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Home » Wet Underfloor Heating Pipe Spacing Explained: 100mm vs 150mm vs 200mm Centres

Wet Underfloor Heating Pipe Spacing Explained: 100mm vs 150mm vs 200mm Centres

Wet Underfloor Heating Pipe Spacing

Pipe spacing, also known as pipe centres, is the distance from the centre of one underfloor heating pipe to the centre of the next. It has a direct effect on how much heat can be transferred into a room, how evenly the floor warms up and how efficiently the system operates.

Get the spacing too wide for a room’s heat demand and you may struggle to achieve the required room temperature, even with the thermostat turned up. Make it unnecessarily tight and you’re using more pipe and potentially increasing installation costs without gaining any real benefit. So, what pipe spacing should you use for wet underfloor heating?

Wet Underfloor Heating Pipe Spacing Guide

Pipe spacingApprox. pipe per m²Typical application
100mm10m/m²Higher heat-loss areas, bathrooms, conservatories and rooms with large areas of glazing
125mm8m/m²Higher-output applications where 100mm isn’t required but 150mm may be too wide
150mm6.7m/m²Common choice for installations
living rooms, kitchens, bedrooms
Heat pump and boilers
200mm5m/m²Well-insulated, lower heat-loss rooms where the required heat output can be achieved easily


The general principle is straightforward: closer pipe spacing puts more pipe under each square metre of floor, allowing more heat to be delivered without necessarily increasing the water temperature. Wider spacing uses less pipe and can reduce material and installation time, but the trade-off is lower heat output and potentially a less even floor temperature. For more information on the different systems available, see our wet underfloor heating pipe and fittings.

Choosing Underfloor Heating Pipe Spacing by Room

Bathrooms and en-suites – 100mm

Bathrooms and ensuites often benefit from tighter pipe spacing. Tiled floors can feel cold underfoot, while bathrooms may also have higher heat-loss requirements depending on their size, insulation and ventilation. 100mm centres are commonly used where additional heat output and floor comfort are required.

Kitchens, living rooms and bedrooms – 150mm

For many reasonably insulated UK homes, 150mm centres provide a good balance between heat output, pipe usage and installation cost. This is a common spacing for kitchens, living rooms and bedrooms, although the correct spacing should always be based on the individual room’s heat-loss requirement.

Conservatories, garden rooms and large areas of glazing – 100mm to 150mm

Rooms with large areas of glazing, external doors or other significant heat-loss areas can require more heat output. A design may use 100mm spacing throughout the room, or tighter spacing around the perimeter and 150mm through the main floor area, depending on the calculated heat loss.

Well-insulated rooms – 200mm

A well-insulated new-build room with relatively low heat demand may be suitable for 200mm centres. Using wider spacing can reduce the amount of pipe required, but it should only be used where the calculated heat output confirms that the room can still reach the required temperature.

Pipe Spacing with different Heat Sources

Pipe spacing and flow temperature are closely linked, and both affect the heat output of your system. UFH systems using a gas boilers normally run between 45/50°C and typically work effectively with 150–200mm pipe spacing in well-insulated properties, while higher heat-loss areas may require tighter spacing.

Low temperature heat sources running between 35/45°C, operate most efficiently, so tighter pipe spacing is often used to increase heat output without increasing the water temperature. 100–150mm spacing is common for heat-pump systems, although the correct spacing should always be determined by the heat-loss requirement of the room.

The important point is that pipe spacing and flow temperature should be designed together. A system designed around a higher flow temperature may not provide sufficient output if the property is later converted to a heat pump. For more information about choosing a wet UFH system, see our Water Underfloor Heating Buying Guide.

Maximum Pipe Loop Length

Pipe spacing also affects how much pipe is required for a single circuit, which is important when deciding how many circuits and manifold ports a room needs. As a general guide, 16mm UFH circuits are typically kept to around 100–105 metres, including the pipe runs back to the manifold.

Tighter spacing uses more pipe per square metre, so larger rooms using 100mm centres may need to be split across multiple circuits to stay within the recommended loop length. This is one of the reasons it’s important to calculate the pipe layout before deciding which manifold to use.

Common Underfloor Heating Pipe Spacing Mistakes

  • Not considering all factors
    Think about the heat source, heat loss, and room use.
  • Designing for a boiler and then switching to a heat pump
    A 200mm layout designed around a higher flow temperature may not provide enough output when the system is later operated at the lower flow temperatures typically used by a heat pump. If you’re considering a heat pump, it’s worth designing the UFH system with this in mind from the beginning.
  • Ignoring the floor covering
    A system designed without considering the final floor covering can struggle to provide the required heat output once the flooring is installed. Carpet, underlay, timber and other floor finishes all have different thermal properties.
  • Not checking loop length
    Using tighter spacing means more pipe is required per square metre. If this isn’t considered during the design stage, a room may require more circuits and manifold ports than originally expected.

Heat loss and Pipe Spacing

One of the biggest mistakes when designing underfloor heating is choosing pipe spacing without knowing how much heat the room actually needs. The heat output of the UFH system needs to meet the heat loss of the room. This is particularly important in older or poorly insulated properties, rooms with large areas of glazing, extensions and other areas with higher heat-loss requirements.

A room-by-room heat loss calculation or survey is always recommended before finalising the UFH design. This allows the correct pipe spacing, flow temperature and circuit layout to be selected for each room, rather than relying on a rule of thumb.Its

Water underfloor heating Pipe Spacing FAQs

150mm spacing puts approximately one-third more pipe under each square metre than 200mm spacing.

This allows greater potential heat output at the same water temperature and can be useful for higher heat-loss rooms or systems operating at lower flow temperatures.

Yes. Different rooms can use different pipe spacing depending on their individual heat-loss requirements.

For example, a bathroom could use 100mm, a living room 150mm and a well-insulated bedroom 200mm.

The circuits can all operate from the same wet UFH system and manifold, provided the system has been correctly designed and balanced.

Indirectly, yes.

If pipe spacing is too wide for a room’s heat loss, the system may need to operate at a higher flow temperature to compensate. This can increase energy consumption and is particularly important with heat pumps, where efficiency generally improves when lower flow temperatures can be maintained.

On the other hand, using unnecessarily tight spacing increases the amount of pipe and installation required without necessarily providing a worthwhile benefit.

The aim is to use the right spacing for the room, rather than simply using the tightest possible layout.


150mm centres are a common starting point for heat-pump systems, while higher heat-loss rooms may require 100mm or 125mm spacing.

However, there is no single spacing that is correct for every heat-pump installation. The required spacing should be calculated based on the room’s heat loss, floor construction, floor covering and required flow temperature.

Get Your Underfloor Heating Design Right

Choosing between 100mm, 125mm, 150mm and 200mm pipe spacing isn’t simply a matter of choosing the tightest or cheapest option. The correct spacing depends on the room’s heat loss, insulation, floor construction, floor covering and heat source. A properly designed system can deliver the required heat output while avoiding unnecessary pipe, circuits and installation costs.

Not sure which spacing your project needs?
Send your floor plans to VPS Underfloor Heating and our design team can help determine the appropriate pipe spacing and system layout, along with a detailed quotation for the required materials.

Layout design for a wet underfloor heating system.

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