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Many of the VRF indoor terminal unit come with multi-speed fan control to save fan energy and reduce noise. To simulate these VRF terminal units accurately, we propose to add supply air flow ratio input fields for multiple speed fan to the object ZoneHVAC:TerminalUnit:VariableRefrigerantFlow. In simulation calculation, for each time step, cycle the terminal fan between two speeds based on the capacity at each air flow ratio and the required load output.
Background information
Recently there has been rapid growth in application of Variable Refrigerant Flow (VRF) systems in the US. There is already deep market adoption of VRF globally. One of the key features for increasing energy efficiency of VRF systems is use of multi-speed fans in VRF indoor units. Adding multi-speed fan modeling capabilities to EnergyPlus would allow engineers to demonstrate the energy performance benefits of this feature. This feature would have application for many VRF manufacturer’s products and across many market verticals.
Issue overview
Many of the VRF indoor terminal unit come with multi-speed fan control to save fan energy and reduce noise. To simulate these VRF terminal units accurately, we propose to add supply air flow ratio input fields for multiple speed fan to the object ZoneHVAC:TerminalUnit:VariableRefrigerantFlow. In simulation calculation, for each time step, cycle the terminal fan between two speeds based on the capacity at each air flow ratio and the required load output.
Background information
Recently there has been rapid growth in application of Variable Refrigerant Flow (VRF) systems in the US. There is already deep market adoption of VRF globally. One of the key features for increasing energy efficiency of VRF systems is use of multi-speed fans in VRF indoor units. Adding multi-speed fan modeling capabilities to EnergyPlus would allow engineers to demonstrate the energy performance benefits of this feature. This feature would have application for many VRF manufacturer’s products and across many market verticals.
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