Scale a documented meter pressure-loss point to another flow using a visible user-entered exponent.
Why it matters: A visible equation keeps the calculation boundary and user-entered criteria available for technical review.
ΣCALCULATE · VERIFY · INTERPRET
Calculated result
Engineering evaluation
Calculation complete—verify project criteria
Scaled meter pressure loss (ΔP_2)11.25 psi
Flow ratio (Q_2/Q_1)
1.5 ratio
Engineering interpretation
The user-entered reference point and exponent predict 11.25 psi loss at the new flow.
Important limitations
Use a manufacturer-approved exponent or actual meter curve. Do not extrapolate beyond the documented operating range or ignore viscosity, meter size, strainers, and installation effects.
Engineering knowledge center
Understand the calculation—not just the answer
2026-08-07 · Free Library
Governing relationships
ΔP_2=ΔP_1(Q_2/Q_1)^n
Current substitution
ΔP_2=5×(150/100)^2=11.25.
Calculation sequence
Step-by-step method
Confirm the input boundary, formula symbols, and unit system.
Apply the displayed equation to the user-entered values.
Compare the screening result with project criteria, manufacturer data, and applicable standards.
Equation legend
Inputs and calculated quantities
Q_1
Reference flow — gpm or L/s
ΔP_1
Reference pressure loss — psi or kPa
Q_2
New flow — gpm or L/s
n
Loss exponent — dimensionless
ΔP_2
Scaled meter pressure loss — psi
Q_2/Q_1
Flow ratio — ratio
Applications
How this calculation is used
Building design
Screen a documented plumbing-system relationship without embedding a protected code table.
Construction
Check submitted or field values against the same transparent calculation basis.
Commissioning
Reconcile measured and scheduled conditions before professional disposition.
Quality controls
Assumptions and limitations
Assumptions
User-entered values describe one documented system boundary and operating condition.
All inputs use the displayed formula symbols and a consistent unit system.
Limitations
This transparent screen does not establish code compliance, equipment selection, or acceptance.
Project criteria, manufacturer data, adopted codes, uncertainty, and professional judgment remain controlling.
Field use
Verification procedure
Confirm the system boundary and source of each input.
Record representative values in the displayed units.
Review the result against project criteria, manufacturer data, and applicable standards.
Common engineering mistakes
Mixing values from different pressure, temperature, flow, or time bases.
Treating a screening result as a hidden design criterion or automatic pass/fail decision.
Technical basis
References and source standards
International Plumbing CodeThe legally adopted edition and local amendments govern plumbing-system requirements; protected tables are not reproduced.
These engineering tools are provided for educational, preliminary evaluation, field verification, and commissioning support. Results depend on the accuracy of user-entered information and the assumptions stated for each calculation. Every colored status and comparison is a screening indicator only; project criteria, contract requirements, applicable codes, manufacturer instructions, measurement uncertainty, and authorized engineering judgment govern. The tools do not replace project-specific engineering analysis or the judgment of a licensed professional engineer.