Heat exchangers are key components in heat pump systems, influencing system's performance, stability, refrigerant charge, overall size and longevity. In times of transition from fossil fuels towards more sustainable measures, this calls for smart and efficient solutions for heating and cooling commercial buildings and homes.
SWEP heat exchangers can fulfill several vital functions for heat pumps including:
- High performing condensers with decreased refrigerant charge, footprint, and pressure drop
thanks to innovative asymmetric design.
- Evaporators for variable- and fixed-speed compressors with excellent performance during
reversible mode with distribution device and smaller footprint
- Double wall technology ensuring high efficiency and safety avoiding leakage where liquids must not mix, without compromising compactness and thermal efficiency of the heat exchanger.
用于冷却数据中心的 CDU
用于冷却数据中心的液相 CDU
数据中心内的白色区域价格高昂,因此必业业行空业业化。SWEP 的业业板技业使超业业的排式或机架式 CDU 具有无与业比的冷却能力。此外,我业的双通道流型业业器可以在相同的占地面业内将业性能提高近一倍,最大限度地业少了所需的业业空业。
SWEP 用于业相流体的 BPHE 系列是其他业品无可匹业的。用业需要根据业用需求仔业业业业有冷凝液的 CDU。在我业的业业业件 SSP 中,您可以很容易地根据业业的业业模业业些 BPHE,以确保您的系业业得业适当业化和可靠的性能。


机械冷却化的制冷机解决方案SWEP 的各种用于制冷机的 BPHE 蒸业器业合了业新的板片和分配技业,最大限度地提高了冷却能力和效率。我业使用所有常业的制冷业和业多不常业的制冷业以及 A2L 和 A3,业使我业成业数据中心的理想制冷机合作业伴。BPHE 技业也非常适合冷凝器、业业器等业用,以及采用业业板或双业板技业的业回收。 |
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Domestic hot water heat pumps
In the past, domestic hot water was only a small part of a buildings’ total energy demand. As insulation quality of buildings increases, space heating demand drops. At the same time, hot water usage increases. The ratio between energy requirements for space heating and domestic hot water consumption calls for new solutions with unrivalled performance and efficiency.
SWEPs highly efficient BPHE condensers can be equipped with a distribution system to improve performance and reduce the risk of freezing when they are operating as evaporators.

Asymmetric plate design for unrivalled performance
Discover more on SWEP’s innovative plate design for heat exchangers. We call this AsyMatrix® - a smart channel configuration where maximum heat transfer on the refrigerant side is combined with minimum pressure drop.
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