Schematic-design web tool
Infiltration Rate Converter
Convert real-world envelope airtightness measurements into the inputs EnergyPlus actually uses — right in the browser, no spreadsheet download. The successor to the legacy I75 / ACH50 conversion workbooks.
Use it here
The full tool is embedded below. For more room, use Launch the tool above to open it in its own tab.
What it does
A key driver of building heat gain and loss is the infiltration rate — the uncontrolled exchange of conditioned indoor air with outdoor air through the envelope. Field metrics such as I75 and ACH50 are measured at test pressures and cannot be entered into an energy model as-is. This tool bridges that gap with five modes:
Key definitions
-
ACH50
-
Complete air changes per hour with the building pressurized to 50 Pascals — the blower-door metric common in residential airtightness testing.
-
ACHnat
-
The natural (untested-pressure) air-change rate. Entered in EnergyPlus with the Air Changes/Hour method.
-
I75
-
Infiltration flow per square foot of exterior exposed surface area at 75 Pascals — the metric more commonly used in commercial work.
-
Idesign
-
The EnergyPlus design infiltration flow per exterior surface area at design conditions, entered with the Flow/ExteriorArea method. EnergyPlus then modulates it every timestep by a coefficient equation in wind speed and indoor–outdoor temperature difference.
Method & data sources
The I75 / ACH conversions follow PNNL's Infiltration Modeling Guidelines for Commercial Building Energy Analysis (PNNL-18898) — the DOE-2 linear wind-velocity coefficient (C = 0.224, referenced to a 10 mph design wind), paired with PNNL's full recommendation of an infiltration schedule fraction of 0.25 while the HVAC system runs and 1.0 when it is off.
The NIST coefficients mode uses the weather-correlated EnergyPlus inputs of Ng et al. (2018), with coefficient values drawn from the published NIST dataset (DOI 10.18434/mds2-2598). For each of eleven prototype building types, climate zone, and airtightness level, it returns the A/B/D coefficients — fitted to multizone (CONTAM) airflow simulations — as two ready-to-paste ZoneInfiltration:DesignFlowRate objects (system-on and system-off). Idaho's zones map to the NIST representative cities: 5B → Chicago, 6B → Helena, zone 7 → Duluth.
University of Idaho Integrated Design Lab · Elevating occupant comfort, health, and affordability. Intended for early-stage schematic design analysis, prior to detailed energy simulation.