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Heat exchanger KOSPEL SWP-201 with large-surface coil for heat pumps
KOSPEL SWP-201 with large-surface coil is a heat exchanger engineered for integration with heat pump systems. It functions as an intermediate hydraulic component that separates primary and secondary circuits while transferring thermal energy efficiently between them. The unit is intended for domestic and light commercial heating installations where reliable coil heat exchange and compatibility with heat pump operation are required.
The large-surface coil design increases the available area for heat transfer, improving thermal efficiency without increasing unit footprint. As a separating heat exchanger, the device provides hydraulic separation between the heat pump circuit and the heating loop, which helps prevent cross-contamination of fluids and enables independent flow control and maintenance of each circuit. The construction and flow path are optimized for stable temperature transfer and compatibility with typical heat pump operating conditions.
Install the KOSPEL SWP-201 in the hydraulic circuit between the heat pump (primary side) and the heating distribution system (secondary side), observing correct flow direction and system pressure limits. Connect primary and secondary piping using appropriate fittings and ensure both circuits are filled and vented according to local plumbing practice. Commission the system by gradually bringing the heat pump online, monitoring temperatures and flow rates on both sides to confirm stable heat transfer and absence of leaks. Follow any manufacturer instructions for mounting orientation, allowable operating pressures and temperatures, and required clearances for service access.
For reliable long-term operation, use corrosion-inhibited fluids compatible with heat pump and exchanger materials, maintain recommended flow rates to ensure effective heat transfer, and perform periodic inspections for leaks, scaling, or fouling of the coil surface. When integrating with heat pump controls, allow for independent pump control on each side to optimize efficiency and protect the heat pump from hydraulic disturbances.
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