Db Addition Two Sources

Energetic sum of two uncorrelated sound levels in decibels.

Description

Energetic sum of two uncorrelated sound levels in decibels.

Db Addition Two Sources implements a focused acoustics calculation. Energetic sum of two uncorrelated sound levels in decibels.1

When to use Db Addition Two Sources

Use this calculation for a first-order acoustics estimate when the stated geometry, propagation model, averaging convention, reference quantity, and SI units match the measurement or design problem.

First Decibels
A finite measured or assumed value, expressed in dB.
Second Decibels
A finite measured or assumed value, expressed in dB.

How Db Addition Two Sources calculates the result

The implemented rule is: Energetic sum of two uncorrelated sound levels in decibels.1

Combined Decibels
The calculated combined decibels, expressed in dB.

Limitations of Db Addition Two Sources

This is an idealized calculation rather than a complete acoustic simulation or measurement. Reflections, boundary conditions, directivity, damping, frequency dependence, near-field behavior, background noise, transducer response, temperature, humidity, and geometry can change a real result. Decibel values are logarithmic: arithmetic addition, averaging, or subtraction of the displayed levels would be physically wrong for the energetic model used here.

Alternative or Complementary measurements

Confirm important results with calibrated measurements or a model that includes the actual geometry, materials, boundaries, source directivity, and frequency-dependent losses. Preserve the reference quantity and weighting whenever a result is expressed in decibels.

References

  1. Decibel — Wikipedia contributors

Similar or alternative tools

  • Calibration Level Offset

    Signed level calibration offset to add to measured readings to match a reference calibrator.

  • Db Mean Of Readings

    Energetic mean, not arithmetic mean, of two equal-duration sound-level readings.

  • Db Subtract Background

    Source-only sound level after energetic subtraction of measured background from total level.

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