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Couple Geothermal Questions

Top 10 Homeowner Questions About Upgrading to an Efficient HVAC System

A 2025 PowerLines Utility Bill study found that 73% of Americans are concerned with the rising cost of energy bills. Many homeowners are making energy-efficient updates to their homes to combat these rising costs —a neighbor’s old windows replaced, a buddy’s solar panels installed, your brother’s new water heater delivered.  

And what about upgrades to home HVAC systems? Heat pumps have outsold gas furnaces since 2021 and the gap is widening. When it comes to energy efficiency, one heat pump system tops all others—ground source heat pumps (GSHPs), also called geothermal heat pumps (GHPs).  

Sized correctly, GSHPs can achieve efficiencies up to 400% and save up to 70% on heating and cooling costs. They depend less on outside temperatures and require less maintenance than conventional HVAC systems. They do all of this by moving energy between the earth and your home. They burn nothing. 

TAPPING RENEWABLE ENERGY THAT’S STORED IN THE EARTH 

Nearly half of all the solar energy available to us resides just under the earth’s surface as heat. GSHPs move this heat indoors to warm living spaces in the winter and move the heat back into the ground to cool indoor spaces during the summer. From north to south and coast to coast, they keep homes comfortable and save homeowners money year-round. 

Here are 10 common homeowner questions about these systems: 

1. Do GSHPs perform well in extreme temperatures? 

The short answer is yes. GSHPs take advantage of the consistent temperature of the shallow earth (40°-70°F) to exchange air. They keep living spaces comfortable in cold and warm temperatures—from a mountain ski chalet in Utah’s harsh climes to a sunny retreat in West Palm Beach.

2. How much can I save by switching from conventional HVAC to a ground source heat pump?   

The International Ground Source Heat Pump Association (IGSHPA) reports that homeowners generally can expect to save 50% to 70% in operating costs over other heating systems. They’ll save 30% to 40% in cooling compared to air conditioners and air-source heat pumps. 

3. What can I expect in terms of long-term savings? 

It costs more to install a GSHP system than conventional HVAC, but the energy savings begin immediately. Payback for the system usually falls between 5-10 years while the energy savings continue.  

4. Is my property even suitable for a GSHP? 

Homes throughout most of the US are suitable. A qualified GSHP installer can assess your property to determine its suitability for a GSHP system and the best configuration of looped pipes for your yard. Considerations will include soil and ground conditions, geological constraints, existing landscaping features, local regulations, zoning restrictions, and more. 

5. How long does installation take?  

The installation of a ground-source heat pump (GSHP) system typically takes two to four weeks, depending on the size of the system and its complexity, the configuration of looped pipes (horizontal or vertical), site conditions, and local permitting processes. The driller’s schedule will factor into installation time if the system requires drilling. 

6. What maintenance requirements can I expect? 

GSHP systems are famously low maintenance compared to traditional HVAC systems.  Annual inspections by a skilled technician will likely include: 

  • Checking for proper refrigerant levels. 
  • Cleaning the heat exchanger. 
  • Inspecting the ground pipes for potential leaks or pressure issues. 

The pump for the water-filled looped pipes will also require periodic inspection and servicing. 

7. What is the lifespan of a GSHP system? 

The U.S. Department of Energy estimates the lifespan of a GSHP to be 25 years for the indoor components and 50+ years for the buried looped pipes. 

8. What kind of financing help can I tap to cover installation costs? 

State and local incentives, utility company rebates, and energy-efficient financing programs can sweeten the deal. 

9. Will the existing ductwork in my home work with a new geothermal system? 

Yes! In most retrofits of a geothermal heat pump in a home, the air handler of a forced-air heat pump can be attached to your existing duct work with very little modification needed. A certified contractor will be able to run an evaluation of your existing system to make sure everything will work optimally.  

If your home uses radiant baseboards or other radiant heating emitters, there are geothermal heat pumps available that can work with those distribution systems, as well! 

