Bowman EC100-5113-2C Pool Heat Exchanger, 10.2 m³/h, 40.00 kW
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Bowman EC100-5113-2C Swimming Pool Heat Exchanger, 10.2 m³/h, 40.00 kW
The Bowman heat exchanger is made with corrosion-resistant copper-nickel tubes and bronze end caps, making it suitable for use in chlorinated water, seawater, or therapeutic and SPA pools. The product is easy to maintain, as the end cap and tube bundles can be easily disassembled for cleaning, which is a unique feature of Bowman's designs. Heat exchangers of this series can also be used for cooling pools in hot climates. In this case, water from a cooling heat exchanger is passed through the heat exchanger tubes instead of water from a boiler or solar panels used to heat pools.
Note: Heat exchangers with stainless steel tubes should not be used in pools with salt water chlorinators.
🔹 Key Advantages
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High power
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Corrosion resistance
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Ultra-fast heating
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Easy maintenance
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Universal installation
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Suitable for private and commercial pools
Technical Specifications
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Dimensions: 455x110 mm
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Heat Transfer at 82°C: 40.00 kW
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Heat Transfer at 62°C: 22.00 kW
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Pool Volume: 80 m³
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Boiler Water Flow: 2.4 m³/h, 40 l/min
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Max. Pool Water Flow: 10.2 m³/h, 170 l/h
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Boiler/Pool Connection: 3/4 "BP / 50mm
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Max. Operating Pressure: 6 bar
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Max. Operating Temperature: Up to 110°C
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Heat Exchanger Type: Tubular
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Installation Type: Horizontal, vertical
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Heating Element: Incoloy
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Material: Bronze, copper, nickel
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Weight: 5 kg
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Application Type: Private and commercial pools
For which pools is it suitable?
The Bowman heat exchanger is recommended for:
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Private pools
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Commercial pools in hotels
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SPA complexes
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Sports and wellness centers
For distributors and dealers
We offer special cooperation conditions for B2B clients:
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Technical consultation
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Wholesale prices
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Fast shipping
Contact us for an individual commercial offer.
Frequently asked questions
Where is this model used?
The model is ideal for residential and commercial pools, as it heats water quickly and saves on fuel costs.
How is this heat exchanger constructed?
The design operates on the principle of tube-in-tube. Inside a robust cylindrical casing is a bundle of many thin tubes. Hot water from the boiler flows through some tubes (primary circuit), while pool water flows around them (secondary circuit), absorbing heat.
Why does the water heat up faster in it compared to analogues?
Bowman uses a greater number of heat exchange tubes inside the casing than many other manufacturers. This increases the contact area between the two media, so the pool heats up significantly faster, saving you money.
Frequently Asked Questions
Where is this model used?
How is this heat exchanger designed?
Why does the water in it heat up faster than its counterparts?