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BMS Controls Articles

Heat Split System: A Comprehensive Guide for Facilities Management

Heat split systems are a cost-effective and efficient way for facilities management teams to maintain a comfortable indoor environment. These systems include an outdoor condenser unit, which houses the compressor and condenser coils, and an indoor air handler, which houses the evaporator coil and fan. Heat split systems are capable of providing both heating and cooling services.

How Heat Split System Works?

Heat split systems work by cycling refrigerant between the outdoor condenser unit and the indoor air handler. The outdoor unit compresses the refrigerant, which increases the pressure and temperature of the gas. The gas travels to the indoor unit to evaporate and absorb heat from the indoor air. The refrigerant then cools as it travels back to the outdoor condenser unit, where the cycle begins again.

Benefits of Using Heat Split System

Facilities management teams can reap numerous benefits from using a heat split system. These systems are energy efficient, which means that they provide both heating and cooling services at a fraction of the cost of traditional HVAC systems. Heat split systems are also easy to install and maintain, and can provide long-term savings in energy costs.

Tips for Maintaining Heat Split System

In order to ensure that your heat split system runs efficiently, facilities management teams should practice regular maintenance. This includes replacing or cleaning the air filters regularly, inspecting the ductwork for leaks, and checking the refrigerant levels. Additionally, it is important to schedule regular tune-ups and preventive maintenance checks with a qualified HVAC technician.

Conclusion

Heat split systems are an efficient and cost-effective way for facilities management teams to maintain a comfortable indoor environment. By following the tips outlined above and scheduling regular maintenance checks, facilities management teams can ensure that their heat split system stays in peak working condition.