10. Who can answer questions about my potential transition to a GSHP system? 

A licensed installer in your area can answer critical questions about right-sized systems, drilling or trenching for loop installation, warranties, local regulations, and more. The geothermal experts at Enertech are glad to put you in touch with an experienced and knowledgeable installer. 

Tim Wright Enertech CEO

ENERTECH GLOBAL, LLC NAMES TIM WRIGHT CHIEF EXECUTIVE OFFICER 

Enertech Global is pleased to announce industry veteran Tim Wright as its new chief executive officer. A familiar face to colleagues and customers alike, Wright joined Enertech in 2011 as sales manager. He later served as VP of sales and then as chief strategy officer. Most recently, he filled the role of chief operating officer.

For nearly 15 years, Wright has helped to shape Enertech’s growth, culture, and long-term strategy. Along the way, he forged a reputation for steady leadership, collaborative spirit, and deep commitment to Enertech’s mission.  

Forward thinking, growth minded 

Enertech co-founder and former President and CEO Steve Smith credits Wright with helping Enertech achieve “primary provider” status among residential developments that choose all-geothermal heating and cooling. This expansion to multi-family and mixed-use communities continues to present growth opportunities. 

On the product front, Wright advanced key initiatives like Enertech’s air-to-water heat pump and its unique variable-speed water-to-water system. These, coupled with meeting the HVAC demands of large residential developments, position Enertech to transform the industry.  

Wright believes Enertech’s increased focus on affordability will help fuel that transformation going forward. He champions initiatives that disrupt the geothermal market by connecting homeowners at all income levels with geothermal heating and cooling.  He foresees geothermal “finally being more mainstream and more affordable for all.” 

Great people behind great products 

Upon his appointment, Wright expressed gratitude for the opportunity to continue the customer-focused journey, begun by Enertech’s founders. He values servant leadership and sees his responsibility at the helm as empowering Enertech’s team to create the best possible customer experience. He knows that great products start with great people. Enertech’s family culture and team dynamic will play an essential part in days to come.   

“We are going to revolutionize heating and cooling homes,” he says.  

With much of his career spent alongside the people he now leads, Wright harbors a deep knowledge of Enertech and a genuine appreciation for his team’s potential and productivity.  

“If you have to work, we want you to enjoy the work,” Wright tells his colleagues. “I truly want to see the best in people and get the best out of people.” 

HVAC Maintenance

Maintenance Costs and Your New Geothermal Heat Pump: What to Expect 

Geothermal heat pumps require less maintenance than gas, oil-fueled systems, and air-to-water heat pumps. 

Here’s a quick look at why “low maintenance” applies to geothermal heat pumps. 

  1. Fewer moving parts – Geothermal heat pumps use fewer moving parts compared to conventional heating systems. Fewer moving parts means less wear and tear, without compromising efficiency. 
  1. Rust-free componentsMade of PEX pipe, the outdoor/underground components of geothermal systems are unsusceptible to rust and corrosion that shorten the lives of outdoor compressors in traditional air conditioner and modern air source heat pumps. 
  1. Stable operating conditions – Geothermal systems operate in relatively stable temperature conditions. The ground temperature several feet below the surface remains consistent throughout the year, which means the system doesn’t experience the thermal stress and extreme temperature fluctuations that conventional systems experience. 
  1. No combustion process – Conventional heating systems burn fuel. The resulting soot, ash, and other byproducts often necessitate regular cleaning and maintenance. Rather than burning fuel to create energy, geothermal systems transfer energy in the form of heat from one place to another. 
  1. Reduced electrical load – A geothermal heat pump doesn’t have to work as hard as an air-source heat pump does, reducing wear. 

These factors also lead to a longer lifespan for your geothermal system. An underground loop can last 50 years or more. Geothermal heat pumps can last between 20 and 25 years. 

Maintenance to Expect  

What maintenance will your geothermal system require? Here’s a rundown: 

If your unit has an air handler, replace the filter every 1-3 months. Radiant heating requires no filter change. 

