Mixed Air Calculator
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Thermal calculations often look simple until absolute temperature, sign convention, phase, or heat-transfer mode changes the meaning. Mixed Air Calculator keeps the page’s mixed-air state tied to the quantities and assumptions used by this specific thermodynamic relation.
What this calculator does
The Mixed Air Calculator brings together Atmospheric pressure, Stream 1 volumetric flow, Stream 1 dry-bulb temperature, Stream 1 relative humidity, Stream 1 humidity ratio around the page’s mixed-air state. The formula section below identifies which values actually drive that result and which fields are supporting or derived quantities, so you can check the page without assuming every visible box is an independent input.
How to use it
The main fields on this page are Atmospheric pressure, Stream 1 volumetric flow, Stream 1 dry-bulb temperature, Stream 1 relative humidity, Stream 1 humidity ratio. Enter the quantities you actually know, keep their units consistent, and leave derived/output-style fields blank unless the formula explicitly allows solving in the opposite direction. For a clean check of mixed-air state, change one driving quantity at a time and confirm that the result moves in the direction predicted by the equation.
How the calculation works
Each air stream is converted to humidity ratio, enthalpy, specific volume, and dry-air mass flow. The page then mass-weights humidity ratio and enthalpy, solves the mixed dry-bulb temperature from those conserved quantities, and derives mixed RH and volumetric flow.
Example
For example, choose a simple internally consistent set for Atmospheric pressure, Stream 1 volumetric flow, Stream 1 dry-bulb temperature. Calculate mixed-air state from the equation above before comparing it with the page. Then vary one of those quantities by a clear amount—such as 10%—and verify that the displayed result responds in the physically expected direction.
How to interpret the result
Interpret mixed-air state within the stated thermodynamic model, unit system, and sign convention. Check whether temperatures are absolute where required and whether the process is idealized, because those details can matter more than the last decimal place.
Limitations and notes
Ideal thermal equations omit some combination of heat loss, contact resistance, temperature-dependent properties, radiation/convection coupling, phase behavior, and nonuniform temperature. Recheck units and process assumptions before using the result for equipment or safety decisions. For Mixed Air Calculator, keep that general caution tied to the exact fields and equation shown here rather than carrying assumptions over from a different calculator.
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