Air and Ground Source Heat Pumps

Overview

Heat pumps are the most efficient way to heat a home using electricity. Unlike a boiler which burns fuel to generate heat, a heat pump moves heat from one place to another — extracting it from the air or ground outside and transferring it into your home. For every unit of electricity they use, heat pumps typically produce three to four units of heat, making them significantly more efficient than any direct electric heating system.

Heat pumps produce no direct carbon emissions at the point of use. As the electricity grid becomes greener through the growth of renewable energy, their carbon footprint reduces automatically over time.

Why heat pumps are efficient and eco-friendly

Heat pumps can produce more energy than the electricity they consume, because they use electricity to move heat, not to generate it. The ratio of the heat output to the electricity input is called the coefficient of performance (COP). The higher the COP, the more efficient the heat pump is. For example, a heat pump with a COP of 4 can produce 4 kWh of heat for every 1 kWh of electricity it uses.

Heat pumps can also reduce carbon emissions, because they use electricity instead of gas to heat the building. Electricity can be generated from renewable sources, such as wind, solar, or hydro, which do not emit carbon dioxide. Gas boilers, on the other hand, burn natural gas, which is a fossil fuel that releases carbon dioxide into the atmosphere, and is the major component to climate change.

Types of heat pumps

There are different types of heat pumps for households looking to upgrade their heating system. The most common types are:

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Quick Heat Pump Comparison

Air Source Heat PumpGround Source Heat Pump
Less ExpensiveMore expensive, particularly when boreholes are necessary
Requires an outdoor unitRequires an indoor unit
Minimal outdoor space needExtensive digging or larger outdoor space needed
Lower heating efficiencyHigher heating efficiency

Air Source Heat Pumps (ASHP)

What is an air source heat pump?

An air source heat pump (ASHP) is a device that can heat your home and water by taking heat from the air outside. It can work even when it is very cold outside, and it is better for the environment and more efficient than a gas boiler. An ASHP can help you save money on your energy bills, reduce your carbon emissions, and access renewable energy incentives.

How does an air source heat pump work?

An ASHP uses a refrigerant, a fluid that can switch between liquid and gas states, to transfer heat from one place to another. The refrigerant moves in a closed loop, going through four main parts: an evaporator, a compressor, a condenser, and an expansion valve.

    • The evaporator takes heat from the air outside and turns the refrigerant into a low-pressure gas.
    • The compressor raises the pressure and temperature of the refrigerant gas, making it hotter than the air or water inside the house.
    • The condenser gives the heat from the refrigerant gas to the air or water inside the house, and changes the refrigerant back into a liquid.
    • The expansion valve lowers the pressure and temperature of the refrigerant liquid, making it colder than the air outside.

The cycle repeats, constantly moving heat from outside to inside. The heat pump can also do the opposite, cooling the house by moving heat from inside to outside.

What are the benefits of an air source heat pump?

Reduce Energy Bills

Reduce Energy Bills If you replace an electric, oil, LPG, or coal system

Lower Carbon Emissions

Lower Carbon Emissions Uses electricity instead of gas to heat your home and water

Provides heating and cooling

Provides heating and cooling Depending on the season and preference

Can heat home and water simultaneously

Can heat home and water simultaneously Depending on preference

It can last for 20 years

It can last for 20 years or more with the right maintenance!

Can help you access financial incentives

Can help you access financial incentives such as the Boiler Upgrade Scheme

Read the Real Story

Katherine made the smart switch from a traditional boiler to air source heat pump. Here are the challenges, results and benefits of her project…

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Ground Source Heat Pumps (GSHPs)

A ground source heat pump extracts heat from the ground using a loop of pipes buried either horizontally in trenches or vertically in boreholes. The temperature a metre or more below ground stays relatively stable year-round, typically between 8 and 12 degrees Celsius, which makes GSHPs slightly more efficient and consistent than air source heat pumps.

Horizontal ground loops are laid at depths of 1 to 2 metres and require a significant area of garden — typically around twice the floor area of the property being heated. They are most practical in rural settings with sufficient land.

Boreholes are drilled vertically to depths of between 15 and 200 metres, requiring much less surface area but at a higher cost. An average UK home typically requires one or two boreholes. A ground source heat pump has no outdoor unit – the evaporator and condenser are enclosed in a single indoor unit.

How Much Do Heat Pumps Cost?

Heat pump installation costs vary depending on the type of system, the size of the property, and the complexity of the installation.

Air source heat pumps typically cost between £8,000 and £15,000 installed for a typical home, before any grants. The Boiler Upgrade Scheme provides a grant of £7,500 toward the cost of an air source or ground source heat pump, which significantly reduces the net cost.

Ground source heat pumps are more expensive, typically between £15,000 and £35,000 installed depending on whether horizontal trenches or boreholes are used.

Running costs depend on your existing heating system, your home’s insulation level, and your electricity tariff. Homes replacing oil, LPG, or electric heating typically see the most significant bill savings. Homes replacing gas may see modest savings or broadly similar running costs, though this gap is narrowing as gas prices remain high and heat pump technology improves.

Heat Pump FAQs

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