrify Efficiently: Home Heat Pumps Done Right – A Case Study (Part 4 of 5)

The path to going all-electric can take many forms. For some, this means upgrading one appliance at a time; for others, it means replacing them all at once and offsetting with on-site solar. Regardless of the timeline, there are some important planning steps that must take place, as well as a continual vision for optimizing efficiency. Join Electrify My Home in this session for a case study of a customer’s electrification journey. You’ll also hear directly from the customer, who

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Optimizing Ducted Heat Pumps for Residential Electrification: Load Calculations, Equipment Selection, System Airflow and Layout

This three hour class will deal with design, equipment choice and layout issues. The relevant performance factors are: system capacity, refrigerant charge and system airflow. We will review design, installation and commissioning details for each of these performance factors. These performance factors can be applied to both conditioning and ventilation system ducts. We have designed, built and commissioned both retrofit and new construction projects that exemplify the concepts covered in class. Course content will include design examples, photos installations, and

Electrify Efficiently: Heat Pump Zoning – Challenges and Solutions (Part 5 of 5)

Zone control is a popular strategy for addressing different climate zones in a home. Many customers and contractors newer to heat pumps are drawn to multi-split systems that utilize a single outdoor unit to run multiple air handlers, but there can be unintended comfort sacrifices if not done carefully. In this webinar we will focus on various approaches to zone control for efficient and comfortable outcomes. We will compare traditional zoning with zone control, multi-split systems, multiple one-to-one systems, and

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