An annual inspection of your system by a professional is a good idea. This should include: 

  • Checking the unit’s refrigerant level, coils, and electrical connections. 
  • Checking and calibrating your thermostat. 
  • Checking the pressure in your ground loops to ensure efficient heat transfer. 

Additional Tips 

  • Monitor your energy bills and system performance. Unusual increases in energy consumption can indicate a problem. 
  • Pay attention to any unusual sounds coming from the heat pump or ductwork, as these can signal maintenance needs. 

While the day of “no maintenance” home heating and cooling is yet to come, geothermal systems are pointed in the right direction. Reduced maintenance costs play an important part in system savings and convenience. 

Ready to enjoy low-maintenance comfort for decades to come? Discover how a geothermal heat pump can save you time, money, and hassle while delivering reliable year-round comfort. 

Modest Maintenance Faculty Models Big Energy and Cost Savings with Air-Source Heat Pump

Saving is the name of the game for New York’s Department of Environmental Conservation (DEC). Staff at its Green Island Maintenance Facility take saving all in stride—from helping unprepared hikers who lose track of time to housing a rattlesnake evicted from a vacation home. Lately, they have taken saving energy and money in stride, too, and ended up on the local news for doing so. 

Green Island may be one of the smallest towns in New York, but its DEC facility turned heads when staff unveiled an air-to-water heat pump that models two characteristics commercial operations increasingly value: 

  • Less reliance on fossil fuels associated with heating and cooling buildings, and 
  • Greater cost savings both now and into the future. 

MEETING NEW ENERGY REQUIREMENTS: THE CHALLENGE AGENCIES FACE  

The heat pump in the Green Island facility will deliver up to 40% savings in operating costs and up to 50% greater energy efficiency than its oil-fueled counterparts. It will also help the department address a challenge that state agencies nationwide increasingly face—meeting bold requirements to electrify and decarbonize. 

New York’s Climate Act requires that the state achieve a 40% reduction in greenhouse gas emissions by 2030 and an 80% reduction by 2050. 

Commercial operations account for 75% of energy used in the buildings they occupy, and HVAC systems play a major role in operations. Efficient fossil-free heat pump systems represent substantial opportunities for big savings. 

AIR-TO-WATER TECHNOLOGY 

The DEC’s Green Island Maintenance Facility chose our Advantage air-to-water heat pump, made right here in America. 

Air-to-water heat pumps require no fossil fuel combustion. They transfer heat from the outdoor air to indoor water that warms interior spaces via radiators or underfloor heating. The process can be reversed for cooling or connected to an air handler for cooling the air in the building. 

Installation of the heat pump system at the Green Island facility was integrated into an existing radiant floor heating system. It can accommodate the addition of air conditioning for office spaces. 

BUSINESS SAVINGS 

Air-to-water heat pumps like our Advantage provide significant savings to businesses: 

  • They deliver up to three times more energy than the electrical energy they consume. 
  • With fewer moving parts, they require less maintenance. 
  • They eliminate the risk of gas leaks or carbon monoxide poisoning from fuel-fired systems. 
  • They produce no onsite emissions. 

Contact Enertech today to learn more about saving energy and money with an air-source heat pump in your business.

Sick Buildings That Make Us Sick Too: Do You Live or Work in One?

It’s been a tough day for Jerri—nausea, irritated eyes, scratchy throat, headache, fatigue. She can’t wait to leave the office and head straight to bed. Remarkably, when she pulls into her driveway 25 minutes later, she feels fine. Others who work in Jerri’s building suffer the same symptoms at work and welcome the same relief once they leave. 

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Builders Talk Shop: Creating Communities That Meet Homeowner Desires for Sustainable Lifestyles

Risk takers and dream makers—builders in today’s world function as both. When shop talk turned to meeting the needs of today’s environmentally conscious homebuyers, two builders of residential communities shared their experiences installing ultra-efficient ground source heat pumps (a.k.a. geothermal heat pumps) in homes. 

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